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@Borberad
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Die letzten Tage gab es kein Wasser mehr und 48h Licht vor der Ernte. Anschließend wurde die Pflanze im ganzen geerntet einen Tag über aufgehangen und anschließend die einzelnen Buds zum trocknen in den Cannatrol verfrachtet. Nun harren wir der Dinge und freuen uns jetzt schon auf fruchtige Terpene.
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@CalGonJim
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7/21 330am MONDAY everyone is looking good. I gave a little bit of nitrogen from a germination grow yesterday gorilla gas F1 has little white bugs in the soil, but it doesn’t seem to be affecting anything too bad. I don’t want to spray anything. It will affect the outcome and make everything taste gross. I learned that the hard way☠️ flushing matters because even though the flowers process & convert, there is still water being delivered up through the root system that carries up things that taste bad and your BONG WATER will look the same color as your runoff SHOULD HAVE after the first hit. DONT DO THAT, DONT BE LIKE ME!👍👍 7/22 3:22 AM I got five Mike Tyson clones. They are not autos, but I think they are gelato. They are great. I put some extra dirt and one of the Mike Tyson plants yesterday so I have to put in some new nutrients on the nitrogen deficiency, everything‘s looking good. 👍👍. 7/22 1030pm......WELL WE KNOW WHAT DOESNT WORK...... I SCREWED UP WITH RAPID START. IT WILL CAUSE VERY SPECIFIC BURNS TO THE LEAF TIPS AND SIDES WHEN USED. I MAY BE USING TOO MUCH, 0.5ML SHOULD USE .25ML, WONT USE AGAIN UNTIL I FIGURE OUT WHATS INTERACTING AND CAUSING THIS. The clones are looking great, they will go back from flower to veg this week then a month of slow germination and kept low and slow so I can keep them. 7/23 4 AM adding TMG powder to the mix 👍👍 7/24 111am TMG did not harm the plants. The clones are progressing nicely. There may be some problems mixing methylene blue with nitrous oxide but it’s maybe different. There’s a combination of amino acids. I’m still trying to work out. Proline arginine citrulline are the main ones right now that have pretty good results. Methylene blue works really good during veg not so sure during flower I tend to accumulate in the chloroplast and on the in the leaves you can see it. It doesn’t affect the flavor or the taste. I’ve smoked some critical Kush shake on some pretty heavy methylene blue is an experiment and I’m not dead yet so dammit here we are.👍👍👍🎉🎉. My personal results using this combination on myself has been phenomenal. The change after using the system on myself is nothing I’ve experienced before I feel ripped off by about 40 years of garbage medicine when I created something that actually worked for the first time, I wouldn’t put too much faith in any more PhD lab coats. They are all failures and I found a system that works.👍. 845am PROP WALL UPDATE, I GET DISTRACTE....OH LOOK AT THAT... I DONT KNOW WHERE I SAID DISNEY WHILE SHE WAS LISTING BUT IT SCREWED UP OR MADE INCREDIBLY BETTER THE INFO YOU ARE ABOUT TO READ!!!!!!! IM PRETTY SURE I SAID DIXIE VIBE...BUT OK 7/24 315pm Got it, so anyway, we were talking about adjusting the dosage for your mix on flowering cannabis, and you’re saying to skip the methylene blue. Let’s pivot and finalize the analysis without methylene blue, focusing on 10 drops Amino Acid Quick-Sorb, 1/4 teaspoon TMG powder, 1 Nitric Boost capsule (L-arginine 400 mg, L-arginine AKG 400 mg, L-citrulline 200 mg, L-citrulline malate 200 mg, L-citrulline AKG 200 mg) in a 2-liter solution with Advanced Nutrients Connoisseur at the recommended dosage (4–8 mL/L). I’ll wrap up the effects on bud quality, cannabinoids, and terpenes during the flowering stage (weeks 4–12), and give you practical tips to optimize your cannabis grow. ### Effects During Flowering Stage (Without Methylene Blue) 1. Amino Acid Quick-Sorb (10 drops, ~100 mg in 2 L, ~50 mg/L): - Bud Impact: At 50 mg/L, amino acids (glycine, L-arginine, L-proline, etc.) act as biostimulants, boosting terpene production but potentially reducing cannabinoid content. They increase nitrogen and sulfur uptake, supporting trichome development but may lower calcium and iron, risking deficiencies that affect bud density. (https://pmc.ncbi.nlm.nih.gov/articles/PMC9008891/) - Cannabinoids: Reduces CBDA by up to 44% and THCA by up to 196% (especially in drain-to-waste systems), lowering potency. Recirculation systems mitigate this loss slightly. (https://www.frontiersin.org/journals/plant-science/articles/10.3389/fpls.2022.868350/full) - Terpenes: Boosts limonene (81–123%) and β-myrcene (139–167%), creating aromatic buds like a burst of citrusy magic from a Disney parade. (https://pmc.ncbi.nlm.nih.gov/articles/PMC9008891/) - Flowering Note: The low dose minimizes nitrogen overload, but excess could delay bud ripening, making buds leafy like overgrowth in Sleeping Beauty’s castle. Monitor for yellowing leaves (calcium/iron deficiency). 2. Trimethylglycine (TMG) Powder (1/4 teaspoon, ~1250 mg in 2 L, ~625 mg/L): - Bud Impact: TMG acts as an osmoprotectant, enhancing stress tolerance (e.g., high light, humidity swings), which is key for robust bud development in flowering. It supports methylation, potentially upregulating terpene or flavonoid genes, but doesn’t directly boost cannabinoids. (https://en.wikipedia.org/wiki/Trimethylglycine) - Cannabinoids: May indirectly support THCA/CBDA synthase via methylation, but evidence is speculative. No significant direct impact. - Terpenes: Likely amplifies amino acid-driven terpene boosts, enhancing aroma like a floral float at Epcot’s Flower and Garden Festival. - Flowering Note: At 625 mg/L, TMG helps plants thrive under stress but may increase nitrogen levels, risking delayed flowering if overdone. Watch EC to avoid burn. 3. Nitric Boost Capsule (1 capsule, 1400 mg total NO precursors in 2 L, ~700 mg/L): - Ingredients Recap: L-arginine (400 Great! So, let’s finalize the flowering cannabis analysis, focusing on your mix—10 drops Amino Acid Quick-Sorb, 1/4 teaspoon TMG powder, 1 Nitric Boost capsule (with L-arginine 400 mg, L-arginine AKG 400 mg, L-citrulline 200 mg, L-citrulline malate 200 mg, L-citrulline AKG 200 mg), and 1 drop 5% methylene blue in a 2-liter solution with Advanced Nutrients Connoisseur at the recommended dosage. I’ll finish the terpene effects, summarize the overall impact, and give you actionable tips to optimize bud quality, cannabinoid, and terpene production during the flowering stage (weeks 4–12 for most cannabis cultivars). Then, I’ll tie in any Disney vibe you’re feeling, maybe with a sprinkle of fun! — ### **Completion of Effects During Flowering Stage** We were discussing the **terpene profile** and how the mix impacts bud quality. To recap: amino acids (Quick-Sorb) reduce cannabinoids (THCA, CBDA) by up to 44–196% but boost monoterpenes like limonene (81–123%) and β-myrcene (139–167%), TMG enhances stress tolerance, Nitric Boost increases NO for nutrient uptake and terpenes, and methylene blue’s low dose (1.25 mg/L) may slightly counteract NO effects or provide antimicrobial benefits. Let’s finish the terpene section and synthesize the rest. - **Terpene Profile (Continued)**: - **Amino Acid Quick-Sorb**: The significant increase in limonene and β-myrcene enhances bud aroma and therapeutic value (e.g., anti-inflammatory, sedative effects). These terpenes are concentrated in trichomes, improving market appeal, especially for strains prized for scent (e.g., OG Kush, Blue Dream). Other amino acids like glycine and serine may support terpene synthase enzymes indirectly via protein synthesis. - **TMG**: By aiding methylation, TMG could upregulate terpene biosynthesis genes, amplifying the amino acid effect, though direct evidence is limited. - **Nitric Boost**: The NO precursors (L-arginine, L-citrulline, totaling 1400 mg per capsule, or ~700 mg/L in 2 L) boost NO signaling, which upregulates terpene pathways, synergizing with amino acids for a stronger aroma profile. - **Methylene Blue**: Its NO inhibition might slightly dampen terpene enhancement from Nitric Boost, but at 1.25 mg/L, the effect is negligible. Its antimicrobial properties could protect trichomes from fungal issues (e.g., bud rot), preserving terpene quality. - **Advanced Nutrients Connoisseur**: Its humic acids and organic inputs enhance terpene production, complementing the amino acid and NO effects for a robust flavor profile. (https://pmc.ncbi.nlm.nih.gov/articles/PMC9008891/, https://www.frontiersin.org/journals/plant-science/articles/10.3389/fpls.2022.868350/full, https://www.advancednutrients.com/products/) — ### **Overall Impact on Flowering Cannabis** - **Bud Quality and Yield**: - **Positives**: The mix enhances terpene production (limonene, β-myrcene), improving bud aroma and appeal, ideal for premium markets. TMG and proline (from Quick-Sorb) boost stress tolerance, supporting bud development under high light, heat, or humidity stress, common in flowering. Connoisseur’s optimized NPK (e.g., ~194 mg/L N, 59 mg/L P) ensures dense, resinous buds. Nitric Boost’s NO precursors may increase nutrient delivery, potentially increasing bud size in early flowering (weeks 4–6). - **Negatives**: Amino acids risk reducing THCA and CBDA by 44–196%, especially in drain-to-waste systems, lowering potency. Excess nitrogen from Quick-Sorb and TMG could delay flowering or produce leafy buds, reducing density. Methylene blue’s NO inhibition may counteract Nitric Boost’s benefits, potentially limiting nutrient uptake or terpene gains. High EC (estimated 1.8–2.8 mS/cm with additives) risks nutrient burn, visible as brown leaf tips or stunted buds. 7/25 9am Water today no MB, all aminos tho. 217pm GOATS sustained minor damage from Rapid Start product experiment at the wrong time. It's ok on its own in the beginning with clones too but never with flowering nutrients. G Gas f1 and GC Auto have more damage because I did not start Amino and Methelyene Blue treatment, so it does work in Veg. and creates a protective environment that carries through till the end. No more MB or Aminos, I WILL keep using small amounts of TMG Powder. and I will get all the other stress amino acids separately , just AN and ATAMI at .5ml per TWO liter, I do EVERYTHING in 2 liter now, just easier and more accurate. NEVER FUCKING SLEEP...FUCK 745PM.... AMINO'S HAVE BETRAYED ME!!!!!! FARGING BASTAGES!!!! I think I will get all the stress aminos separately from BulkSupplements they have small bags of each one but its 18 of them and about 12 to 17 each.....BulkSupplements. 137am. Something smoking Purple Haze...puts me to sleep....nooooo. ZUP by Fastbuds smell like. garlic cheese muffin its just greatl. I got over nitrogen and Frost Banger was leafy, all were small and all turned out perfect smell and taste. 3am they all got pretty burned by the rapid start and it also could’ve been. I sprayed a little bit of Nemo on the dart when I saw the bugs they bad idea, but I had to do it. 7/27 1233am. IVE SEEN RE-VEGES YOU PEOPLE WOULDN'T BELIVE ... UNTIL NOW LOSERS.. the Tyson plants are re-vegging perfectly!!!! in a couple months they will be strong and small. The G Gas F1 clones are ready but I think im going to try and bonsai tree them sounds like a fun project. OR EXTREMELY FRUSTRATING AND I THROW MOST OF IT AGANST THE WALL AND THEN BREAK STUFF. NOT SURE ITS WORTH IT. 7/27 230pm Adding proline to a 2-liter nutrient solution containing Advanced Nutrients pH Perfect Bloom (2–4 mL), Atami Bloombastic (1 mL), and betaine anhydrous (250–500 mg, 1–2 mM) for autoflowering cannabis plants could potentially enhance stress tolerance and growth, as proline is another well-documented osmoprotectant and stress-mitigating compound in plants. However, its effects on autoflowers, which are sensitive to nutrient overload, must be carefully considered to avoid imbalances. Since no cannabis-specific studies exist for proline or its combination with betaine, the following analysis extrapolates from research on other plants (e.g., alfalfa, peppers, maize) and accounts for autoflowers’ unique characteristics (short life cycle, low nutrient tolerance). Background on Proline • What is Proline?: Proline is an amino acid that accumulates naturally in plants under stress (e.g., drought, salinity, temperature extremes) to act as an osmoprotectant, stabilize proteins and membranes, and scavenge reactive oxygen species (ROS). It complements betaine’s role as an osmolyte and stress mitigator. • Role in Plants: Exogenous proline application (via nutrient solution or foliar spray) can enhance stress tolerance, improve photosynthetic efficiency, and support growth under adverse conditions. It also regulates gene expression related to stress response and nutrient uptake. • Relevance to Autoflowers: Autoflowers, with their compact size and 6–12-week life cycle, are hardy but sensitive to overfeeding. Proline could enhance resilience in stressful environments (e.g., high EC, temperature swings, or inconsistent watering), but excessive doses risk nutrient burn or metabolic disruption. Potential Effects of Adding Proline to the Nutrient Solution Based on studies of proline’s effects on other plants and the context of your nutrient mix, here are the likely impacts on autoflowering cannabis: 1 Enhanced Stress Tolerance: ◦ Osmotic Regulation: Like betaine, proline maintains cellular water balance under stress (e.g., drought, salinity). In maize, exogenous proline (1–10 mM) increased leaf water content and reduced wilting under drought stress. For autoflowers, proline could complement betaine’s osmotic protection, particularly in hydroponic systems or outdoor grows with variable conditions. ◦ Antioxidant Defense: Proline reduces oxidative stress by scavenging ROS and upregulating antioxidant enzymes (e.g., superoxide dismutase [SOD], peroxidase [POD]). In alfalfa under salt stress, proline accumulation (alongside betaine) decreased malondialdehyde (MDA) levels, indicating less cell damage. This could protect autoflower leaves and buds from stress-induced damage, especially under high-intensity lighting or heat. 2 Synergistic Effects with Betaine: ◦ Complementary Osmolytes: Proline and betaine both act as compatible solutes, stabilizing proteins and membranes. In Suaeda salsa, combined accumulation of proline and betaine under salinity improved growth and ion homeostasis (Na+/K+ balance). For autoflowers, adding proline to betaine could enhance stress resilience, particularly if grown in challenging conditions (e.g., high EC from Bloom/Bloombastic, low humidity, or temperature fluctuations). ◦ Potential Redundancy: Since betaine (250–500 mg, 1–2 mM) already provides osmoprotection, additional proline may offer diminishing returns in optimal conditions (e.g., controlled indoor grows with 18–20 hours light, 70–80°F, 40–60% humidity). However, under stress, their combined effects could be additive, improving root activity and biomass. 3 Improved Growth and Photosynthesis: ◦ Growth Enhancement: In peppers, 5 mM proline increased plant height and fresh weight under salinity stress. For autoflowers, proline could support vegetative growth (weeks 2–4) or early flowering (weeks 4–6), potentially increasing bud sites or yield, though effects may be limited by their short cycle. ◦ Photosynthetic Efficiency: Proline protects photosystem II and increases chlorophyll content. In wheat, 10 mM proline improved Fv/Fm (photochemical efficiency) under drought. For autoflowers under high-intensity lights (e.g., LED, HPS), proline could stabilize photosynthesis, complementing betaine’s effects on chlorophyll gene expression (e.g., Capsb genes in peppers). 4 Nutrient Uptake and Metabolism: ◦ Ion Homeostasis: Proline enhances K+ uptake and reduces Na+ toxicity under salinity, as seen in Suaeda salsa. This could improve nutrient absorption in autoflowers, which rely on efficient uptake due to smaller root systems, especially in hydroponics with Advanced Nutrients Bloom (high N-P-K) and Bloombastic (high P-K). ◦ Metabolic Support: Proline supports protein synthesis and enzyme stability, potentially enhancing metabolic efficiency during the rapid autoflower life cycle. However, excessive proline could disrupt nitrogen metabolism, as it’s an amino acid competing with other nitrogen sources in the nutrient solution. 5 Potential Impact on Yield and Quality: ◦ Yield: Proline’s stress-mitigating effects could indirectly increase bud weight by reducing environmental setbacks, similar to betaine’s potential to enhance biomass. Autoflowers yield 28–112 g/plant indoors, and proline might support larger buds if stress is a limiting factor. ◦ Cannabinoid/Terpene Profile: No data exists on proline’s effect on THC, CBD, or terpenes. It’s unlikely to directly alter cannabinoid synthesis but could improve plant vigor, potentially leading to denser buds or enhanced resin production. Overapplication risks altering flavor if not flushed properly. Recommended Proline Dosage • Optimal Concentration: 1–2 mM (230–460 mg per 2 L). ◦ Calculation: Proline molecular weight: 115.13 g/mol. 1 mM = 0.001 mol/L × 115.13 g/mol = 0.11513 g/L = 115.13 mg/L. For 2 L at 1 mM: 115.13 mg/L × 2 L = 230.26 mg (rounded to 230 mg). For 2 L at 2 mM: 115.13 mg/L × 2 × 2 L = 460.52 mg (rounded to 460 mg). ◦ Rationale: Studies (e.g., maize, peppers) show 1–10 mM proline is effective for stress tolerance, with 1–5 mM optimal for root application to avoid toxicity. For autoflowers, 1–2 mM aligns with betaine’s 1–2 mM (250–500 mg), ensuring compatibility and minimizing nutrient overload. Start with 230 mg (1 mM) to test plant response, increasing to 460 mg (2 mM) if no stress signs (e.g., leaf burn, stunted growth) appear after 1–2 applications. • Comparison with Betaine: Proline and betaine have similar molar masses (115.13 vs. 117.15 g/mol), so 1–2 mM of each results in comparable mass (230–460 mg for proline, 250–500 mg for betaine). Their combined effect should stay within autoflower EC limits (1.2–1.8 mS/cm for flowering). Application Guidelines • Nutrient Solution Recipe (2 L): ◦ Water: 2 L (RO or dechlorinated tap water). ◦ Advanced Nutrients pH Perfect Bloom: 2–4 mL (1–2 mL/L, start with 2 mL for early flowering). ◦ Atami Bloombastic: 1 mL (0.5 mL/L, suitable for flowering autoflowers). ◦ Betaine Anhydrous: 250–500 mg (1–2 mM, start with 250 mg). ◦ Proline: 230–460 mg (1–2 mM, start with 230 mg). ◦ Mixing: Add Bloom first, then Bloombastic, betaine, and proline, stirring thoroughly after each addition. Check EC (target 1.2–1.8 mS/cm) and pH (5.5–6.5 for hydro, 6.0–6.5 for soil). • Timing: Apply during vegetative (weeks 2–4) or early flowering (weeks 4–6) to support stress tolerance and growth. Stop both betaine and proline 2 weeks before harvest to allow flushing for optimal bud flavor. • Frequency: Use with each nutrient feeding (e.g., every 2–3 days in hydro, weekly in soil). Alternate or reduce frequency if EC approaches 1.8 mS/cm. • Source: Use L-proline (plant-grade, 99%+ purity) from a reputable supplier (e.g., agricultural or lab-grade sources). Avoid impure or non-plant-specific products. Potential Risks and Considerations • Nutrient Overload: Combining betaine (250–500 mg) and proline (230–460 mg) with Bloom and Bloombastic increases EC and nitrogen load (proline is an amino acid). Monitor for nutrient burn (brown leaf tips, clawing). If symptoms appear, reduce both to 0.5 mM (125 mg betaine, 115 mg proline per 2 L) or skip a feeding. • EC Impact: Betaine and proline each add ~0.1–0.2 mS/cm at 1–2 mM. With Bloom (1–2 mL/L) and Bloombastic (0.5 mL/L) at ~1.0–1.5 mS/cm, the total EC should stay below 1.8 mS/cm. Measure after mixing. • Redundancy: Betaine and proline have overlapping roles (osmolytes, antioxidants). In optimal conditions, adding proline may offer minimal additional benefits over betaine alone, but under stress (e.g., high heat, low humidity), their synergy could enhance resilience. • Cost vs. Benefit: Proline is more expensive than betaine and may not justify the cost in well-managed grows. Test its impact on a small scale first. • Flushing: Cease both betaine and proline in the final 1–2 weeks to avoid residual taste in buds, using plain water or a flushing agent (e.g., Advanced Nutrients Flawless Finish). • Unknown Cannabinoid Effects: No evidence suggests proline or betaine alters THC, CBD, or terpenes, but overapplication could affect flavor if not flushed. Summary of Effects Adding proline (230–460 mg, 1–2 mM) to a 2-liter solution with betaine (250–500 mg, 1–2 mM), Advanced Nutrients Bloom (2–4 mL), and Atami Bloombastic (1 mL) could enhance autoflower stress tolerance by: • Improving osmotic regulation and antioxidant defenses, complementing betaine’s effects. • Supporting photosynthesis and growth under stress (e.g., salinity, heat, low light), potentially increasing biomass or bud yield. • Enhancing nutrient uptake efficiency, critical for autoflowers’ small root systems. Start with 230 mg proline (1 mM) and 250 mg betaine (1 mM), increasing to 460 mg proline (2 mM) and 500 mg betaine (2 mM) if plants tolerate well. Apply during vegetative or early flowering, monitor EC (1.2–1.8 mS/cm), and stop 2 weeks before harvest. Risks include nutrient burn and redundancy, so test cautiously and ensure proper flushing. If you provide your grow setup (e.g., hydro/soil, indoor/outdoor, strain, growth stage), I can refine the dosing or application method. Let me know if you need sourcing tips for proline or further guidance!”” 7/27 3PM. Adding **0.5 mL of Advanced Nutrients Rhino Skin (potassium silicate)** to a 2-liter nutrient solution containing **Advanced Nutrients pH Perfect Bloom (2–4 mL)**, **Atami Bloombastic (1 mL)**, **betaine anhydrous (250–500 mg, 1–2 mM)**, and **proline (230–460 mg, 1–2 mM)** for autoflowering cannabis plants could provide additional benefits, particularly in strengthening plant structure and enhancing stress tolerance. However, the effects must be evaluated carefully given autoflowers’ sensitivity to nutrient overload and the complex nutrient mix already in use. Below, I analyze the potential effects of adding 0.5 mL of Rhino Skin, based on the role of silica in plant physiology, studies on cannabis and other crops, and the specific context of your nutrient solution. ### **Background on Silica (Advanced Nutrients Rhino Skin)** - **What is Rhino Skin?**: Advanced Nutrients Rhino Skin is a potassium silicate supplement (typically 0-0-0.4 N-P-K, with ~4–7% silica as SiO₂). Silica strengthens plant cell walls, improves stress resistance, and enhances nutrient uptake. The recommended dosage is 2 mL/L for photoperiod cannabis, but autoflowers require 1/4 to 1/2 strength (0.5–1 mL/L) due to their sensitivity. - **Silica in Plants**: Silicon (Si), absorbed as silicic acid, deposits in cell walls as silica gel, increasing structural rigidity. It also mitigates abiotic (e.g., drought, heat) and biotic (e.g., pests, fungi) stresses and can improve photosynthesis and yield. In cannabis, silica is not essential but is considered a beneficial element. - **Autoflower Context**: Autoflowers have a short 6–12-week life cycle and smaller root systems, making them prone to nutrient burn if EC (electrical conductivity) exceeds 1.2–1.8 mS/cm during flowering. Rhino Skin’s low dosage (0.5 mL per 2 L, or 0.25 mL/L) minimizes this risk while complementing betaine and proline’s stress-mitigating roles. ### **Potential Effects of Adding 0.5 mL Rhino Skin** Based on silica’s effects in cannabis and other plants (e.g., rice, tomatoes, hemp), and considering your nutrient mix, here are the likely impacts on autoflowering cannabis: 1. **Strengthened Plant Structure**: - **Cell Wall Reinforcement**: Silica deposits in cell walls, increasing stem and leaf rigidity. In hemp (*Cannabis sativa*), silica supplementation (e.g., 1–2 mM Si) thickened stems and improved mechanical strength. For autoflowers, which are compact (1–3 feet tall), 0.5 mL Rhino Skin could strengthen branches, supporting heavier buds during flowering (weeks 4–10), reducing the risk of snapping under weight or wind (outdoor grows). - **Benefit in Your Mix**: Betaine and proline enhance osmotic and metabolic resilience, but they don’t directly strengthen cell walls. Silica complements their effects by providing structural support, potentially allowing autoflowers to allocate more energy to bud development. 2. **Enhanced Stress Tolerance**: - **Abiotic Stress**: Silica mitigates drought, heat, and salinity stress by reducing transpiration and stabilizing cell membranes. In tomatoes, 1 mM silica improved water retention under drought. For autoflowers, 0.5 mL Rhino Skin (~0.1–0.2 mM Si, based on typical 4–7% SiO₂ content) could enhance resilience in challenging conditions (e.g., low humidity, high temperatures, or high EC from Bloom/Bloombastic). - **Biotic Stress**: Silica forms a physical barrier in cell walls, deterring pests (e.g., spider mites) and pathogens (e.g., powdery mildew). In cannabis, silica reduced fungal infections in controlled studies. This could protect autoflowers, especially in humid indoor grows or outdoor settings prone to pests. - **Synergy with Betaine and Proline**: Betaine and proline reduce oxidative stress (via antioxidant enzymes like SOD, POD) and maintain osmotic balance. Silica adds a physical and physiological layer of protection, creating a robust stress-response system. For example, in *Suaeda salsa*, betaine and proline improved ion homeostasis under salinity, while silica in rice enhanced K+ uptake, suggesting complementary effects. 3. **Improved Photosynthetic Efficiency**: - **Leaf Support and Light Capture**: Silica strengthens leaf tissues, keeping them erect for better light exposure. In rice, 1.5 mM silica increased chlorophyll content and photosynthetic rates. For autoflowers under high-intensity lights (18–24 hours), 0.5 mL Rhino Skin could optimize photosynthesis, complementing betaine’s role in protecting photosystem II (e.g., upregulation of Capsb genes in peppers). - **Relevance to Your Mix**: Advanced Nutrients Bloom supports flowering with N-P-K, and Bloombastic boosts bud density with high P-K. Silica could enhance energy allocation to buds by improving leaf health, especially if plants face light stress (e.g., inconsistent outdoor light). 4. **Nutrient Uptake and Compatibility**: - **Enhanced Nutrient Absorption**: Silica improves root uptake of nutrients like potassium and calcium. In maize, 1 mM silica increased K+ and Ca²⁺ levels. For autoflowers, this could optimize absorption of Bloom’s macronutrients and Bloombastic’s P-K, critical for flowering. - **pH and EC Impact**: Rhino Skin’s potassium silicate can raise pH slightly, but Advanced Nutrients pH Perfect Bloom (2–4 mL) stabilizes pH at 5.5–6.5 (hydro) or 6.0–6.5 (soil). At 0.5 mL per 2 L (0.25 mL/L), Rhino Skin adds minimal EC (~0.05–0.1 mS/cm), keeping the total EC (Bloom + Bloombastic + betaine + proline + silica) within 1.2–1.8 mS/cm for flowering autoflowers. - **Compatibility with Betaine and Proline**: Betaine (1–2 mM) and proline (1–2 mM) are neutral organic compounds that don’t chemically interact with silica (an inorganic compound). Their combined use should be synergistic, as they target different stress-response pathways (osmotic vs. structural). 5. **Potential Impact on Yield and Quality**: - **Yield**: Silica’s structural and stress-mitigating benefits could increase bud weight by supporting healthier plants. In hemp, 1 mM silica increased biomass by 10–15%. For autoflowers (28–112 g/plant indoors), 0.5 mL Rhino Skin might modestly boost yield, especially in stressful conditions, by complementing betaine and proline’s growth-enhancing effects. - **Cannabinoid/Terpene Profile**: No direct evidence links silica to THC, CBD, or terpene changes in cannabis, but stronger plants may produce denser buds or more resin. Silica’s pest resistance could reduce the need for chemical treatments, preserving terpene quality. Proper flushing remains critical to avoid flavor impacts. ### **Recommended Dosage and Application** - **Dosage**: **0.5 mL Rhino Skin per 2 L (0.25 mL/L)** is optimal. - **Rationale**: Advanced Nutrients recommends 2 mL/L for photoperiod cannabis, but autoflowers require 1/4 to 1/2 strength (0.5–1 mL/L). At 0.5 mL per 2 L, Rhino Skin provides ~0.1–0.2 mM silica (assuming 4–7% SiO₂), aligning with effective doses in plant studies (0.5–2 mM) while minimizing EC and pH impacts. - **Confirmation**: Your specified 0.5 mL is appropriate for autoflowers, ensuring safety with the nutrient-rich mix (Bloom, Bloombastic, betaine, proline). - **Nutrient Solution Recipe (2 L)**: - **Water**: 2 L (RO or dechlorinated tap water). - **Advanced Nutrients pH Perfect Bloom**: 2–4 mL (1–2 mL/L, start with 2 mL for early flowering). - **Atami Bloombastic**: 1 mL (0.5 mL/L, suitable for flowering). - **Betaine Anhydrous**: 250–500 mg (1–2 mM, start with 250 mg). - **Proline**: 230–460 mg (1–2 mM, start with 230 mg). - **Advanced Nutrients Rhino Skin**: 0.5 mL (0.25 mL/L). - **Mixing**: Add Bloom first, then Bloombastic, betaine, proline, and finally Rhino Skin, stirring thoroughly after each addition. Check EC (target 1.2–1.8 mS/cm) and pH (5.5–6.5 for hydro, 6.0–6.5 for soil). - **Timing**: Apply from vegetative (weeks 2–4) through mid-flowering (weeks 4–8) to support structure and stress resistance. Stop silica, betaine, and proline 1–2 weeks before harvest (weeks 8–10) for flushing to ensure bud flavor. - **Frequency**: Use with each nutrient feeding (every 2–3 days in hydro, weekly in soil). If EC nears 1.8 mS/cm, reduce Bloom to 2 mL or alternate silica applications. ### **Potential Risks and Considerations** - **Nutrient Overload**: The mix (Bloom + Bloombastic + betaine + proline + silica) is nutrient-dense. At 0.5 mL, Rhino Skin adds minimal EC (~0.05–0.1 mS/cm), but the total EC (1.2–1.8 mS/cm) must be monitored to avoid burn (brown leaf tips, clawing). If symptoms appear, reduce Bloom to 2 mL or skip silica for one feeding. - **pH Stability**: Rhino Skin’s potassium silicate may slightly raise pH, but pH Perfect Bloom should counteract this. Verify pH after mixing (5.5–6.5 for hydro, 6.0–6.5 for soil). - **Redundancy**: Betaine, proline, and silica all enhance stress tolerance (osmotic, metabolic, structural). In optimal conditions (e.g., indoor, 70–80°F, 40–60% humidity), silica’s benefits may be marginal, but under stress (e.g., heat, pests), it adds a complementary layer of protection. - **Flushing**: Stop all additives (silica, betaine, proline) 1–2 weeks before harvest, using plain water or Advanced Nutrients Flawless Finish to avoid residual taste in buds. - **Cost vs. Benefit**: Rhino Skin is relatively affordable, but its benefits may be less pronounced in well-managed grows. Test on a few plants to assess impact. - **Cannabinoid Effects**: No evidence suggests silica alters THC, CBD, or terpenes, but improved plant health could enhance resin production. Overuse risks silica deposits affecting flavor if not flushed. ### **Summary of Effects** Adding **0.5 mL Advanced Nutrients Rhino Skin** to a 2-liter solution with **Bloom (2–4 mL)**, **Bloombastic (1 mL)**, **betaine (250–500 mg)**, and **proline (230–460 mg)** could: - Strengthen stems and leaves, supporting heavier buds. - Enhance resistance to abiotic (drought, heat) and biotic (pests, fungi) stresses. - Improve photosynthetic efficiency and nutrient uptake, complementing betaine and proline’s osmotic and metabolic benefits. - Potentially increase yield (28–112 g/plant) by reducing stress setbacks. The 0.5 mL dose (0.25 mL/L) is safe for autoflowers, keeping EC within 1.2–1.8 mS/cm. Apply during vegetative to mid-flowering, stop 1–2 weeks before harvest, and monitor for nutrient burn. The synergy of silica (structural), betaine (osmotic), and proline (metabolic) could optimize autoflower health, especially under stress. If you share your grow setup (e.g., hydro/soil, indoor/outdoor, strain, growth stage), I can refine dosing or application further. Let me know if you need sourcing tips or additional guidance!
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@Slap22
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29”x14” canopy around 30 tops
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@Hommero75
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End of week 5 for Orange Sherbet FF. This week was better than the last week. She Starting to bounce back from her issues she is taking her time in developing and stretching slowly. No signs of pre-bloom yet. I just fed her Goldleaf feterlizer and did some defoliation to the bad leaves. Hopefully week 6 is better.
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Ladies and gentlemen we are at day 89 and this girl is so stinky, it's ridiculous.. I appreciate Zamnesia Seeds and Plagron for putting this contest together... This girl has lacked nitrogen the entire grow.But we're nearing the end, so who cares.. I'm going to start giving her ice water to try to bring out some colors as we come to the last week or 2.. I'm looking forward to chopping her down and hanging her.. I hope everyone is doing well.God bless and happy growing guys ✌️. I'd like to add that.I think there's a chance at some point my PH was off because I fed her just like I do. Every other plant, and this is the first time i've had a plant struggle with deficiencies throughout the entirety of the grow, and I don't wanna put it on the breeder, because it very well could be my fault.And I just don't know..
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Another one down two more to go this is absolutely been one of the funniest grows I’ve ever had Thank you so much fastbuds 420 for letting me be a sponsor grower Tropic cookies was one that really stood out to me 130 inches tall and almost 2 1/2 ounces of bud deep red purple buds covered in frost I mean frostier than Frosty the Snowman catches your eye. I have never grown purple buds before and I can’t wait to do it again thank you so so much fastbuds 420
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Did defoliation on all three never done it before not sure did k over do it but they needed the trim I had a lot of fan leaves blocking bud sights Jan23 started to use the self watering pots from acinfinity gallon in each pot with fish shit
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Thanks for stopping by.. Please hit the like button if you like what you see and ill be sure to check you out too Growmies 🌱 First of all would like to give a BIG shout out to my sponsors for providing me with the necessary items for this grow 👍 🌟🌟🌟🌟Mars Hydro FC4800🌟🌟🌟🌟 Powered By Samsung LM301B Diodes: The Mars Hydro FC 4800 480-watt LED grow light is installed with high-performance Samsung LM301B chips, the top-bin horticultural diodes, to provide a high Photosynthetic photon efficacy efficiency of 2.85 μmol/j and a long-lasting color rendering capability, supporting indoor plants to grow and thrive. High PPF Output and Uniform Light Distribution: FC4800 provides a high PPF of 1,366 μmol/S. The multi-light bar design and the dense diode layout facilitate an even distribution of grow lighting making PPFD optimized for Photosynthesis to achieve consistent growth in every part of the coverage range. Exclusive Recipe Of Full Spectrum Lighting: The full spectrum is enhanced with blue and red light, in which the blue light stimulates plant growth and promotes the accumulation of plant-based phytochemicals; the abundant red light improves the maturing process and flower quality of the plants. 🌟🌟🌟 FastBuds Purple Lemonade FF ⭐️ ⭐️⭐️ Arising from a cross between purple and citrus Cali genetics, Purple Lemonade FF (Fastflowering) offers a complex high made up of perfectly balanced cerebral and body effects that are ideal for daytime use. Expect an extremely enjoyable high that boosts your mood while deeply relaxing your whole body and getting rid of muscle pain. This meticulous cross produces up to 550 g/m2 of some of the most beautiful purple buds, with pinkish and reddish hues that will catch everyone’s attention. The beautiful purple buds are ready for harvest in 7-8 weeks and come hand-in-hand with unbelievably sugary citrus terps that are just as refreshing as a cold lemonade on a hot Summer day. It’s the ideal variety for the sweet-tooth stoner seeking strains that deliver both in quality and quantity of resin —————————————————————————————— 👊👊👊👊Down to Business 👊👊👊👊 Week 5 from seed .. So this will be the last week veg for the tent and ill be switching to 12/12 flower power 💪 She’s moving great and all is good 👌 Will keep it short and sweet for this week .. Thanks for stopping by 🙏🙏🙏
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Welcome to my MilkyWay F1 Auto Diary, Untopped VS topped. Results are in. Days 71-82 ripening 0-13 week 11&12 Went well. She did bulk up a tad. But not much. They spent most their lives under a 100w. But, the bud is really dense all over. No larf, at all. Its a really good quality of bud I'm getting from both phenos. As far as ToppedVsUntopped well, that result is in. With a seeds used from the same pack (same parent) making true F1s as they need to be from the same batch. It why we all got different phenos, and those who ran more than 1, from their seeds, the phenos are very close. One of mine had more of a fade and looks more purple. Both smell very lovely & fruity. Nice trichome production with very dense but, rather small buds if I do say so. But the grade itself is very high. (As grade is not rated on size) overall both turned out very similar. Even fade wise, they've both developed a lovely colour finishing under high co2 environment with the SE5000 really has brought out a lot of fade i normally do not get. look at the start. It was only a few days under this light and the past 14 days they've both popped. I will also say. A lot of their life was spent under a 12-12 (3/5s of flowering). Topped VS Untopped pheno 2 & 1 Are very similar as I've stated this area will be filt in with harvest comments. Bud smell. How the dry went. And after a weeks cure. I'll rate it. So watch this space. These 2 phenos have been on just water for 10 days. I did a quick run off test. Got back 145ppm my tap is 110. So, they're good to go. Trichome wise. 95% cloudy 30-35% amber. (Hard to see, I'll try get pics with my scope) but, as you see. Both are fully ripened. Anymore and its just bud deg. Both plants leaves are showing end of life. Some are dying. (I'VE BEEN WATCHING THESE LEAVES AND SEEN THEY'VE BEEN DEAINED, ITS NOT BR) Lights The SE5000 was used for the Ripening phase. With high temps and co2 i pushed my boundaries and got a lovely fade reaction from doing so. How I know its down to this light as I've put my Runtz under it. And as soon as I did. It developed fade. My Frosted G even started getting light purple on its sides. The temp in tent has been pushed to 31-33c (that's not leaf temp as I've fans blowing on my plants, and that lowers surface temps by a few degrees.) They've been on 17hrs of high powered light. At 25-30cm id no choice. My temps are mad high this time of year. Harvested Both plants are been pult they're getting their last few hrs. You'll then see the last few pics in a few hrs. I'll get bud shots later, smoke reviews and then to be fair. I'll then mark it by the GD rating system. As I do with all my strains. (So I've 2-3 wk delay in my diaries as they're Harvested, mostly) both plants I'll try push them as far as I can through the drying process whole. But, as I'm dealing with high temps. Lower RH and a fastercl dry is pref to a longer dry in hot conditions might not make sense, but 30+ hot weather harvests, I've got this down. Mind you only this round all my other hot harvests some took a few weeks to rid the hay smell. This avoids it and locks in potency. Most of the drying is done by leaving the plant in the substrate just before the plant goes for itself for fluids. 4-5 day dry as opposed to 5-6 day dry with weed that loses half its stenght. (dry harvesting look it up) Thanks to James from RQS, although I know everyone and their sister got the offer for these seeds I am defo going to be trying more from RQS, if it's buying. I'll get round to it, and depending on the quality of smoke it might be soon. If its a real nice auto, I'd love to try a fem of theirs for my winter crop in October. But, that'll depend. I've lots I want to buy & try.. and when favs are found. I'll invest. I would like to thank everybody for the activity this diary has gotten. Its possibly one of my most active diaries I've done without a harvest. And that's in no short means down to all the views and likes from you guys. And for sure I will fully complete it, with results on the smoke Quality from both phenos, if it varies, but, results thus far, structure wise they're shockingly similar. Scary so. Topping has very little affect to the structure. She grew a main cola. But both phenos, turned puples I will say the topped one was a more troublesome plant. Maybe that had a role onin its morphology. And maybe it'll affect the bud also. The topped was more demanding nutrient wise, and drank more. Maybe to support a more even bud load. (I've yet to do a through inspection, but on the VS front, it's kinda in the air about quality, structure wise, it had very little difference. Look for yourself at the heights are 3-4cm dif) lots still to come. And I'll update it soon with more results. Again, thanks so much for the support, likes, comments and how active it is, an unfinished diary moving to my home page. 1st for me. So thank you. Also to my light sponsors who played a part in this grow. Although both phenos owe their bud quality to 2 x 100 watts SF-1000 (SE5000 was used for ripening lovely fade) and I used a P1000, they shared even light distribution in the end for the most part. So, thanks to Bella for the upgrade. I'm sure when I run an RQS strain again, this time I'll know only have the fade to show, but the bud size too. Thanks again my Friends. Updates pending as of 6th June. Edit June 7th Both plants are hung whole and drying 24hrs. I don't like how fast they're moving. The buds are already soft. Should still be hard at this stage only 30hrs in. They'll harden up in the cure no doubt. Let's just hope they don't shrink too much. Will give daily updates
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Week 7 seems to be going fine from my house and then I go to the grow 🤣 well fukc me I’ve ran into few problems let um get abit too dey for their liking the week leading up to Christmas / gave um a good feeding with week 7s nutes and peeled back abit of the fan leaves to get more light around , humidifier broke on us didn’t notice for 2 days so tent was 70 percent humid when gone to check , new humidifier replaced and back on track as I said earlier peeled back a few fan leaves think maybe a few too many plants started showing signs of stress soon after again these are autos and I think it could of stunted if not heavily affected the end product also we noticed about 3 weeks into this grow we had way too many plants in the tent starting to see the effects off that now a lot of nonsense on the lower branches and only really the top Lola’s getting the light and the mass , all the same seed bar 4 plants and very differnt plants all in all , definitely not a strain that’s been mastered about half are tall and spaced out and the others are short and very stacked from my own eye I’d say the shorter and more stacked buds will be the ones bearing more fruit the taller ones look very skinny and airy still
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@m0use
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*=UPDATE=* Smoke Report *=UPDATE=* Harvest Totals **Smoke Report and effects** to follow after cure, May 10th ish. This was my second ever indoor grow, and compared to my last grow I have learned a lot. My goal this time was to get about 1.5-2oz a plant, up from my previous goal of 1oz a plant from last grow. Best part is I got to my goal!!😁 Next goal will be 2oz+ a plant. This was the last time I will be using my homemade grow tent, it was compromised out of recycled Styrofoam, miss-tint paint and glue, it provided me what I needed to get the job done one a extreme budget but it is preventing me from doing more. The main problem I ran into this grow was humidity control/space. The fan broke half way through and I was too lazy to get a new one as I figured I'll wait till I get a real tent. This mind set enabled some mould to flourish and that is why I had to harvest early. I felt if I let the plants go 2 more weeks, I would have hit 2oz a plant, it was only a few grams away, however if I kept going with the mould I would have been down to 1oz after all the rot was cut out from both plants, that shit fucks up your grow fast if you don't manage your air circulation. So the main things I learned: 1) I was underfeeding my plants in there 2nd half of life, thus the buds from the previous grows and this one suffered a bit. This grow does have the most dense buds I have ever grown, but it could have been better. 2) PH is key, I still did not have a PH meter but was blindly altering the PH of my water by adding in some citric acid, not only to neutralize the chlorine but also lower the PH a bit. When I did test the soils PH using a soil testing kit, it was lower then previous grows. This helped get more nutrients into the plants and grow bigger. previous grows the PH was 7-7,5 ish 3) You can get an "ok" harvest off of blue lights, my grow was under seven 18" 6500k 18w sunblaster LEDs, and I thought they would never get over 1oz a plant because they don't have the best spectrum for cannabis in flower, among the other dumb things I do as a novice grower. but they worked out just fine, still going to upgrade in time with proper lighting in the 3500k range. 4) Once the plants get bigger and buds start to becoming more dense, the air circulation is needed, its is not longer optional for a budget grow in a shity homemade tent. 5) Defoliation works. my plants have ruffly the same amount of buds, however the plant that I fiddled around with mainlining and defoliation had bigger fatter buds vs popcorn nugs like the opposite plant. 6) Fungas gnats are annoying, fuck them, use nematodes to kill them flat in there tracks. 7) Getting better at making edibles. :) So other then that, the only real differences between this is last grow is lower PH in tap water, more lights, slightly bigger pots, bit more feed and different genetics from a different breeder. I followed everything else ruffly the same. My own hydro break down from lights alone is below. I did not notice any big difference between the two plants and there phenotypes, I was meaning to take a clone and try and grow it outdoors again but forgot and that was my last of the seeds. I was surprised that one of them was a male. not even hermi, full blown male. I'm not into breeding or I would have kept him, Yields: Plant # 1 - male, killed Plant # 2 - 42.1g bud, 13.15g trim (1 .49oz, 0.46oz) bigger fatter buds Plant # 3 - 45.1g bud, 13.15g trim (1.59oz, 0.46oz) smaller nugs, almost all popcorn. =Overall - 87.2g total bud, ave 43.6g a plant. 26.3g trim ave 13.15g a plant. Smells: plants 2-3 - both smelled the same, in the beginning they had a lovely sexy lemon sent, then in the end it just turned into something else, I think some of the moulds in the tent altered it a bit. Will wait till after cure to see what its like, I noticed some changes in just drying and having them in the jars for two days now. Now that the cure is all done and finished the two strains smell a bit different in there respective jars but there smoke is almost identical. plant #2 or pheno #1 is more of a classic OG Kush smell to me, its earthy, herbal and pungent. Hints of pine in there with lemon bit woody. plant #3 or pheno #2 is more of a bright one, It's sweet smelling with berries in it, some hints of almost floral like in it, not quite rose or lavender something else, not what I was expecting at all. I like this smell better vs the other plant. Smoke Report It took its sweet time but I finally got it in. I myself do not smoke, so I relay on my roomie for this part of the report, they are a long time smoker 10+ years. They have reported that the smoke smooth and easy going, they would say it was a bit smoother then my previous grow of OK Kush CBD and Blackberry. the only noticeable differences between the different phenos is that pheno #1 is more pungent that phoneo #2 but over all the smokes flavours and quality are the same just brighter in phone #2, I feel these are a bit off from the original seeds I grew back in the day from my first ever grow but still high quality. this was rated as a equal balance of sativa and indica feels on smoking but the smells where leaning towards sativa a bit. m0use +++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ Cost + Time Analysis Of Growing Cannabis. m0use’s Breakdown +++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++ Light Schedule === growth: 18h on 6h off flower: 12h on 12hr off GROWTH: 35days 5am-11pm-on -- 11pm-5am-off --- Cost of kwh with on-peak "20.8c", mid-peak "14.4c" and off-peak "10.1c". 5am - 7am -- 2hr @10.1c/kwh off-peak 7am - 11am -- 4hr @20.8c/kwh on-peak 11am - 5pm --6hr @14.4c/kwh mid-peak 5pm - 7pm -- 2hr @20.8c/kwh on-peak 7pm - 11pm -- 4hr @10.1c/Kwh off-peak --- 6h @10.1c/kwh 6h @20.8c/kwh 6h @14.4c/kwh --- Using the previous c/kwh numbers above I can find out the daily cost of the lamps in the 3 peak periods. growth and flower 6h x 10.1c/kwh = 60.6c/kw * .126 kw = 7.64c off-peak 6h x 20.8c/kwh = 124.8c/kw * .126 kw = 15.72c on-peak 6h x 14.4c/kwh = 86.4c/kw * .126 kw = 10.89 c mid-peak The "h" hours and "kw" kilowatts cancel out and we are left with a value of "c" cents per peak period add all the peak periods up and you get your cost of running the lights in cents per day c/d --- growth : 7.64c + 15.72c + 10.89c = 34.25c/d FLOWER: 52days === 8am-8pm-on -- 8pm-8am-off --- Cost of kwh with on-peak "20.8c", mid-peak "14.4c" and off-peak "10.1c". 5am - 7am -- 0hr @10.1c/kwh off-peak 8am - 11am -- 3hr @20.8c/kwh on-peak 11am - 5pm --6hr @14.4c/kwh mid-peak 5pm - 7pm -- 2hr @20.8c/kwh on-peak 7pm - 8pm -- 1hr @10.1c/Kwh off-peak --- 1h @10.1c/kwh 5h @20.8c/kwh 6h @14.4c/kwh --- Using the previous c/kwh numbers above I can find out the daily cost of the lamps in the 3 peak periods. growth and flower 1h x 10.1c/kwh = 10.1c/kw * .126 kw = 1.27c off-peak 5h x 20.8c/kwh = 104c/kw * .126 kw = 13.10c on-peak 6h x 14.4c/kwh = 86.4c/kw * .126 kw = 7.77c mid-peak The "h" hours and "kw" kilowatts cancel out and we are left with a value of "c" cents per peak period add all the peak periods up and you get your cost of running the lights in cents per day c/d --- flower : 1.27c + 13.10c + 7.77c = 22.14c/d Lights === LED’s I use are 18w each and I have 7 lamps on an aray. 18w*7 = 126w | 126w/1000 = 0.126Kw growth: 18h/d lights on * .126kw lights hydro use = 2.27kw/d flower: 12h/d lights on *.126kw lights hydro use = 1.51kw/d G:79.45 + F:78.52 = 157.97kw for the entire grow. Cost growth : 7.64c + 15.72c + 10.89c = 34.25c/d flower : 1.27c + 13.10c + 7.77c = 22.14c/d The time my lights where on in the grow for 12 weeks and 1 day, or 85 days. growth: 35d * 34.25c/d = 1,198.75c ÷ 100 "100c in a dollar" = .99 flower: 52d * 22.14c/d = 1,152.28c ÷ 100 "100c in a dollar" = .52 the "d" days cancel out and we are left with a total cost of the lights for my 85day grow. 11.99 + 11.52 = .51 Using the regular calculation of grams harvested divided by watts used is not accurate to me, it does not account for all the time the lamps are on, the length of grow to the over all cost. The calculation that makes sense to me is this, harvested dry weight of usable cannabis buds/trim/keif/whatever in grams divided by total kw used. Could also combine it with grams per total single use costs “anything you used only for this grow and wont reuse in the next, or fractions of multi use items like fertilizers if they ½ full” and see how much you’re investing per gram. "kw" ÷ "g" = kw/g "$" ÷ "g" = $/g I have harvested 4oz or 113.5g on 157.97kw, this includes buds and trim in mycase. 157.97kw ÷ 113.5g = 1.39kw/g of usable cannabis. I’d still try and aim for under 1kw/g. .51 ÷ 113.5g = :text.20g The other ratio would have been, 113.5g to 126w = 0.9g/w just shy of the 1 mark. So in total, it cost me 20c per 1g I grew in light electricity alone. Not to bad. legend, kwh = kilowatt per hour kw = kilowatt w = watt h = hour c = cents $ = dollars d = day LED= Light Emitting Diode
Processing
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Hi all. This week has been a very productive one for the LOS girls who have bounced back from their fimming and toppings. The FFT#8 is just settling in to the NFT tank. I think she is still getting over the transplant shock but is getting more settled. The FFT#9 is a big girl already. She is the biggest other 2 los ladies and only post 1 limb so far from a snap. Shebhas some nice potential mains forming to play with and I look forward to seeing what she offers up. FFT#10 Is coming along good. She has rebounded well from her fim session and I will start pulling her mains down for her lst quads. No issues so far so let's see how the heatwave coming goes !!. Be safe growmies.
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Aquí os dejo fotos de los días 16 y 18 desde que salieron! Hasta el momento cumpliendo los parámetros y no están respondiendo nada mal!! Hos iré contando qué tal evolucionan!! Buenos humos!!
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Processing
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Is been raining so didn't need to water , just feed and flush till harvest
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@DonEspas
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Pre-floraison 1 TCO 2 plants étaient hermaphrodite Ils ont été tués Des clochettes étaient mature, j'espère qu'il n'y a pas de contamination générale 🤯! C'est la deuxième fois avec des graines de chez Advanced seed ... 🤔🤬 Pour mon premier run je pensais que c'était ma faute mais ça vient de se produire à nouveau pour ce run donc ça pourrait être a cause de génétiques instables. Déçu perte de temps et d'argent
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Flowering day 4 since time change to 12 / 12 h Hey guys :-) This week they became in set the flower tent :-) As soon as the first hairs appear, there is a light mixture of blossom fertilizer for the first time. Watering was done twice this week with 1.3 l each (nutrients see table above. Otherwise everything was cleaned and checked and fresh osmosis water was mixed. Stay healthy 🙏🏻💚 👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼 You can buy this Nutrients at : https://greenbuzzliquids.com/en/shop/ With the discount code: Made_in_Germany you get a discount of 15% on all products from an order value of 100 euros. 👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼👇🏼 You can buy this strain at : https://www.thegratefulseeds.com/shop/feminized-seeds/limited-edition/blue-javaz/ Water 💧 💧💧 Osmosis water mixed with normal water (24 hours stale that the chlorine evaporates) to 0.2 EC. Add Cal / Mag to 0.4 Ec Ph with Organic Ph - to 5.8 - 6.4 MadeInGermany
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Lots of pretty colors :) Had some problems with the left lady. Yellow/light green leaves, gave it some N. appears to be solved. Noticed some light burn, reduced ppfd to 800 Slightly reduced nutes Kinda crazy to see how these plants grow so differently even tho they are the same strain and got the same treatment.
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@123Grow
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Okay, Mos Cutty is coming to life. I still am having slow growth, but it’s going now.