Immobilizing and insolubilizing material for heavy metal polluted soil based on magnesium oxide
A technology that pollutes soil and heavy metals. It is applied in the direction of soil conditioning materials, organic fertilizers, fertilizer mixtures, etc. It can solve the problems of soil treatment effect decline, soil becoming strongly alkaline, and site strength reduction, so as to achieve low material cost and improve solidification. Good speed and strength
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Embodiment 1
[0014] Simulate heavy metal polluted soil
[0015] First weigh 402.7mg copper chloride dihydrate, 562.66mg zinc chloride, 565.75mg potassium dichromate, 768.7mg chromium trichloride, 159.85mg lead nitrate, 4.21mg cadmium nitrate and dissolve to form 50g of aqueous solution, add to 100g of In the soil that has passed through a 100-mesh sieve, let it stand for 24 hours, and then crush it through a 100-mesh sieve again. The simulated heavy metal polluted soil in Table 1 was obtained.
[0016]
Embodiment 1-5 and comparative example 1-3
[0018] Weigh 10 g of the simulated heavy metal-contaminated soil in Table 1 above, add 5 g of deionized water, mix evenly, mix into the above soil according to the proportion shown in Table 2, the mixing amount is 30% of the contaminated soil, stir evenly, and let stand for 24 Hours, the soil samples to be tested of Examples 1-5 and Comparative Examples 1-3 were prepared.
[0019] According to the Tessier continuous extraction method, leaching soluble heavy metals in the soil with deionized water, pH 7, 25 ° C, adding water according to the ratio of water to soil 100:1, shaking for 2 hours, centrifuging at 6000r / min for 20min to take the supernatant, and then using 1mol / L of MgCl 2 Solution extraction of exchangeable heavy metals, pH7, 25°C, according to MgC1 2 Solution and soil ratio 100:1 plus MgCl 2 solution, shaken for 2 hours, and centrifuged at 6000r / min for 20min to take the supernatant. Then use an inductively coupled plasma instrument to test the heavy metal conten...
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