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Adsorption of Cr(VI) from aqueous solutions by spent activated clay

机译:用过的活性黏土从水溶液中吸附六价铬

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Adsorption of Cr(VI) onto spent activated clay (SAC), a waste produced from an edible oil refinery company, was investigated for its beneficial use in wastewater treatment. After pressure steam treatment, SAC was used as an adsorbent. The adsorption kinetic data were analyzed and fitted well in a pseudo-first-order equation and the rate of removal was found to speed up with decreasing pH and increasing temperature. Activation energy for the adsorption process was found to be 4.01-5.47 kcal/K mol. The Langmuir adsorption isotherm was used to fit the equilibrium data and the effect of pH, temperature and ionic strength were studied. The maximum adsorption capacities for Cr(VI) ranged from 0.743 to 1.422 mg/g for temperature between 4 and 40 ℃ under a condition of pH 2.0. The studies conducted show the process of Cr(VI) removal to be spontaneous at high temperature and endothermic in nature. From the waste utilization and environment point of view, the work carried out is important and useful. Results obtained can serve as baseline data for designing a treatment process using this low-cost adsorbent for the treatment of wastewater rich in Cr(VI).
机译:研究了Cr(VI)在废活性粘土(SAC)上的吸附作用,该废活性粘土是由一家食用油精炼公司生产的废料,其在废水处理中的有益用途。在加压蒸汽处理之后,将SAC用作吸附剂。分析了吸附动力学数据,并很好地拟合了拟一级方程,发现去除速率随着pH值的降低和温度的升高而加快。发现吸附过程的活化能为4.01-5.47kcal / K mol。用Langmuir吸附等温线拟合平衡数据,并研究了pH,温度和离子强度的影响。在pH值为2.0的条件下,4〜40℃时Cr(VI)的最大吸附能力为0.743〜1.422 mg / g。进行的研究表明,在高温下自然去除六价铬的过程是自发的。从废物利用和环境的角度来看,所进行的工作是重要和有益的。获得的结果可以用作设计使用这种低成本吸附剂处理富含Cr(VI)废水的处理工艺的基线数据。

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