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Effective removal of Cr(vi) from aqueous solution by biochar supported manganese sulfide

机译:通过生物炭负载的硫化锰有效去除水溶液中的Cr(vi)

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摘要

In order to remove hexavalent chromium (Cr( VI )) efficiently and simplify the adsorbent preparation process, we employed a single step method to prepare a new biochar supported manganese sulfide material. The nanoscale MnS particles were highly soldered on the biochar support surface, and this adsorbent displayed the effective removal of Cr( VI ) (98.15 mg L ~(?1) ) via synergistic effect between adsorption and reduction/precipitation under weak acid conditions (pH = 5.0–6.0). The adsorption kinetic data were described well by the pseudo second-order kinetic model, suggesting that the reaction process was a chemisorption process. The adsorption isotherm data were described well by the Redlich–Peterson model, further suggesting that this reaction was a hybrid chemical reaction-sorption process. In addition, the Dubinin–Radushkevich isotherm model with 8.28, 8.57, and 12.91 kJ mol ~(?1) adsorption energy also suggests that it was a chemisorption process. The simple and eco-friendly preparation process, low-cost, and the high removal efficiency could make it a promising material for the purification of Cr( VI )-contaminated wastewater.
机译:为了有效地去除六价铬(Cr(VI))并简化吸附剂的制备过程,我们采用了一步法制备了新的生物炭负载的硫化锰材料。纳米级MnS颗粒高度焊接在生物炭载体表面上,并且该吸附剂在弱酸条件(pH)下通过吸附与还原/沉淀之间的协同作用显示出对Cr(VI)(98.15 mg L〜(?1))的有效去除。 = 5.0–6.0)。伪二级动力学模型很好地描述了吸附动力学数据,表明反应过程是化学吸附过程。 Redlich-Peterson模型很好地描述了吸附等温线数据,进一步表明该反应是化学反应-吸附混合过程。此外,Dubinin–Radushkevich等温模型的吸附能为8.28、8.57和12.91 kJ mol〜(?1),也表明这是一个化学吸附过程。简单且环保的制备过程,低成本和高去除效率使其成为净化受Cr(VI)污染的废水的有前途的材料。

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