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How mismatching institutional logics hinder niche-regime interaction and how boundary spanners intervene

机译:不匹配的制度逻辑如何阻碍利基与政权的互动,以及边界扳手如何干预

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The promotion of renewable energy production requires the cooperation of previously unrelated actors. In the Netherlands, a government subsidy pushes biomethane producers into a relationship with operators of the gas network. However, this cooperation proved to be very difficult. This research analyzes the problematic interaction between producers and network operators in the case of biomethane injection in the Dutch natural gas grid. We draw on the concept of 'institutional logics' to improve our understanding of this interaction and to identify divergent practices and belief systems. This research contributes to the multilevel perspective on socio-technical transitions, in particular to insights into the interaction between the biomethane niche and gas regime. Based on interviews and secondary data sources we find diverging logics for biomethane producers and network operators. The differences regarding the goals pursued, decisionmaking style, and the scale of operations hamper productive cooperation. We also observe that 'boundary spanning' individuals step in to increase mutual understanding and to forge productive working relationships. However, the existing logics leave very little room for maneuvering, given the embeddedness and stability of logics in thinking, acting, and physical infrastructure. Mismatching institutional logics form a serious hurdle for successful biomethane injection, and thus hinder the transition towards more renewable energy production. (c) 2015 Elsevier Inc. All rights reserved.
机译:促进可再生能源生产需要先前无关的参与者的合作。在荷兰,政府补贴促使生物甲烷生产商与天然气网络运营商建立了合作关系。但是,这种合作非常困难。这项研究分析了在荷兰天然气网格中注入生物甲烷的情况下,生产商与网络运营商之间存在问题的互动。我们利用“制度逻辑”的概念来增进我们对这种相互作用的理解,并确定不同的实践和信仰体系。这项研究为社会技术转型的多层次视角做出了贡献,尤其是对生物甲烷生态位和气体体系之间相互作用的见解。根据访谈和辅助数据源,我们发现生物甲烷气生产商和网络运营商的逻辑有所不同。在追求的目标,决策风格和业务规模方面的差异阻碍了富有成效的合作。我们还观察到“跨越边界”的个人介入以增进相互了解并建立起生产性的工作关系。但是,考虑到逻辑在思想,行为和物理基础结构中的嵌入性和稳定性,现有的逻辑几乎没有余地。不合理的制度逻辑构成了成功注入生物甲烷的严重障碍,因此阻碍了向更多可再生能源生产的过渡。 (c)2015 Elsevier Inc.保留所有权利。

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