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化学氧化对生物炭表面含氧化合物官能团和吸附行为的影响。

Effects of chemical oxidation on surface oxygen-containing functional groups and adsorption behavior of biochar.

机构信息

School of Environmental Science and Engineering, Yancheng Institute of Technology, Yancheng, 224051, China; School of The Environment and Safety Engineering, Jiangsu University, Zhenjiang, 212013, China.

School of Environmental Science and Engineering, Yancheng Institute of Technology, Yancheng, 224051, China.

出版信息

Chemosphere. 2018 Sep;207:33-40. doi: 10.1016/j.chemosphere.2018.05.044. Epub 2018 May 9.

Abstract

Biochar is a beneficial soil amendment but the changes in its surface properties during the aging process, especially the oxygen-containing functional groups and the associated adsorption behaviors, are not well documented. In this paper, the aged wheat straw biochar was simulated by chemical oxidation with HNO-HSO and NaOH-HO systems. Characterization results showed that carbon loss and oxygen incorporation ran throughout the aging process. Surface oxygen-containing functional groups were found to be increased in all treated biochars, especially for carboxyl. Much more developed mesopores were observed in aging biochar, specific surface area was increased by 126% for biochar treated with NaOH-HO, and 226% for biochar treated with 40% of HNO-HSO. Thermogravimetric analysis showed that the increasing oxygen-containing functional groups led to 14% and 30% mass loss by treating biochar with alkali and acid, respectively. The improved biochar surface through the increase of oxygen-containing functional groups enhanced the cadmium sorption capacity, and the sorption capacity increased by 21.2% in maximum. Roughed surface from oxidation was another reason for increasing cadmium adsorption. Results indicated that the adsorption performance of biochar on pollutant would be changed during aging process along with the changing surface properties.

摘要

生物炭是一种有益的土壤改良剂,但在老化过程中其表面性质的变化,特别是含氧官能团及其相关的吸附行为,尚未得到很好的记录。本文采用 HNO3-H2SO4 和 NaOH-H2O 体系对小麦秸秆生物炭进行化学氧化模拟老化。表征结果表明,碳的损失和氧的掺入贯穿老化过程。所有处理过的生物炭中都发现表面含氧官能团增加,特别是羧基。老化生物炭中观察到更多发达的中孔,NaOH-H2O 处理的生物炭比表面积增加了 126%,40% HNO3-H2SO4 处理的生物炭比表面积增加了 226%。热重分析表明,用碱和酸处理生物炭,分别增加了 14%和 30%的含氧量官能团导致质量损失。通过增加含氧官能团改善了生物炭的表面,从而提高了镉的吸附容量,最大吸附容量增加了 21.2%。氧化产生的粗糙表面也是增加镉吸附的另一个原因。结果表明,随着表面性质的变化,生物炭对污染物的吸附性能在老化过程中会发生变化。

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