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高硫无烟煤制备柱状活性炭对Cu^(2+)的吸附规律及影响机制

Adsorption law and influencing mechanism of Cu^(2+)by columnar activated carbon prepared from high-sulfur anthracite
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摘要 高硫无烟煤燃烧时会产生大量硫氧化物,破坏大气环境,随着环保要求日益严格,需寻求高硫无烟煤由传统燃料向高端材料发展的途径。由于活性炭制备与应用在特定领域尚无技术指标,造成制备目标模糊,活性炭定向制备问题亟需解决。采用晋城地区高硫无烟煤,通过物理活化法制备,并采用磷酸浸渍处理,得到了比表面积1066.42 m^(2)/g(AC-1)和1568.79 m^(2)/g(AC-2)的2种活性炭。采用FTIR、XPS、SEM等方法进行表征。结果表明,AC-1的最几可孔径为1.688 nm,AC-2的最几可孔径为0.718 nm,前者具有更发达的介孔结构。以Cu^(2+)为吸附质研究2种活性炭的吸附性能。结果表明,AC-1的吸附性能显著优于AC-2,吸附行为由孔径分布和表面官能团含量2个因素共同决定。最佳吸附条件为pH=4,温度35℃,活性炭投加量0.30 g,吸附时间2 h。动力学研究表明2种活性炭对Cu^(2+)的吸附过程均由化学吸附而不是颗粒内扩散控制。吸附等温线拟合结果表明Langmuir等温模型不适用于AC-2,这可能与其以物理吸附为主导有关。本研究讨论活性炭孔隙分布和表面官能团含量对其吸附性能的影响,为高硫无烟煤定向制备具有良好水相重金属离子去除能力的活性炭提供指导。 high-sulfur anthracite generates a large amount of sulfur oxides during combustion,causing serious damage to the atmospheric environment.It is necessary to seek a path for its development from traditional fuel to high-end materials with increasingly strict environmental requirements.Due to the lack of technical indicators for the preparation and application of activated carbon in specific fields,the preparation goals are unclear,and the targeted preparation of activated carbon is an urgent issue to be addressed.In this study,two types of activated carbon with specific surface areas of 1066.42 m^(2)/g(AC-1)and 1568.79 m^(2)/g(AC-2)were obtained by using high-sulfur smokeless coal from Jincheng area,prepared by physical activation and phosphoric acid impregnation.Characterization was performed using FTIR,XPS,SEM,and other methods.The results show that the mesopore volume of AC-1 is 1.688 nm,while that of AC-2 is 0.718 nm,indicating that the former has a more developed mesoporous structure.The adsorption performance of two activated carbons using Cu^(2+)as the adsorbate was studied.The results indicate that the adsorption performance of AC-1 is significantly superior to that of AC-2,and the adsorption behavior is jointly determined by pore size distribution and surface functional group content.The optimal adsorption conditions are found to be pH=4,temperature at 35℃,activated carbon dosage of 0.30 g,and adsorption time of 2 hours.Kinetic studies reveal that the adsorption process of both activated carbons for Cu^(2+)is chemisorption rather than intraparticle diffusion-controlled.The fitting results of the adsorption isotherms indicate that the Langmuir isotherm model is not applicable to AC-2,possibly due to its predominance of physical adsorption.In this study,the influence of pore distribution and surface functional group content on the adsorption performance was discussed,providing guidance for the targeted preparation of activated carbon with good water-phase heavy metal ion removal capability from high-sulfur
作者 赵金柯 郭子一 段晨龙 黄冬艳 董婷玉 王皓雪 周恩会 ZHAO Jinke;GUO Ziyi;DUAN Chenlong;HUANG Dongyan;DONG Tingyu;WANG Haoxue;ZHOU Enhui(Sun Yueqi Honors College,China University of Mining&Technology,Xuzhou 221116,China;School of Chemical Engineering&Technology,China University of Mining&Technology,Xuzhou 221116,China;School of Economics and Management,China University of Mining&Technology,Xuzhou 221116,China)
出处 《洁净煤技术》 CAS CSCD 北大核心 2024年第1期124-133,共10页 Clean Coal Technology
基金 国家自然科学基金杰出青年基金资助项目(52125403) 国家重点研发计划青年科学家资助项目(2022YFC2905900)。
关键词 高硫无烟煤 煤基活性炭 孔隙分布 铜离子净化 吸附机理 high sulfur anthracite coal-based activated carbon pore distribution copper ion purification adsorption mechanism
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