McKendry Peter
Applied Environmental Research Centre Ltd, Feering, Colchester, UK.
Bioresour Technol. 2002 May;83(1):37-46. doi: 10.1016/s0960-8524(01)00118-3.
The use of renewable energy sources is becoming increasingly necessary, if we are to achieve the changes required to address the impacts of global warming. Biomass is the most common form of renewable energy, widely used in the third world but until recently, less so in the Western world. Latterly much attention has been focused on identifying suitable biomass species, which can provide high-energy outputs, to replace conventional fossil fuel energy sources. The type of biomass required is largely determined by the energy conversion process and the form in which the energy is required. In the first of three papers, the background to biomass production (in a European climate) and plant properties is examined. In the second paper, energy conversion technologies are reviewed, with emphasis on the production of a gaseous fuel to supplement the gas derived from the landfilling of organic wastes (landfill gas) and used in gas engines to generate electricity. The potential of a restored landfill site to act as a biomass source, providing fuel to supplement landfill gas-fuelled power stations, is examined, together with a comparison of the economics of power production from purpose-grown biomass versus waste-biomass. The third paper considers particular gasification technologies and their potential for biomass gasification.
如果我们要实现应对全球变暖影响所需的变革,使用可再生能源就变得越来越必要。生物质是最常见的可再生能源形式,在第三世界广泛使用,但直到最近,在西方世界的使用较少。最近,人们把很多注意力集中在确定合适的生物质种类上,这些生物质能够提供高能量输出,以取代传统的化石燃料能源。所需生物质的类型很大程度上取决于能量转换过程以及所需能量的形式。在三篇论文的第一篇中,研究了(在欧洲气候条件下)生物质生产的背景和植物特性。在第二篇论文中,回顾了能量转换技术,重点是生产气态燃料,以补充从有机废物填埋产生的气体(填埋气),并用于燃气发动机发电。研究了恢复后的填埋场作为生物质源的潜力,即提供燃料以补充以填埋气为燃料的发电站,并比较了专门种植的生物质发电与废弃生物质发电的经济性。第三篇论文考虑了特定的气化技术及其生物质气化潜力。