There are problems for producing strong acid water by using single cavity or double_ cell electrolyzer, which are commonly used now.
为解决目前常用的单槽型或双槽型电解槽在制备强酸性水过程中易出现盐水浓度难以调整控制、不易实现连续生产等问题,本研究提出了三槽型电解槽制备强酸性水工艺并制作了相应的设备。
参考来源 - 三槽型强酸性水制备机理及设备的研究It is not only to realize the control, but also to regulate the parameters on-line. The same is true of electrolyzer, single neuron PID controller was used to control the operation parameters of electrolyzer.
与燃料电池相似,电解槽电堆也采用单神经元控制对电解槽的操作参数进行控制。
参考来源 - 独立的太阳能燃料电池联合发电系统的协调控制设计与仿真研究·2,447,543篇论文数据,部分数据来源于NoteExpress
The development of F4 diaphragm electrolyzer with S-3000 press filter is summarized.
总结了S-3000型压滤式F4隔膜电解槽的开发研制过程。
The maintenance of bipolar ion-exchange membrane electrolyzer during its operation is discussed.
论述了复极式离子膜电解槽运行过程中的维护。
The fluctuation of electrolyzer diaphragm rose in adsorption and series countermeasures on the steady running were introduced.
介绍了电槽隔膜吸附中出现的波动及通过一系列调整使电槽稳定运行的过程。
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