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碳信用额减排:“投入式”燃料生产的技术经济分析。

Carbon credit reduction: A techno-economic analysis of "drop-in" fuel production.

机构信息

CO(2) Research and Green Technology Centre, Vellore Institute of Technology (VIT), Vellore, 632 014, India.

VIT Bhopal University, Bhopal, 466114, India.

出版信息

Environ Pollut. 2023 Jan 1;316(Pt 1):120507. doi: 10.1016/j.envpol.2022.120507. Epub 2022 Oct 27.

Abstract

The current study elucidates the fundamentals of technical, financial, and environmental viability of the processes used for sustainable "drop-in" fuel generation. At present, the price of producing "drop-in" fuels is around two times as costly (5-6 USD/gallon) as the cost of fossil fuels (3 USD/gallon), especially when using second-generation feedstocks. Hence, this necessitates a comprehensive techno-economic understanding of the current technologies with respect to "drop-in"-fuel. This entitles technical-economic viability, and environmental sustainability to make the processes involved commercially viable. In this context, the present review addresses unique contrasts among the various processes involved in "drop-in" fuel production. Furthermore, principles and process flow of techno-economic analysis as well as environmental implications in terms of reduced carbon footprint and carbon credit are elucidated to discuss fundamentals of techno-economic analysis in terms of capital and operational expenditure, revenue, simulation, cash flow analysis, mass and energy balances with respect to evidence-based practices. Case specific techno-economic studies with current developments in this field of research with emphasis on software tools viz., Aspen Plus, Aspen HYSIS, Aspen Plus Economic Analyser (APEC) Aspen Icarus Process Evaluator (AIPE) are also highlighted. The study also emphasis on the carbon foot print of biofuels and its carbon credits (Carbon Offset Credits (COCs) and Carbon Reduction Credits (CRCs)) by leveraging a deep technical and robust business-oriented insights about the techno-economic analysis (TEA) exclusively for the biofuel production.

摘要

本研究阐明了用于可持续“替代”燃料生产的工艺的技术、财务和环境可行性的基础。目前,生产“替代”燃料的价格比化石燃料(每加仑 3 美元)高出约两倍(每加仑 5-6 美元),特别是使用第二代原料时。因此,这需要对“替代”燃料的现有技术进行全面的技术经济理解。这使所涉及的工艺在商业上具有技术经济可行性和环境可持续性。在这方面,本综述针对“替代”燃料生产中涉及的各种工艺之间的独特差异进行了讨论。此外,还阐述了技术经济分析的原理和工艺流程以及减少碳足迹和碳信用方面的环境影响,以根据基于证据的实践讨论技术经济分析的资本和运营支出、收入、模拟、现金流分析、质量和能量平衡的基础。还强调了针对特定案例的技术经济研究以及该研究领域的当前发展,重点是软件工具,如 Aspen Plus、Aspen HYSIS、Aspen Plus Economic Analyser (APEC)、Aspen Icarus Process Evaluator (AIPE)。该研究还通过利用关于技术经济分析(TEA)的深入技术和强大的面向业务的见解,重点关注生物燃料的碳足迹及其碳信用(碳抵消信用(COC)和碳减排信用(CRC)),专门用于生物燃料生产。

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