Advanced oxidization repair method for agricultural chemically contaminated soil
A technology of polluted soil and advanced oxidation, applied in the restoration of polluted soil, etc., can solve the problems of affecting soil performance, reducing oxidation efficiency, soil loss of function, etc., to achieve the effect of ensuring high efficiency and avoiding excessive acidification
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Embodiment 1
[0025] At room temperature, according to the ratio of 43% potassium persulfate, 25% potassium bisulfate, 30% potassium sulfate, 1% sodium bisulfate, and 1% sodium sulfate, the advanced oxidant is prepared, and then mixed with agrochemical organic pollution according to the ratio of 1:2000 The soil is mixed, then adding 10% by weight of water and a pH regulator of 0.05 for conditioning, the composition by weight percentage is: calcium peroxide is 10%, calcium oxide is 30%, silicon oxide is 30%, positive The phosphate was 30%. After fully stirring and mixing, the pH of the soil sample was measured to be 7.8. Stacked outdoors at room temperature for 1 week, and covered the surface of the treated soil samples with ordinary light-shielding and water-proof materials to prevent the impact of rainwater seepage or sunlight on the reaction. After treatment, the concentration of pollutants in the soil before and after treatment was analyzed according to the US EPA 8270D method. The analy...
Embodiment 2
[0027] At room temperature, according to the ratio of potassium persulfate 50%, potassium bisulfate 26%, potassium sulfate 22%, sodium bisulfate 1%, sodium sulfate 1%, prepare advanced oxidant, and then mix it with agrochemical organic pollution according to the ratio of 1:5000 Mix finely, then add 10% by weight water and 0.1 pH regulator for conditioning, the composition by weight percentage is: calcium peroxide is 5%, calcium oxide is 25%, silicon oxide is 40%, orthophosphoric acid The salt content was 30%. After fully stirring and mixing, the pH of the soil sample was measured to be 7.2. Stacked outdoors at room temperature for 1 week, and covered the surface of the treated soil samples with ordinary light-shielding and water-proof materials to prevent the impact of rainwater seepage or sunlight on the reaction. After treatment, the concentration of pollutants in the soil before and after treatment was analyzed according to the US EPA 8270D method. The analysis results show...
Embodiment 3
[0029] At room temperature, according to the ratio of potassium persulfate 50%, potassium bisulfate 26%, potassium sulfate 22%, sodium bisulfate 1%, sodium sulfate 1% to prepare advanced oxidants, and then according to the ratio of 1:2000 with agrochemical organic pollution Finely mix, then add 10% by weight of water and 0.1 of pH regulator for conditioning, the composition by weight percentage is: calcium peroxide is 10%, calcium oxide is 30%, silicon oxide is 30%, orthophosphoric acid The salt content was 30%. After fully stirring and mixing, the pH of the soil sample was measured to be 8.3. Stacked outdoors at room temperature for 1 week, and covered the surface of the treated soil samples with ordinary light-shielding and water-proof materials to prevent the impact of rainwater seepage or sunlight on the reaction. After treatment, according to the US EPA 8270D method, the concentration of pollutants in the soil before and after treatment was analyzed. The analysis results ...
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