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芦苇生物炭的构建及其吸附水中四环素性能研究
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作者 董昊 郭季航 +4 位作者 杭行平 倪从兵 赵诣 宋玮 陈帅 《应用化工》 北大核心 2025年第8期2093-2098,共6页
以芦苇秸秆为原材料,磷酸为活化剂,在管式炉内按一步热解与两步热解方式制备芦苇生物炭,探究磷酸的最佳浸渍浓度及两种热解方法制备的改性芦苇生物炭产率、表面结构、官能团种类、元素分布、化学性质与吸附四环素(TC)性能的差异,通过吸... 以芦苇秸秆为原材料,磷酸为活化剂,在管式炉内按一步热解与两步热解方式制备芦苇生物炭,探究磷酸的最佳浸渍浓度及两种热解方法制备的改性芦苇生物炭产率、表面结构、官能团种类、元素分布、化学性质与吸附四环素(TC)性能的差异,通过吸附模型的拟合分析,探讨对TC的吸附机制。结果表明,使用一步热解法将芦苇秸秆浸渍在10 mol/L的磷酸溶液中并在热解温度为500℃的条件下制备的改性芦苇生物炭各方面性能较为优异,产率高达80%,比表面积为1 529.03 m^(2)/g,具有高度的芳香化特性;在2 h内对200 mL浓度为30 mg/L的TC去除率达94%,吸附机制与准二级动力学模型相吻合,吸附等温线遵循Langmuir方程。 展开更多
关键词 芦苇 磷酸活化 生物炭 四环素 吸附模型拟合
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Removal of aqueous Ni(Ⅱ) with carbonized leaf powder: Kinetics and equilibrium 被引量:3
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作者 唐强 王恒宇 +1 位作者 唐晓武 王艳 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第4期778-786,共9页
Nickel is a heavy metal which has the potential threaten to human's health and attracts public concern recently. The carbonized leaf powder is expected as suitable adsorbent for Ni(II) removal became of the composi... Nickel is a heavy metal which has the potential threaten to human's health and attracts public concern recently. The carbonized leaf powder is expected as suitable adsorbent for Ni(II) removal became of the composition of some beneficial groups. In this work, carbonized leaf powder was evaluated for its adsorption performance towards Ni(II). According to the results, adsorbent component, dosage, initial solute concentration, solution pH, temperature and contact time can significantly affect the efficiency of Ni(II) removal. Sips model fits the test results best, and the adsorption capacity towards Ni(II) is determined around 37.62 mg/g. The thermodynamic behaviors reveal the endothermic and spontaneous nature of the adsorption. The free adsorption energy (fluctuate around 8 kJ/mol) predicted by D-R model indicates that the adsorption capacity originated from both physical and chemical adsorption. Room temperature (15-25 ℃) is suitable for Ni(II) removal as well as low energy consumption for temperature enhancement. Further conclusions about the mechanism of chemical adsorption are obtained through analysis of the FT-IR test and XRD spectra, which indicates that the adsorption process occurs predominantly between amine, carbonate, phosphate and nickel ions. 展开更多
关键词 carbonized leaf powder Ni(lI) physical adsorption chemical adsorption mechanism
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