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Thermal management for chemical looping systems with chemical production

机译:化学生产的化学环路系统热管理

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Chemical looping technology is a promising pathway to realize a clean production of value-added chemicals with less energy penalty. Its core concept, utilizing heat storage in the cycled solid materials to maintain an efficient operation, needs further confirmation. Here, a combined thermal management method is firstly proposed to achieve an autothermal operation for chemical looping system. New dual fast fluidized bed reactors with optimal reaction temperatures are designed to match the redox reaction rates, while heat integration and exergy cost assessment are conducted to locate the source of thermodynamic irreversibility and interpret the cost formation process. The heat transfer between high temperature exhaust gases and low temperature inlet streams contributes to the main thermodynamic irreversibility and exergy cost. The external energy demand for system gets a maximum 62.37% decrement, the exergy efficiency shows a maximum 9.00% increment and the unit exergy cost for oxygen production gains a maximum 42.18% decrement. (C) 2019 Elsevier Ltd. All rights reserved.
机译:化学循环技术是一个有望的途径,实现了较少的能源惩罚的增值化学品清洁生产。其核心概念,利用循环固体材料中的储热来维持有效的操作,需要进一步确认。这里,首先提出了一种组合的热管理方法来实现用于化学循环系统的自热操作。具有最佳反应温度的新型双快流量床反应器符合氧化还原反应速率,同时进行热集成和漏洞成本评估,以定位热力学不可逆性并解释成本形成过程。高温废气和低温入口流之间的热传递有助于主要热力学不可逆性和高度成本。对系统的外部能源需求减少最高62.37%,效率最高为9.00%的增量,氧气产量的单位低通量增益最高为42.18%。 (c)2019年elestvier有限公司保留所有权利。

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