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Application of Biomass as a Remedy for GHG Emissions

机译:应用生物质作为温室气体排放的补救措施

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摘要

Biomass is considered by many as "the fuel of the future". Indeed, this renewable energy source is nearly CO_2 neutral, which implies a 93% reduction in net CO2 emissions achieved by switching from coal to biomass and an 84% reduction by switching from natural gas-fired cogeneration. However, detailed mechanisms involved in the evolution of biomass during combustion are still unknown. This paper discusses new knowledge of the behavior of biomass during combustion. It provides new data on the fundamental mechanisms responsible for biomass conversion and rearrangement of metals, while showing advantages towards GHG emissions. Tomorrow's biomass power industry in Canada could install, by 2020, as many as 25,000 MW of electric power plants operating on reliable and renewable biomass. This would support almost 180,000 jobs, an increase of 130,000 from the current 50,000, and would substantially revitalize rural economies (e.g., farmers in Saskatchewan could designate parts of the land for energy crops, which could help solve some of their ongoing problems). Such industry would generate reliable base-load electric power without contributing to climate change. Thus, the major incentives for the use of biomass for energy generation are both economical and environmental.
机译:许多人认为生物质是“未来的燃料”。的确,这种可再生能源几乎是CO_2中性的,这意味着通过从煤炭转换为生物质实现的净CO2排放量减少93%,而从以天然气为燃料的热电联产转变为84%。然而,在燃烧过程中涉及生物质演化的详细机制仍是未知的。本文讨论了燃烧过程中生物质行为的新知识。它提供了有关负责生物量转化和金属重排的基本机制的新数据,同时显示了温室气体排放的优势。明天,加拿大的生物质能发电产业到2020年将安装多达25,000兆瓦的可再生生物质能发电厂。这将提供将近18万个工作岗位,比目前的50,000个增加13万个工作岗位,并将极大地振兴农村经济(例如,萨斯喀彻温省的农民可以将部分土地指定为能源作物,这可以帮助解决他们目前遇到的一些问题)。这样的行业将产生可靠的基本负载电力,而不会导致气候变化。因此,使用生物质发电的主要动机是经济的和环境的。

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