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Provision Gardens is an official reseller of this brand.

Our inventory is sourced directly from the manufacturer and/or authorized distribution partners. We do not sell used items or unverified/old stock. This helps ensure product authenticity, freshness, and the high standard you expect.

Future Harvest 钙肥 - 10 升

常规价格 $102.74
常规价格 促销价 $102.74
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Description

Future Harvest Calnesium 是一种液体钙镁营养补充剂,用于预防番茄蒂腐病,并支持植物对钙、镁和铁的吸收。该钙镁补充剂还是一种钙镁强化剂,旨在增强植物结构并支持更健康的生长。

Calnesium 2-0-0 被定位为一种营养添加剂或补充剂,可提高钙、镁和铁的利用率,有助于减少常见的缺乏性问题。其最实际的益处之一是预防番茄和辣椒的蒂腐病,因为持续的钙供应与果实品质直接相关。通过支持营养物质的利用率,Calnesium 有助于植物构建更坚固的细胞壁,从而支持更强壮、更健康的植物生长,并提高结果园的产量潜力。

简洁的事实层简单且方便购物者:Calnesium 的 NPK 比例为 2-0-0。除了 NPK,该产品还配方用于支持钙、镁和铁的吸收,并包含微量营养素支持。关键成分是矿物和螯合来源,包括用于钙支持的硝酸钙和氯化钙、用于镁支持的硝酸镁、螯合铁和螯合锌(EDTA 形式),以及作为微量营养素来源的钼酸钠。这种组合使产品专注于必需元素的利用率,而不会使其成为复杂的多种解决方案。

Calnesium 还围绕在实际园艺中重要的性能优势进行定位:更坚固的植物细胞和组织,以提高抗逆性,支持细胞分裂和植物组织发育,以及改善水、营养和二氧化碳的吸收。这些功能层面的益处直接关系到种植者从钙镁补充剂中希望得到什么——更强的结构、更稳定的生长以及在植物积极发育和结果期间减少挫折症状。

对于系统兼容性,Calnesium 被确定适用于水培,也被描述为适合叶面喷施,这使得您可以在更广泛的营养方案中灵活使用它,而不会改变其作用。如果您正在寻找一种支持钙镁利用率、有助于预防番茄和辣椒蒂腐病,并增强坚固细胞壁以促进整体植物健康的液体营养添加剂,那么 Future Harvest Calnesium 是一个干净、专门为此目的而设计的选择。

产品益处:营养生长期;开花期;室内;室外;常规浇水;浇水系统;水培;椰糠安全;叶面喷施;土壤;无土;钙支持;镁支持;铁利用率;缺乏症支持;更坚固的结构;生长支持;产量大小支持;多介质适用。

保证分析:总氮 (N):2.0%;铵态氮 (N):0.1%;硝态氮 (N):1.9%;总钙 (Ca):3.0%;总镁 (Mg):1.0%;螯合铁 (Fe):0.1%;钼 (Mo):0.0005%;螯合锌 (Zn):0.05%;EDTA(螯合剂):0.48%。

来源:硝酸铵钙;氯化钙;硝酸镁;EDTA 铁;EDTA 锌;钼酸钠。

How To Use

How to Use Future Harvest 钙肥 - 10 升

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

Mixing & preparation

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

  • Week 1: mix 0.4 ml per litre of water or nutrient solution.
  • Week 2: mix 0.4 ml per litre of water or nutrient solution.
  • Week 3: mix 0.4 ml per litre of water or nutrient solution.
  • Week 4: mix 0.4 ml per litre of water or nutrient solution.

Flowering stage — Calnesium

  • Week 1: mix 0.66 ml per litre of water or nutrient solution.
  • Week 2: mix 0.66 ml per litre of water or nutrient solution.
  • Week 3: mix 1.32 ml per litre of water or nutrient solution.
  • Week 4: mix 1.32 ml per litre of water or nutrient solution.
  • Week 5: mix 1.32 ml per litre of water or nutrient solution.
  • Week 6: mix 1.32 ml per litre of water or nutrient solution.
  • Week 7: mix 1.32 ml per litre of water or nutrient solution.
  • Week 8: mix 1.32 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.

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.

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 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 calcium (Ca) important for plant growth, and what makes it different from other nutrients?

Total calcium is important because it builds strong cell walls and supports healthy new growth, roots, and overall plant stability. It’s unique because plants can’t easily move calcium from old leaves to new growth, so calcium problems show up first at the tips and newest leaves when delivery through water movement and transpiration falls behind.

Why is total magnesium (Mg) important for plant growth?

Total magnesium is important because magnesium powers chlorophyll and energy use, helping plants stay green, turn light into growth, and use other nutrients efficiently—and it’s unique because its problems often come from nutrient balance and uptake competition, not just a simple shortage.

Why is chelated iron important for plants, and what makes it different from other iron sources?

Chelated iron is important because it keeps iron usable for plants even when growing conditions would normally lock iron out, helping prevent the classic yellow-new-leaf symptom caused by low chlorophyll production. It is unique from other iron sources because the chelation protects iron from becoming insoluble, making it a more reliable way to correct iron-related chlorosis when regular iron can fail.

Why is molybdenum (Mo) important for plant growth?

Molybdenum is important because it helps plants convert nitrogen into usable building blocks for chlorophyll and growth, and it’s unique from many nutrients because it mainly supports enzyme-driven “nutrient use” rather than directly building plant tissue.

Why is chelated zinc (Zn) important for plants?

Chelated zinc is important because it keeps zinc available for uptake even when pH or root-zone conditions would normally lock zinc out, helping plants form normal-sized, healthy new growth—something that makes zinc uniquely different from many other nutrients that mainly affect older leaves or simple leaf color changes.

What makes calcium ammonium nitrate unique for plant growth compared to other nitrogen sources?

Calcium ammonium nitrate is unique because it delivers quick-acting nitrogen while also supplying calcium that supports strong new tissue, so you can drive green growth without sacrificing structure. It’s important because it can correct slow, pale growth and reduce calcium-related weakness at the same time when the plant is in a rapid growth phase.

What makes calcium chloride different from other calcium sources for plants?

Calcium chloride is different because it dissolves extremely fast and can deliver calcium quickly to new growth, which is where calcium problems show up first. It’s important because calcium supports strong new tissue and stable growth tips, but it’s unique because it also adds chloride and has higher salt strength, so it must be used carefully to avoid leaf burn or root-zone salt stress.

What does magnesium nitrate do for plants?

Magnesium nitrate supplies fast-available magnesium for chlorophyll and photosynthesis while also adding nitrate nitrogen that can speed up greening and growth. It’s unique because it can correct magnesium-related yellowing quickly but also changes growth momentum, so it’s most valuable when magnesium is truly limiting and the plant can safely use extra nitrate.

What makes iron EDTA effective for fixing pale new leaves?

Iron EDTA keeps iron dissolved and available long enough for roots to absorb it, which is why it can quickly improve new growth color when iron is tied up in the root zone. It’s unique because the EDTA chelate balances stability and accessibility, making iron more reliably usable in mildly acidic to near-neutral conditions compared to many non-chelated iron forms.

What makes zinc EDTA better for preventing zinc lockout?

Zinc EDTA is important because it keeps zinc available in the root zone when pH or water chemistry would normally tie zinc up, helping new growth develop normally before deficiency symptoms get worse. It’s unique from other zinc forms because the EDTA chelate shields zinc in solution, making delivery more consistent when conditions are not ideal.

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 — Calnesium

Flowering — Calnesium

产品对比