1) three-dimensional-electrode electro-Fenton
三维电极-电Fenton
1.
Removal of organic compounds from landfill leachate by a three-dimensional-electrode electro-Fenton process;
三维电极-电Fenton法去除垃圾渗滤液中有机物
2) three-dimensional electrode/electro-Fenton process
三维电极/电Fenton法
1.
COD removal effect and its influencing factors in the landfill leachate by three-dimensional electrode/electro-Fenton process were investigated,and the degradation kinetics of COD was explored.
考察了三维电极/电Fenton法对垃圾渗滤液中COD的去除效果及其影响因素,并探讨了COD的降解动力学。
3) three-dimensional-electrode electro-Fenton process
三维电极-电Fenton法
1.
Analytical results of GC-MS indicate that the organic compounds such as aromatic hydrocarbon,alkane,carboxylic acid and ester are well degraded by three-dimensional-electrode electro-Fenton process which is proved to be an effective way to treat landfill leachate.
研究了以活性炭和涂膜炭为填充电极的三维电极-电Fenton法处理垃圾渗滤液的影响因素和处理效果。
4) Three-dimensional Electrode
三维电极
1.
Analysis of effect of dyestuff wastewater treatment by three-dimensional electrode reactor;
三维电极反应器处理染料废水效果分析
2.
Study on treatment of dye-wastewater with three-dimensional electrode reactor;
三维电极反应器处理染料废水的研究
3.
The paper studied the degradation of landfill leachate by three-dimensional electrode on PbO2/Ti anode.
研究了基于PbO2/Ti阳极的三维电极法处理垃圾渗滤液。
5) three dimensional electrode
三维电极
1.
Study on COD removal by using three dimensional electrode-Fenton method;
三维电极-Fenton试剂耦合法去除废水COD实验研究
2.
Study on the treatment of dyeing wastewater by using three dimensional electrode electrochemical method;
三维电极电化学方法处理印染废水实验研究
3.
Study on treatment of dye-wastewater by using Fe/AC three dimensional electrode method
活性炭载Fe~(2+)三维电极法处理染料废水
6) three-dimension electrode
三维电极
1.
Mathematical model for organic pollutant degradation in three-dimension electrode system;
三维电极体系降解有机污染物的数学模型
2.
Study on the working principium of three-dimension electrode system;
三维电极体系工作机理探讨
补充资料:三维电极
分子式:
CAS号:
性质:相对于板、片等二维电极而言的电极结构,如多孔电极(化学电源)、填充床电极(用于废水中金属之回收)等。其特点是电极的有效面积大增,效率提高,但制约因素较二维电极为多。一般的三维电极本身是静止的,为了使电解液与电极颗粒充分接触,动态的三维电极(如流化床电极)也在研究之中。
CAS号:
性质:相对于板、片等二维电极而言的电极结构,如多孔电极(化学电源)、填充床电极(用于废水中金属之回收)等。其特点是电极的有效面积大增,效率提高,但制约因素较二维电极为多。一般的三维电极本身是静止的,为了使电解液与电极颗粒充分接触,动态的三维电极(如流化床电极)也在研究之中。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条