International Centre for Science and High Technology of the United Nations Industrial Development Organization, AREA Science Park-Bld. B, Padriciano 99, 34149, Trieste, Italy.
ChemSusChem. 2010 Oct 25;3(10):1106-33. doi: 10.1002/cssc.201000052.
Next-generation biofuels, such as cellulosic bioethanol, biomethane from waste, synthetic biofuels obtained via gasification of biomass, biohydrogen, and others, are currently at the center of the attention of technologists and policy makers in search of the more sustainable biofuel of tomorrow. To set realistic targets for future biofuel options, it is important to assess their sustainability according to technical, economical, and environmental measures. With this aim, the review presents a comprehensive overview of the chemistry basis and of the technology related aspects of next generation biofuel production, as well as it addresses related economic issues and environmental implications. Opportunities and limits are discussed in terms of technical applicability of existing and emerging technology options to bio-waste feedstock, and further development forecasts are made based on the existing social-economic and market situation, feedstock potentials, and other global aspects. As the latter ones are concerned, the emphasis is placed on the opportunities and challenges of developing countries in adoption of this new industry.
下一代生物燃料,如纤维素生物乙醇、废物沼气、生物质气化合成生物燃料、生物氢等,目前是技术人员和政策制定者关注的焦点,他们正在寻找更可持续的未来生物燃料。为了为未来的生物燃料选择设定现实目标,根据技术、经济和环境措施评估它们的可持续性非常重要。为此,本综述全面介绍了下一代生物燃料生产的化学基础和相关技术方面,以及相关的经济问题和环境影响。根据现有和新兴技术选择对生物废料原料的技术适用性,讨论了机会和限制,并根据现有社会经济和市场情况、原料潜力和其他全球方面,对进一步的发展进行了预测。就后者而言,重点是发展中国家在采用这一新产业方面的机遇和挑战。