遵从还是改变?沼气系统社会嵌入的比较案例分析

IF 2.1 4区 工程技术 Q3 ENERGY & FUELS Biofuels-Uk Pub Date : 2023-09-19 DOI:10.1080/17597269.2023.2257960
Hanna Zanatta
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引用次数: 0

摘要

新的社会技术系统的传播对于应对当代可持续性挑战至关重要。在社会嵌入的文献背景下,本文探讨了作为共同构建创新及其社会环境过程的社会技术系统的扩散。本文采用比较研究设计来分析沼气系统在巴西四个州的扩散。在此过程中,本文做出了两个贡献。首先,它对适应-顺应和拉伸-转化类型的细微差别做出了贡献,表明创新不仅在社会环境中表现出混合模式,而且在不同部门(例如农业、卫生和废物管理)中也表现出混合模式。此外,创新在不同的行政级别(如市、州和国家)表现出混合的一致性和转换模式。其次,它将社会嵌入研究的经验基础扩大到全球南方和沼气技术,这分别代表了一个碎片化的背景和一个复杂的创新。总之,本文有助于进一步理解为什么多功能社会技术系统,如沼气系统,在某些情况下扩散,而不是在其他情况下。
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To conform or to transform? A comparative case analysis of the societal embedding of biogas systems
The diffusion of new socio-technical systems is essential for tackling contemporary sustainability challenges. Against the backdrop of literature on societal embedding this paper explores the diffusion of socio-technical systems as a process of co-constructing innovations and their societal environments. This paper uses a comparative research design to analyze the diffusion of biogas systems across four Brazilian states. In doing so, this paper makes two contributions. First, it contributes with nuances regarding the fit-and-conform and stretch-and-transform typology, showing that innovations exhibit not only hybrid patterns across societal environments but also across different sectors (e.g. agriculture, sanitation, and waste management). Furthermore, innovations exhibit hybrid conform and transform patterns across different administrative levels (e.g. municipal, state, and national). Second, it broadens the empirical base of societal embedding studies to the Global South and biogas technologies which represent a fragmented context and a complex innovation, respectively. Altogether, the paper contributes to further understanding of why multi-functional socio-technical systems, such as biogas systems, diffuse in certain contexts and not in others.
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来源期刊
Biofuels-Uk
Biofuels-Uk Energy-Renewable Energy, Sustainability and the Environment
CiteScore
5.40
自引率
9.50%
发文量
56
期刊介绍: Current energy systems need a vast transformation to meet the key demands of the 21st century: reduced environmental impact, economic viability and efficiency. An essential part of this energy revolution is bioenergy. The movement towards widespread implementation of first generation biofuels is still in its infancy, requiring continued evaluation and improvement to be fully realised. Problems with current bioenergy strategies, for example competition over land use for food crops, do not yet have satisfactory solutions. The second generation of biofuels, based around cellulosic ethanol, are now in development and are opening up new possibilities for future energy generation. Recent advances in genetics have pioneered research into designer fuels and sources such as algae have been revealed as untapped bioenergy resources. As global energy requirements change and grow, it is crucial that all aspects of the bioenergy production process are streamlined and improved, from the design of more efficient biorefineries to research into biohydrogen as an energy carrier. Current energy infrastructures need to be adapted and changed to fulfil the promises of biomass for power generation. Biofuels provides a forum for all stakeholders in the bioenergy sector, featuring review articles, original research, commentaries, news, research and development spotlights, interviews with key opinion leaders and much more, with a view to establishing an international community of bioenergy communication. As biofuel research continues at an unprecedented rate, the development of new feedstocks and improvements in bioenergy production processes provide the key to the transformation of biomass into a global energy resource. With the twin threats of climate change and depleted fossil fuel reserves looming, it is vitally important that research communities are mobilized to fully realize the potential of bioenergy.
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