首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >EXERGY LINKED TO ENVIRONMENTAL IMPACTS: ADVANCED EXERGOENVIRONMENTAL ANALYSIS OF AN ADVANCED ZERO EMISSION PLANT
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EXERGY LINKED TO ENVIRONMENTAL IMPACTS: ADVANCED EXERGOENVIRONMENTAL ANALYSIS OF AN ADVANCED ZERO EMISSION PLANT

机译:与环境影响相关的运动:先进的零排放工厂的先进运动环境分析

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Exergy-based analyses are useful means for the evaluation and improvement of energy conversion systems. A life cycle assessment (LCA) is coupled with an exergetic analysis in an exergoenvironmental analysis. An advanced exergo-environmental analysis quantifies the environmental impacts estimated in the LCA into avoidable/unavoidable parts and into endogenous/exogenous parts, depending on their source. This analysis reveals the potential for improvement of plant components/processes and the component interactions within a system. In this paper, the environmental performance of an advanced zero emission plant (AZEP) with CO_2 capture is evaluated based on an advanced exergoenvironmental analysis. The plant uses oxy-fuel technology and incorporates an oxygen-separating mixed conducting membrane (MCM). To evaluate the operation of the system, a similar plant (reference plant) without CO_2 capture is used. It has been found that the improvement potential of the AZEP concept is restricted by the relatively low avoidable environmental impact of exergy destruction of several plant components. Moreover, the endogenous environmental impacts are for the majority of the components significant, while the exogenous values are, generally, kept at low levels. Nevertheless, a closer inspection reveals that there are strong interactions among the components of the MCM reactor and the components constituting the CO_2 compression unit. Such results are valuable, when the improvement of the environmental performance of the plant is targeted and they can only be obtained through advanced exergy-based methods.
机译:基于能值的分析是用于评估和改进能量转换系统的有用手段。生命周期评估(LCA)与运动环境分析中的运动分析相结合。先进的exergo-environmental分析将LCA中估计的环境影响量化为可避免/不可避免的部分以及内源/外源部分,具体取决于其来源。该分析揭示了改进工厂组件/过程以及系统中组件交互的潜力。在本文中,基于先进的exergo-environmental分析,评估了具有CO_2捕集的先进零排放工厂(AZEP)的环境绩效。该工厂采用氧气燃料技术,并采用了氧气分离混合传导膜(MCM)。为了评估系统的运行情况,使用了没有捕获CO_2的类似工厂(参考工厂)。已经发现,AZEP概念的改进潜力受到几种植物成分的火用破坏的相对较低的可避免的环境影响的限制。此外,内生环境影响对于大多数组件而言都是重要的,而外生值通常保持在较低水平。然而,仔细检查发现,MCM反应器的组件与构成CO_2压缩单元的组件之间存在很强的相互作用。当以改善植物的环境绩效为目标时,只有通过先进的基于火用的方法才能获得这些结果,这是有价值的。

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