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活性炭负载离子改性及其去除水中氰离子的研究 被引量:10
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作者 张明祖 刘建 《黄金》 CAS 北大核心 2008年第6期51-54,共4页
文中提出了一种基于配位交换吸附去除水中氰离子的方法,并进行了试验研究。试验以活性炭为载体,通过对Cu2+,Ni2+的吸附及负载,实现对活性炭改性;经改性后的活性炭,对CN-有良好的吸附性能。试验结果表明,用改性后的活性炭处理水中的氰离... 文中提出了一种基于配位交换吸附去除水中氰离子的方法,并进行了试验研究。试验以活性炭为载体,通过对Cu2+,Ni2+的吸附及负载,实现对活性炭改性;经改性后的活性炭,对CN-有良好的吸附性能。试验结果表明,用改性后的活性炭处理水中的氰离子,能将水中CN-的质量浓度降低至国家排放标准0.5mg/L以下;测得改性活性炭对CN-的饱和吸附量可达到22mg/g左右,从而获得了一种新的固液分离除氰材料。改性活性炭对CN-的吸附是基于CN-与Cu2+,Ni2+的配位性质,因此不受水溶液中其他共存离子影响,具有较高的选择吸附性。 展开更多
关键词 氰化物 活性炭 吸附 负载Cu^2+ 负载Ni^2+
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Graphene-loaded nickel−vanadium bimetal oxides as hydrogen pumps to boost solid-state hydrogen storage kinetic performance of magnesium hydride
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作者 Dong-qiang GAO Fu-ying WU +4 位作者 Zhi ZHANG Zi-chuan LU Ren ZHOU Hu ZHAO Liu-ting ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第8期2645-2657,共13页
To modify the thermodynamics and kinetic performance of magnesium hydride(MgH_(2))for solid-state hydrogen storage,Ni_(3)V_(2)O_(8)-rGO(rGO represents reduced graphene oxide)and Ni_(3)V_(2)O_(8)nanocomposites were pre... To modify the thermodynamics and kinetic performance of magnesium hydride(MgH_(2))for solid-state hydrogen storage,Ni_(3)V_(2)O_(8)-rGO(rGO represents reduced graphene oxide)and Ni_(3)V_(2)O_(8)nanocomposites were prepared by hydrothermal and subsequent heat treatment.The beginning hydrogen desorption temperature of 7 wt.%Ni_(3)V_(2)O_(8)-rGO modified MgH_(2)was reduced to 208℃,while the additive-free MgH_(2)and 7 wt.%Ni_(3)V_(2)O_(8)doped MgH_(2)appeared to discharge hydrogen at 340 and 226℃,respectively.A charging capacity of about 4.7 wt.%H_(2)for MgH_(2)+7 wt.%Ni_(3)V_(2)O_(8)-rGO was achieved at 125℃ in 10 min,while the dehydrogenated MgH_(2)took 60 min to absorb only 4.6 wt.%H_(2)at 215℃.The microstructure analysis confirmed that the in-situ generated Mg_(2)Ni/Mg_(2)N_(i)H_(4) and metallic V contributed significantly to the enhanced performance of MgH_(2).In addition,the presence of rGO in the MgH_(2)+7 wt.%Ni_(3)V_(2)O_(8)-rGO composite reduced particle aggregation tendency of Mg/MgH_(2),leading to improving the cyclic stability of MgH_(2)during 20 cycles. 展开更多
关键词 hydrogen storage properties MgH_(2) graphene-loaded Ni−V bimetal oxides catalytic mechanism
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