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Advances on waste valorization: new horizons for a more sustainable society

机译:废物评估的进展:社会更可持续发展的新视野

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AbstractIncreasingly tighter regulations regarding organic waste, and the demand for renewable chemicals and fuels, are pushing the manufacturing industry toward higher sustainability to improve cost-effectiveness and meet customers’ demand. Food waste valorization is one of the current research areas that has attracted a great deal of attention over the past few years as a potential alternative to the disposal of a wide range of residues in landfill sites. In particular, the development of environmentally sound and innovative strategies to process such waste is an area of increasing importance in our current society. Landfill, incineration and composting are common, mature technologies for waste disposal. However, they are not satisfactory to treating organic waste due to the generation of toxic methane gas and bad odor, high energy consumption and slow reaction kinetics. In fact, research efforts have also been oriented on novel technologies to decompose organic waste. However, no valuable product is generated from the decomposition process. Instead of disposing and decomposing food waste, recent research has focused on its utilization as energy source (e.g., for bioethanol and biodiesel production). Organic waste is also useful to generate useful organic chemicals via biorefinery or white biotechnology (e.g., succinic acid and/or bio-plastics). This article is aimed to summarize recent development of waste valorization strategies for the sustainable production of chemicals, materials, and fuels through the development of green production strategies. It will also provide key insights into recent legislation on management of waste worldwide as well as two relevant case studies (the transformation of corncob residues into functionalized biomass-derived carbonaceous solid acids and their utilization in the production of biodiesel-like biofuels from waste oils in Philippines, as well as the development of a bakery waste based biorefinery for succinic acid and bioplastic production in Hong Kong) to illustrate the enormous potential of biowaste valorization for a more sustainable society. Future research directions and possible sustainable approaches will also be discussed with their respective proofs of concept.
机译:摘要关于有机废物以及对可再生化学品和燃料的需求越来越严格,这正推动制造业朝着更高的可持续性发展,以提高成本效益并满足客户的需求。粮食浪费的评估是当前的研究领域之一,在过去几年中作为替代垃圾填埋场中各种残留物的一种潜在替代方法引起了广泛关注。尤其是,发展对环境无害的创新战略来处理此类废物是当今社会日益重要的领域。垃圾掩埋,焚化和堆肥是废物处理的常见,成熟技术。然而,由于产生有毒的甲烷气体和难闻的气味,高能量消耗和缓慢的反应动力学,它们对于处理有机废物并不令人满意。实际上,研究工作还集中在分解有机废物的新技术上。但是,分解过程不会生成任何有价值的产品。代替处置和分解食物垃圾,最近的研究集中于将其用作能源(例如,用于生物乙醇和生物柴油生产)。有机废物还可用于通过生物精炼厂或白色生物技术(例如琥珀酸和/或生物塑料)产生有用的有机化学品。本文旨在总结通过开发绿色生产策略来可持续生产化学品,材料和燃料的废物评估策略的最新发展。它还将提供有关全球废物管理的最新立法以及两个相关案例研究的主要见解(将玉米芯残留物转化为功能化的生物质衍生的碳质固体酸,以及将其用于生产废油中的生物柴油样生物燃料)菲律宾,以及在香港发展用于琥珀酸和生物塑料生产的烘焙废料生物炼制厂,以说明生物废料增值对建立更可持续社会的巨大潜力。未来的研究方向和可能的可持续方法也将与它们各自的概念证明一起讨论。

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