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Almond Shell-Derived Biochar-Supported Nano-Zero-Valent Iron Composite for Aqueous Hexavalent Chromium Removal: Performance and Mechanisms

机译:杏仁壳衍生生物炭支持的纳米零价铁复合材料用于去除六价铬水溶液的性能和机理

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摘要

Nano-zero-valent iron biochar derived from almond shell (nZVI-ASBC) was used for hexavalent chromium (CR) removal. Experiments showed that pH was the main factor ( < 0.01) that affected the experimental results. At a dosage of 10 mg·L and pH of 2–6, in the first 60 min, nZVI-ASBC exhibited a removal efficiency of 99.8%, which was approximately 20% higher than the removal yield at pH 7–11. Fourier transform infrared spectroscopy results indicated N-H was the main functional group that influenced the chemisorption process. The pseudo second-order dynamics and Langmuir isotherm models proved to be the most suitable. Thermodynamic studies showed that the reaction was exothermic and spontaneous at low temperatures (T < 317 K). Various interaction mechanisms, including adsorption and reduction, were adopted for the removal of Cr(VI) using the nZVI-ASBC composite. The findings showed that the BC-modified nZVI prepared with almond shell exerts a good effect and could be used for the removal of Cr(VI).
机译:源自杏仁壳的纳米零价铁生物炭(nZVI-ASBC)用于去除六价铬(CR)。实验表明,pH是影响实验结果的主要因素(<0.01)。在最初的60分钟内,以10 mg·L的剂量和2至6的pH值,nZVI-ASBC的去除效率为99.8%,比在pH 7–11时的去除率高出约20%。傅里叶变换红外光谱结果表明,N-H是影响化学吸附过程的主要官能团。伪二阶动力学和Langmuir等温线模型被证明是最合适的。热力学研究表明,该反应在低温(T <317 K)下是放热的且自发的。使用nZVI-ASBC复合材料采用了多种相互作用机理,包括吸附和还原,以去除Cr(VI)。研究结果表明,杏仁壳制备的BC改性nZVI具有良好的效果,可用于去除Cr(VI)。

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