Zheng Xiao-Jun, Chen Ming, Wang Jun-Feng, Liu Yan, Liao Yue-Qing, Liu You-Cun
Jiangxi Provincial Key Laboratory of Pollution Control for Mining & Metallurgy Environmental Pollution Control, Jiangxi University of Science and Technology, Ganzhou 341000, China.
ACS Omega. 2020 Oct 16;5(42):27374-27382. doi: 10.1021/acsomega.0c03710. eCollection 2020 Oct 27.
In this study, the natural zeolite and rice husk biochar were mixed as a combination amendment for metal immobilization in a Cd, Pb, As, and W co-contaminated soil. A 90 day incubation study was conducted to investigate the effects of amendments on toxic metal in soil. Zeolite, biochar, and their combination application increased the soil pH and cation exchange capacity. A combination of amendments decreased the bioavailability of Cd, Pb, As, and W. Besides, the potential drawback of biochar application on As and W release was overcome by the combination agent. Zeolite, biochar, and combination treatment decreased total bioavailability toxicity from 335.5 to 182.9, 250.5, and 143.4, respectively, which means that combination was an optimum amendment for soil remediation. The results of the Community Bureau of Reference sequential extraction and scanning electron microscopy-energy-dispersive spectrometry images confirmed the Cd and Pb adsorption onto biochar. However, As and W immobilization was dominantly controlled by zeolite. It appears that the combination of amendments is an efficient amendment to remediate Cd, Pb, As, and W co-contamination in soil, although the combination of amendments has a lower stabilization rate for W than for zeolite.
在本研究中,将天然沸石和稻壳生物炭混合作为一种组合改良剂,用于固定镉、铅、砷和钨共污染土壤中的金属。开展了一项为期90天的培养研究,以调查改良剂对土壤中有毒金属的影响。沸石、生物炭及其组合施用提高了土壤pH值和阳离子交换容量。组合改良剂降低了镉、铅、砷和钨的生物有效性。此外,组合剂克服了施用生物炭对砷和钨释放的潜在不利影响。沸石、生物炭和组合处理分别将总生物有效性毒性从335.5降至182.9、250.5和143.4,这意味着组合是土壤修复的最佳改良剂。欧洲共同体标准物质局连续提取结果和扫描电子显微镜-能谱图像证实了镉和铅吸附在生物炭上。然而,砷和钨的固定主要受沸石控制。虽然组合改良剂对钨的稳定率低于沸石,但组合改良剂似乎是修复土壤中镉、铅、砷和钨共污染的有效改良剂。