Kofroot

Kofroot Made in Korea

Description

Physical Composition Substance status ? Liquid Smell ? Peculiar smell of the matter pH ? 3.5 Solubility ? 100% soluble in water Characteristics of KOFROOT Promoting root growth.- Promoting root growth and rootage, and helping roots to be spread well Increasing chlorophyll - Leaf vein thickened by promoted vegetative growth, number of leaves increased to greatly generate organic matters necessary for plant growth Reinforcing respiratory function to help plants grow healthily Essential substances for respiration More excellent than chelate - Providing Fe - Stable organic acid iron-binded structure - Small molecules absorbable into phylloplane Organic Acid Iron-Bonded Structure? Efficacy of Iron Ion Iron is a must for forming chlorophyll, which is source of green color. Iron absorbs physical energy of sunlight, and changes the physical energy to chemical energy, whereby sucrose and starch are combined in chlorophyll Yellowing symptom occurs if iron is insufficient – Leafy veins are changed to yellow Utility-Oriented Product Newly developed organic acid iron-bonded structure. - Stable and sustainable in sun light. Stable design to prevent soil from being oxidized. - Containing no inorganic acids such as sulfuric acid and nitric acid. - Produced under strict quality control standards. - Near odorless. Realization of economic efficiency and convenience. - Drenching and foliage dressing possible. - The product is very economical due to being a highly concentrated liquid. Effective, particularly in the following cases During transplanting of trees - Promoting rootage to allow roots to be spread well Raising of seedling - Promoting root growth especially at early stage 2~3 years after transplanting of woody plants, flowering plants and lawn grasses - Supplementing iron susceptible to insufficiency Woody plants weakened by aging - Increasing and activating chlorophylls Places such as indoor gardens, and planting that lack sufficient sunshine - Conducive to promotion of photosynthesis Mechanism of Ferrous Ion absorption big Plant Plants have own absorbable mechanism. Plants change Fe3+ ions to Fe2+ ions and absorb Fe2+ ions ? Most of plants cannot absorb Fe3+ ions as they are.. Iron ions are used for growth of chlorophylls necessary for photosynthesis and for build-up of breathing circuit necessary for metabolism Structure of directly supplying Fe2+ ions to plants. Development of mass FeO production technique capable of stably supplying Fe2+ * Efficiently supplying Fe2+ due to being organic acid iron-bonded structure

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