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制备用于协同增强共去除铜(II)和铬(VI)的污泥-蓝藻复合碳

Preparation of sludge-cyanobacteria composite carbon for synergistically enhanced co-removal of Cu(II) and Cr(VI).

作者信息

Li Lixin, Lv Ying, Jia Chao, Yin Dawei, Dong Zilong, Zhan Zhaoshun, Han Jiazhen, Zhang Jun

机构信息

School of Environment and Chemical Engineering, Heilongjiang University of Science and Technology, Harbin, 150022, China.

School of Environment and Chemical Engineering, Heilongjiang University of Science and Technology, Harbin, 150022, China.

出版信息

Chemosphere. 2023 Apr;320:138043. doi: 10.1016/j.chemosphere.2023.138043. Epub 2023 Feb 2.

Abstract

Traditional sludge disposal is currently restricted by the risk of secondary pollution. Sludge carbon material has gained widespread attention because of its low cost and environmentally sustainable properties. However, owing to the high ash content and low-energy density of sludge, sludge pyrolysis alone has certain limitations, and the performance of carbon materials needs to be improved. Herein, a sludge-cyanobacteria composite carbon (SCC) was easily synthesized, and the adsorption process of Cu(II) and Cr(VI) by SCC was examined. SCC-700-2-50% exhibited a high S (1047.54 m/g) and developed pore structure rich in functional groups (such as -NH, -OH, and C-O). The combination of pore structure and functional groups improved the adsorption performance of SCC. The adsorption processes exhibited a synergistic effect in a binary system: the q of Cu(II) and Cr(VI) were 386 mg/g and 341 mg/g, respectively, and the selectivity of Cu(II) adsorption by SCC was greater than Cr(VI). The adsorption process, examined by SEM-EDS, FTIR, and XPS analysis, indicated that Cu(II) as a cationic interface strengthens Cr(VI) adsorption through electrostatic interaction, and the anion Cr(VI) created a valid electrostatic shield against the electrostatic repulsion between H and Cu(II), facilitating Cu(II) adsorption. SCC had great reusability: Cu(II) and Cr(VI) adsorption capacity were 90% and 84%, of the initial adsorption capacity, respectively, after six cycles. This study demonstrates the prospect of SCC as a valid adsorbent for multiple heavy metal contaminations removal.

摘要

传统的污泥处置目前受到二次污染风险的限制。污泥碳材料因其低成本和环境可持续性而受到广泛关注。然而,由于污泥的高灰分含量和低能量密度,仅污泥热解存在一定局限性,碳材料的性能有待提高。在此,一种污泥 - 蓝藻复合碳(SCC)被轻松合成,并研究了SCC对Cu(II)和Cr(VI)的吸附过程。SCC - 700 - 2 - 50%表现出高比表面积(1047.54 m²/g)和富含官能团(如 -NH、-OH和C - O)的发达孔隙结构。孔隙结构和官能团的结合提高了SCC的吸附性能。吸附过程在二元体系中表现出协同效应:Cu(II)和Cr(VI)的吸附量分别为386 mg/g和341 mg/g,且SCC对Cu(II)的吸附选择性大于Cr(VI)。通过扫描电子显微镜 - 能谱分析(SEM - EDS)、傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)分析研究吸附过程表明,作为阳离子界面的Cu(II)通过静电相互作用增强Cr(VI)的吸附,而阴离子Cr(VI)对H和Cu(II)之间的静电排斥产生有效的静电屏蔽,促进Cu(II)的吸附。SCC具有良好的可重复使用性:经过六个循环后,Cu(II)和Cr(VI)的吸附容量分别为初始吸附容量的90%和84%。本研究证明了SCC作为一种有效吸附剂用于去除多种重金属污染物的前景。

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