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模拟合成人工腐殖质以高效去除汞。

Analog synthesis of artificial humic substances for efficient removal of mercury.

机构信息

Joint Laboratory of Northeast Agricultural University and Max Planck Institute of Colloids and Interfaces (NEAU-MPICI), Harbin, 150030, China.

Joint Laboratory of Northeast Agricultural University and Max Planck Institute of Colloids and Interfaces (NEAU-MPICI), Harbin, 150030, China; School of Water Conservancy and Civil Engineering, Northeast Agricultural University, Harbin, 150030, China.

出版信息

Chemosphere. 2020 Jul;250:126606. doi: 10.1016/j.chemosphere.2020.126606. Epub 2020 Mar 25.

Abstract

A cost-effective artificial humic substances (humic acid-modified biochar, HA-BCs) is fabricated by using conventional hydrothermal-assisted pyrolysis technique, and then is considered as a promising adsorbent material for removing mercury ions from aqueous solution. Artificial humic acid (A-HA), humic acid-modified biochar (HA-BCs) are analyzed by using SEM, EA, XRD, FTIR, XPS, and BET techniques. The removal efficiency of mercury ions was greater than 95% after reaching the adsorption equilibrium. Meanwhile, the adsorption kinetics coincided with the pseudo-second-order model and the isotherms for mercury ion sorption can be best interpreted using Freundlich isotherm model, with high regression coefficients (R = 0.967-0.990). Furthermore, the surface properties of HA-BCs before and after mercury adsorption are compared and evaluated, realizing that the mechanisms of removal of mercury ions on HA-BCs mainly include surface complexation with oxygen/nitrogen functional groups (-OH, -COOH and -NH) and formation of precipitation with CO and OH. Furthermore, the used HA-BCs can be regenerated via 0.05 mol/L KI solution and the adsorption capacity of mercury still reaches at 32.57 mg/g after four cyclic utilization.

摘要

一种经济高效的人工腐殖质物质(腐殖酸修饰生物炭,HA-BCs)是通过常规水热辅助热解技术制备的,然后被认为是一种很有前途的吸附剂材料,可以从水溶液中去除汞离子。人工腐殖酸(A-HA)、腐殖酸修饰生物炭(HA-BCs)采用 SEM、EA、XRD、FTIR、XPS 和 BET 技术进行分析。达到吸附平衡后,汞离子的去除效率大于 95%。同时,吸附动力学符合准二级模型,汞离子吸附的等温线可以用 Freundlich 等温线模型很好地解释,具有较高的回归系数(R=0.967-0.990)。此外,比较和评价了 HA-BCs 吸附汞前后的表面性质,实现了 HA-BCs 上汞离子去除的主要机制包括与氧/氮官能团(-OH、-COOH 和-NH)的表面络合以及与 CO 和 OH 的形成沉淀。此外,用过的 HA-BCs 可以通过 0.05 mol/L KI 溶液再生,在经过四次循环利用后,汞的吸附容量仍达到 32.57mg/g。

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