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天然有机材料等电点的测定。

Determination of point of zero charge of natural organic materials.

机构信息

RIME-Research Institute on Mines and Environment, Montréal, Canada.

Department of Civil, Geological, and Mining Engineering-École Polytechnique de Montréal, Montréal, QC, H3C 3A7, Canada.

出版信息

Environ Sci Pollut Res Int. 2018 Mar;25(8):7823-7833. doi: 10.1007/s11356-017-1115-7. Epub 2018 Jan 2.

DOI:10.1007/s11356-017-1115-7
PMID:29294236
Abstract

This study evaluates different methods to determine points of zero charge (PZCs) on five organic materials, namely maple sawdust, wood ash, peat moss, compost, and brown algae, used for the passive treatment of contaminated neutral drainage effluents. The PZC provides important information about metal sorption mechanisms. Three methods were used: (1) the salt addition method, measuring the PZC; (2) the zeta potential method, measuring the isoelectric point (IEP); (3) the ion adsorption method, measuring the point of zero net charge (PZNC). Natural kaolinite and synthetic goethite were also tested with both the salt addition and the ion adsorption methods in order to validate experimental protocols. Results obtained from the salt addition method in 0.05 M NaNO were the following: 4.72 ± 0.06 (maple sawdust), 9.50 ± 0.07 (wood ash), 3.42 ± 0.03 (peat moss), 7.68 ± 0.01 (green compost), and 6.06 ± 0.11 (brown algae). Both the ion adsorption and the zeta potential methods failed to give points of zero charge for these substrates. The PZC of kaolinite (3.01 ± 0.03) was similar to the PZNC (2.9-3.4) and fell within the range of values reported in the literature (2.7-4.1). As for the goethite, the PZC (10.9 ± 0.05) was slightly higher than the PZNC (9.0-9.4). The salt addition method has been found appropriate and convenient to determine the PZC of natural organic substrates.

摘要

本研究评估了五种有机材料(枫木屑、草木灰、泥炭藓、堆肥和褐藻)的零电荷点(PZC)的不同测定方法,这些有机材料用于受污染中性排水的被动处理。PZC 提供了有关金属吸附机制的重要信息。使用了三种方法:(1)盐添加法,测量 PZC;(2)动电电位法,测量等电点(IEP);(3)离子吸附法,测量零净电荷点(PZNC)。天然高岭土和合成针铁矿也分别使用盐添加法和离子吸附法进行了测试,以验证实验方案。在 0.05 M NaNO3 中,盐添加法得到的结果如下:4.72±0.06(枫木屑)、9.50±0.07(草木灰)、3.42±0.03(泥炭藓)、7.68±0.01(绿肥)和 6.06±0.11(褐藻)。离子吸附法和动电电位法均无法为这些基质提供零电荷点。高岭土的 PZC(3.01±0.03)与 PZNC(2.9-3.4)相似,且落在文献报道的范围内(2.7-4.1)。对于针铁矿,PZC(10.9±0.05)略高于 PZNC(9.0-9.4)。盐添加法已被发现适合且方便用于测定天然有机基质的 PZC。

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