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将土地利用要求和环境约束纳入加利福尼亚低碳电力规划。

Incorporating land-use requirements and environmental constraints in low-carbon electricity planning for California.

机构信息

Energy and Resources Group, University of California at Berkeley , Berkeley, California 94720, United States.

出版信息

Environ Sci Technol. 2015 Feb 17;49(4):2013-21. doi: 10.1021/es502979v. Epub 2015 Jan 28.

Abstract

The land-use implications of deep decarbonization of the electricity sector (e.g., 80% below 1990 emissions) have not been well-characterized quantitatively or spatially. We assessed the operational-phase land-use requirements of different low-carbon scenarios for California in 2050 and found that most scenarios have comparable direct land footprints. While the per MWh footprint of renewable energy (RE) generation is initially higher, that of fossil and nuclear generation increases over time with continued fuel use. We built a spatially explicit model to understand the interactions between resource quality and environmental constraints in a high RE scenario (>70% of total generation). We found that there is sufficient land within California to meet the solar and geothermal targets, but areas with the highest quality wind and solar resources also tend to be those with high conservation value. Development of some land with lower conservation value results in lower average capacity factors, but also provides opportunity for colocation of different generation technologies, which could significantly improve land-use efficiency and reduce permitting, leasing, and transmission infrastructure costs. Basing siting decisions on environmentally-constrained long-term RE build-out requirements produces significantly different results, including better conservation outcomes, than implied by the current piecemeal approach to planning.

摘要

深度脱碳电力部门(例如,排放量比 1990 年低 80%)对土地利用的影响尚未得到很好的定量或空间描述。我们评估了 2050 年加利福尼亚州不同低碳情景的运营阶段土地利用需求,发现大多数情景具有可比的直接土地足迹。虽然可再生能源 (RE) 发电的每兆瓦时足迹最初较高,但随着燃料的持续使用,化石和核能发电的足迹会随着时间的推移而增加。我们构建了一个空间显式模型,以了解高 RE 情景(总发电量的>70%)中资源质量和环境约束之间的相互作用。我们发现,加利福尼亚州内有足够的土地来满足太阳能和地热能目标,但风能和太阳能资源质量最高的地区也往往是具有高保护价值的地区。开发一些具有较低保护价值的土地会导致平均容量因子降低,但也为不同发电技术的共置提供了机会,这可以显著提高土地利用效率并降低许可、租赁和输电基础设施成本。基于环境约束的长期可再生能源扩展需求的选址决策会产生与当前零碎规划方法暗示的截然不同的结果,包括更好的保护结果。

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