Leaf surface resistance and control agent for blocking heavy metal accumulation and preparation method thereof
A technology of inhibitors and heavy metals, applied in botany equipment and methods, biocides, animal repellents, etc., can solve problems such as the inability of soil to plant crops, the difficulty of promoting bioremediation technology, and the impact of soil use value. Achieve good chemical stability, reduce heavy metal accumulation, and good adsorption effect
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[0036] The present invention also provides a preparation method of a foliage resistance and control agent for blocking the accumulation of heavy metals, which is characterized in that it comprises the following steps:
[0037] (1) After adding borax and surfactant to 250-400 parts of deionized water for dissolving, adding nano-silica and carbon nanotubes, and ultrasonically dispersing evenly to obtain mixed solution A;
[0038] (2) Tea seed cake, Dunaliella, Flammulina velutipes chaff, betel nut sawdust, 7-10 parts of microbial agent, orange peel powder, distiller's grains, Artemisia annua leaves and humic acid were mixed and fermented at 28-40°C for 2 -3 days, get the fermentation product;
[0039] (3) adding 300-500 parts of deionized water to the fermentation product described in step (2), stirring evenly, heating and extracting for 5-6 hours, and filtering the filtrate to obtain the fermentation product extract;
[0040] (4) adding tea saponin, citric acid and amino acid to...
Embodiment 1
[0047] A foliage inhibitor for blocking the accumulation of heavy metals is characterized in that it comprises the following components by weight:
[0048] 1.8 parts of borax, 6.8 parts of nano-silica, 12 parts of carbon nanotubes, 5.8 parts of surfactants (including any proportion of Tween-80, Span-20 and potassium sorbate), 18 parts of tea seed cake, Dunaliella 7.3 parts, 20 parts of Flammulina velutipes chaff, 5 parts of betel nut wood chips, 12.5 parts of microbial agent (including any proportion of Bacillus subtilis, Bacillus pumilus, yeast), 3.9 parts of orange peel powder, 8 parts of distiller's grains, Artemisia annua 8.3 parts of leaves, 37 parts of tea saponin, 1.4 parts of citric acid, amino acids (including any proportion of threonine, aspartic acid, serine, glutamic acid, proline, glycine, alanine, cystine) 26 parts, 8.5 parts of humic acid, 1500 parts of deionized water.
[0049] A method for preparing a foliar inhibitor for blocking the accumulation of heavy me...
Embodiment 2
[0056] A foliage inhibitor for blocking the accumulation of heavy metals is characterized in that it comprises the following components by weight:
[0057] 3 parts of borax, 5 parts of nano-silica, 17 parts of carbon nanotubes, 7.0 parts of surfactants (including any proportion of Tween-80 and Span-20), 30 parts of tea seed cake, 7.9 parts of Dunaliella, enoki mushroom 21 parts of fungus chaff, 4.1 parts of betel nut wood chips, 10.8 parts of microbial agents (including any proportion of lactic acid bacteria, Bacillus subtilis, Bacillus pumilus, yeast), 4.5 parts of orange peel powder, 9.5 parts of distiller's grains, 7 parts of Artemisia annua leaves 35 parts of tea saponin, 2 parts of citric acid, 24.5 parts of amino acids (including any proportion of proline, glycine, alanine, cystine, valine, methionine, and isoleucine), and 6.8 parts of humic acid parts, 1200 parts of deionized water.
[0058] A kind of preparation method of the foliage inhibitor that stops heavy metal a...
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