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不同酸改性炼焦煤对喹啉吸附的影响

Effect of Different Acid-Modified Coking Coals on Quinoline Adsorption.

作者信息

Xu Hongxiang, Wang Penghui, Ning Kejia, Deng Jiushuai, Zhuo Qiming, Liu Guowei

机构信息

School of Chemical & Environmental Engineering, Engineering Research Center for Mine and Municipal Solid Waste Recycling, China University of Mining and Technology (Beijing), Beijing 100083, China.

出版信息

ACS Omega. 2019 Nov 27;4(24):20503-20508. doi: 10.1021/acsomega.9b02213. eCollection 2019 Dec 10.

Abstract

The adsorption of quinoline from wastewater by coking coal (AC-1), HCl-modified coking coal (AC-2), HNO-modified coking coal (AC-3), HF-modified coking coal (AC-4), and HSO-modified coking coals (AC-5) was investigated in this paper. The effects of acid-modified concentration, modification time, and adsorption time versus quinoline removal rate were studied by batch experiments. The quinoline concentration was measured by UV spectrophotometry, the average pore size and specific surface area of coking coal before and after modification were characterized through static nitrogen adsorption, the mineral composition of coking coal was tested by X-ray diffraction, the surface functional groups were tested by Fourier transform infrared spectroscopy, and the surface topography was tested using a scanning electron microscope. The experimental results showed that the adsorption capacity of coking coals was the best when both the modification time was 120 min and the acid-modified concentration was 0.1 mol·L and the quinoline removal rate reaches the highest when the adsorption time was 120 min. The specific surface area of AC-2 increased from 2.898 to 3.637 m·g, and the removal rate of quinoline increased from 77.64 to 90.61%. Acids reacted with inorganic mineral impurities within coking coal such as hydrogen vanadium phosphate hydrate, which caused an increase in the specific surface area. A new peak appeared in the Fourier transform infrared spectroscopy pattern at the wavenumber 2300 cm. The surface of coking coal modified by acids was rougher than that of AC-1. The adsorption capacity of coking coal was improved after modification, and modified coking coals have the highest potential as low-cost adsorbents for quinoline removal.

摘要

本文研究了焦煤(AC - 1)、盐酸改性焦煤(AC - 2)、硝酸改性焦煤(AC - 3)、氢氟酸改性焦煤(AC - 4)和硫酸改性焦煤(AC - 5)对废水中喹啉的吸附情况。通过批量实验研究了酸改性浓度、改性时间和吸附时间对喹啉去除率的影响。采用紫外分光光度法测定喹啉浓度,通过静态氮吸附表征改性前后焦煤的平均孔径和比表面积,用X射线衍射测试焦煤的矿物组成,用傅里叶变换红外光谱测试表面官能团,并用扫描电子显微镜测试表面形貌。实验结果表明,改性时间为120 min且酸改性浓度为0.1 mol·L时,焦煤的吸附性能最佳;吸附时间为120 min时,喹啉去除率最高。AC - 2的比表面积从2.898增加到3.637 m²·g,喹啉去除率从77.64%提高到90.61%。酸与焦煤中的无机矿物杂质如水合氢钒磷酸盐发生反应,导致比表面积增加。傅里叶变换红外光谱图在波数2300 cm⁻¹处出现一个新峰。酸改性后的焦煤表面比AC - 1更粗糙。改性后焦煤的吸附性能得到改善,改性焦煤作为低成本喹啉去除吸附剂具有最高潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/562c/6906776/1e0ad7ed9fbb/ao9b02213_0010.jpg

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