海水淡化
电极
下降(电信)
电容感应
电容去离子
材料科学
压力降
流量(数学)
频道(广播)
海水淡化
机械
环境工程
环境科学
电气工程
化学
工程类
膜
物理
生物化学
物理化学
作者
Yinyan Guan,Mingxi Liu,Yutong Liu,Jinyu Yue,Shiyue Liu,Weichun Gao,Jiyan Liang
标识
DOI:10.1080/09593330.2024.2354124
摘要
As an emerging desalination technology, flow-electrode capacitive deionisation (FCDI) has the advantages of theoretically infinite adsorption capacity and applicability to high-concentration brine. However, during the operation of FCDI, the flow electrode in the S-shape channel is prone to sedimentation and clogging the channel. This undesirable phenomenon brings low efficiency and security issues. Therefore, a drop-shape channel was designed for FCDI to improve the flow regime of the flow electrode. The flow simulation of the drop-shape channel was performed to select the appropriate geometry to avoid the formation of the vortex and low-velocity region. The simulation results showed that the streamlined design of the drop-shape channel has insignificant velocity gradients. It significantly reduces the low-velocity region and improves the phenomenon of particle sedimentation. The desalination performance with varieties of electrode flow rate, AC content, and voltage was used to investigate the advantage between S-shape and drop-shape channels. It was found that under the conditions of low flow rate, high AC content, and high voltage, the drop-shape channel FCDI system could still obtain better ASRR and CE.
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