首页> 外文期刊>Applied Energy >Opportunities for integration of biofuel gasifiers in natural-gas combined heat-and-power plants in district-heating systems
【24h】

Opportunities for integration of biofuel gasifiers in natural-gas combined heat-and-power plants in district-heating systems

机译:在区域供热系统中将生物燃料气化炉整合到天然气联合热电厂中的机会

获取原文
获取原文并翻译 | 示例
       

摘要

As political pressure to improve efficiency and reduce CO_2-emissions increases, natural gas combined cycle (NGCC) combined heat-and-power (CHP) technology is an increasingly attractive option for district-heating systems. However, as CO_2-emissions reduction targets become more ambitious, it is expected that there will be pressure to reduce CO_2-emissions from such units well before they reach the end of their useful lifetime. One way to achieve this goal is to integrate a biofuel gasification unit at the plant site. After clean-up, the produced syngas can be co-fired in the CHP unit. This paper discusses the economic performance of this type of retrofit, with specific emphasis on the impact of the following parameters: (ⅰ) the original NGCC CHP plant's power-to-heat ratio; (ⅱ) the size of the district-heating system's annual heat-energy demand; (ⅲ) the fuel mix in the district-heating system; and (ⅳ) the availability of low-cost waste-heat that can be delivered to the district-heating system. The economic performance of the retrofitted CHP unit is measured as the overall cost of electricity production (COE). COE is analysed for four different energy-market parameter sets (referred to as Scenarios), including fuel prices, costs associated with energy and climate change policy instruments, and market electricity prices. The results indicate that even relatively high costs associated with CO_2 emissions are insufficient to motivate retrofitting an NGCC CHP unit with an integrated biofuel-gasification unit. To promote this type of retrofit, an additional premium value for electricity generated from renewable fuel sources is required (such as the Swedish REC renewable energy certificate system). An unexpected result of this study is that the required value of REC is essentially independent of the energy market scenario considered.
机译:随着提高效率和减少CO_2排放的政治压力不断增加,天然气联合循环(NGCC)联合热电联产(CHP)技术成为区域供热系统越来越有吸引力的选择。但是,随着减少CO_2排放的目标变得更加雄心勃勃,可以预见,在这些装置达到其使用寿命之前,将有压力减少这些装置的CO_2排放。实现这一目标的一种方法是在工厂现场整合生物燃料气化装置。净化后,生成的合成气可以在CHP单元中共烧。本文讨论了这种类型的改造的经济性能,并特别强调了以下参数的影响:(ⅰ)原始NGCC CHP电厂的电热比; (ⅱ)区域供热系统每年的热能需求量; (ⅲ)区域供热系统中的燃料混合物; (ⅳ)可以提供给区域供热系统的低成本废热。改造后的热电联产机组的经济性能以总发电成本(COE)进行衡量。针对四个不同的能源市场参数集(称为方案)分析了COE,包括燃料价格,与能源和气候变化政策工具相关的成本以及市场电价。结果表明,即使与CO_2排放相关的相对较高的成本也不足以促使人们对NGCC CHP装置进行集成化的生物燃料气化装置的改造。为了促进这种类型的改造,需要使用可再生燃料源产生的电力附加保费价值(例如瑞典REC可再生能源证书系统)。这项研究出乎意料的结果是,所需的REC值基本上与所考虑的能源市场情况无关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号