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超声化学辅助法制备纳米ZnS及其对水中铜离子的吸附性能 被引量:1
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作者 刘国清 李友凤 +3 位作者 曾令玮 王占强 谭谈 曾坚贤 《化工进展》 EI CAS CSCD 北大核心 2017年第2期750-755,共6页
铜污染引发的环境问题严重影响着人类的生命健康。本文以Zn(NO_3)_2·6H_2O和Na_2S·9H_2O为原料,水为溶剂,通过超声化学辅助法制备出纳米ZnS,并将其应用于水中铜离子的吸附脱除。利用FTIR、XRD、SEM和N2物理吸附等手段进行表征... 铜污染引发的环境问题严重影响着人类的生命健康。本文以Zn(NO_3)_2·6H_2O和Na_2S·9H_2O为原料,水为溶剂,通过超声化学辅助法制备出纳米ZnS,并将其应用于水中铜离子的吸附脱除。利用FTIR、XRD、SEM和N2物理吸附等手段进行表征,研究了初始浓度、接触时间、处理温度、pH和竞争阳离子等对铜离子吸附容量的影响。结果表明,制得的纳米ZnS为单一立方相闪锌矿,颗粒呈不规则块状,孔道结构主要为纳米ZnS晶粒团聚形成的聚集孔,孔径分布较宽。该纳米ZnS表现出对水中铜离子良好的吸附性能,在吸附剂量200mg/L、铜离子初始浓度400mg/L、接触时间12h、处理温度25℃的条件下,饱和吸附容量高达629.8mg/L,水中Na^+和K^+对吸附性能无明显影响,且其对水中铜离子的脱除机理为离子交换与吸附的协同作用。 展开更多
关键词 纳米材料 硫化锌 超声化学辅助法 离子交换 吸附
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Structure and electrochemical performance of Cu singly doped and Cu/Al co-doped nano-nickel hydroxide 被引量:1
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作者 包杰 朱燕娟 +4 位作者 庄义环 许庆胜 赵汝冬 刘泳林 钟浩良 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第2期445-450,共6页
Nanometer Cu singly doped and Cu/Al co-doped nickel hydroxides were synthesized by ultrasonic-assisted precipitation method. Their crystal structure, particle size, morphology, tap density and electrochemical performa... Nanometer Cu singly doped and Cu/Al co-doped nickel hydroxides were synthesized by ultrasonic-assisted precipitation method. Their crystal structure, particle size, morphology, tap density and electrochemical performance were investigated. The results show that the samples have a-phase structure with narrow particle size distribution. Cu singly doped nano-Ni(OH)2 contains irregular particles, while Cu/Al co-doped nano-Ni(OH)2 displays a quasi-spherical shape and has a relatively higher tap density. Composite electrodes were prepared by mixing 8% (mass fraction) nanometer samples with commercial micro-size spherical nickel. The charge/discharge test and cyclic voltammetry results indicate that the electrochemical performance of Cu/Al co-doped nano-Ni(OH)2 is better than that of Cu singly doped nano-Ni(OH)2, the former's discharge capacity reaches 330 mA.h/g at 0.2C, 12 mA.h/g and 91 mA.h/g larger than that of Cu singly doped sample and pure spherical nickel electrode, respectively. Moreover, the proton diffusion coefficient of Cu/Al co-doped sample is 52.3% larger than that of Cu singly doped sample. 展开更多
关键词 nano-Ni(OH)2 ultrasonic-assisted precipitation doping electrochemical performance
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