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一种从阿月浑子木材中制备化学活化炭的新途径,用于高效吸附 Pb(II)。

A novel route for preparation of chemically activated carbon from pistachio wood for highly efficient Pb(II) sorption.

机构信息

Environment Health Engineering Department & Social Determinants of Health Research Centre, Gonabad University of Medical Sciences, Gonabad, Iran.

Institute of Chemistry, Federal University of Rio Grande do Sul (UFRGS), Av. Bento Gonc¸ alves 9500, Postal Box 15003, 91501-970 Porto Alegre, RS, Brazil.

出版信息

J Environ Manage. 2019 Apr 15;236:34-44. doi: 10.1016/j.jenvman.2019.01.087. Epub 2019 Jan 31.

Abstract

Pistachio wood-derived activated carbon prepared by a two-stage process (PWAC-2), conducting two consecutive chemical activation processes with NHNO and NaOH, respectively. The results showed that explosive characteristic of NHNO can primarily be employed to produce a char, with a large surface area and a highly-ordered pore structure, which can be subjected to a second activation process with NaOH to prepare a more suitable activated carbon, with a highly porous structure and useful functional groups, for removal of lead ions from aqueous media. An L Taguchi experimental design was used by varying impregnation ratio, activation time and temperature in both pre- and post-activation stages, and the results showed that, in both stages, a small activating agent/precursor and a proportional low activation time suffice for preparation of an advantageous activated carbon for Pb(II) adsorption. A comprehensive study was performed on the equilibrium, kinetic and thermodynamic aspects of Pb(II) adsorption by the new activated carbon. The results exhibited that, having had a high lead adsorption capacity (190.2 mg g), a high adsorption rapidness, and thermodynamic favorability, PWAC-2 is a beneficial alternative for utilization in full-scale plants of lead removal from waters and wastewaters.

摘要

两段法(PWAC-2)制备的开心果壳基活性炭,分别采用 NHNO 和 NaOH 进行了两次连续的化学活化过程。结果表明,NHNO 的爆炸特性可主要用于制备具有大表面积和高度有序孔结构的炭,然后可以用 NaOH 进行第二次活化过程,以制备更适合的活性炭,具有高度多孔结构和有用的官能团,用于从水介质中去除铅离子。采用 L 型田口实验设计,通过改变浸渍比、预活化和后活化阶段的活化时间和温度,结果表明,在两个阶段中,小的活化剂/前体和比例低的活化时间足以制备有利于 Pb(II)吸附的活性炭。对新活性炭对 Pb(II)吸附的平衡、动力学和热力学方面进行了综合研究。结果表明,PWAC-2 具有高的铅吸附容量(190.2mg/g)、高的吸附快速性和热力学有利性,是从水中和废水中去除铅的全规模工厂的有益替代方案。

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