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Future Harvest Plantacillin - 10 升

Future Harvest Plantacillin - 10 升

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Description

Future Harvest Plantacillin 是一种液态微生物接种剂,用于支持根区生长,旨在帮助分解有机物并提高营养物质的生物利用度,从而使植物更健康。它是一种有益菌补充剂,专注于保持根系环境的活性,使植物能够更好地吸收生长环境中已有的养分。

Plantacillin 的设计理念简单实用:当有机物和枯死根系物质被更有效地分解时,根系区域就能更容易地吸收必需营养物质。Future Harvest 公司将 Plantacillin 定位为构建强健根系的关键助力,它通过促进酶活性来帮助分解枯死根系物质。最终,这款微生物接种剂能够改善根系环境,并帮助植物在整个生长过程中保持稳定的生长性能。

这些益处显然旨在提升整株植物的生长性能,而非噱头。Plantacillin 通过帮助提高植物对营养物质的生物利用度,促进植物整体健康,并最终提高产量。在实际的园艺种植中,这种根系支持至关重要,因为根系功能驱动着其上所有植物的生长,从稳定生长到应对环境变化的更强适应力。

事实层面保持简洁明了且可验证:Plantacillin 的配比为 2-0-0。其关键生物成分是四种有益菌,均来自芽孢杆菌属,这些菌属常用于园艺微生物产品:解淀粉芽孢杆菌 (Bacillus amyloliquefaciens)、巨大芽孢杆菌 (Bacillus megaterium)、地衣芽孢杆菌 (Bacillus licheniformis) 和枯草芽孢杆菌 (Bacillus subtilis)。这四种有益菌的混合物是其显著区别所在,使 Plantacillin 明确地定位为一种基于微生物的根区添加剂,而非普通的营养补充剂。

Plantacillin适用于植物的所有生长阶段,因此如果您需要持续的微生物支持而非仅限于特定阶段的产品,它是一个灵活的选择。在系统适用性方面,它对多种栽培基质均有效,包括水培、无土栽培和椰糠栽培。Future Harvest Plantacillin非常适合那些希望使用液体微生物接种剂来促进根系发育、帮助分解有机物并提高养分生物利用度,从而从始至终支持植物整体健康的种植者。

How To Use

How to Use Future Harvest Plantacillin - 10 升

Step-by-step mixing and feeding instructions for Future Harvest Plantacillin - 10 升.

Mixing & preparation

Fill your reservoir or watering container with clean, room-temperature water first. Shake the bottle of Future Harvest Plantacillin - 10 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 — Plantacillin

  • Week 1: mix 0.53 ml per litre of water or nutrient solution.
  • Week 2: mix 0.53 ml per litre of water or nutrient solution.
  • Week 3: mix 1.06 ml per litre of water or nutrient solution.
  • Week 4: mix 1.06 ml per litre of water or nutrient solution.

Flowering stage — Plantacillin

  • Week 1: mix 2.11 ml per litre of water or nutrient solution.
  • Week 2: mix 2.11 ml per litre of water or nutrient solution.
  • Week 3: mix 2.11 ml per litre of water or nutrient solution.
  • Week 4: mix 2.11 ml per litre of water or nutrient solution.
  • Week 5: mix 2.11 ml per litre of water or nutrient solution.
  • Week 6: mix 2.11 ml per litre of water or nutrient solution.
  • Week 7: mix 2.11 ml per litre of water or nutrient solution.
  • Week 8: mix 2.11 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

Derived From

Frequently Asked Questions

What Is ammoniacal nitrogen (N) and why do plants need It?

Ammoniacal Nitrogen (N) is a plant-available form of ammonium (NH₄⁺) that provides a steady, gentle source of nitrogen for healthy green growth. Unlike fast-release nitrogen types, ammoniacal nitrogen feeds plants slowly, helps stabilize root-zone pH, and works well in cooler temperatures. It is commonly used during early vegetative growth because it supports strong leaf development without burning young roots. If plants show pale leaves, slow growth, or weak stems, they may need more available ammoniacal nitrogen.

What makes ammonium nitrate different from other nitrogen ingredients for plant growth?

Ammonium nitrate is unique because it provides nitrogen in two plant-usable forms at once, which can give a fast green-up while still supporting steadier uptake depending on the root-zone conditions. That matters because it can correct true nitrogen shortages quickly, but it also needs careful balance since too much can push overly soft growth and trigger pH drift and nutrient imbalances.

What does nitrate nitrogen (N) do for plants?

Nitrate Nitrogen provides a stable, easy-to-absorb form of nitrogen that supports steady growth, strong foliage, and reliable plant development without sudden nutrient swings.

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.

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.

Safety & Technical Documents

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营养饲料表

Vegetative — Plantacillin

Flowering — Plantacillin

产品对比