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净水器滤芯材料的制备与性能测试 被引量:2
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作者 李宪平 《湖南人文科技学院学报》 2006年第3期34-35,67,共3页
利用活性炭的物理化学吸附性质和活性炭作为一种分子筛和载体的性能,研制了活性炭氢(AC-H),活性炭碘三离子(AC-I),活性炭-EDTA(AC-EDTA)等材料,并按照一定顺序组装成滤芯,对流经当地的涟水河与孙水河的水直接进行处理。结果表明:这种新... 利用活性炭的物理化学吸附性质和活性炭作为一种分子筛和载体的性能,研制了活性炭氢(AC-H),活性炭碘三离子(AC-I),活性炭-EDTA(AC-EDTA)等材料,并按照一定顺序组装成滤芯,对流经当地的涟水河与孙水河的水直接进行处理。结果表明:这种新型滤芯能高效地去除水中溶解性有机物、重金属离子、阴离子洗涤剂等等有害有毒物质,杀灭水中细菌,获得安全、优质的饮用水。 展开更多
关键词 活性炭 活性炭碘三离子 活性炭-edta
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Regeneration of activated carbon adsorbed EDTA by electrochemical method 被引量:7
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作者 尤翔宇 柴立元 +3 位作者 王云燕 苏艳蓉 赵娜 舒余德 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第3期855-860,共6页
Activated carbon after saturated adsorption of EDTA was used as particle electrode in a three-dimensional electrode reactor to treat EDTA-containing wastewater.Electrochemical method was used to regenerate activated c... Activated carbon after saturated adsorption of EDTA was used as particle electrode in a three-dimensional electrode reactor to treat EDTA-containing wastewater.Electrochemical method was used to regenerate activated carbon after many times of electrolysis.Based on the analysis of infrared spectra of activated carbon after adsorption and repeated electrolysis,EDTA was degraded into glycine,and then non-catalytic activated associated complex was formed with N—H bond on the activated carbon.The catalytic ability of the activated carbon vanished and the EDTA degradation efficiency was dropped.Activated carbon could be effectively regenerated by electrochemical method in the three-dimensional reactor.Effects of electric current,conductivity and pH on activated carbon regeneration were investigated,and the optimum conditions were concluded as follows:100-300 mA of current intensity,1.39 mS/cm of electric conductivity,60 min of electrolysis time and pH 6.0-8.0.Under the optimized conditions,the activity of the activated carbon can be recovered and the residual total organic carbon(TOC) was below 10 mg/L(the initial TOC was 200 mg/L) in the three-dimensional electrode reactor. 展开更多
关键词 activated carbon electrochemical regeneration three-dimensional electrode EDTA
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