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Adsorption of hexavalent chromium from synthetic and electroplating effluent on chemically modified Swietenia mahagoni shell in a packed bed column

机译:填充床色谱柱中化学修饰的Swietenia mahagoni壳上合成废水和电镀废水中六价铬的吸附

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Packed bed column studies were carried out to evaluate the performance of chemically modified adsorbents for the sequestration of hexavalent chromium from synthetic and electroplating industrial effluent. The effects of parameters such as bed height (3-9 cm), inlet flow rate (5-15 mL/min), and influent Cr(VI) concentration (50-200 mg/L) on the percentage removal of Cr(VI) and the adsorption capacity of the adsorbents in a packed bed column were investigated. The breakthrough time increased with increasing bed height and decreased with the increase of inlet flow rate and influent Cr(VI) concentration. The adsorption column models such as Thomas, Adams-Bohart, Yoon-Nelson, and bed depth service time (BDST) were successfully correlated with the experimental data. The Yoon-Nelson and BDST model showed good agreement with the experimental data for all the studied parameter conditions. Results of the present study indicated that the chemically modified Swietenia mahagoni shell can be used as an adsorbent for the removal of Cr(VI) from industrial wastewater in a packed bed column.
机译:进行了填充床柱研究,以评估化学改性吸附剂从合成和电镀工业废水中螯合六价铬的性能。床高(3-9 cm),入口流速(5-15 mL / min)和进水Cr(VI)浓度(50-200 mg / L)等参数对Cr(VI)去除百分比的影响)和填充床塔中吸附剂的吸附能力进行了研究。突破时间随着床高的增加而增加,而随着入口流速和进水Cr(VI)浓度的增加而减小。吸附柱模型(例如Thomas,Adams-Bohart,Yoon-Nelson和床深度使用时间(BDST))已与实验数据成功关联。 Yoon-Nelson和BDST模型在所有研究的参数条件下均与实验数据吻合良好。本研究结果表明,化学修饰的马氏Swietenia壳可以用作吸附剂,用于从填充床塔中的工业废水中去除Cr(VI)。

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