[Effect of Aging on Stabilization of Cd2+ Through Biochar Use in Alkaline Soil of Bayan Obo Mining Area].

Zhe Wang, Jun-Li Cheng, Yuan Bian, Chun-Li Zheng, Wei-da Wang, Qing-Hong Jiang
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Abstract

Although biochar has been widely used in the remediation of heavy metal pollution in acidic and neutral soils, less attention has been paid to whether biochar will alter its structural properties and the ability to retain heavy metals after different degrees of aging in alkaline soils. In this study, two artificial accelerated aging methods (freeze-thaw cycle and dry-wet cycle) and a short-term natural aging method were used to simulate the aging process of biochar prepared from corn stalk. We investigated the changes in the soil pH and bioavailability, total content, and transformation of Cd2+ before and after aging treatments. Biochar was separated from the soil for characterization to explore the effect of aging on the passivation of Cd2+ by biochar in the alkaline soil of the mining area. The results showed that adding biochar to alkaline soil in the Bayan Obo mining area had no significant liming effect, and pH decreased after the freeze-thaw and dry-wet accelerated aging treatments. Compared with that in the control, the CaCl2-extractable contents of Cd2+ decreased by 19.32%-30.67%, and the total contents of Cd2+ decreased by 5.02%-7.18%. Aging did not significantly change the transformation of Cd2+ but reduced the distribution of acid-soluble and reducible fractions, indicating that biochar could immobilize Cd2+ for a long time after aging, which was related to the increase in oxygen-containing functional groups and the pore structure of biochar. These results are important for evaluating its long-term application prospects in the mining environment.

[陈化对巴彦鄂博矿区碱性土壤生物炭稳定Cd2+的影响]。
虽然生物炭在酸性和中性土壤重金属污染的修复中得到了广泛的应用,但在碱性土壤中,生物炭在不同程度的老化后是否会改变其结构性质和对重金属的保留能力却很少有人关注。本研究采用冻融循环和干湿循环两种人工加速老化方法和短期自然老化方法模拟玉米秸秆制备生物炭的老化过程。研究了老化处理前后土壤pH、生物有效性、总含量和Cd2+转化的变化。从土壤中分离出生物炭进行表征,探讨老化对矿区碱性土壤中生物炭钝化Cd2+的影响。结果表明:在巴延鄂博矿区碱性土壤中添加生物炭,石灰化效果不显著,且pH值在冻融和干湿加速老化处理后降低;与对照相比,cacl2可提取Cd2+含量下降19.32% ~ 30.67%,总Cd2+含量下降5.02% ~ 7.18%。老化没有显著改变Cd2+的转化,但降低了酸溶性和可还原性组分的分布,说明老化后生物炭可以长时间固定Cd2+,这与含氧官能团的增加和生物炭的孔隙结构有关。这些结果对于评价其在矿山环境中的长期应用前景具有重要意义。
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