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Holistic carbon planning for industrial parks: a waste-to-resources process integration approach

机译:工业园区整体碳计划:废物源于资源的过程整合方法

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摘要

The recently developed carbon emission Pinch Analysis (CEPA) techniques are not based on the classical Pinch Analysis concepts of carbon transfer, maximum carbon recovery, minimum carbon targets and the design of carbon exchange networks. Although previous process integration applications using the Pinch Analysis have contributed to carbon footprint reductions via energy efficiency improvements, they do not emphasize the waste-to-resources approach involving carbon exchange. This paper presents a new process integration technique for achieving holistic minimum carbon targets. The technique begins with carbon demand planning, which is followed by targeting the maximum possible carbon exchange using modified sources and demand curves. Next, the carbon management hierarchy (CMH) is introduced to systematically guide the carbon reduction process toward holistic minimum carbon targets. Finally, the minimum carbon utilization network is designed using a network allocation diagram. The application of this holistic approach at a refinery site revealed a maximum potential CO_2 reduction of up to 95%.
机译:最近开发的碳排放捏分析(CEPA)技术并非基于经典的碳捏分析概念,包括碳转移,最大碳回收率,最小碳目标和碳交换网络设计。尽管以前使用Pinch Analysis的过程集成应用程序通过提高能效有助于减少碳足迹,但它们并未强调涉及碳交换的废物资源化方法。本文提出了一种用于实现整体最低碳目标的新工艺集成技术。该技术始于碳需求计划,然后是使用修改后的源和需求曲线来确定最大可能的碳交换。接下来,引入碳管理体系(CMH)以系统地指导碳减排过程朝着整体最低碳目标迈进。最后,使用网络分配图设计最低碳利用网络。这种整体方法在炼油厂的应用表明最大潜在的CO_2减少量高达95%。

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