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Contribution of encouraging the future use of biomethane to resolving sustainability and energy security challenges: The case of the UK

机译:鼓励将来使用生物甲烷的贡献解决可持续性和能源安全挑战:英国的案例

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The focus of this research is the potential of biomethane in Britain's gas grid. It examines its relative ability to address Britain's sustainability and energy security challenges from an economic perspective. Such research is important because UK is wedded to gas for heat production and power generation and is increasingly dependent on imported gas, in line with shrinking domestic production, and uncertain future trading relationships. Also, dependency on natural gas, threatens Britain achieving its legally-binding carbon budgets. The study included a thorough literature review, primary research to finally uncover the views of key UK market participants plus analytical modelling. The findings reveal that the market is cautiously optimistic, despite reservations regarding feedstock availability and the impending cessation of subsidy approvals. Investors are in greater need of long-term certainty, however, and the challenge of decarbonising heat and heavy-duty transport warrants this. Retail price premiums are polarised but, in line with wholesale costs, relatively high compared to electricity. The key recommendation is for the policymakers to follow precedents in renewable electricity and liquid biofuels, by mandating that energy suppliers, owners of heavy-duty road fleets and occupiers of new buildings purchase biomethane. In tandem, feedstock and grid-entry restrictions must be tackled creatively. (C) 2020 International Energy Initiative. Published by Elsevier Inc. All rights reserved.
机译:本研究的重点是英国气体网格中的生物甲烷的潜力。它探讨了与经济角度来看满足英国可持续发展和能源安全挑战的相对能力。这种研究很重要,因为英国与热量生产和发电的气体呈现出气体,越来越依赖进口气体,符合国内生产萎缩,不确定的未来交易关系。此外,对天然气的依赖,威胁到英国实现其具有法律约束力的碳预算。该研究包括彻底的文献综述,初级研究终于揭示了英国市场参与者与分析建模的关键观。结果表明,尽管有关原料可用性和即将停止补贴批准,但市场仍然是谨慎态度。然而,投资者更加需要长期确定性,而脱碳热量和重型运输的挑战则担保。零售价格保费是偏振的,但与批发成本相比,与电力相对较高。关键建议是针对政策制定者遵循可再生电力和液质燃料的先例,通过授权能源供应商,重型道路车队和新建筑物购买生物甲烷的占用者的能力。在串联中,必须创造性地解决原料和网格进入限制。 (c)2020国际能源倡议。由elsevier Inc.出版的所有权利保留。

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