微型燃气轮机在离网海水淡化和工业废水处理中提供可再生热能和电力的潜力

J. Montes-Sánchez, B. D. Weert, B. Petit, L. García-Rodríguez, D. Sanchez
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引用次数: 2

摘要

由于社会技术经济的不断发展,对各种资源(粮食、淡水、能源和原材料)的需求惊人地增加,不仅在低收入国家,而且在较发达的经济体也造成了紧迫的短缺。这就是海湾合作委员会中非常富裕的国家的情况,这些国家目前正与缺乏淡水供应作斗争,或者是自然水源受到污染构成重大环境威胁的拉丁美洲某些国家的情况。为了评估这种水-能源联系问题,本文研究了可再生能源生产与淡水生产(通过海水淡化)或工业废水处理相结合的系统。评估了三种可再生能源技术:太阳能微型燃气涡轮机、风力涡轮机和光伏电池板。在所有情况下,都考虑离网安装。本文介绍了这三种系统的特点,并对技术指标、成品率和成本进行了比较。风能和光伏发电是标准的方法,已经被许多商业工厂证明,但是太阳能微型燃气轮机表现出额外的灵活性(特别是当考虑混合动力时),并且具有不仅产生电力而且产生热量的不同特征。这使得不同类型的水处理技术能够结合起来,以增加水的产量/采收率,从而减少相关生产过程(无论是淡水还是其他商品或服务)对环境的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential of Micro Gas Turbines to Provide Renewable Heat and Power in Off-Grid Applications for Desalination and Industrial Wastewater Treatment
The demand for all types of resources (food, freshwater, energy and raw materials) has increased alarmingly due to the continuous techno-economic development of society, bringing about a pressing shortage not only in low-income countries but also in more developed economies. Such is the case for the very wealthy countries in the Gulf Cooperation Council, which are currently struggling with the lack of fresh water supply, or certain countries in Latin America where the contamination of natural water sources poses a major environmental threat. In order to assess this water-energy nexus problem, this paper looks into systems where the production of renewable power is combined with either freshwater production (through desalination) or industrial wastewater treatment for effluent control. Three enabling renewable energy technologies are assessed: solar micro gas turbines, wind turbines and photovoltaic panels. In all cases, off-grid installations are considered. The paper describes the characteristics of these three systems and provides a comparison of technical specifications, yield and costs. Wind and photovoltaic are the standard approach, as already proven by a number of commercial plants, but solar micro gas turbines exhibit additional flexibility (in particular when hybridisation is considered) and have the differential feature of producing not only electric power but also heat. This enables the combination of different types of water treatment technologies in order to increase water production/recovery which, in turn, reduces the environmental impact of the production process associated (either freshwater or other good or service).
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