首页> 外文OA文献 >An assessment of UK bioenergy production, resource availability, biomass gasification and life cycle impacts
【2h】

An assessment of UK bioenergy production, resource availability, biomass gasification and life cycle impacts

机译:评估英国生物能源生产,资源可用性,生物质气化和生命周期影响

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Energy use and the environment are inextricably linked and form a key role in concerns over sustainability. All methods of energy production involve resource uncertainties and environmental impacts. A clear example of this is the use of fossil fuels which present three main problems, being: finite resources; significant contribution to environmental pollution; and reliance on imports. Hence there is a clear need to reduce the use of fossil fuels for energy. Bioenergy has the potential to both displace fossil fuels, and reduce the effect of climate change by sequestering carbon dioxide during the production of biomass. It is also possible that bioenergy can reduce the UK’s dependence on energy imports and boost the rural economy. This thesis provides an interdisciplinary assessment of bioenergy production in the UK. Due to the complexities of bioenergy systems several appraisal methods have been used. An initial study examined the barriers to and drivers for UK bioenergy development as a whole. It was found that for projects to be successful, bioenergy schemes need to be both economically attractive and environmentally sustainable. A biomass resource assessment was then completed using the South West of England as a case study. This demonstrates that bioenergy can make a useful contribution to the UK’s energy supply, due to the diverse range of biomass feedstocks currently available. However a range of barriers and constraints will need to be overcome if the UK is to reach its bioenergy potential. To assess the potential environmental impacts of bioenergy production different case studies were selected. Life cycle assessment is widely regarded as one of the best methodologies for the evaluation of burdens associated with bioenergy production. This was applied, alongside net energy analysis, to a small-scale biomass gasification plant which uses wood waste as a feedstock. As an alternative biomass source, the perennial energy crops Miscanthus and Willow were also assessed. Several different scenarios of biomass cultivation, transportation, and energy conversion were then compared, to assess the potential environmental impacts. Biomass gasification offers good potential for reducing fossil fuel use and climate change impacts. Nonetheless embodied energy in the construction phase can be high and other impacts such as particulate emissions, ecotoxicity and land use can be important. Therefore environmental benefits are maximised when both electricity and heat are utilised together, and when waste is used as feedstock. The ultimate applicability of biomass gasification is restricted by the quantity of feedstocks that can be made available for conversion. Perennial energy crops offer several advantages over annual crops including more positive energy balances and reduced agro-chemical inputs. However their cultivation needs to be carefully sited to avoid issues of land use change and the displacement of food crops. This study shows that each bioenergy production pathway needs to be assessed using a range of appraisal techniques, which include: biomass resource assessment, technical and economic feasibility, life cycle assessment and net energy analysis. It concludes that biomass gasification CHP offers an alternative to fossil fuel generation but more technical knowledge is required in the UK if it is to become widely used for biomass energy.
机译:能源使用与环境有着千丝万缕的联系,并在关注可持续性方面发挥了关键作用。所有能源生产方法都涉及资源不确定性和环境影响。一个明显的例子是化石燃料的使用,这带来了三个主要问题,即:有限的资源;对环境污染的重大贡献;和依赖进口。因此,显然需要减少使用化石燃料作为能源。生物能源具有替代化石燃料的潜力,并且通过在生物质的生产过程中隔离二氧化碳来减少气候变化的影响。生物能源还可能减少英国对能源进口的依赖并促进农村经济。本论文对英国的生物能源生产进行了跨学科评估。由于生物能源系统的复杂性,已经使用了几种评估方法。初步研究研究了整个英国生物能源发展的障碍和动因。人们发现,要使项目成功,生物能源计划既要具有经济吸引力,又要具有环境可持续性。然后,以英格兰西南部为案例研究完成了生物质资源评估。这表明由于目前可用的生物质原料种类繁多,生物能源可以为英国的能源供应做出有益的贡献。但是,如果英国要发挥其生物能源潜力,就需要克服一系列障碍和限制。为了评估生物能源生产的潜在环境影响,选择了不同的案例研究。生命周期评估被广泛认为是评估与生物能源生产相关的负担的最佳方法之一。将其与净能量分析一起应用于以木材废料为原料的小型生物质气化厂。作为替代生物质来源,还评估了多年生能源作物芒草和柳树。然后比较了几种不同的生物量种植,运输和能源转化方案,以评估潜在的环境影响。生物质气化为减少化石燃料的使用和气候变化的影响提供了良好的潜力。但是,在施工阶段所包含的能量可能很高,其他影响(例如颗粒物排放,生态毒性和土地使用)可能也很重要。因此,当同时使用电和热以及将废物用作原料时,环境效益将最大化。生物质气化的最终适用性受到可用于转化的原料数量的限制。多年生能源作物比年度作物具有多个优势,包括更积极的能源平衡和减少的农业化学投入。但是,必须小心地种植它们,以免发生土地用途变化和粮食作物流离失所的问题。这项研究表明,每种生物能源生产途径都需要使用一系列评估技术进行评估,包括:生物质资源评估,技术和经济可行性,生命周期评估和净能源分析。结论是,生物质气化热电联产提供了一种替代化石燃料的方法,但是要使其广泛用于生物质能,英国需要更多的技术知识。

著录项

  • 作者

    Adams Paul;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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