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Перспективы развития топливных ячеек

The article is devoted to the solution of a complex of problems that arise in small and medium-scale treatment complexes, gas production plants and small and medium-capacity power plants associated with the processing of crude methane and the possibility of reducing the greenhouse effect.The economic feasibility of the development of fuel cells (FC) on raw biomethane was demonstrated by the authors in previous publications.The specificity of the solution of problems is focused on small and medium-scale treatment complexes, gas production plants and small and medium power plants.The aim of the study is to show the possibility of solving a multicomponent task of developing fuel cells, including the experimental determination of the actual use of sodium formate as a reducing agent for the production of electricity in a fuel cell (FC).Results are the following: the possibility of solving the issues of reducing greenhouse gas emissions into the atmosphere during processing of waste products of human vital activity is proved. A method for converting methane and carbon dioxide emissions into useful products is shown.
Статья посвящена решению комплекса проблем, которые возникают на малых и средних очистных комплексах, заводах по производству газа и электростанциях малой и средней мощности, связанных с переработкой сырого метана и возможности уменьшения парникового эффекта.Экономическая целесообразность разработки топливных ячеек (ТЯ) на сыром биометане была показана авторами в прежних публикациях.Специфика решения задач ориентированна на малые и средние очистные комплексы, заводы по производству газа и электростанции малой и средней мощности.Цель исследования показать возможность решения многокомпонентной задачи развития топливных ячеек, включая экспериментальное определение реального использования формиата натрия в качестве восстановителя для производства электроэнергии в топливном элементе (ТЭ).Результаты доказана возможность решения вопросов снижения выбросов парниковых газов в атмосферу при переработке отходов продуктов жизнедеятельности человека. Показан способ преобразования выбросов метана и двуокиси углерода в полезные продукты.
№5 (227) (2017)
- Saint Petersburg Mining University Russian Federation
- Saint Petersburg Mining University Russian Federation
fuel cell, Mining engineering. Metallurgy, топливная ячейка, TN1-997, electricity generation, fuel element, synthesis gas, производство электроэнергии, топливный элемент, синтез-газ
fuel cell, Mining engineering. Metallurgy, топливная ячейка, TN1-997, electricity generation, fuel element, synthesis gas, производство электроэнергии, топливный элемент, синтез-газ
citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).0 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Average influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Average impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Average
