渗透发电技术中高盐溶液热声参数分析

L. M. Rehman, Tushar Damani, T. Garg, V. Sridhar, V. Mittal, A. Roy
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引用次数: 0

摘要

盐度能源技术的最新进展为水科学部门的研究开辟了新的途径。新的和有效的海水淡化技术与能源回收过程相结合,是当前的需要。在这项研究中,对盐水系统的热声参数有了一个清晰的认识,以解决对系统非理想性的理解中的几个空白,这导致了过程效率的降低。利用超声波速度分析热力学性质,如等温压缩性、等压膨胀性、松弛时间和内部压力,有助于我们理解在高盐溶液(高达100,000 ppm)中发生的各种相互作用。从量纲分析中获得了一个新的内压相关性,并与现有文献进行了比较。此外,制备了最先进的薄膜复合材料(TFC)中空纤维膜(NaCl截留率~ 40%),用于利用高盐溶液和低品位热通过热渗透蒸汽输送发电。这项工作是对高盐溶液的热声参数数据的整合,它们的关键分析,以及对渗透发电在TOEC技术中的中空纤维TFC膜应用的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Thermo-Acoustical Parameters of Hypersaline Solutions for Applications in Osmotic Power Generation Technologies
The recent advances in Salinity energy technologies have opened new avenues for research in the water-science sector. New and efficient desalination technologies in conjunction with energy-recovery processes, are the need of the hour. A clear understanding on the thermoacoustical parameters of salt-water systems has been done in this study, to address several lacunae in the understanding of non-ideality of the system, which leads to a reduction in process efficiencies. An analysis of thermodynamic properties such as isothermal compressibility, isobaric expansibility, relaxation time, and internal pressures using ultrasonic velocity, has assisted us in understanding the various interactions occurring in hypersaline solutions (up to 1,00,000 ppm). A new correlation for internal pressure from dimensional analysis has been obtained and compared to existing literature. Also, state-of-the-art thin film composite (TFC) hollow fiber membranes (with NaCl rejection ~ 40%) has been prepared for generating power through thermo-osmotic vapour transport using hypersaline solutions and low grade heat. This work is a consolidation of data on thermo-acoustical parameters of hypersaline solutions, their critical analysis and a look into the application of Hollow fibre TFC membranes for Osmotic Power Generation applications in TOEC technology.
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