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Production of 500 Tons per Day of Pure Hydrogen Gas from Refinery Off-Gas Stream

机译:每天从炼厂尾气中生产500吨纯氢气

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摘要

Steam methane reforming (SMR) is one of the most promising processes for hydrogen production. Several studies have demonstrated its advantages from the economic viewpoint. Nowadays process development is based on technical and economic aspects, however, in the near future; the environmental impact will play a significant role in the design of such processes. In this paper, an SMR process is studied from the viewpoint of overall environmental impact, using an exergoenvironmental analysis. This analysis presents the combination of exergy analysis and life cycle assessment. Components where chemical reactions occur are the most important plant components from the exergoenvironmental point of view, because, in general, there is a high environmental impact associated with these components. This is mainly caused by the energy destruction within the components, and this in turn is mainly due to the chemical reactions. The obtained results show that the largest potential for reducing the overall environmental impact is associated with the combustion reactor, the steam reformer, the hydrogen separation unit and the major heat exchangers. The environmental impact in these components can mainly be reduced by improving their exergetic efficiency. A sensitivity analysis for some important exergoenvironmental variables is also presented in the paper.
机译:蒸汽甲烷重整(SMR)是最有前途的制氢工艺之一。几项研究从经济角度证明了其优势。现在,在不久的将来,工艺开发是基于技术和经济方面的。环境影响将在此类流程的设计中扮演重要角色。在本文中,使用环境进行了分析,从整体环境影响的角度研究了SMR工艺。该分析提出了火用分析和生命周期评估的结合。从exergogoenvironmental的角度来看,发生化学反应的成分是最重要的植物成分,因为这些成分通常会对环境产生很大影响。这主要是由于组件内部的能量破坏,而这又主要是由于化学反应。获得的结果表明,减少总体环境影响的最大潜力与燃烧反应器,蒸汽重整器,氢分离装置和主要热交换器有关。这些成分对环境的影响主要可以通过提高其能量效率来减少。本文还对一些重要的环境环境变量进行了敏感性分析。

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    Bal Pramod Kumar;

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  • 年度 2013
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