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A study of cadmium remediation and mechanisms: Improvements in the stability of walnut shell-derived biochar

机译:镉修复及其机理的研究:改善核桃壳衍生生物炭的稳定性

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Biochar has been recognized as an efficient soil amendment for cadmium remediation in recent years. In the present study, biochar was prepared using walnut shell, and it was incubated in Cd(NO3)2 and kaolin for 15 days. Different chemical forms of cadmium in kaolin and biochar were determined, and the stability of biochar was evaluated by R50 using TGA analysis. It was found that walnut shell derived biochar could reduce the mobility of cadmium. After incubation, the R50, biochar value increased from 61.31% to 69.57%-72.24%, indicating that the stability of biochar was improved. The mechanisms that initiated improvements in biochar stability were investigated by XPS, XRD and SEM-EDS analysis. The result showed that the enhanced biochar stability is likely due to physical isolation and the formation of precipitates and complexes, formed on the surface or interior of the biochar. The results suggested that walnut shell-derived biochar can be used as a cadmium sorbent for soil remediation.
机译:近年来,生物炭已被公认为是一种有效的土壤镉改良剂。在本研究中,生物炭是用核桃壳制备的,并在Cd(NO3)2和高岭土中孵育15天。确定了高岭土和生物炭中镉的不同化学形式,并使用TGA分析通过R50评估了生物炭的稳定性。发现核桃壳衍生的生物炭可降低镉的迁移率。孵育后,R50的生物炭值从61.31%增加到69.57%-72.24%,表明生物炭的稳定性得到改善。通过XPS,XRD和SEM-EDS分析研究了引发生物炭稳定性改善的机制。结果表明,增强的生物炭稳定性可能是由于物理隔离以及在生物炭表面或内部形成的沉淀物和复合物的形成。结果表明,核桃壳生物炭可用作土壤修复的镉吸附剂。

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