2) 3-dimensional-electrode method
三维电极电解法
1.
Advantages of treating Azo dyestuff Wastewater by 3-dimensional-electrode method was researched compared with the 2-dimensional-electrode method.
本论文以具有典型偶氮染料结构的甲基橙水溶液为研究对象,通过与二维电极法的对比研究了三维电极电解法处理偶氮染料废水的优越性,并对该技术应用于偶氮染料废水处理的工艺条件和作用机理进行了分析。
3) 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。
4) 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
5) 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
6) three dimensional electrodes
三维电极
1.
The electrocatalytic electrodes, including titanium anodes coated with transition metal, metal oxides and doped semiconductor, diamond electrodes and three dimensional electrodes are summarized and assessed.
在分析中 ,综述了电催化高级氧化电极研究现状 ,阐述与评价了过渡金属涂层电极、金属氧化物涂层电极、含掺杂半导体涂层电极、金刚石膜电极、三维电极等几个主要方面的研究成果 ,并对今后工作的重点提出了一些意见。
2.
The bipolar packed bed cell (BPBC) is a kind of new type electrochemical process,which has been developed on the basis of the principle of three dimensional electrodes.
复极性固定床电解槽 (bipolarpackedbedcell,BPBC)是在三维电极原理基础上发展起来的新型电化学工程技术 ,其在治理含氰及重金属废水、有机废水和印染废水方面具有良好的处理效果。
3.
The electrochemically assisted photocatalytic degradation of direct sky blue aqueous solution with three dimensional electrodes was studied.
本文在多年研究三维电极的基础上[2 ,3] ,将多相三维电极技术与多相光催化技术相结合 ,试图通过“巧妙的组合”以期达到 1+1>2的目的 ,构成了一种很具特色的多相三维电极电助光催化新体系 。
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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