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燃煤和燃气电厂碳捕集与封存的混合冷却系统的技术经济评估。

A Techno-Economic Assessment of Hybrid Cooling Systems for Coal- and Natural-Gas-Fired Power Plants with and without Carbon Capture and Storage.

机构信息

Department of Engineering and Public Policy, Carnegie Mellon University , Pittsburgh, Pennsylvania 15213, United States.

出版信息

Environ Sci Technol. 2016 Apr 5;50(7):4127-34. doi: 10.1021/acs.est.6b00008. Epub 2016 Mar 18.

Abstract

Advanced cooling systems can be deployed to enhance the resilience of thermoelectric power generation systems. This study developed and applied a new power plant modeling option for a hybrid cooling system at coal- or natural-gas-fired power plants with and without amine-based carbon capture and storage (CCS) systems. The results of the plant-level analyses show that the performance and cost of hybrid cooling systems are affected by a range of environmental, technical, and economic parameters. In general, when hot periods last the entire summer, the wet unit of a hybrid cooling system needs to share about 30% of the total plant cooling load in order to minimize the overall system cost. CCS deployment can lead to a significant increase in the water use of hybrid cooling systems, depending on the level of CO2 capture. Compared to wet cooling systems, widespread applications of hybrid cooling systems can substantially reduce water use in the electric power sector with only a moderate increase in the plant-level cost of electricity generation.

摘要

先进的冷却系统可以被部署来提高热电发电系统的弹性。本研究开发并应用了一种新的火电厂建模选项,用于带有和不带有基于胺的碳捕获和储存(CCS)系统的煤或天然气火力发电厂的混合冷却系统。电厂级分析的结果表明,混合冷却系统的性能和成本受到一系列环境、技术和经济参数的影响。一般来说,当炎热期持续整个夏季时,混合冷却系统的湿冷单元需要分担大约 30%的总工厂冷却负荷,以最小化整个系统的成本。CCS 的部署可能会导致混合冷却系统的用水量显著增加,具体取决于 CO2 的捕获水平。与湿冷系统相比,混合冷却系统的广泛应用可以大大减少电力部门的用水量,而仅适度增加电厂级发电成本。

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