H3PO4活化向日葵秸秆制备活性炭及其在酸性品红染料吸附中的应用

IF 3.7 Q1 WATER RESOURCES
Wen-de Zhao , Li-ping Chen , Yan Jiao
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引用次数: 6

摘要

随着循环经济的发展,利用农业废弃物制备生物质材料去除污染物已成为研究热点。本研究以向日葵秸秆(SS)为原料,以H3PO4为活化剂,采用一步活化法制备了向日葵秸秆活性炭(SSAC)。以浸渍比(SS质量与H3PO4质量)为1:1、1:2、1:3、1:5制备四种SSAC,分别对应SSAC1、SSAC2、SSAC3、SSAC4。研究了四种SSAC对水中酸性品红的吸附过程。结果表明,浸渍率对材料的结构有显著影响。浸渍比的增大增大了SSAC的比表面积和孔体积,提高了AF的吸附能力,但浸渍比过大则会导致SSAC的比表面积下降。浸渍比为1:3的SSAC3比表面积最大,为1 794.01 m2/g;浸渍比为1:5的SSAC4微孔隙率最小,为0.0527 cm3/g,孔隙体积最大,为2.549 cm3/g。四种SSAC对AF的吸附动力学均符合准二级吸附动力学模型。Langmuir等温线模型适合描述SSAC3和SSAC4, Freundlich等温线模型适合描述SSAC1和SSAC2。热力学结果表明,吸附过程是自发的吸热过程。在303 K下,SSAC4对200 mg/L AF的去除率为97.73%,最大吸附量为2 763.36 mg/g,是4种SSAC中最高的。本研究表明,以h3po4为基础一步活化法制备的SAAC是一种绿色高效的碳材料,在处理含染料废水方面具有重要的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation of activated carbon from sunflower straw through H3PO4 activation and its application for acid fuchsin dye adsorption

With the development circular economy, the use of agricultural waste to prepare biomass materials to remove pollutants has become a research hotspot. In this study, sunflower straw activated carbon (SSAC) was prepared by the one-step activation method, with sunflower straw (SS) used as the raw material and H3PO4 used as the activator. Four types of SSAC were prepared with impregnation ratios (weight of SS to weight of H3PO4) of 1:1, 1:2, 1:3, and 1:5, corresponding to SSAC1, SSAC2, SSAC3, and SSAC4, respectively. The adsorption process of acid fuchsin (AF) in water using the four types of SSAC was studied. The results showed that the impregnation ratio significantly affected the structure of the materials. The increase in the impregnation ratio increased the specific surface area and pore volume of SSAC and improved the adsorption capacity of AF. However, an impregnation ratio that was too large led to a decrease in specific surface area. SSAC3, with an impregnation ratio of 1:3, had the largest specific surface area (1 794.01 m2/g), and SSAC4, with an impregnation ratio of 1:5, exhibited the smallest microporosity (0.052 7 cm3/g) and the largest pore volume (2.549 cm3/g). The adsorption kinetics of AF using the four types of SSAC agreed with the quasi-second-order adsorption kinetic model. The Langmuir isotherm model was suitable to describe SSAC3 and SSAC4, and the Freundlich isotherm model was appropriate to describe SSAC1 and SSAC2. The result of thermodynamics showed that the adsorption process was spontaneous and endothermic. At 303 K, SSAC4 showed a removal rate of 97.73% for 200-mg/L AF with a maximum adsorption capacity of 2 763.36 mg/g, the highest among the four types of SSAC. This study showed that SAAC prepared by the H3PO4-based one-step activation method is a green and efficient carbon material and has significant application potential for the treatment of dye-containing wastewater.

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来源期刊
CiteScore
6.60
自引率
5.00%
发文量
573
审稿时长
50 weeks
期刊介绍: Water Science and Engineering journal is an international, peer-reviewed research publication covering new concepts, theories, methods, and techniques related to water issues. The journal aims to publish research that helps advance the theoretical and practical understanding of water resources, aquatic environment, aquatic ecology, and water engineering, with emphases placed on the innovation and applicability of science and technology in large-scale hydropower project construction, large river and lake regulation, inter-basin water transfer, hydroelectric energy development, ecological restoration, the development of new materials, and sustainable utilization of water resources.
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