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1)  electrosorption
电吸附
1.
Nanometer porous material carbon aerogels and their application in electrosorption;
纳米多孔材料炭气凝胶及其在电吸附领域的应用
2.
Electrosorption of NaCl solution by phenolic-furfural based carbon aerogels;
酚醛-糠醛基炭气凝胶对NaCl溶液的电吸附行为
3.
The influence of pore size distribution of carbon aerogel electrodes and solution concentration on electrosorption desalination;
孔径分布和溶液浓度对碳气凝胶电极电吸附除盐性能的影响分析
2)  electro-adsorption
电吸附
1.
Effect of acidification-stripping removing bicarbonate on the performance of electro-adsorption equipment
酸化吹脱去除重碳酸盐对电吸附设备性能的影响
3)  ElectroSorb
电吸附
1.
Principle and Makeup of ElectroSorb Technology in Water Treatment;
电吸附水处理技术(EST)的原理及构成
2.
Treat and reuse the refinery wastewater by using ElectroSorb.
采用电吸附技术对炼油污水进行回用处理,中试结果证明该技术具有较好的抗石油类有机物污染的能力。
3.
An electrosorb desalting apparatus was employed in the present experiment to perform a pilot experiment on desalting of the effluent from Sewage Plant of iron and steel industry with a treating capacity of 2.
本试验采用电吸附除盐设备,对某钢铁公司污水厂出水进行除盐中试试验,处理能力为2。
4)  electrostatic adsorption
静电吸附
1.
Removal mechanism may include biological adsorption, electrostatic adsorption and chemical precipitation.
结果表明:用活性污泥去除钙离子可以获得较好的效果,去除量可达19mg/g,并且去除速度很快,5min即可完成;且去除机理可能有生物吸附、静电吸附和化学沉淀;适当的剪切力可以加速吸附反应的进程,证实了流体力化学效应的的存在。
2.
The electrostatic adsorption of AIBA onto nano-SiO2 is influenced by pH value of the dispersion system, and an upper adsorption limit of AIBA was confirmed by centrifugation and UV measurement.
对纳米SiO2粒子静电吸附2,2′-偶氮(2-脒基丙烷)二氯化氢(AIBA)引发剂,进而在其表面引发甲基丙烯酸甲酯乳液聚合而制备聚甲基丙烯酸甲酯(PMMA)/纳米SiO2复合粒子进行了研究。
3.
Layer-by-layer self-assembly thin films on silicon wafers were prepared by electrostatic adsorption from alternate layers of diazoresin and metal-containing nanoparticles.
利用层间的静电吸附作用,重氮树脂和不同种类的含金属纳米粒子被依次吸附到硅片表面形成层层自组装膜。
5)  Electro-adsorbent
电吸附剂
6)  adsorption electrolysis
吸附电解
1.
This paper studies the disposal of dyeing and printing wastewater with additive JFC using adsorption electrolysis oxidation method,and gets suitable technological parameters such as current 500mA,wastewater retention time 30min, pH 6.
采用吸附电解氧化法对印染助剂JFC废水的处理进行了研究 ,并获得适宜的工艺参数 :电流强度为 5 0 0mA ,废水停留时间为 30min ,pH的 6。
2.
This paper studied the disposal of dyeingwastewater using adsorption electrolysis method,and geted the suitable parameters such as current 400 mA,wastewate4r retention time 25 min,pH 6.
试验表明:吸附电解氧化法能够使印染废水的CODcr的去除率提高,使活性炭颗粒的再生周期延长。
补充资料:特性吸附与半胶束吸附


特性吸附与半胶束吸附
specifical adsorption and hemi-micelle adsorption

texing xifu yu banJ旧oshu xifu特性吸附与半胶束吸附(speeifieal adsorp-tion and hemi一mieelle adsorption)矿物一水界面的吸附的两种形式。特性吸附是因矿物表面与溶液中某种组分(离子或分子)有特殊的亲和力而产生的吸附,也称特殊吸附。特性吸附不仅可以改变电位的数量而且还可以改变电位的符号。例如,刚玉(A12O3)在NaZSO‘或RSO;Na(烷基硫酸钠)溶液中,电动电位随溶液浓度的增大由正值逐渐减小,直至变为负值,说明刚玉对50矛一或RSO不离子有特殊的吸引力。半胶束吸附是水溶液中的表面活性剂在矿物表面产生的吸附,当吸附量达到一定值以后,由于烃基的缔合作用,表面活性剂的离子或分子在矿物表面上形成紧密的吸附层,这类似于溶液中形成的胶束结构,但所形成的“胶束”与溶液中形成的胶束不同,只有二维空间,故称这类吸附为半胶束吸附。矿物表面对胺类捕收剂的吸附,当胺的浓度较大时,常可以产生半胶束吸附。 (龚焕高)
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