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溶解有机碳对尿素处理过的松皮吸附重金属的影响。

The influence of dissolved organic carbon on sorption of heavy metals on urea-treated pine bark.

机构信息

School of Sustainable Development of Society and Technology, Mälardalen University, Box 883, SE-721 23, Västerås, Sweden.

出版信息

J Hazard Mater. 2010 Jan 15;173(1-3):689-96. doi: 10.1016/j.jhazmat.2009.08.149. Epub 2009 Sep 6.

Abstract

A previous study showed considerably higher metal adsorption by urea-treated pine bark (UTB) compared to non-treated bark (NTB) at metal adsorption from their individual relatively concentrated solutions. Comparison of the sorption characteristics of the two pine barks at low but environmentally relevant metal concentrations, and investigation of the influence of pH and dissolved organic carbon (DOC) on the sorption process are the aims of the present study. Sorption of Cu(2+), Ni(2+), Zn(2+) and Pb(2+) on pine bark of the species Pinus sylvestris was measured in multi-metal solutions in the presence and absence of DOC. In the absence of DOC, UTB gave lower residual metal concentrations (2-7 microg/l for copper, 1-5 microg/l for nickel, <0.05 microg/l for zinc and lead) in the range of initial concentrations up to 0.7 mg/l, compared to NTB (6-15 microg/l for copper, 2-24 microg/l for nickel, 2-9 microg/l for zinc, 2-3 microg/l for lead). In the presence of DOC, sorption of Zn, Ni and Pb decreased by up to 75% depending on the DOC concentration. Metal sorption on UTB is less sensitive to pH and more adsorbed metal ions are retained compared to NTB. The potential use of urea-treated bark for treatment of waste water containing DOC and low concentrations of metals is discussed.

摘要

先前的研究表明,与未经处理的树皮(NTB)相比,尿素处理的松皮(UTB)在从各自相对浓度较高的溶液中吸附金属时,吸附能力要强得多。本研究旨在比较两种松树皮在低浓度但与环境相关的金属浓度下的吸附特性,并研究 pH 值和溶解有机碳(DOC)对吸附过程的影响。在存在和不存在 DOC 的情况下,用多金属溶液测量了来自欧洲赤松的树皮对 Cu(2+)、Ni(2+)、Zn(2+)和 Pb(2+)的吸附。在不存在 DOC 的情况下,与 NTB(铜的 6-15μg/l、镍的 2-24μg/l、锌的 2-9μg/l、铅的 2-3μg/l)相比,UTB 在初始浓度高达 0.7mg/l 的范围内,给出了较低的残留金属浓度(铜的 2-7μg/l、镍的 1-5μg/l、锌和铅的<0.05μg/l)。在存在 DOC 的情况下,取决于 DOC 浓度,Zn、Ni 和 Pb 的吸附量减少了高达 75%。与 NTB 相比,UTB 上的金属吸附对 pH 值的敏感性较低,并且保留了更多的吸附金属离子。讨论了尿素处理过的树皮用于处理含有 DOC 和低浓度金属的废水的潜力。

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