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Sorption studies of Cr(VI) from aqueous solution using bio-char as an adsorbent

机译:使用生物炭作为吸附剂从水溶液中吸附六价铬的研究

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The characteristics of sorption of hexavalent chromium (Cr(VI)) onto bio-char derived from wood chips (spruce, pine, and fir) were evaluated as a function of pH, initial Cr(VI) concentration and biochar dosage using synthetic wastewater in batch tests. The initial Cr(VI) concentrations were varied between 10 and 500 mg/L to investigate equilibrium, kinetics, and isotherms of the sorption process. About 100% of Cr(VI) was removed at pH 2 with initial Cr(VI) concentration of 10 mg/L using 4 g of biochar after 5 hours of sorption reaction. The maximum sorption capacity of the bio-char was 1.717 mg/g for an initial Cr(VI) concentration of 500 mg/L after 5 hours. The sorption kinetics of total Cr onto bio-char followed the second-order kinetic model. The Langmuir isotherm model provided the best fit for total Cr sorption onto bio-char. The bio-char used is a co-product of a down draft gasifier that uses the derived syngas to produce electricity. Bio-char as a low cost adsorbent demonstrated promising results for removal of Cr(VI) from aqueous solution. The findings of this study would be useful in designing a filtration unit with bio-char in a full-scale water and wastewater treatment plant for the Cr(VI) removal from contaminated waters.
机译:利用pH值,初始Cr(VI)浓度和生物炭剂量的函数,使用合成废水在木质碎片(云杉,松树和冷杉)的生物炭上吸附六价铬(Cr(VI))的特性进行了评价。批处理测试。初始Cr(VI)浓度在10至500 mg / L之间变化,以研究吸附过程的平衡,动力学和等温线。在吸附反应5小时后,使用4 g生物炭在pH 2下以10 mg / L的初始Cr(VI)浓度除去约100%的Cr(VI)。 5小时后,初始Cr(VI)浓度为500 mg / L,生物炭的最大吸附容量为1.717 mg / g。总铬在生物炭上的吸附动力学遵循二级动力学模型。 Langmuir等温线模型最适合将总Cr吸附到生物炭上。所使用的生物碳是下气化炉的副产品,该气化炉使用衍生的合成气发电。生物炭作为一种低成本的吸附剂显示出从水溶液中去除Cr(VI)的有希望的结果。这项研究的结果对于在大型水和废水处理厂中设计具有生物炭的过滤装置以从污染水中去除六价六价很有用。

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