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插入交叉对角线碳纤维间隔物的直接接触式膜蒸馏模块的馏出液通量增强

Distillate Flux Enhancement of Direct Contact Membrane Distillation Modules with Inserting Cross-Diagonal Carbon-Fiber Spacers.

作者信息

Ho Chii-Dong, Chen Luke, Lim Jun-Wei, Lin Po-Hung, Lu Pin-Tsen

机构信息

Department of Chemical and Materials Engineering, Tamkang University, Tamsui, New Taipei 251, Taiwan.

Department of Water Resources and Environmental Engineering, Tamkang University, Tamsui, New Taipei 251, Taiwan.

出版信息

Membranes (Basel). 2021 Dec 9;11(12):973. doi: 10.3390/membranes11120973.

Abstract

A new design of direct-contact membrane distillation (DCMD) modules with cross-diagonal carbon-fiber spacers of various hydrodynamic angles in flow channels to promote turbulence intensity was proposed to enhance pure water productivity. Attempts to reduce the temperature polarization coefficient were achieved by inserting cross-diagonal carbon-fiber spacers in channels, which create wakes and eddies in both heat and mass transfer behaviors to enhance the permeate flux enhancement. A simplified equation was formulated to obtain the theoretical predictions of heat transfer coefficients in the current DCMD device. The permeate fluxes and temperature distributions of both hot and cold feed streams are represented graphically with the inlet volumetric flow rate and inlet temperature of the hot saline feed stream as parameters. The higher distillate flux of countercurrent-flow operations for saline water desalination was accomplished as compared to the concurrent-flow operations of various hydrodynamic angles. The results show that the agreement between the theoretical predictions and experimental results is reasonably good. The effects of countercurrent-flow operations and inserting carbon fiber spacers have confirmed technical feasibility and device performance enhancement of up to 45%. The influences of operating and design parameters on the pure water productivity with the expense of energy consumption are also discussed.

摘要

提出了一种新型的直接接触式膜蒸馏(DCMD)模块设计,其流道中带有不同流体动力学角度的交叉对角碳纤维间隔物,以提高湍流强度,从而提高纯水生产率。通过在流道中插入交叉对角碳纤维间隔物来降低温度极化系数,这些间隔物在传热和传质行为中产生尾流和涡流,以提高渗透通量。推导了一个简化方程,以获得当前DCMD装置中传热系数的理论预测值。以热盐水进料流的入口体积流量和入口温度为参数,用图形表示了冷热进料流的渗透通量和温度分布。与不同流体动力学角度的并流操作相比,盐水脱盐的逆流操作实现了更高的馏出液通量。结果表明,理论预测与实验结果之间的吻合度相当好。逆流操作和插入碳纤维间隔物的效果证实了技术可行性,并且装置性能提高了45%。还讨论了操作和设计参数对纯水生产率的影响以及由此产生的能量消耗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0c6/8707390/cbc4cd38ad01/membranes-11-00973-g001.jpg

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