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An Extended Langmuir Adsorption in a Binary-Solute As(III)/As(V) System using Nanoporous Alumina

机译:使用纳米多孔氧化铝的二进制溶质AS(III)/ AS(v)系统中的扩展Langmuir吸附

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Arsenic is usually found in the form of inorganic oxyanions. Arsenate (I.e.,HAsO4 2- ) is the primary anion in aerobic surface water, and arsenite (I.e., H3AsO3 or H2AsO3 - ) is the primary species in groundwater. Arsenate has a valence state of As(V), while arsenite is As(III). To remove arsenic, we has been studied the usage of nanoporous aluminas (NA) as potential adsorbents. The maximum up-take of As(V) by NA was found to be 7 times higher [121 mg of As(V)/g and 47 mg of As(III)/g] than that of conventional activated alumina. This experiment was conducted with the single stock solution. Although considerable uptake has been reported for the adsorption of either single-component arsenite or arsenate by various adsorbents, many natural streams or industrial effluents contain several other components. Therefore, in this study, we reported an extended Langmuir adsorption in a binary-solute system using NA. The results would provide basic parameters for the design of adsorption process of As(III) and As(V) in a binary-solute system.
机译:通常以无机氧气的形式发现砷。砷酸盐(即Haso4 2-)是有氧水面水中的主要阴离子,砷酸盐(即,H3ASO3或H2ASO3 - )是地下水中的主要物种。砷酸盐具有(v)的价态,而Arsenite则为(iii)。为了除去砷,我们已经研究了纳米多孔氧化铝(NA)作为潜在吸附剂的用途。由于常规活性氧化铝的最大升高为(v)对Na的最大升高为(v)的升高为(v)[121mg作为(v)/ g和47mg,为(iii)/ g]。该实验用单一储备溶液进行。虽然据报道,通过各种吸附剂吸附单组分砷酸盐或砷酸盐的相当大的摄取,但许多天然流或工业污水含有几种其他组分。因此,在这项研究中,我们在使用NA的二元溶质系统中报道了扩展的Langmuir吸附。结果将提供用于在二进制溶质系统中的(III)和AS(v)的吸附过程的基本参数。

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