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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Influence of high range of mass transfer coefficient and convection heat transfer on direct contact membrane distillation performance
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Influence of high range of mass transfer coefficient and convection heat transfer on direct contact membrane distillation performance

机译:高范围传质系数和对流传热对直接接触膜蒸馏性能的影响

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In order to improve water production of membrane distillation (MD), the development of high performance membrane having better mass transfer and enhancement of convection heat transfer in MD module have been continuously investigated. This paper presents the relationship between the heat and mass transfer resistance across the membrane and the performance improvement. Various ranges of mass transfer coefficient (MTC) from normal (0.3 x 10(-6) to 2.1 x 10(-6) kg/m(2)sPa: currently available membranes) to high ( 2.1 x 10(-6) kg/m(2)sPa: membranes under development) were simulated using an experimentally validated model at different ranges of convection heat transfer by varying the inlet flow rates and spacer enhancement factor. The effect of mass transfer and convection heat transfer on the MD performance parameters including temperature polarization coefficient (TPC), mean permeate flux, and specific energy consumption were investigated in a direct contact MD (DCMD) configuration. Results showed that improving the MTC at the low ranges is more important than that at the high ranges where the heat transfer resistance becomes dominant and hence the convection heat transfer coefficient must be increased. Therefore, an effort on designing MD modules using feed and permeate spacers and controlling the membrane surface roughness to increase the convection heat transfer and TPC in the channel aiming to enhance the flux is required because the currently developed mass transfer has almost reached the critical point.
机译:为了提高水的生产膜蒸馏(MD)的,具有在MD模块对流换热的更好的传质和增强高性能膜的开发一直在不断研究。本文提出穿过膜的传热和传质阻力和性能的改善之间的关系。 2.1×10(-6;到高(大于:从正常传质系数(MTC)(目前可用的膜为0.3×10(-6)到2.1×10(-6)公斤/米(2)SPA)的各种范围)公斤/米(2)SPA:正在开发的膜)是用在对流的热传递的不同范围的实验验证的模型通过改变进口流量与垫片增强因子模拟。质量传递和对流热传递在MD上的性能参数,包括温度的偏振系数(TPC),平均渗透物通量,和比能消耗的效果在直接接触MD(DCMD)构型进行了研究。结果表明,提高了MTC在低范围比在高范围,其中的传热阻力成为主导,因此对流热传递系数,必须增加更重要。因此,在使用进料和渗透物间隔物设计MD模块和控制该膜的表面粗糙度,以增加信道旨在加强需要的通量,因为当前开发的质量传递几乎已经达到临界点的对流热传递和TPC的努力。

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