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Integrated System Approach to Sustainable Development, Bio-fuels and Bio-refineries

机译:可持续发展,生物燃料和生物炼油厂的综合系统方法

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The most efficient approach to organize and communicate knowledge between different disciplines and help in innovation and the creation of new knowledge is the system approach. Sustainable Development (SD) is cross-disciplinary by its very nature requiring close collaboration between all engineering specializations as well as other disciplines. Efficient engineering and Environmental Engineering (EE) are important, necessary but not sufficient conditions for sustainability. Sustainability requires the use of Renewable Resources (RRs) to satisfy the needs of society especially with regard to renewable Bio-Fuels (BFs). The use of RRs which are edible agriculture products to produce BFs is not a strategic solution because of the negative socio-economical impact of using "food" for "fuel". The most strategically promising rout is the use of wasteful biomass and/or energy crops planted in lands and using water not suitable for agriculture of editable products. BFs are location sensitive and therefore will all co-exist and different technologies for their production will also co-exist due to sensitivity of the technology choice to available capital and market. Modern societies will move from the present matrix of dirty and non-renewable fuels to a matrix of clean and renewable fuels. It is important to realize that societies do not live only on fuels/energy introducing the concept of Integrated Bio-^sRefineries(IBRs) producing a wide range of Bio-Products (BPs) in addition to BFs and Direct Energy (DE) to achieve overall SD and not only sustainability with respect to fuels. BFs and IBRs based on waste RRs as feedstock do not only produce useful BFs, BPs and DE but also solve environmental problems through this useful utilization of the waste materials.
机译:最有效的方法来组织和沟通不同学科和创新帮助和新知识的创造之间的知识是系统的方法。可持续发展(SD)是跨学科本身的性质,要求所有工程专业化之间的紧密合作,以及其他学科。高效的工程和环境工程(EE)是重要的,必要的,但不是充分条件可持续性。可持续发展要求使用可再生资源(RRS),以满足社会的需求,特别是对可再生生物燃料(BFS)。使用的RR这是食用农产品生产高炉是不是因为使用“食”为“燃料”的消极社会经济影响的战略解决方案。最有前途的战略性溃败是利用生物质浪费和/或能源作物种植的土地和水的使用不适合于编辑产品的农业。高炉是位置敏感,因此将其生产的所有共存和不同的技术也将同时并存,由于可用资金和市场的技术选择的敏感性。现代社会将从脏和不可再生燃料的本矩阵移动到清洁和可再生燃料的矩阵。要认识到,社会上只有燃料/能源引入集成生物^ sRefineries(的IBR)的概念,除了高炉和直接能源(DE)生产多种生物制品(BPS)来实现不住这一点很重要总体SD不仅相对于燃料的可持续性。基于废弃物的RR高炉和的IBR为原料不仅产生有用的高炉,个BP和DE还可以通过废旧物资的这个有用的利用解决环境问题。

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