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electrochemical regeneration
相关语句
  电化学再生
     The Electrochemical Regeneration Mechanism of Activated Carbon by Electrochemical Method
     活性炭的电化学再生机理
短句来源
     Study on Electrochemical Regeneration of Activated Carbon
     电化学再生活性炭机理和影响因素的研究
短句来源
     Electrochemical regeneration of coenzyme I has been accomplished. But the method for coenzyme Ⅱ is still in study due to destructive dimerization and problems in sereospicificity.
     辅酶 的电化学再生已比较成功 ,但辅酶 的电化学再生由于立体特异性和二聚体生成等问题未解决。
短句来源
  “electrochemical regeneration”译为未确定词的双语例句
     Comparing the results of regeneration in different operative methods and regeneration ways, the spent activated carbon with phenol can be regenerated with better regeneration efficiency by electrochemical regeneration than by NaOH solution regeneration.
     对比研究了各种操作方式下采用NaOH碱法再生活性炭和电化学方法再生活性炭的再生效率,实验结果表明,电化学方法再生活性炭比NaOH碱法再生活性炭从再生效率上考虑要明显优越。
短句来源
     Study of Electrochemical Regeneration for Activated Carbon of Adsorption Phenol Saturated
     吸附饱和苯酚的活性炭电化学再生的研究
短句来源
     The electrosorption rate equation is developed and verified on the basis of Lagergren adsorption rate law. The mechanism of electrochemically enhanced adsorption is discussed, and the feasibility of the combination of electrosorption and in situ electrochemical regeneration cycles is explored.
     本论文主要研究了电化学极化活性炭纤维对苯酚、苯胺、间甲酚和酸性橙Ⅱ(AO7)吸附速率和吸附容量的变化,分析了电增强吸附作用机理,建立了电吸附速率方程,并且探索了电增强吸附/再生循环一体化的可行性。
短句来源
     The electrochemical regeneration possibility of ACF saturated with DDBL-3RB was certified in this work.
     1.用红外及可见分子吸收光谱法研究了活性炭纤维对直接深蓝L-3RB(Direct deep blue L-3RB,DDBL-3RB)的吸附行为;
短句来源
     In order to confirm which electrode system electrochemical regeneration of granular activated carbon(GAC) belonged to, the saturated GAC loaded with aniline were regenerated in different working area.
     将活性炭置于电解槽不同工作区域进行再生,实验结果证明:饱和炭再生属于三维电极体系; 不同再生区域具有不同再生效率;
短句来源
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  相似匹配句对
     Study on Electrochemical Regeneration of Activated Carbon
     电化学再生活性炭机理和影响因素的研究
短句来源
     The Regeneration of Activated Carbon by Electrochemical Method
     水处理活性炭的电化学再生技术研究
短句来源
     electrochemical analysis;
     电化学分析法;
短句来源
     Liver Regeneration
     肝再生
短句来源
     Electrochemical Sensors
     电化学生物传感器
短句来源
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  electrochemical regeneration
Electrochemical regeneration of ion-exchange resins
      
Electrochemical regeneration of sodium thiocyanate
      
Water transfer through the cation-exchange membrane in the electrochemical regeneration of lithium hydroxide
      
Electrochemical regeneration of used caustic solutions
      
Correction of Dialyzate Composition during Electrochemical Regeneration
      
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Several approaches for the regeneration of NAD(P) +/NAD(P)H cofactors, including chemical, electrochemical, photochemical and enzymatic methods, have been developed in recent years. Due to the restriction of reaction condition, few research works on chemical regeneration of nicotinamide cofactors were reported recently. Electrochemical regeneration of coenzyme I has been accomplished. But the method for coenzyme Ⅱ is still in study due to destructive dimerization and problems in sereospicificity....

Several approaches for the regeneration of NAD(P) +/NAD(P)H cofactors, including chemical, electrochemical, photochemical and enzymatic methods, have been developed in recent years. Due to the restriction of reaction condition, few research works on chemical regeneration of nicotinamide cofactors were reported recently. Electrochemical regeneration of coenzyme I has been accomplished. But the method for coenzyme Ⅱ is still in study due to destructive dimerization and problems in sereospicificity. Some advantages have been achieved in photochemical regeneration, but the system must be operated in strict anaerobic condition and its components are very complex. The system of enzymatic regeneration is simpler than photochemical method. Single enzyme regeneration system is more favourable in separarion of products. Immobilization with polymers is an effective method for retention of coenzyme I, but not sutable for coenzyme Ⅱ. Coenzyme Ⅱ could be retained effectively in charged membrane bioreactor.

烟酰胺类辅因子是许多脱氢酶和还原酶的重要辅酶 ,其保留和再生利用是酶工程领域的重要研究课题。目前的再生方法主要有化学法、电化学法、光化学法和酶法。由于反应条件的限制 ,纯化学法已很少研究。辅酶 的电化学再生已比较成功 ,但辅酶 的电化学再生由于立体特异性和二聚体生成等问题未解决。光化学法再生系统需要厌氧条件 ,成分较复杂。酶法再生体系较为简单 ,单酶再生系统在产物分离等方面更有利。与高聚物结合是保留辅酶 的有效方法 ,但不适于辅酶 。用带电滤膜构建生物反应器可以有效地保留辅酶 。

Adsorption equilibrium of phenol in activated carbon and the influence of pH on adsorption equilibrium were measured. Comparing the results of regeneration in different operative methods and regeneration ways, the spent activated carbon with phenol can be regenerated with better regeneration efficiency by electrochemical regeneration than by NaOH solution regeneration. With the increase of regeneration cycle times in both regeneration methods, the regeneration efficiency would decrease...

Adsorption equilibrium of phenol in activated carbon and the influence of pH on adsorption equilibrium were measured. Comparing the results of regeneration in different operative methods and regeneration ways, the spent activated carbon with phenol can be regenerated with better regeneration efficiency by electrochemical regeneration than by NaOH solution regeneration. With the increase of regeneration cycle times in both regeneration methods, the regeneration efficiency would decrease a little.

本文研究了苯酚水溶液在活性炭上的吸附平衡关系,溶液pH值对活性炭吸附性能的影响。对比研究了各种操作方式下采用NaOH碱法再生活性炭和电化学方法再生活性炭的再生效率,实验结果表明,电化学方法再生活性炭比NaOH碱法再生活性炭从再生效率上考虑要明显优越。同时用两种再生方法对吸附苯酚后的活性炭进行循环多次再生,探讨了多次再生对活性炭再生效率的影响。

The clectrochemical regeneration technology of activated carbon adsorbed with phenol is studied in different operative conditions.The activated carbon made from coconut shell is used as adsorbent.The effects of several operative parameters on electrochemical regeneration efficiency are measured in room temperature.The experimental results express that it is much better for activated carbon to be put on the cathode than on the anode,and...

The clectrochemical regeneration technology of activated carbon adsorbed with phenol is studied in different operative conditions.The activated carbon made from coconut shell is used as adsorbent.The effects of several operative parameters on electrochemical regeneration efficiency are measured in room temperature.The experimental results express that it is much better for activated carbon to be put on the cathode than on the anode,and sodium chloride solution is a good electrolyte for regeneration.The electrochemical regeneration efficiency depends on electrolyte concentration,regeneration current intensity,regeneration time.

选择椰壳水处理活性炭作为吸附剂吸附处理低浓度苯酚废水,在室温条件下,在静止的电化学电极上对吸附苯酚后的活性炭进行电化学再生,探讨了各个操作参数对活性炭的电化学再生效率的影响。实验结果表明,电化学再生活性炭的效率较好,基本没有二次污染。再生效率随着电解质(氯化钠)溶液浓度的增加而增加,但达到1%以后基本没有变化。同时,再生效率随着再生电流的增加而提高,随着再生时间的增加,再生效率亦随之提高,但到5h以后,再生效率基本不随时间的变化而变化。

 
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