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Enhanced Selenate Removal in Aqueous Phase by Copper-Coated Activated Carbon

机译:铜包覆活性炭增强水相中硒的去除

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摘要

In this study, we prepared a novel sorbent derived from precipitating copper ion onto the surfaces of activated carbon (Cu-AC). The sorbents were comprehensively characterized by Brunauer–Emmett–Teller (BET), zeta potential analysis, SEM, XRD, and FTIR. Batch experiments were conducted to evaluate selenate removal by Cu-AC under different conditions. The results showed that Cu was uniformly coated on the AC surface. Copper pretreatment markedly decreased the specific surface area and total pore volume of AC, and changed its surface zeta potential from highly negative to low negative and even positive. The Cu-AC substantially improved selenate adsorption capacity from the 1.36 mg Se/g AC of raw AC to 3.32, 3.56, 4.23, and 4.48 mg Se/g AC after loading of 0.1, 0.5, 1.0, and 5 mmol Cu/g AC, respectively. The results of toxicity leaching test showed AC coated with ≤1.0 mmol Cu/g was acceptable for potential application. Selenate adsorption was significantly inhibited by high ionic strength (>50 mM NaCl) and pH (>10). The electrostatic attraction between positive surface charge of Cu-AC and selenate ions and hydrogen bonding between CuO and HSeO might contribute to selenate sorption. Evidence showed that the selenate adsorption might involve outer-sphere surface complexation. The adsorption data appeared to be better described by Langmuir than Freundlich isotherm. The spent adsorbent could be effectively regenerated by hydroxide for reuse. Only a little decrease of removal efficiency was observed in the second and third run. This study implies that Cu-coated AC is a potential adsorbent for sustainable removal selenate from relative low salinity water/wastewater.
机译:在这项研究中,我们制备了一种新型吸附剂,该吸附剂是通过将铜离子沉淀到活性炭(Cu-AC)的表面上而得到的。吸附剂通过Brunauer-Emmett-Teller(BET),ζ电位分析,SEM,XRD和FTIR进行了全面表征。进行批处理实验以评估在不同条件下通过Cu-AC去除硒酸盐的能力。结果表明,Cu均匀地涂覆在AC表面上。铜预处理显着降低了AC的比表面积和总孔体积,并将其表面Zeta电位从高负变为低负,甚至变为正。负载0.1、0.5、1.0和5 mmol Cu / g AC后,Cu-AC的硒酸盐吸附量从1.36 mg Se / g AC原AC显着提高到3.32、3.56、4.23和4.48 mg Se / g AC。 , 分别。毒性浸出试验的结果表明,≤1.0mmol Cu / g的AC涂层可用于潜在应用。高离子强度(> 50 mM NaCl)和pH(> 10)明显抑制硒酸盐的吸附。 Cu-AC和硒酸根离子的正表面电荷之间的静电吸引以及CuO和HSeO之间的氢键可能有助于硒酸根的吸附。有证据表明硒酸盐的吸附可能涉及外球表面的络合。 Langmuir的吸附数据似乎比Freundlich等温线更好。用过的吸附剂可以被氢氧化物有效地再生以再利用。在第二和第三轮中观察到去除效率仅略微下降。这项研究表明,覆铜AC是潜在的吸附剂,可从相对低盐度的水/废水中可持续去除硒酸盐。

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