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How does bioenergy compare with other land-based renewable energy sources globally?

机译:生物能源与全球其他陆基可再生能源相比如何?

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摘要

The potential power generation from land-based bioenergy is predicted globally using a computer model. Simultaneous consideration of land use, cost and carbon restrictions enables practical evaluation of net power output. Comparisons are made with wind and solar power, and a sensitivity analysis is used to explore the effects of different policy assumptions. Biomass is shown to offer only moderate power-generating potential, and would satisfy less than half of current demand even if all suitable existing arable land were used to grow bioenergy crops. However, bioenergy can be cheap to generate given current economics, and is able to remove atmospheric carbon in some cases if coupled with carbon capture and storage. Wind turbines are able to provide more power globally, but photovoltaic solar panels are the only source considered with the potential to satisfy existing demand. Since land-based bioenergy is also restricted by the need to grow food for an expanding population, and technological developments are likely to greatly increase the viability of other renewable sources, the role of land-based bioenergy appears relatively limited and short-term.
机译:全球范围内使用计算机模型预测了陆地生物能源的潜在发电量。同时考虑土地使用,成本和碳限制,可以对净功率输出进行实际评估。对风能和太阳能进行了比较,并使用敏感性分析来探索不同政策假设的影响。事实证明,生物质只能提供中等水平的发电潜力,即使使用了所有合适的现有耕地来种植生物能源作物,也只能满足当前需求的不到一半。但是,在当前的经济条件下,生物能源的生产成本可能很便宜,并且在某些情况下,如果与碳捕获和储存结合使用,则能够去除大气中的碳。风力涡轮机能够在全球范围内提供更多电力,但是光伏太阳能电池板是唯一被认为有潜力满足现有需求的能源。由于陆基生物能源还受到人口增长所需要的粮食种植的限制,并且技术发展可能会大大提高其他可再生资源的生存能力,因此陆基生物能源的作用似乎相对有限且是短期的。

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