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不同改性方法对稻草、椰壳和竹制生物炭吸附锰的影响

Effect of Different Modification Methods on the Adsorption of Manganese by Biochar from Rice Straw, Coconut Shell, and Bamboo.

作者信息

Chen Guoliang, Viengvilay Khamphouvanh, Yu Weijian, Mao Teng, Qu Zhihui, Liang Bixin, Chen Zhang, Li Zhixian

机构信息

School of Resource & Environment and Safety Engineering, Hunan University of Science and Technology, Xiangtan 411201, China.

Hunan Province Key Laboratory of Coal Resources Clean-Utilization and Mine Environment Protection, Hunan University of Science and Technology, Xiangtan 411201, China.

出版信息

ACS Omega. 2023 Jul 26;8(31):28467-28474. doi: 10.1021/acsomega.3c02685. eCollection 2023 Aug 8.

Abstract

The adsorption capacity of pristine biochar without modification is usually low. In this experiment, we comprehensively evaluated the adsorption of Mn(II) by biochar with different modification methods from different biomass. The biochar from rice straw, coconut shell, and bamboo was produced by pyrolysis at 600 °C under nitrogen and then modified with HNO, NaOH, and NaS, respectively. The results showed that the adsorption capacities of these modified biochar samples were in the order Biochar-NaOH > Biochar-NaS > Biochar-HNO. Among the three modification methods, biochar modified with NaOH is the optimum for the adsorption of Mn(II). However, the same method of modification has different effects on different biomass feedstocks. Rice straw: R-C > R-NaOH-C > R-NaS-C > R-HNO-C; coconut shell: C-NaOH-C > C-NaS-C > C-HNO-C > C-C; bamboo: B-NaOH-C > B-NaS-C > B-C > B-HNO-C. At the pH of 5 and 30 °C, R-C, C-NaOH-C, and B-NaOH-C showed the highest maximum adsorption capacity for Mn(II). Equilibrium data were evaluated by Langmuir, Freundlich, and Temkin isotherm models, and the results suggested that the Langmuir model is the most suitable to expound the adsorption behavior of Mn(II) on R-C, C-NaOH-C, and B-NaOH-C. Overall, the results from this work suggest that the key for preparing biochar adsorbents with high capacity is to choose the appropriate biomass feedstock and modification method.

摘要

未经改性的原始生物炭的吸附容量通常较低。在本实验中,我们全面评估了来自不同生物质的采用不同改性方法的生物炭对Mn(II)的吸附情况。稻草、椰壳和竹子制成的生物炭在氮气氛围下于600℃热解制备而成,然后分别用HNO、NaOH和NaS进行改性。结果表明,这些改性生物炭样品的吸附容量顺序为:生物炭-NaOH > 生物炭-NaS > 生物炭-HNO。在这三种改性方法中,用NaOH改性的生物炭对Mn(II)的吸附效果最佳。然而,相同的改性方法对不同的生物质原料有不同的影响。稻草:R-C > R-NaOH-C > R-NaS-C > R-HNO-C;椰壳:C-NaOH-C > C-NaS-C > C-HNO-C > C-C;竹子:B-NaOH-C > B-NaS-C > B-C > B-HNO-C。在pH为5和30℃时,R-C、C-NaOH-C和B-NaOH-C对Mn(II)的最大吸附容量最高。用Langmuir、Freundlich和Temkin等温线模型对平衡数据进行评估,结果表明Langmuir模型最适合阐述Mn(II)在R-C、C-NaOH-C和B-NaOH-C上的吸附行为。总体而言,这项工作的结果表明,制备高容量生物炭吸附剂的关键在于选择合适的生物质原料和改性方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb92/10413457/bbf5a0b08e7c/ao3c02685_0002.jpg

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