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Effects of amendments on heavy metal immobilization and uptake by Rhizoma chuanxiong on copper and cadmium contaminated soil

机译:改性剂对川xi在铜镉污染土壤上固定化和吸收重金属的影响

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摘要

An improved method was applied for remediating cadmium and copper co-contaminated soil and reducing the metal concentration in Rhizoma chuanxiong. Pot experiments were conducted with six amendments (composed with bentonite, phosphate, humic acid, biochar, sepiolite powder, etc.). The results showed that soil pH, biological activities (soil enzymatic activities and microbial counts) and R. chuanxiong biomass were greatly improved with the addition of amendments in all treatments, especially in T3 and T6. Also, amendments effectively decreased the concentration of malondialdehyde and H2O2 in R. chuanxiong. In the T3 treatment, the bio-available Cd and Cu in soil were significantly decreased by 0.53 and 0.41 mg kg−1, respectively. Meanwhile, the amendment in T3 reduced Cd and Cu accumulation in R. chuanxiong about 45.83 and 39.37%, respectively, compared to T0. Moreover, the Fourier transform infrared spectroscopy spectra showed the surface functional groups of every amendment. To conclude, this study offers an effective and environmental method to reduce metal accumulation in R. chuanxiong on heavy metal co-contaminated soil.
机译:一种改进的方法被用于修复镉和铜共同污染的土壤,并降低川xi中的金属浓度。用六种改良剂(由膨润土,磷酸盐,腐殖酸,生物炭,海泡石粉等组成)进行盆栽实验。结果表明,在所有处理中,特别是在T3和T6中,通过添加修正剂,土壤的pH值,生物活性(土壤酶活性和微生物数量)和川xi生物量均得到了显着改善。此外,修正案有效地降低了川xi中丙二醛和H2O2的浓度。在T3处理中,土壤中的有效Cd和Cu分别显着降低了0.53和0.41 mg kg -1 。同时,与T0相比,T3的修订减少了川R中Cd和Cu的积累,分别减少了45.83和39.37%。此外,傅立叶变换红外光谱光谱显示了每种修饰的表面官能团。总之,本研究提供了一种有效的环境方法,可减少重金属共污染土壤中川R中的金属积累。

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