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A model-based analysis of biomethane production in the Netherlands and the effectiveness of the subsidization policy under uncertainty

机译:基于模型的荷兰生物甲烷生产及不确定性下补贴政策有效性的分析

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Biomethane is a renewable alternative to natural gas. It has the potential to increase the sustainability of the energy system and to help deal with supply problems. However, several factors make the future of biomethane production complex and uncertain, such as resource availability, demand, capacity installation, profitability and the competition between the biomethane and electricity sectors for sharing the available biogas and biomass resources. In this research, we study the dynamics of the Dutch biomethane production and analyze the effects of subsidization policy with a system dynamics model. The policy is tested under uncertainty with respect to three conflicting objectives, namely maximizing production and emission reduction, and minimizing costs. According to the results, the subsidization is crucial to develop biomethane production, and the performance of the policy is enhanced in terms of robustness and of meeting all three objectives satisfactorily when the policy is implemented for a long time, with relatively low subsidy prices. Besides, the subsidization policy is found to be most vulnerable to the producers' uncertain investment response to profitability. In future research, different policy options such as subsidizing other biomass-based renewable energy options and policies affecting the biomethane demand can be tested. (c) 2015 Elsevier Ltd. All rights reserved.
机译:生物甲烷是天然气的可再生替代品。它有可能提高能源系统的可持续性并帮助解决供应问题。但是,有几个因素使生物沼气生产的未来变得复杂和不确定,例如资源可用性,需求,容量安装,盈利能力以及生物沼气和电力部门之间在共享可用沼气和生物质资源方面的竞争。在这项研究中,我们研究了荷兰生物甲烷生产的动态,并使用系统动力学模型分析了补贴政策的效果。针对三个相互冲突的目标(即最大程度地减少生产和减少排放以及最小化成本),对该政策进行了不确定性测试。根据结果​​,补贴对于发展生物甲烷生产至关重要,在长期实施且补贴价格相对较低的情况下,该政策的有效性在稳健性和令人满意地满足所有三个目标方面都得到了提高。此外,发现补贴政策最容易受到生产者对获利能力不确定的投资反应的影响。在未来的研究中,可以测试不同的政策选择,例如补贴其他基于生物质的可再生能源选择以及影响生物甲烷需求的政策。 (c)2015 Elsevier Ltd.保留所有权利。

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