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An economic holistic feasibility assessment of centralized and decentralized biogas plants with mono-digestion and co-digestion systems

机译:具有单一消化和共消化系统的集中式和分散式沼气厂的经济整体可行性评估

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摘要

Agricultural biogas plants are becoming attractive in several countries, mainly due to the possibility of obtaining additional incomes by selling energy to electrical grid. However, specific conditions under which biogas plants would be economically viable are not yet well known. This paper presents results of analysis made to find optimal sizes of biogas plants in terms of electrical capacity. They were evaluated based on economic models of centralized and decentralized technological schemes and their respective mono-digestion and co-digestion systems of cattle manure, maize silage and grass silage as feedstock, for electricity generation capacities between 100 and 1000 kWe. Results show that biogas plants using mono-substrates such as cattle manure present economic viability for electrical power higher than 740 kWe. Co-digestion system presents economic viability for electrical power higher 1000 kWe. Finally, public policies related to development of these technologies, mainly in the form of subsidies, such as those existing in developed countries, could help to make the co-digestion agricultural biogas plants economically viable for the Brazilian scenario. The novelty of the paper consists in the determination of the optimum size of mono- and co-digestion patterns for Brazilian conditions showing as results the necessary level of subsidies and the paths to economic viability. (C) 2019 Elsevier Ltd. All rights reserved.
机译:农业沼气厂在一些国家变得越来越有吸引力,这主要是因为有可能通过向电网出售能源来获得额外的收入。但是,沼气厂在经济上可行的具体条件尚不为人所知。本文介绍了分析结果,以根据沼气发电量找到最佳沼气厂规模。根据集中和分散技术计划的经济模型以及牛粪,玉米青贮饲料和草料青贮饲料作为原料的各自的单消化和共消化系统的发电能力,对它们进行了评估。结果表明,使用单一基质(例如牛粪)的沼气厂对于高于740 kWe的电力而言,具有经济可行性。共消化系统为1000 kWe以上的电力提供了经济可行性。最后,与这些技术的发展有关的公共政策,主要是补贴形式,例如发达国家的补贴,可能有助于使共同消化的农业沼气厂在经济上适合巴西的设想。本文的新颖之处在于确定巴西条件下单消化和共消化模式的最佳尺寸,从而显示出必要的补贴水平和实现经济生存的途径。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2019年第8期|40-51|共12页
  • 作者单位

    Natl Agr Univ La Molina UNALM, Renewable Energy Lab LER, Ave La Molina S-N, La Molina, Peru|Fed Univ Itajuba UNIFEI, Inst Mech Engn IEM, Excellence Grp Thermal Power & Distributed Genera, Ave BPS 1303, BR-37500903 Itajuba, MG, Brazil;

    Fed Univ Itajuba UNIFEI, Inst Mech Engn IEM, Excellence Grp Thermal Power & Distributed Genera, Ave BPS 1303, BR-37500903 Itajuba, MG, Brazil;

    Fed Univ Itajuba UNIFEI, Inst Mech Engn IEM, Excellence Grp Thermal Power & Distributed Genera, Ave BPS 1303, BR-37500903 Itajuba, MG, Brazil;

    Cuban Inst Sugarcane Derivat Res ICIDCA, Via Blanca & Carretera Cent 804,AP 4036, Havana, Cuba;

    Fed Univ Uberlandia UFU, Incubat Ctr Social Solidar Enterprises CIEPS, Ave Joao Naves de Avila,2121,Campus Santa Monica, BR-38400902 Uberlandia, MG, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Agricultural biogas plant; Optimal size; Economic model; Cattle manure; Maize and grass silage; Mono and Co-Digestion pattern;

    机译:农业沼气厂;最佳规模;经济模型;牛粪;玉米和草料青贮;单和共消化模式;
  • 入库时间 2022-08-18 04:19:56

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