Efficient fertilizer with additional modified small-molecule edible printing ink for asparagus lettuce and method for preparing efficient fertilizer
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A small molecule and ink technology, applied in the field of vegetable fertilizers, can solve problems such as poor control, damage to plant cells, and easy volatility, and achieve the effects of promoting absorption and utilization, improving the color of lettuce, and improving color regulation.
Inactive Publication Date: 2016-10-05
WUHU RUNLAN BIOTECH CO LTD
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[0005] Small molecular substances are like a double-edged sword. They can easily pass through the plant cell wall according to their own characteristics and properties, improve the new way of plant nutrient absorption, provide the nutrients needed by plants, and bring benefits. However, improper use will cause damage to the plant. Damage to plant cells. At the same time, small molecular substances have high solubility and high permeability characteristics, but also have defects and deficiencies that are volatile and difficult to control. How to realize the application of small molecular nutrients in the design of high-efficiency vegetable fertilizers has Significance
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[0018] A high-efficiency fertilizer added with modified small molecule edible ink lettuce, comprising the following components in parts by weight: 1.3 parts by weight of astaxanthin, 1.1 parts of polyglutamic acid, 0.9 parts of acrylamide, 2.3 parts of egg shell powder, 3.6 parts of palygorskite powder, and glucoamylase 1. Matrine 0.9, bioactive factor 2.3, silicate bacterial fertilizer 4.8, forchlorfenuron 0.2, sodium metasilicate 1.1, potassium indole acetate 0.8, distiller's grains 60, eucalyptus leaf powder 20, corn straw powder 22, Corn cob powder 24, activated beer yeast 2.1, humic acid raw powder 1.4, dextran modified superoxide dismutase 0.2, nano-scale amino acid chelated zinc powder 3, white mustard oil 1.5, nano zeolite 3.5, methyl cellulose 1, micro Crystalline cellulose 2.3, appropriate amount of hexacyclite small molecule water, appropriate amount of water.
[0019] The preparation method of a high-efficiency fertilizer adding modified small molecule edible ink l...
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Abstract
The invention discloses an efficient fertilizer with additional modified small-molecule edible printing ink for asparagus lettuce. The efficient fertilizer comprises, by weight, astaxanthin, polyglutamic acid, egg shell powder, palygorskite powder, glucoamylase, matrine, bioactive elements, silicate bacterial fertilizers, forchlorfenuron, sodium metasilicate, potassium heteroauxin, distillers' grains, eucalyptus grandis leaf powder, corn straw powder, corncob powder, active saccharomyces cerevisiae, humic acid raw powder, dextran modified superoxide dismutase, nano-scale zinc-amino acid chelate micro-powder, seman sinapis albae oil, nanometer zeolite, methyl celluloses, microcrystalline celluloses, an appropriate quantity of hexacyclic stone small-molecule water and an appropriate quantity of water. The efficient fertilizer has the advantages that the small-molecule edible printing ink with the hexacyclic stone small-molecule water, the astaxanthin and the seman sinapis albae oil can assist in implementing functions of enriching the asparagus lettuce and is matched with nutrition liquid, main materials prepared from compost and outer-layer enveloping liquid for enveloping and preparing the efficient fertilizer, accordingly, double-release effects can be realized, the efficient fertilizer contains abundant nutrition, colors of the asparagus lettuce can be improved, and the asparagus lettuce can be efficiently cultivated under the condition of high quality.
Description
technical field [0001] The invention relates to the technical field of vegetable fertilizers, in particular to a high-efficiency fertilizer added with modified small molecule edible ink lettuce and a preparation method thereof. Background technique [0002] Plants need nutrients for proper function and growth. Plant nutrients fall into two categories: macronutrients, which are consumed in relatively large quantities and can comprise from about 0.2% to about 4.0% by dry matter weight of plant tissue; and micronutrients, which are consumed in smaller amounts. Quantities are consumed and can range from about 5 parts per million (ppm) to about 200 ppm or less than about 0.2% dry weight. There are three basic pathways for plant uptake of nutrients: (1) simple diffusion, which moves passively through lipid bilayer membranes along a concentration gradient; (2) assisted diffusion, in which solutes or iron along a concentration gradient are transported rapidly by transport proteins....
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