Soil arsenic and chromium pollution repairing agent based on organoclay-loaded nano iron series
A repairing agent and nano-iron technology, which is applied in the field of organoclay-loaded nano-iron-based composite material repairing agents, can solve problems such as single, accurate qualitative and quantitative analysis, achieve cheap prices, improve repairing effects, and ensure dispersion and stability. sexual effect
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Embodiment 1
[0030] Embodiment 1-montmorillonite template:
[0031] Prepare trivalent arsenic, pentavalent arsenic, trivalent chromium and hexavalent chromium contaminated soil with a concentration of 200mg / Kg, add the agent according to the ratio of montmorillonite:soil weight ratio of 1:10, mix well and add soil quality 10% water. After 72 hours of curing, the soil was tested for toxicity leaching. It was found that compared with the soil without stabilizers, the stabilization efficiencies of trivalent arsenic, pentavalent arsenic, trivalent chromium and hexavalent chromium were 23.4 and 23.4 respectively. 25.8, 39.6, 18.3%, with an overall stabilization efficiency of 26.8% for all metals.
Embodiment 2
[0032] Embodiment 2-organic montmorillonite:
[0033] According to the dosage of montmorillonite 40g / L, drop into the aqueous solution containing tetradecyltrimethylammonium bromide, the content of tetradecyltrimethylammonium bromide is 2 times of the cation exchange capacity of montmorillonite, After mixing and reacting for 6 hours, an organic montmorillonite was obtained.
[0034] Prepare trivalent arsenic, pentavalent arsenic, trivalent chromium and hexavalent chromium contaminated soil with a concentration of 200mg / Kg, add the agent according to the ratio of organic montmorillonite:soil weight ratio of 1:10, mix well and add to the soil 10% water by mass. After 72 hours of curing, the soil was tested for toxicity leaching. The results showed that compared with the soil without stabilizers, the stabilization efficiencies of trivalent arsenic, pentavalent arsenic, trivalent chromium and hexavalent chromium were 42.8, 49.9, 40.2, 68.4%, with an overall stabilization efficie...
Embodiment 3
[0035] Example 3 - No organic modification of montmorillonite loaded nano-iron:
[0036] Add montmorillonite particles to deionized water to make the concentration reach 40g / L, add FeCl to the suspension system 3 Solution, make its concentration reach 0.3M, mix for about 18 hours, centrifuge to discard the supernatant, repeat the above process 2 times. The solid particles obtained above were put into deionized water, and the pH of the solution was adjusted to 3 with 0.5M hydrochloric acid, and the NaBH 4 (Sodium borohydride) is quickly added to the particle slurry (NaBH 4 The molar ratio with Fe is 45:1), reacted at room temperature for 5 minutes, and after centrifugal drying, component A without organic modification was obtained.
[0037] According to the dosage of montmorillonite 60g / L, add 0.6M FeCl to the montmorillonite particles 3 solution, mixed for about 18 hours, centrifuged to discard the supernatant, and repeated the above process 2 times. Use 0.5M hydrochloric ...
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