Surfactant enhanced organic polluted soil electric-biological remediation method and device
A surfactant and organic pollution technology, applied in the field of surfactant-enhanced electro-bioremediation of organic polluted soil and organic polluted soil remediation, can solve problems such as low availability, large spatial differences in remediation efficiency, and low overall remediation efficiency.
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Embodiment 1
[0026] like Figure 1-2 As shown, the electric repair device includes a cathode chamber and an anode chamber. The cathode chamber is arranged in the center, and the anode chamber is arranged outside the cathode chamber. The electrodes are evenly arranged in the cathode chamber and the anode chamber. The cathode chamber and the anode chamber form a cylindrical electrode matrix structure. , the distance between each cathode in the cathode chamber and each anode in the anode chamber is equal, forming a symmetrical structure in space and field strength; the cathode and the anode are all connected to the electric control cabinet; the cathode chamber and A soil treatment chamber is arranged between the anode chambers, a cation ion exchange membrane is arranged between the cathode chamber and the soil, and an anion exchange membrane is arranged between the anode chamber and the soil.
[0027] In this example, petroleum hydrocarbon-contaminated soil was selected for remediation experi...
Embodiment 2
[0035] The added concentration of the surfactant is 400mg / L, the surfactant is an anion-nonionic surfactant, and the ratio of the anion-nonionic surfactant is 2:1; other steps are the same as in Example 1.
Embodiment 3
[0037] The added concentration of the surfactant is 700 mg / L, the surfactant is an anion-nonionic surfactant, and the ratio of the anion-nonionic surfactant is 10:1; other steps are the same as in Example 1.
[0038] Table 1 Basic conditions of the tested soil
[0039]
[0040] Table 2 Changes in oil content before and after treatment
[0041] group
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