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1175 Stellar Drive, Unit #5
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Athena Nutrients Pro Line Bloom、Grow、Core 是一款干粉状可溶性肥料三件套,旨在为专业灌溉方案提供纯净的纯矿物质营养,满足植物的营养生长和开花需求。这套可溶性矿物肥料组合功能明确:基础肥料提供基础营养,营养生长肥料促进早期发育,开花肥料则有助于提高开花产量。
Pro Core 是基础营养液,旨在为植物生长的各个阶段提供基础营养,富含易于吸收的氮、钙和必需微量元素。这种组合支持植物的核心功能,例如叶绿素和氨基酸的形成、结构发育以及与光合作用相关的酶活性。如果您需要从始至终保持稳定可靠的营养基础,Pro Core 将专注于提供稳定的基础营养,而非额外的添加剂。
Pro Grow 专注于植物的营养生长阶段,均衡的营养能够促进根系强壮和枝繁叶茂。它是一种专为商业种植者配制的速溶肥料,旨在简化灌溉流程,其配方中均衡的氮磷钾 (NPK) 和必需微量元素是 Pro Line 系列产品的核心。Athena 还特别强调了其配方选择:Pro Grow 含有植物营养生长所需的必需氮,但不含尿素或氨态氮,从而保持了专业种植方案所需的简单氮肥配比。
Pro Bloom专为需要更高磷钾肥以增加花朵体积并支持高代谢活动的开花植物而设计。它是一款理想的开花肥料混合物,提供大量元素和微量元素,包括Athena认为能增强风味的硫。对于希望获得纯净花期营养的种植者来说,Pro Bloom专注于开花期营养和硫元素支持的成熟特性,无需依赖其他增效剂。
该系列产品的主要区别在于其洁净度:每款产品均为完全可溶的干肥料,不含颗粒物或沉淀物,旨在保持配方均匀,便于大规模操作。专业系列产品则强调其完整的配方,旨在减少因缺乏养分而导致的施肥不足,仅使用矿物质成分,并采用精简的施肥方法,专为专业灌溉环境而设计。
包装上的成分信息清晰明了:Pro Core 的氮磷钾比例为 14-0-0,Pro Grow 为 2-8-20,Pro Bloom 为 0-12-24。这三款肥料的主要成分包括:Core 中含有硝酸钙和微量元素螯合物(铁、锰、铜和锌螯合物,以及硼酸和钼酸钠);Grow 和 Bloom 中含有磷酸盐、硫酸盐和镁,其中 Grow 还含有硝酸钾。这套肥料非常适合专业种植者,他们希望使用溶解性好、富含必需微量元素、并能针对植物营养生长和开花阶段提供特定支持的干粉可溶性肥料。
Step-by-step mixing and feeding instructions for Athena Nutrients Pro Line Core - 25磅.
Fill your reservoir or watering container with clean, room-temperature water first. Shake the bottle of Athena Nutrients Pro Line Core - 25磅 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.
Vegetative stage — Pro Core
Flowering stage — Pro Core
Vegetative stage — Pro Grow
Flowering stage — Pro Grow
Vegetative stage — Pro Bloom
Flowering stage — Pro Bloom
Vegetative stage — Cleanse
Flowering stage — Cleanse
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.
| Total Nitrogen (N) | 14.0% |
|---|---|
| Calcium (Ca) | 17.0% |
| Boron (B) | 0.015% |
| Chelated Copper (Cu) | 0.01% |
| Chelated Iron (Fe) | 0.1% |
| Chelated Manganese (Mn) | 0.04% |
| Molybdenum (Mo) | 0.01% |
| Chelated Zinc (Zn) | 0.013% |
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.
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.
Calcium is important because it builds and stabilizes plant cells as they form, acting as the structural support that keeps new growth strong and functional. Unlike other nutrients that drive color or speed of growth, calcium’s role is unique because it controls cell wall strength and membrane stability, making it essential for healthy roots, shoots, and long-term plant resilience rather than quick visual results.
Calcium nitrate is important because it supplies calcium in a fast, highly available form that supports strong new growth and healthy root tips, while also providing nitrate nitrogen for steady, usable growth energy. It’s unique because it delivers calcium together with nitrate nitrogen, making it especially effective during rapid growth phases when plants need both structure-building calcium and immediately available nitrogen at the same time.
Chelated copper is important because it supports key enzyme systems that drive energy flow, strong tissue formation, and healthy new growth, while chelation keeps copper available and stable in the root zone. It’s unique because plants need it in extremely small amounts and it can become unavailable or toxic more easily than many other micronutrients, so chelated forms help deliver precise, predictable copper without big swings.
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.
Chelated manganese is important because it keeps manganese available for photosynthesis and enzyme activity even when pH or water chemistry would normally lock it out, and it’s unique from similar micronutrients because it strongly supports the plant’s energy-processing systems that drive healthy, resilient new growth.
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.
Copper EDTA helps keep copper dissolved and available to roots longer, so plants can absorb it more consistently when copper would otherwise tie up in the growing medium. It’s important because copper supports enzyme activity and healthy new growth, and it’s unique because the chelate improves predictability while allowing very small, controlled copper dosing.
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.
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.
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.
Manganese EDTA is unique because the EDTA chelate keeps manganese stable and more available during delivery, helping plants absorb it more reliably when manganese would otherwise lock up. This matters because manganese drives key enzyme functions tied to photosynthesis and healthy new growth, so consistent availability can prevent pale, chlorotic young leaves and stalled vigor.
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.
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.

Great stuff thanks for recommendations!!
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