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首页> 外文期刊>Journal of biomaterials and nanobiotechnology. >Recent Strategies for the Development of Biosourced-Monomers, Oligomers and Polymers-Based Materials: A Review with an Innovation and a Bigger Data Focus
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Recent Strategies for the Development of Biosourced-Monomers, Oligomers and Polymers-Based Materials: A Review with an Innovation and a Bigger Data Focus

机译:生物源单体,低聚物和聚合物基材料的最新开发策略:具有创新性和更大数据重点的综述

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After setting the ground of the quantum innovation potential of biosourced entities and outlining the inventive spectrum of adjacent technologies that can derive from those, the current review highlights, with the support of Bigger Data approaches, and a fairly large number of articles, more than 250 and 10,000 patents, the following. It covers an overview of biosourced chemicals and materials, mainly biomonomers, biooligomers and biopolymers; these are produced today in a way that allows reducing the fossil resources depletion and dependency, and obtaining environmentally-friendlier goods in a leaner energy consuming society. A process with a realistic productivity is underlined thanks to the implementation of recent and specifically effective processes where engineered microorganisms are capable to convert natural non-fossil goods, at industrial scale, into fuels and useful high-value chemicals in good yield. Those processes, further detailed, integrate: metabolic engineering involving 1) system biology, 2) synthetic biology and 3) evolutionary engineering. They enable acceptable production yield and productivity, meet the targeted chemical profiles, minimize the consumption of inputs, reduce the production of by-products and further diminish the overall operation costs. As generally admitted the properties of most natural occurring biopolymers (e.g., starch, poly (lactic acid), PHAs.) are often inferior to those of the polymers derived from petroleum; blends and composites, exhibiting improved properties, are now successfully produced. Specific attention is paid to these aspects. Then further evidence is provided to support the important potential and role of products deriving from the biomass in general. The need to enter into the era of Bigger Data, to grow and increase the awareness and multidimensional role and opportunity of biosourcing serves as a conclusion and future prospects. Although providing a large reference database, this review is largely initiatory, therefore not mimicking previous classic reviews but putting them in a multiplying synergistic prospective.
机译:在奠定了生物来源实体的量子创新潜力的基础并概述了可以从中获得的相邻技术的发明范围之后,本期综述在Bigger Data方法的支持下,着重强调了250余篇文章并拥有10,000项专利。它概述了生物来源的化学品和材料,主要是生物单体,生物低聚物和生物聚合物;如今,这些产品的生产方式可以减少化石资源的枯竭和依赖性,并在能源消耗较少的社会中获得对环境友好的产品。强调了具有现实生产力的过程,这要归功于最近实施的特别有效的过程,其中工程微生物能够以工业规模将天然非化石商品以工业规模转化为燃料和有用的高价值化学品。这些过程进一步详细地进行了整合:涉及1)系统生物学,2)合成生物学和3)进化工程的代谢工程。它们可以实现可接受的生产收率和生产率,满足目标化学特性,最大程度地减少投入的消耗,减少副产品的产生并进一步降低总体运营成本。通常公认的是,大多数天然存在的生物聚合物(例如淀粉,聚乳酸,PHA)的性能通常不如石油衍生的聚合物。现在已成功生产出具有改进性能的共混物和复合材料。要特别注意这些方面。然后,提供了进一步的证据来支持总体上源自生物质的产品的重要潜力和作用。结论和未来前景是进入大数据时代,增长和提高生物采购的认识以及多维作用和机会的需要。尽管提供了巨大的参考数据库,但该评论在很大程度上是创始性的,因此,它不会模仿以前的经典评论,而是将它们置于倍增的协同预期中。

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