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用于重金属净化的吸附剂综述:废水处理的新兴方法

A Review of Adsorbents for Heavy Metal Decontamination: Growing Approach to Wastewater Treatment.

作者信息

Gupta Archana, Sharma Vishal, Sharma Kashma, Kumar Vijay, Choudhary Sonal, Mankotia Priyanka, Kumar Brajesh, Mishra Harshita, Moulick Amitava, Ekielski Adam, Mishra Pawan Kumar

机构信息

Department of Chemistry, MCM DAV College for Women, Sector 36,Chandigarh 160036, India.

Institute of Forensic Science and Criminology, Panjab University, Chandigarh 160014, India.

出版信息

Materials (Basel). 2021 Aug 20;14(16):4702. doi: 10.3390/ma14164702.

Abstract

Heavy metal is released from many industries into water. Before the industrial wastewater is discharged, the contamination level should be reduced to meet the recommended level as prescribed by the local laws of a country. They may be poisonous or cancerous in origin. Their presence does not only damage people, but also animals and vegetation because of their mobility, toxicity, and non-biodegradability into aquatic ecosystems. The review comprehensively discusses the progress made by various adsorbents such as natural materials, synthetic, agricultural, biopolymers, and commercial for extraction of the metal ions such as Ni, Cu, Pb, Cd, As and Zn along with their adsorption mechanisms. The adsorption isotherm indicates the relation between the amount adsorbed by the adsorbent and the concentration. The Freundlich isotherm explains the effective physical adsorption of the solute particle from the solution on the adsorbent and Langmuir isotherm gives an idea about the effect of various factors on the adsorption process. The adsorption kinetics data provide valuable insights into the reaction pathways, the mechanism of the sorption reaction, and solute uptake. The pseudo-first-order and pseudo-second-order models were applied to describe the sorption kinetics. The presented information can be used for the development of bio-based water treatment strategies.

摘要

许多行业都会将重金属排放到水中。在工业废水排放之前,其污染水平应降低至符合该国地方法律所规定的推荐水平。它们可能具有毒性或致癌性。由于其流动性、毒性以及在水生生态系统中不可生物降解的特性,它们的存在不仅会危害人类,还会对动物和植物造成损害。这篇综述全面讨论了各种吸附剂(如天然材料、合成材料、农产品、生物聚合物和商业吸附剂)在提取镍、铜、铅、镉、砷和锌等金属离子方面所取得的进展及其吸附机制。吸附等温线表明吸附剂吸附量与浓度之间的关系。弗伦德利希等温线解释了溶质颗粒从溶液到吸附剂上的有效物理吸附,而朗缪尔等温线则说明了各种因素对吸附过程的影响。吸附动力学数据为反应途径、吸附反应机制和溶质吸收提供了有价值的见解。采用伪一级和伪二级模型来描述吸附动力学。所呈现的信息可用于开发生物基水处理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db16/8398132/d5fe4438f541/materials-14-04702-g001.jpg

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