Toward multiscale consequential sustainable process design: Including the effects of economy and resource constraints with application to green urea production in a watershed

Toward multiscale consequential sustainable process design: Including the effects of economy and resource constraints with application to green urea production in a watershed
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实现多尺度后果性可持续工艺设计:包括经济和资源限制的影响以及流域绿色尿素生产的应用

DOI:
10.1016/j.ces.2019.06.028
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发表时间:
2019
影响因子:
4.7
通讯作者:
B. Bakshi
B. Bakshi
中科院分区:
工程技术2区
文献类型:
--
作者:
Kyuha Lee;Tapajyoti Ghosh;B. Bakshi

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仅考虑环境领域的方法所作的决定可能会导致意外的结果,因为负担会转移到经济和社会领域。这些后果可能在多个空间尺度上通过整个供应链发生。在这项工作中,进程到行星(P2P)多尺度建模框架集成了矩形技术选择(RCOT)的后续方法。由此产生的RCOT-P2P多尺度技术选择建模框架考虑了市场效应,如经济资源约束,作为一种相应的方法设计工程系统及其供应链网络。综合建模框架可以通过考虑工程、环境和经济维度来代表不同利益相关者的利益。案例研究的重点是在水和土地等资源有限的流域安装新的绿色尿素生产系统。随着尿素需求的增加,我们确定了新技术的采用如何改变并受到市场约束的限制。这种多尺度的结果框架是有用的新兴技术的替代效应建模,同时考虑市场效应。
Decisions made by approaches that only consider the environmental domain could result in unexpected outcomes due to burdens shifting to economic and social domains. These consequences could occur through the entire supply chain at multiple spatial scales. In this work, the process-to-planet (P2P) multiscale modeling framework is integrated with the rectangular choice-of-technology (RCOT) consequential approach. The resulting RCOT-P2P multiscale technology choice modeling framework takes account of market effects, such as economic resource constraints, as a consequential approach for designing engineering systems and their supply chain networks. The integrated modeling framework can represent different stakeholders’ interests by considering engineering, environmental, and economic dimensions. The case study focuses on installation of a new green urea production system in a watershed where there are limited supplies of resources, such as water and land area. We identify how the adoption of new technologies could change and be limited by market constraints, as the urea demand increases. This multiscale consequential framework is useful for modeling substitution effects of emerging technologies while considering market effects.
设计生物燃料供应链,同时通过处理湿地减少有害藻华
DOI: 10.1016/j.compchemeng.2019.03.041
发表时间: 2019
影响因子: 4.3
作者:
Ghosh, Tapajyoti;Bakshi, Bhavik R.
通讯作者: Bakshi, Bhavik R.