Likes
Comments
Share
Loading... Jah Bless
Likes
10
Share
Likes
8
Share
@ZalySk
Follow
F39: if everything keeps going at this pace it should be done in about 15-20 days. Shes not expanding as much now, the leaves are fading, getting stickier and smellier.
Likes
8
Share
All in all this was an amazing harvest I usually have around 8-10 plants and harvest anywhere from 24-36 ozs per harvest with the 8 plants I had this harvest including the biscotti mintz and cookies USA I ended up with 898g total dry weight with all top quality flower. I’ve learned some things with all my previous runs when it comes to dialing in my quality and yield and definitely watching for those herms because I like to push my plants to the max when it comes to training ! GMO PUnch -Greenpoint I’m giving this a total score of 7-10! Biscotti Mintz- Barney’s farm Total score 10-10 Cookies USA score 7-10
Likes
21
Share
@NONSENSE
Follow
Hello. My Royal Gorilla auto continues to bloom. The smell is so cool . This is smell number one of all my grows . So exotic fruity and sweet smell. I water in the same way: every day to prevent salting. The plant genetic amazingly nice - very fast flowering time. I think may be one more week bloom and 3-4 days to clean the plant. Fertilizers RQS Organic Nutrients are great and enough for full cycle. I added some more extra food from GNHE and HESI
Likes
109
Share
Welcome to the Green House Seeds Company Cup 🏆 Hi everyone 🤗. This week she gave an extreme boost after topping :-), so I defenetively do it again completely top 😍. Last week it was a bit dark from the Green House Feeding 😅, but this week it turned back into posetive, the new shoots all have a perfect leaf green 👍. I think I will give her another 3-4 weeks of vegi phase that it will be a real bush 😍. I wish you all a nice week, stay healthy 🙏🏻, and let it grow 🌱 The Strain Wonder Pie is available at https://shop.greenhouseseeds.nl/ ☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼☝️🏼 Green House Seeds Company Cup 🏆 Type: Wonder Pie ☝️🏼 Genetics: Wedding Cake x OG Kush 👍😍 Vega lamp: 2 x Todogrow Led Quantum Board 100 W 💡 Flower Lamp : 2 x Todogrow Led Cxb 3590 COB 3500 K 205 W 💡💡☝️🏼 Earth: Canna Bio ☝️🏼 Fertilizer: Bio Grow Feeding ( GHSC ) , Enhancer ( GHSC ) , Bio Bloom ( GHSC) ☝️🏼🌱 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 6.0
Likes
51
Share
@Waveform
Follow
Week 6 starts exactly where we left, with 55.5 and 79 cm height for smallest/tallest plant. Humidity is currently fixed rollercoastering around 50/55%, but that’s mostly due to current weather and a bit due to the fact that I remembered I own an indoor fan with a simple cooling option – a fabric being drawn through a water tank before fan blows through it –, and placed to blow agains the tent air inlet it’s cooling the air slightly while adding some percents of humidity. Perfect for the moment. Girls are currently not that hungry. Their soil is still moist enough to make it through today. Think I’ll start tomorrow with the first full round of blooming fertilisers. On morning of day 43, soil had become pretty dry – I did not have time to water them last evening. I removed their lowest, now quite yellow/brown fan leaves and gave each one about 0,5 l of only RO water with some CalMag. Don’t want to risk any over-fertilising. Soil was so dry water first filled their plates but was sucked into the soil immediately after. Leave removing gave me a good impression about terpene production really kicking in. I don’t smell much when I open the tent (again quite dry surrounding air), but moving them a bit released extremely fruity, sweet odour. Yummy! On day 44, that very distinctive smell has increased. Bud growth is growth too, so tallest plant’s height is now as good as 80 cm. Sherbets‘ buds are indeed getting a slight bright purple touch, but still not clear enough to be visible in a highly processed image. (Don’t ask me why the colors look that different every day. I am using exactly the same lighting conditions and image adjustments.) Talking about colors: More old fan leaves, still the lowest ones, still those that I would cut anyway to give the branches more light, are starting to fade. Shall we call this a mostly uninfluenced grow with natural lollipopping? Day 45: Will have to give them some water today. They are still not really that thirsty, with about half a litre per plant every 2.5th day or so. Speed of action has clearly slowed down currently. Instead of half a litre, I gave each one a full. Comparing the week’s photos so far, I think that bud growth is quite ok. Although I miss the time they were stretching quite a bit. Can it be Hesi Bloom Boost (and the rest) really boosted them overnight? When trying to get a focus with the microscope lens attached to the mobile, I incidentally touched a bud and was struck at how sticky it feels already. Slight signs of over-fertilisation on the tips of tallest plants on day 47. Next drink will be without, and I’ll reduce dosage by about 25% further on. Day 48, and end of week 6. Somehow autumn has broken out (but don’t worry too much; image processing produced some differences too): I was presented with a lot of yellow fan leaves today. I have problems keeping the humidity high enough, weather is warm and dry and every manual misting will only hold for an hour at most, while its often bringing the humidity over the best range for a short time. Or is that normal behaviour? The buds already look pretty mature, with quite some hairs drying. But this is only end of week 6, and I think I should get at leat two more weeks, or shouldn’t I? Leaves around the buds are all in very good shape, except for that few brown edges that have not grown.
Processing
Likes
3
Share
@Dico29
Follow
Day 141 still going started to reveg but lowered light schedule
Likes
13
Share
@Andres
Follow
I feed them with earthworm humus and red bird guano
Likes
2
Share
Que pasa familia, vamos con la septima semana de floración de estas Orange Sherbet Fast Flowering, de FastBuds. Agradezco a Agrobeta todos los kits obtenidos de ellos 🙏. Vamos al lío, El ph se controla en 6.2 , la temperatura la tenemos entre 22/24 grados y la humedad ronda el 50%, añadimos ya varios productos de la gama de Agrobeta. Las próximas semanas veremos cómo avanzan. Agrobeta: https://www.agrobeta.com/agrobetatiendaonline/36-abonos-canamo Hasta aquí todo, Buenos humos 💨💨💨
Processing
Likes
23
Share
Another week down few more to go can't wait!! First ever attempt of growing my own so really impatient to see the final results now and get to the finish line, that said all has went well upto now other than the size they reached haha, really started putting on weight now it seems and they smell lovely, excited to see the buds fatten and progress over these last few weeks up until harvest now, started 5 liberty haze also they are just coming upto 3 weeks now so check that diary out to, any comments info tips for the final stages appreciated
Likes
70
Share
All feeds with nutes use either a whole ratio or combination of "Veg Mix" and "Bloom Mix"concentrates DILUTED in water until a total ppm of add in is reached using a (Total Dissolved Solids)TDS Meter measured in PPM (parts per million). The "Veg Mix" concentrate will eventually be added in smaller ratios and "Bloom Mix" concentrate what will eventually replace the "Veg Mix" concentrate entirely with the ppm and ratios listed when I feed. Veg mix recipe is on week 3. Bloom Mix recipe is on week 5. 84/14 Fun with Filters VPD was controlled at reduced temps and RH today - RH now set to 55% max and Temps are 75F at max Over night allowed down to 67F when lights go out. Lights were good and same as yesterday with some light LST PPFD at 750 down to 550. I used 20 minutes of UV and 1 hr of IR with 15 before and after main lights on/off. She's now about 25" tall and 35" wide. Also took some black back and shadow pics for fun (no filters or sharpen only) Day 85/15 Feed Day I gave 2 gallons of de-chlorinated tap combined with 25:75 Veg/Bloom mix total 600ppm and a ph of 6.4. Foliar sprayed some on the outer leaves and left the tent door open to help dry them. (took like 15 minutes with the fans.) top soil ph checked at 6.22ph and run off was at 5.74 with 1580ppm Lights at a range of 750 to 500 Ran 25 minutes of UV and the standard 1hr IR with 15/15 before and after lights on/off and 30/30 at that time. VPD was easy to manage with the doors open and then the fan seemed to have to work more today but just more often and not high fan. Day 86/16 Humidity was high at 60%RH for most of the day, the ILV was kicking on throughout the day and I have two humidifiers going on high. Temps on the other hand was controlled at about 74F. Tips carried a little burn on them today, some all over which makes me think nute burn because ppfd was 550 to 750 as it has been for a few days now and there are tips on leaves with little direct light showing burn as well. Will continue to monitor as well. IR and UV are set on timers and I screwed up with mine today. I was supposed to change the setting and forgot (time change screwed me up and I thought I did it when I changed timers that needed correction) until it was too late and ended up giving her 30 minutes of IR and 1 hour of UV... will have to check/monitor for effects tomorrow. The good news is that she's had a little over two weeks with UV so maybe not so bad. (fingers crossed it doesnt stress her too much) Day 87/17 Again, humidity was high at 60%RH for most of the day, the ILV was kicking on throughout the day and I have two de-humidifiers going on high. Temps on the other hand was controlled at about 74F. If I open the tent for a while I can get the humidity down by about another 5% so tomorrow I plan to leave it open after I feed again. Took some light burn from yesterday's extended UV exposure, but read that it's not bad to take on some stress from UV in flower, especially if you still have time to recover. The pros suggest that you can stress her to grow defensive systems that may create thicker/stickier leaves and flowers with more terpene production. The cons however suggest that it could stress too much and stunt the growth or in extreme/sudden cases, cause her to herm. (thus why they say in mid flower is best if you plan to stress with UV) So it is what it is. I will monitor the leaves that took damage and likely remove them this week when I defoliate schwazz style. I still resumed the schedule of increasing UV as planned but ahead a few days now so 45minutes of UV and 1 hr IR with 15/15 before and after main lights on/off. Day 88/18 Lots happening today. Firstly, I found a split today... on the main stem trunk, so I used superglue to seal the cracks and held together while it set. Then I wrapped it with heavy duty gorilla tape, two 1ft pieces as both a clamp and a support on the other side. I then tied each cola to the inner ring. So then I decided that since I am here having to work on this I may as well go ahead and do the defoliation I was planning for tomorrow. Schwazze style defoliation (at least my interpretation of the method without having to buy the book, super defoliate week 1 and 3 of flower - so almost) Then after that I also preformed heavy strength training - I broke each cola right under the bud sites that I left and bent her outward. I then upped the lights ever so slightly and have a max of 850 ppfd and low of 650 ppfd now. She had 45 minutes of UV and 1 hr of IR same routine, IR on/off at main light schedule with 15 before and after main lights. VPD is better now that I placed another open air vent at the bottom, this one is 6 inch. I also placed the fans a little better to blow directly on the leaves left behind. Low speed for now, but as the leaves come back I plan to increase to get dancing leaves in the middle too. Temps were 74F and RH 55% with the ILV set to auto. I plan to feed 2 gallons of 650ppm 25:75 Veg/Bloom mix. Since my last ph was really low I am going to increase the feed to 7.0ph - not sure what if anything I can do about ppm. Day 89/19 VPD was normal with the exception of holding the tent open as I said I was going to today. Temps at 74F and RH mostly 55% with the ILV set to auto. PPFD also checking in with the same settings/results today, 880 to about 650 ppfd. UV was set for 45 minutes midday, and IR with the same 1 hr with 15 minutes before and after main light on/off. Water feed today with about 2.25 gallons of 7.0 ph de-chlorinated tap diluted with 25:75 ratio of veg/bloom mix (690 ppm total) watered until drip started and I got about .25 gallon runoff. Runoff measured 5.75 ph and 1630 ppm (top soil tested 4x with avg of 6.35) Next feed will be a plain water salt flush. Plant looked so nice a day today that I decided to take some more black back pics. Day 90/20 VPD and PPDF were fine today with normal settings of 74F/55%RH/Auto ILV - PPFD ranged from 550 to 750 because of HST on the limbs. This will be the last stress I give her and hope it wasnt too much. Hoping this all results in a big yield and not a herm.
Likes
9
Share
Set up the tent cam to take a picture every 5 minutes during lights on so I can try and make a cool timelapse. I fed them kinda lightly and I think my EC might be a little low and thats why they're so light colored; they're hungry. I also had the light on 3 but now its on 2. Its sitting pretty high above them so I don't think it should be burning them. They show no signs of stretching however so they're definitely not getting too-little light at least.
Likes
10
Share
@Roscio99
Follow
hello beautiful ones, they managed to enter flowering!! everything is going smoothly apart from a few insects... I think it's normal when you do them outdoors. They have been flowering for a week and continue to grow every day! DAJE ROMA DAJE
Likes
39
Share
@Sammy23
Follow
Bonne semaine dans l'ensemble, les 2 plus grandes plantes qui avaient des tuteurs mesurent maintenant 30 cm, je vais passer en floraison. J'ai trouvé le moyen de baisser la température en ouvrant la porte de la box... C' est pas très discret. J'ai baissé un peu le chauffage aussi. Je n'ai pas arrosé beaucoup mais les plantes ne semblent pas souffrir, tous les trois jours à peu près. Les noeuds sont éloignés les uns des autres, ont voit clairement l'influence sativa, à part peut être sur un ou deux phénotypes...
Likes
18
Share
Day 66 : These lady is exploding day each day. From each cola started new growth. And all this pistils are still white, any brown pistils. So imagine the crystals, all cloudy.!!! She likes food and its obvious. I found a spider in the room but let her become part of the ecosystem. These spiders eats all king of predators like white flies, tetranychus, thripe etc. If you are in flower stage and you have bugs , you cant spray nothing, because of moisture. You can add ladybugs (Coccinella) and they will destroy all the insects. Edit (Day 70) : Small buds explode from buds. I watered with juice on this lady because her trichomes are still developing. If you notice some stems inflect , because of the weight of buds. Gains are noticeable when i lift the pot. 2 weeks for sure for BC.
Likes
22
Share
I have a new light with a bloom setting hopefully that will make a nice flowering. Got a new fan for air circulation. The new light has cooling fans. Haven't noticed any burns so im happy with my order. If you look at the last few pictures my tent is home made and cheap very cheap. The lights not an expensive one but I think its fine for now.
Likes
56
Share
What's in the soil? What's not in the soil would be an easier question to answer. 16-18 DLI @ the minute. +++ as she grows. Probably not recommended, but to get to where it needs to be, I need to start now. Vegetative @1400ppm 0.8–1.2 kPa 80–86°F (26.7–30°C) 65–75%, LST Day 10, Fim'd Day 11 CEC (Cation Exchange Capacity): This is a measure of a soil's ability to hold and exchange positively charged nutrients, like calcium, magnesium, and potassium. Soils with high CEC (more clay and organic matter) have more negative charges that attract and hold these essential nutrients, preventing them from leaching away. Biochar is highly efficient at increasing cation exchange capacity (CEC) compared to many other amendments. Biochar's high CEC potential stems from its negatively charged functional groups, and studies show it can increase CEC by over 90%. Amendments like compost also increase CEC but are often more prone to rapid biodegradation, which can make biochar's effect more long-lasting. biochar acts as a long-lasting Cation Exchange Capacity (CEC) enhancer because its porous, carbon-rich structure provides sites for nutrients to bind to, effectively improving nutrient retention in soil without relying on the short-term benefits of fresh organic matter like compost or manure. Biochar's stability means these benefits last much longer than those from traditional organic amendments, making it a sustainable way to improve soil fertility, water retention, and structure over time. Needs to be charged first, similar to Coco, or it will immobilize cations, but at a much higher ratio. a high cation exchange capacity (CEC) results in a high buffer protection, meaning the soil can better resist changes in pH and nutrient availability. This is because a high CEC soil has more negatively charged sites to hold onto essential positively charged nutrients, like calcium and magnesium, and to buffer against acid ions, such as hydrogen. EC (Electrical Conductivity): This measures the amount of soluble salts in the soil. High EC levels indicate a high concentration of dissolved salts and can be a sign of potential salinity issues that can harm plants. The stored cations associated with a medium's cation exchange capacity (CEC) do not directly contribute to a real-time electrical conductivity (EC) reading. A real-time EC measurement reflects only the concentration of free, dissolved salt ions in the water solution within the medium. 98% of a plants nutrients comes directly from the water solution. 2% come directly from soil particles. CEC is a mediums storage capacity for cations. These stored cations do not contribute to a mediums EC directly. Electrical Conductivity (EC) does not measure salt ions adsorbed (stored) onto a Cation Exchange Capacity (CEC) site, as EC measures the conductivity of ions in solution within a soil or water sample, not those held on soil particles. A medium releases stored cations to water by ion exchange, where a new, more desirable ion from the water solution temporarily displaces the stored cation from the medium's surface, a process also seen in plants absorbing nutrients via mass flow. For example, in water softeners, sodium ions are released from resin beads to bond with the medium's surface, displacing calcium and magnesium ions which then enter the water. This same principle applies when plants take up nutrients from the soil solution: the cations are released from the soil particles into the water in response to a concentration equilibrium, and then moved to the root surface via mass flow. An example of ion exchange within the context of Cation Exchange Capacity (CEC) is a soil particle with a negative charge attracting and holding positively charged nutrient ions, like potassium (K+) or calcium (Ca2+), and then exchanging them for other positive ions present in the soil solution. For instance, a negatively charged clay particle in soil can hold a K+ ion and later release it to a plant's roots when a different cation, such as calcium (Ca2+), is abundant and replaces the potassium. This process of holding and swapping positively charged ions is fundamental to soil fertility, as it provides plants with essential nutrients. Negative charges on soil particles: Soil particles, particularly clay and organic matter, have negatively charged surfaces due to their chemical structure. Attraction of cations: These negative charges attract and hold positively charged ions, or cations, such as: Potassium (K+) Calcium (Ca2+) Magnesium (Mg2+) Sodium (Na+) Ammonium (NH4+) Plant roots excrete hydrogen ions (H+) through the action of proton pumps embedded in the root cell membranes, which use ATP (energy) to actively transport H+ ions from inside the root cell into the surrounding soil. This process lowers the pH of the soil, which helps to make certain mineral nutrients, such as iron, more available for uptake by the plant. Mechanism of H+ Excretion Proton Pumps: Root cells contain specialized proteins called proton pumps (H+-ATPases) in their cell membranes. Active Transport: These proton pumps use energy from ATP to actively move H+ ions from the cytoplasm of the root cell into the soil, against their concentration gradient. Role in pH Regulation: This active excretion of H+ is a major way plants regulate their internal cytoplasmic pH. Nutrient Availability: The resulting decrease in soil pH makes certain essential mineral nutrients, like iron, more soluble and available for the root cells to absorb. Ion Exchange: The H+ ions also displace positively charged mineral cations from the soil particles, making them available for uptake. Iron Uptake: In response to iron deficiency stress, plants enhance H+ excretion and reductant release to lower the pH and convert Fe3+ to the more available form Fe2+. The altered pH can influence the activity and composition of beneficial microbes in the soil. The H+ gradient created by the proton pumps can also be used for other vital cell functions, such as ATP synthesis and the transport of other solutes. The hydrogen ions (H+) excreted during photosynthesis come from the splitting of water molecules. This splitting, called photolysis, occurs in Photosystem II to replace the electrons used in the light-dependent reactions. The released hydrogen ions are then pumped into the thylakoid lumen, creating a proton gradient that drives ATP synthesis. Plants release hydrogen ions (H+) from their roots into the soil, a process that occurs in conjunction with nutrient uptake and photosynthesis. These H+ ions compete with mineral cations for the negatively charged sites on soil particles, a phenomenon known as cation exchange. By displacing beneficial mineral cations, the excreted H+ ions make these nutrients available for the plant to absorb, which can also lower the soil pH and indirectly affect its Cation Exchange Capacity (CEC) by altering the pool of exchangeable cations in the soil solution. Plants use proton (H+) exudation, driven by the H+-ATPase enzyme, to release H+ ions into the soil, creating a more acidic rhizosphere, which enhances nutrient availability and influences nutrient cycling processes. This acidification mobilizes insoluble nutrients like iron (Fe) by breaking them down, while also facilitating the activity of beneficial microbes involved in the nutrient cycle. Therefore, H+ exudation is a critical plant strategy for nutrient acquisition and management, allowing plants to improve their access to essential elements from the soil. A lack of water splitting during photosynthesis can affect iron uptake because the resulting energy imbalance disrupts the plant's ability to produce ATP and NADPH, which are crucial for overall photosynthetic energy conversion and can trigger a deficiency in iron homeostasis pathways. While photosynthesis uses hydrogen ions produced from water splitting for the Calvin cycle, not to create a hydrogen gas deficiency, the overall process is sensitive to nutrient availability, and iron is essential for chloroplast function. In photosynthesis, water is split to provide electrons to replace those lost in Photosystem II, which is triggered by light absorption. These electrons then travel along a transport chain to generate ATP (energy currency) and NADPH (reducing power). Carbon Fixation: The generated ATP and NADPH are then used to convert carbon dioxide into carbohydrates in the Calvin cycle. Impaired water splitting (via water in or out) breaks the chain reaction of photosynthesis. This leads to an imbalance in ATP and NADPH levels, which disrupts the Calvin cycle and overall energy production in the plant. Plants require a sufficient supply of essential mineral elements like iron for photosynthesis. Iron is vital for chlorophyll formation and plays a crucial role in electron transport within the chloroplasts. The complex relationship between nutrient status and photosynthesis is evident when iron deficiency can be reverted by depleting other micronutrients like manganese. This highlights how nutrient homeostasis influences photosynthetic function. A lack of adequate energy and reducing power from photosynthesis, which is directly linked to water splitting, can trigger complex adaptive responses in the plant's iron uptake and distribution systems. Plants possess receptors called transceptors that can directly detect specific nutrient concentrations in the soil or within the plant's tissues. These receptors trigger signaling pathways, sometimes involving calcium influx or changes in protein complex activity, that then influence nutrient uptake by the roots. Plants use this information to make long-term adjustments, such as Increasing root biomass to explore more soil for nutrients. Modifying metabolic pathways to make better use of available resources. Adjusting the rate of nutrient transport into the roots. That's why I keep a high EC. Abundance resonates Abundance.