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RETROFIT DESIGN METHOD FOR CO_2 EMISSION REDUCTION

机译:CO_2减排的改造设计方法

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摘要

Utilization of fossil fuel, as one of the major contributors in CO_2 emission production, provides driving force behind global warming. Increasing energy efficiency through energy retrofit of process plants can reduce fuel requirement and hence reduce CO_2 emission production. The current practice for reducing CO_2 emissions often selects the retrofit options with no consideration of carbon tax or opportunity for carbon emission credit. This work presents a design methodology to select and combine from the heat exchanger network (HEN) retrofit options of different process plants considering the available investment cost for process integration measures and constraining carbon emission reduction target. The presented methodology investigates the capability of the introduced scenarios from combined retrofit options for carbon emission credit opportunity. In this method the decision for degree of heat recovery in retrofit of HEN can be made either based on achieving maximum opportunity for carbon emission credit considering fixed available investment cost or based on investing minimum cost to maintain the emission reduction target with no extra CO_2 emission reduction. The final decision making is then based on total payback of the combined retrofit scenario. The method is developed through a case study. Results show that the presented method is capable to include issues of carbon emission trading scheme in making decision for energy conservation in process industries with the objective of reducing CO_2 Emission. The results also illustrate that the payback of the combined retrofit options which are selected to meet the emission target are lower and hence better options relative to those that provide CO_2 emission credit.
机译:化石燃料的利用,如CO_2排放生产的主要贡献者之一,提供驱动全球变暖背后的力量。通过处理植物的能量改造提高能源效率可以减少燃料需求,从而减少排放CO_2生产。减少排放CO_2目前的做法往往选择不考虑碳税或机会,碳排放信用的改造方案。这项工作提出了一种设计方法来选择和换热网络结合不同的工艺装置(HEN)改造方案考虑流程整合措施的可投资成本和限制碳减排目标。所提出的方法从碳排放信用的机会相结合的改造方案研究了引入情景的能力。在这种方法中HEN的改进热回收的程度决定,可在任一基础上,实现最大的机会,碳排放信用做出考虑固定可用的投资成本或基于投资最低的成本来维持,没有额外的CO_2减排的减排目标。那么最终的决策是基于综合改造方案的总回报。该方法是通过一个案例研究开发。结果表明,该方法能够包括在决策节能过程工业的客观减少CO_2排放的碳排放交易计划的问题。该结果还表明,它们被选择成满足排放目标组合改型方案的回报较低,相对于那些提供CO_2排放信用因此更好的选择。

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