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南欧农业产业的高影响力生物废料作为第二代生物炼制厂的原料。

High impact biowastes from South European agro-industries as feedstock for second-generation biorefineries.

机构信息

a Department of Civil , Chemical, Environmental and Materials Engineering (DICAM), Alma Mater Studiorum, University of Bologna , Bologna , Italy.

出版信息

Crit Rev Biotechnol. 2016;36(1):175-89. doi: 10.3109/07388551.2014.947238. Epub 2014 Nov 6.

Abstract

Availability of bio-based chemicals, materials and energy at reasonable cost will be one of the forthcoming issues for the EU economy. In particular, the development of technologies making use of alternative resources to fossil fuels is encouraged by the current European research and innovation strategy to face the societal challenge of natural resource scarcity, fossil resource dependence and sustainable economic growth. In this respect, second- generation biorefineries, i.e. biorefineries fed with biowastes, appear to be good candidates to substitute and replace the present downstream processing scheme. Contrary to first-generation biorefineries, which make use of dedicated crops or primary cultivations to achieve such a goal, the former employ agricultural, industrial, zootechnical, fishery and forestry biowastes as the main feedstock. This leaves aside any ethical and social issue generated by first-generation approaches, and concomitantly prevents environmental and economical issues associated with the disposal of the aforementioned leftovers. Unfortunately, to date, a comprehensive and updated mapping of the availability and potential use of bioresources for second-generation biorefineries in Europe is missing. This is a lack that severely limits R&D and industrial applications in the sector. On the other hand, attempts at valorizing the most diverse biowastes dates back to the nineteenth century and plenty of information in the literature on their sustainable exploitation is available. However, the large majority of these investigations have been focused on single fractions of biowastes or single steps of biowaste processing, preventing considerations on an integrated and modular (cascade) approach for the whole valorization of organic leftovers. This review aims at addressing these issues by gathering recent data on (a) some of the main high-impact biowastes located in Europe and in particular in its Southern part, and (b) the bio-based chemicals, materials and fuels that can be produced from such residues. In particular, we focused on those key compounds referred to as "chemical platforms", which have been indicated as fundamental to generate the large majority of the industrially relevant goods to date.

摘要

生物基化学品、材料和能源的供应成本将是欧盟经济面临的问题之一。特别是,利用替代化石燃料的资源开发技术,受到当前欧洲研究和创新战略的鼓励,以应对自然资源短缺、对化石资源的依赖和可持续经济增长的社会挑战。在这方面,第二代生物精炼厂,即利用生物废物作为原料的生物精炼厂,似乎是替代和取代当前下游加工方案的良好候选者。与第一代生物精炼厂不同,第一代生物精炼厂利用专用作物或初级种植来实现这一目标,第二代生物精炼厂则利用农业、工业、畜牧业、渔业和林业生物废物作为主要原料。这就避免了第一代方法产生的任何伦理和社会问题,同时也防止了与处理上述废物相关的环境和经济问题。不幸的是,迄今为止,欧洲第二代生物精炼厂生物资源的可用性和潜在用途的全面和更新的映射仍然缺失。这严重限制了该领域的研发和工业应用。另一方面,对最多种类的生物废物进行增值利用的尝试可以追溯到 19 世纪,并且有大量关于其可持续利用的文献信息。然而,绝大多数这些研究都集中在生物废物的单个部分或生物废物处理的单个步骤上,这就阻止了对整个有机废物增值的综合和模块化(级联)方法的考虑。本综述旨在通过收集关于以下内容的最新数据来解决这些问题:(a)位于欧洲,特别是其南部的一些主要高影响力生物废物,以及(b)可以从这些残留物中生产的生物基化学品、材料和燃料。特别是,我们专注于那些被称为“化学平台”的关键化合物,这些化合物已被认为是产生迄今为止大多数工业相关产品的基础。

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