...
首页> 外文期刊>Applied Energy >Integrated biomass-based production of district heat, electricity, motor fuels and pellets of different scales
【24h】

Integrated biomass-based production of district heat, electricity, motor fuels and pellets of different scales

机译:基于生物质的集成化生产不同规模的区域供热,电力,汽车燃料和颗粒

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Woody biomass can be used in different ways to contribute to sustainable development. In this paper, we analyze biomass-based production of district heat, electricity, pellets and motor fuels. We calculate production cost and biomass use of products from standalone production and from different district heat production options, including only heat production and various co/polygeneration options. We optimize the different district heat production systems considering the value of co/polygenerated products, other than district heat, as equal to those produced in minimum-cost standalone plants. Also, we investigate how the scale of district heating systems influences the minimum-cost composition of production units and district heat production costs. We find that co/polygenerated district heat is more cost and fuel efficient than that from heat-only production. Also, reproduction of electricity is more efficient than of motor fuels except for dimethyl-ether production in large district heat production systems. However, the cost difference is minor between coproduction of dimethyl-ether or electricity in such systems. Integrated biopellet production increases the production of electricity or motor fuel and reduces the production cost. District heat production cost depends on fuel price, however, its dependence is reduced if district heat production system is cost-minimized and based on co/polygenerated units. Also, the optimal composition and cost of district heat production depend on the scale of the system. The demand for bio-pellets may limit the potential integrated production of such a product.
机译:木质生物质可以以不同方式使用以促进可持续发展。在本文中,我们分析了以生物质为基础的区域供热,电力,颗粒和汽车燃料的生产。我们计算独立生产和不同区域供热生产方案的产品的生产成本和生物质使用量,包括仅供热和各种联合/多联产方案。我们优化不同的区域供热生产系统,要考虑到联合供热/多联产产品的价值,而不是区域供热,这等于最低成本的独立工厂生产的产品。此外,我们研究了区域供热系统的规模如何影响生产单元的最低成本构成和区域供热生产成本。我们发现,与仅供热生产相比,热电联产/多产集中供热的成本和燃料效率更高。而且,除了在大型区域供热系统中生产二甲醚以外,电力的再生比汽车燃料的效率更高。但是,在这种系统中,联产二甲醚或发电之间的成本差异很小。集成的生物颗粒生产可增加电力或汽车燃料的生产,并降低生产成本。区域供热成本取决于燃料价格,但是,如果区域供热系统的成本最小化且基于共生/多联产单位,则对燃料的依赖关系将降低。而且,区域供热的最佳组成和成本取决于系统的规模。对生物颗粒的需求可能会限制这种产品的潜在综合生产。

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