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Power Si Bloom - 500 毫升

常规价格 $92.73
常规价格 促销价 $92.73
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Description

PowerSI Bloom是Power SI公司推出的一款优质开花添加剂和促花添加剂,旨在支持开花初期、提高作物质量并在开花周期中实现更顺畅的收尾。它以专有的二氧化硅基质和植物提取物为基础,专为那些希望获得专注于促花、同时又保持简单和一致性的种植者而设计。

PowerSI Bloom通过发酵工艺将专有的二氧化硅基质与专有的植物提取物混合而成。这种发酵工艺旨在产生协同效应,在园艺中迅速显现,在不使您的种植程序复杂化的情况下,支持更高的产量和作物质量。其结果是一款能够提升品质的促花添加剂,在开花期表现卓越,旨在优化植物在花芽和花朵发育过程中分配能量和构建结构的方式。

在植物方面,PowerSI Bloom的特点是能更好地促进开花,增加开花位点,支持在开花期间形成更丰满、更高产的冠层。它还有助于促进均匀成熟,这对于那些重视植物整体均匀收成的种植者来说非常重要。除了这些时间上的优势,增强蛋白质合成和提高白利糖度也被突出为其以开花为重点的性能特征的一部分,这与那些优先考虑植物功能和最终品质而非追求华丽宣传的种植者不谋而合。

对于希望了解简洁事实的消费者,PowerSI Bloom含有源自硅酸钾的可溶性硅(Si),并具有清淡的1-2-0.5 NPK(氮磷钾)比例。其配方由尿素、磷酸、硅酸钾和海藻提取物(墨角藻)等成分组成,分析中还列出了硼和锌的来源。这些成分清晰地表明该产品是一款以硅为主的促花添加剂,并辅以其他支持开花性能和收尾品质的元素。

PowerSI Bloom非常适合寻求优质促花添加剂的种植者,它将可溶性硅、发酵工艺和植物提取物结合在一起,以实现更好的开花初期、更多的开花位点和更均匀的成熟。如果您的目标是获得一款能够提升品质、支持开花时机、植物功能和作物质量的促花添加剂,那么它非常适合开花阶段使用。

产品优点:开花期;室内;室外;常规浇水;浇水系统;水培;椰糠安全;土壤;无土;促花;花量更多;开花强劲收尾;支持优质产量;支持最终品质;花朵能量;蛋白质支持;白利糖度支持。

保证分析:总氮 (N):1.0%;尿素氮 (N):0.8%;有效磷酸 (P2O5):2.0%;可溶性钾 (K2O):0.5%;硼 (B):0.007%;锌 (Zn):0.3%;可溶性硅 (Si):0.66%。

来源于:尿素;磷酸;硅酸钾;海藻提取物(墨角藻);氢氧化钾(提取剂);硫酸锌;硼酸;钼酸钠。

How To Use

How to Use Power Si Bloom - 500 毫升

Step-by-step mixing and feeding instructions for Power Si Bloom - 500 毫升.

Mixing & preparation

Fill your reservoir or watering container with clean, room-temperature water first. Shake the bottle of Power Si Bloom - 500 毫升 well before every use. Using the feeding schedule below, measure the recommended dose and add it directly to the water while stirring. Allow the solution to mix fully before adding any other fertilizers, additives, or supplements.

Always add nutrients to water — not the other way around. Mix thoroughly between products to ensure an even, stable nutrient solution.

Week-by-week feeding schedule

Vegetative stage — Power Si Bloom

  • Week 1: do not use this product during this week of vegetative growth.
  • Week 2: do not use this product during this week of vegetative growth.
  • Week 3: do not use this product during this week of vegetative growth.
  • Week 4: do not use this product during this week of vegetative growth.

Flowering stage — Power Si Bloom

  • Week 1: mix 0.26 ml per litre of water or nutrient solution.
  • Week 2: mix 0.26 ml per litre of water or nutrient solution.
  • Week 3: mix 0.26 ml per litre of water or nutrient solution.
  • Week 4: mix 0.26 ml per litre of water or nutrient solution.
  • Week 5: mix 0.53 ml per litre of water or nutrient solution.
  • Week 6: mix 0.53 ml per litre of water or nutrient solution.
  • Week 7: mix 0.53 ml per litre of water or nutrient solution.
  • Week 8: mix 0.53 ml per litre of water or nutrient solution.

Tips for best results

  • Maintain pH and EC/ppm within the range recommended for your growing medium and crop.
  • Use fresh nutrient solution whenever possible and avoid leaving mixed solution stagnant for long periods.
  • Store nutrients in a cool, dark place away from direct sunlight and extreme temperatures.
  • Keep bottles tightly sealed when not in use to reduce air exposure and preserve product quality.
  • Use clean measuring tools and regularly rinse or clean your reservoir, lines, and irrigation equipment.

Common mistakes to avoid

  • Do not mix different nutrients or additives together in concentrated form before adding them to water.
  • Do not exceed the recommended dosage unless you are following a tested, crop-specific feeding plan.
  • Do not skip pH or EC/ppm checks when growing in hydroponic or soilless systems.
  • Do not allow the nutrient solution to freeze or overheat, as this can damage the formulation.
  • Do not ignore the directions on the product label for your specific crop, growth stage, and system type.

Warnings & Safety

Warning – Important Safety Information

This product may cause mild skin irritation and eye irritation. Avoid unnecessary contact with skin, eyes, and clothing. Use only as directed.

General safety precautions

Read and follow all instructions on the product label and any accompanying documentation before use. Keep out of reach of children and pets. Do not ingest. Avoid breathing vapours, mist, or dust that may be generated during handling or use.

Wear appropriate personal protective equipment (PPE), such as protective gloves, long sleeves, long pants and closed-toe footwear. When there is a risk of splashing or airborne particles, use safety glasses or other suitable eye and face protection.

First aid – skin contact

IF ON SKIN OR HAIR: Remove contaminated clothing immediately. Rinse skin with clean water for several minutes, then wash with mild soap and water. If irritation or redness develops and persists, seek medical attention. Wash contaminated clothing before reuse.

First aid – eye contact

IF IN EYES: Rinse cautiously with clean water for several minutes, keeping eyelids open. Remove contact lenses if present and easy to do. Continue rinsing. If irritation persists, obtain medical advice.

First aid – ingestion and inhalation

IF SWALLOWED: Rinse mouth thoroughly with water. Do not induce vomiting unless instructed by a medical professional. Seek medical attention if you feel unwell.

IF INHALED: Move the person to fresh air and keep them comfortable for breathing. If coughing, breathing difficulty, dizziness or other symptoms occur, seek medical assistance.

Storage and handling

Store this product in its original closed container, in a cool, dry and well-ventilated area. Protect from extreme temperatures and direct sunlight. Keep container tightly sealed when not in use.

Avoid release to drains, natural waterways or outdoor soil. Dispose of unused product and empty containers in accordance with local regulations and the directions on the label.

Important: If medical advice is needed, keep the product label or container available. Always follow the specific instructions and safety recommendations provided by the manufacturer. This safety notice is intended as general guidance and does not replace official label directions or documentation.

Guaranteed Minimum Analysis

Frequently Asked Questions

Why is total nitrogen (N) important for plant growth, and what makes it different from other nutrients?

Total Nitrogen is important because it directly drives leafy growth, chlorophyll production, and overall growth speed, which sets the pace for the entire plant. It’s unique because the “total” number can include different nitrogen forms that behave differently in the root zone, meaning the same total amount can produce very different results depending on the nitrogen type and plant stage.

Why is urea nitrogen important for plant growth?

Urea nitrogen is important because it can supply a high-impact source of nitrogen that supports chlorophyll production and fast leafy growth, but it’s unique from other nitrogen forms because it usually must convert in the growing environment before roots can use it consistently, making correct application and conditions critical for avoiding loss, burn, or sudden imbalance.

What does available phosphate (P₂O₅) do for plant growth?

Available Phosphate (P₂O₅) supports root development, energy transfer, and early structural growth by providing a form of phosphorus that plants can absorb and use quickly.

Why is soluble potash (K2O) important for plants?

Soluble potash (K2O) is important because it helps plants control water use, move sugars to new growth and fruit, and build stronger, higher-quality structure under stress. It’s unique from many other nutrients because it acts more like a regulator and transport helper than a direct “building material,” so the biggest benefits show up as steadier growth, stronger stems, and better finishing instead of just bigger leaves.

Why is boron (B) essential for strong plant development, and what makes it different from other micronutrients?

Boron is essential because it stabilizes cell walls, supports root and shoot growth, and regulates sugar movement throughout the plant. What makes boron unique is its limited mobility and extremely narrow range between deficiency and excess, which causes new growth to show symptoms rapidly when levels fall out of balance.

Why is zinc (Zn) important for plant growth?

Zinc is important because it powers key enzymes and helps regulate growth hormones, which directly controls healthy new leaves, normal internode spacing, and strong growth tips; it’s unique compared to many other micronutrients because zinc problems often show up as distorted, undersized new growth and stunting, not just simple leaf yellowing.

Why is soluble silicon important for plant growth?

Soluble silicon is important because it strengthens plant tissues and improves stress tolerance, helping plants stay upright, conserve water better during heat or drought, and handle disease and pest pressure more effectively. It’s unique from most nutrients because it doesn’t mainly “feed” growth directly; it helps plants protect and reinforce the growth they’re already building.

What makes boric acid important for plants compared to other micronutrients?

Boric acid supplies boron, which plants need in extremely small amounts to build healthy new growth and support flowering and fruit development, but the safe range is very narrow. It’s unique because deficiency shows up first in the newest tissues while excess often burns older leaf edges, so accurate diagnosis and tiny, careful corrections matter more than with most nutrients.

Why can urea burn plants even though it’s a common nitrogen fertilizer?

Urea can burn plants because it must convert in the root zone, and that conversion can create a concentrated, temporarily harsh micro-zone that stresses roots, especially if urea is piled, left on the surface, or not watered in. That conversion step is what makes urea unique compared with nitrogen forms that are already plant-available, so correct placement and moisture are critical.

Can phosphoric acid cause nutrient lockout?

Yes, it can if it pushes phosphorus too high or drives pH too low, because both conditions can reduce the plant’s ability to take up key micronutrients and calcium even when they’re present in the feed, which makes phosphoric acid uniquely powerful compared with slower, gentler phosphorus sources.

Is potassium silicate mainly for potassium or for silicon?

Potassium silicate is mainly used for silicon, because the silicate portion helps plants build tougher tissues and handle stress better, while the potassium is usually a secondary contribution. It’s unique because it can improve plant structure while also strongly raising root-zone pH, so it needs more care than most similar inputs.

Is seaweed a fertilizer or a plant booster?

Seaweed is mainly a plant booster because it supports roots, stress tolerance, and nutrient efficiency more than it supplies full nutrition. It’s unique because ocean-derived compounds help the root zone and plant growth signals in a gentle way, so plants often recover faster and grow more steadily when the basics are already covered.

Is potassium hydroxide just a potassium fertilizer?

No, potassium hydroxide is mainly a strong pH-raising ingredient that changes how nutrients behave and how roots can access them, and its potassium addition is usually secondary. It’s important because stable pH prevents false deficiency symptoms and uptake stress, and it’s unique from other potassium sources because it’s used for acidity control rather than primarily for plant nutrition.

What does zinc sulfate do for plants?

Zinc sulfate supplies plant-available zinc to quickly correct zinc deficiency, helping restore normal new leaf expansion and steady growth at the tips. It’s important because zinc is needed in tiny amounts but strongly affects growth regulation, and zinc sulfate is unique for its predictable solubility and fast correction compared to slower zinc sources.

What does sodium molybdate do for plants?

Sodium molybdate supplies molybdenum, a trace micronutrient that helps plants convert nitrate nitrogen into usable building material, so growth and green color stay steady; it’s unique because it works as a tiny-dose “nitrogen unlocker” rather than a bulk nutrient.

Safety & Technical Documents

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营养饲料表

Vegetative — Power Si Bloom

Flowering — Power Si Bloom

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