Clean development mechanisms in Latin America: Efficiency analysis of energy-generating projects

IF 2.3 4区 环境科学与生态学 Q3 ENGINEERING, CHEMICAL
Antonio Carlos Pacagnella Junior, Gustavo Hermínio Salati Marcondes de Moraes, Adauto Lucas da Silva, Fernando Ferrari Putti, Wagner Wilson Bortoletto
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引用次数: 0

Abstract

This research addresses two key questions related to Clean Development Mechanism (CDM) This research aimed to address two research questions related to CDM projects focused on energy generation in Latin America. The first question aimed to identify the most efficient projects carried out in this region, while the second question sought to identify their characteristics. These questions were proposed based on a clear gap identified in the scientific literature, particularly regarding these ventures developed in the region, which may be of interest to researchers, investors, and project managers alike. To answer these questions, a quantitative analysis was conducted using the database on CDM projects provided by the United Nations Framework Convention on Climate Change, employing two techniques. The first technique used was Data Envelopment Analysis, which generated an efficiency ranking for these projects. In this study, efficiency is considered as the results achieved by the project in terms of energy generation capacity and carbon emission reduction, relative to the resources invested in it. The second technique was the non-parametric Mann–Whitney test, which helped identify characteristics that exhibited significant differences in efficiency. Among the findings, three key characteristics were identified as relevant in explaining this difference: project scale, type, and country where they were developed. Large-scale projects—specifically those in the categories of Methane Avoidance, Landfill Gas, and Energy Efficiency Supply Side—as well as projects carried out in Mexico and Colombia, demonstrated significantly higher efficiency based on the model used in this research. Furthermore, Hydro and Biomass Energy projects were identified as having significantly lower efficiency compared to the others. The outcomes of this study hold significance in two aspects. Firstly, from an academic standpoint, it expands the understanding of project characteristics of these projects in Latin America by establishing a comparative analysis among them. Secondly, from a more practical perspective, the results can guide investors in defining a more suitable profile for energy-generating CDM projects, thereby reducing risks and increasing the likelihood of success. Moreover, these findings can lay the foundation for the formulation of public policies aimed at promoting projects with a more efficient profile. This is especially important given the waning interest in this crucial mechanism over the past decade, potentially spurring the execution of new projects and altering this reality.

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拉丁美洲清洁发展机制:能源发电项目的效率分析
本研究解决了与清洁发展机制(CDM)相关的两个关键问题。本研究旨在解决与以拉丁美洲能源生产为重点的清洁发展机制项目相关的两个研究问题。第一个问题的目的是查明在本区域执行的最有效率的项目,而第二个问题则是查明这些项目的特点。这些问题是基于科学文献中发现的一个明显的差距提出的,特别是关于该地区开发的这些企业,这可能会引起研究人员、投资者和项目经理的兴趣。为了回答这些问题,利用《联合国气候变化框架公约》提供的清洁发展机制项目数据库,采用两种技术进行了定量分析。使用的第一种技术是数据包络分析,它为这些项目生成了一个效率排名。在本研究中,效率被认为是项目在发电能力和碳减排方面取得的成果,相对于项目投入的资源。第二种技术是非参数曼-惠特尼测试,它有助于识别在效率方面表现出显著差异的特征。在调查结果中,确定了与解释这种差异相关的三个关键特征:项目规模、类型和开发国家。根据本研究中使用的模型,大型项目(特别是避免甲烷、垃圾填埋气和能源效率供应方项目)以及在墨西哥和哥伦比亚开展的项目显示出了显著更高的效率。此外,与其他项目相比,水电和生物质能项目的效率明显较低。本研究的结果具有两方面的意义。首先,从学术角度出发,通过对拉美地区这些项目进行比较分析,拓展了对拉美地区这些项目特点的认识。其次,从更实际的角度来看,研究结果可以指导投资者为能源发电的清洁发展机制项目确定更合适的概况,从而降低风险并增加成功的可能性。此外,这些调查结果可以为制订旨在促进更有效项目的公共政策奠定基础。鉴于过去十年来对这一关键机制的兴趣逐渐减弱,这一点尤其重要,这可能会刺激新项目的实施,并改变这一现实。
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来源期刊
Environmental Progress & Sustainable Energy
Environmental Progress & Sustainable Energy 环境科学-工程:化工
CiteScore
5.00
自引率
3.60%
发文量
231
审稿时长
4.3 months
期刊介绍: Environmental Progress , a quarterly publication of the American Institute of Chemical Engineers, reports on critical issues like remediation and treatment of solid or aqueous wastes, air pollution, sustainability, and sustainable energy. Each issue helps chemical engineers (and those in related fields) stay on top of technological advances in all areas associated with the environment through feature articles, updates, book and software reviews, and editorials.
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