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Gross vs. net energy: Towards a rational framework for assessing the practical viability of pressure retarded osmosis

机译:总能量与净能量:建立合理的框架以评估压力渗透的实际可行性

摘要

Although significant technological advances have been made in recent years on pressure retarded osmosis (PRO), its practical viability remains unclear as few studies have been conducted at an integrated system level to quantify the potential of net energy output. In this study, we develop a framework to assess the net energy output of a PRO system by first quantifying the gross energy output via solving the mass transfer equations for a full-scale PRO module, and then incorporating the major energy losses from pretreatment, flow circulation, and inefficient energy recovery. We also propose a novel concept called net membrane power density that is strongly relevant to the capital cost of a PRO system. Finally, we describe an approach, based on the quantifiable specific net energy and net membrane power density, for assessing the economic viability of a PRO system. Albeit using seawater/river water PRO as the context for illustrating our approach, the assessment framework developed is universally applicable to PRO systems with any solution pairing. The results from this study clearly show the impacts of various parameters on the practical performance of a PRO system, thereby providing important guidance to the improvement of its design and operation. (C) 2015 Elsevier B.V. All rights reserved.
机译:尽管近年来在压力渗透(PRO)方面取得了重大技术进步,但由于在集成系统级进行量化净能量输出潜能的研究很少,其实际可行性仍不清楚。在这项研究中,我们建立了一个评估PRO系统净能量输出的框架,该方法是首先通过求解全尺寸PRO模块的传质方程来量化总能量输出,然后将预处理,流动过程中产生的主要能量损失纳入考虑范围循环,能量回收效率低下。我们还提出了一种称为净膜功率密度的新概念,该概念与PRO系统的资本成本密切相关。最后,我们基于可量化的比净能量和膜净功率密度描述了一种评估PRO系统经济可行性的方法。尽管使用海水/河水PRO作为说明我们的方法的背景,但开发的评估框架普遍适用于具有任何解决方案配对的PRO系统。这项研究的结果清楚地表明了各种参数对PRO系统实际性能的影响,从而为改进其设计和操作提供了重要的指导。 (C)2015 Elsevier B.V.保留所有权利。

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