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Hydrogen and power co-generation based on coal and biomass/solid wastes co-gasification with carbon capture and storage

机译:基于煤炭和生物质/固体废物的联合气化与碳捕集与封存制氢和发电

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This paper investigates the potential use of renewable energy sources (various sorts of biomass) and solid wastes (municipal wastes, sewage sludge, meat and bone meal etc.) in a co-gasification process with coal to co-generate hydrogen and electricity with carbon capture and storage (CCS). The paper underlines one of the main advantages of gasification technology, namely the possibility to process lower grade fuels (lower grade coals, renewable energy sources, solid wastes etc.), which are more widely available than the high grade coals normally used in normal power plants, this fact contributing to the improvement of energy security supply. Based on a proposed plant concept that generates 400-500 MW net electricity with a flexible output of 0-200 MWa, hydrogen and a carbon capture rate of at least 90%, the paper develops fuel selection criteria for coal blending with various alternative fuels for optimizing plant performance e.g. oxygen consumption, cold gas efficiency, hydrogen production and overall energy efficiency. The key plant performance indicators were calculated for a number of case studies through process flow simulations (ChemCAD).
机译:本文研究了与煤共气化过程中可再生能源(各种生物质)和固体废物(市政废物,污水污泥,肉和骨粉等)的潜在利用,以与碳共同产生氢气和电力捕获和存储(CCS)。该论文强调了气化技术的主要优势之一,即可以加工低级燃料(低级煤,可再生能源,固体废物等),这种燃料比通常用于常规发电的高级煤更广泛地使用。工厂,这一事实有助于改善能源安全供应。基于拟议的工厂概念,该概念可产生400-500 MWa的净电力,灵活输出0-200 MWa,氢气且碳捕集率至少为90%,因此,本文提出了将煤与各种替代燃料混合使用的燃料选择标准。优化工厂绩效,例如氧气消耗,冷气效率,制氢和整体能源效率。通过流程模拟(ChemCAD)计算了许多案例研究的关键工厂绩效指标。

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