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1)  tiny electrolytic cell
复合电解
1.
We design and research a new technology: electrolytic and tiny electrolytic cell combined processing, and we find the new technology as .
电化学法主要分为电解法和内电解法,在本课题中我们研究了电解法和内电解法对染色配水和实际印染废水的处理机理及处理效果;在此基础上,我们设计了新的处理印染废水方法——电解—内电解复合电解法;经研究发现复合电解法具有投资小、上马快、设备简单、处理成本低、操作管理方便等优点。
2)  composite electrolyte
复合电解质
1.
Synthesis and protonic conductivity of La_(0.9)Sr_(0.1)Ga_(0.9)Mg_(0.1)O_(3-α)-NaCl composite electrolyte;
La_(0.9)Sr_(0.1)Ga_(0.9)Mg_(0.1)O_(3-α)-NaCl复合电解质的合成及其质子导电性研究
2.
Proton-conductive composite electrolytes consisting of xNH4PO3-SiO2(x=1,2,4) were synthesized by a sol-gel method.
复合电解质的相结构分析表明,NH_4PO_3和SiO_2在溶胶凝胶法制备过程中没有发生化学反应;复合电解质的电导率随着NH_4PO_3含量增大而提高,并与NH_4PO_3的形态相关。
3.
Mixing some ionic conductors and oxide ceramic together to form composite electrolyte, at most cases,can enhance materials' conductivity.
将某些离子导体与氧化物陶瓷结合起来构成复合电解质,在大多数情况下可提高材料的电导率。
3)  Compound Electrolyte
复合电解液
4)  Polyelectrolyte complex
聚电解质复合物
1.
Polyelectrolyte complex formed from diazoresin(DR) as cationic polyelectrolyte and alkaline hydrolysate of styrenemaleic anhydride copolymer(PSMNa) as anionic polyelectrolyte does not dissolve in water or organic solvents due to its ionic crosslinking structure.
聚电解质复合物 ( PEC)因其独特的物理化学性质而受到广泛关注 。
2.
Recently, in drug controlled release system, polyelectrolyte complexes have been rewarded much attention.
近年来聚电解质复合物在药物控释领域受到重视。
3.
his review introduced the forming mechanism and character of polyelectrolyte(PEL) and polyelectrolyte complex(PELC),gave a retrospect to their contribution in the leather theory study, and pointed out their important denotation in theory studying and practice.
介绍了聚电解质(PEL)和聚电解质复合物(PELC)的生成机理和性质,对其在皮革理论研究中的作用进行了综述,指出了聚电解质理论在理论和应用中的重要意义。
5)  combined electrochemical machining
复合电解加工
1.
Processing from the high frequency,narrow pulse,the combined electrochemical machining.
论述了特种加工技术的特点,从高频、窄脉冲、复合电解加工等方面分析了其应用的参数及特点。
6)  nanocomposite electrolyte
纳米复合电解质
1.
In this work we studied the substitution of gel electrolyte and nanocomposite electrolyte for liquid electrolyte,which could improve the stability of DSCs while preserve its ionic conductivity.
研究了以凝胶电解质和无机纳米复合电解质取代液态电解质,在保持体系电导率的同时,增强对溶剂的保持能力,提高DSCs的稳定性。
补充资料:铝电解厂16kV·A电解槽系列及电解多功能机组


铝电解厂16kV·A电解槽系列及电解多功能机组


铝电解厂16kV·A电解槽系列及电解多功能机组
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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