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Sustainable bioconversion of food waste into high-value products by immobilized enzymes to meet bio-economy challenges and opportunities - A review

机译:通过固定化酶可持续生物转化为高价值产品,以满足生物经济挑战和机遇 - 审查

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Over the past few years, food waste has intensified much attention from the local public, national and international organizations as well as a wider household territory due to increasing environmental, social and economic concerns, climate change and scarcity of fossil fuel resources. On one aspect, food-processing waste represents a substantial ecological burden. On the other hand, these waste streams are rich in carbohydrates, proteins, and lipids, thus hold significant potential for biotransformation into an array of high-value compounds. Indeed, the high sugar, protein, and fat content render food waste streams as attractive feedstocks for enzymatic valorization given the plentiful volumes generated annually. Enzymes as industrial biocatalysts offer unique advantages over traditional chemical processes with regard to eco-sustainability, and process efficiency. Herein, an effort has been made to delineate immobilized enzyme-driven valorization of food waste streams into marketable products such as biofuels, bioactive compounds, biodegradable plastics, prebiotics, sweeteners, rare sugars, surfactants, etc. Current challenges and prospects are also highlighted with respect to the development of industrially adaptable biocatalytic systems to achieve the ultimate objectives of sustainable manufacturing combined with minimum waste generation. Applications-based strategies to enzyme immobilization are imperative to design cost-efficient and sustainable industrially applicable biocatalysts. With a deeper apprehension of support material influences, and analyzing the extreme environment, enzymes might have significant potential in improving the overall sustainability of food processing.
机译:在过去的几年里,由于环境,社会和经济问题,气候变化和化石燃料资源的气候变化和稀缺,食物垃圾从当地公共,国家和国际组织以及更广泛的家庭领土都加剧了很多关注。在一个方面,食品加工废物代表了大量的生态负担。另一方面,这些废物流富含碳水化合物,蛋白质和脂质,因此将生物转化的显着潜力保持为一系列高价值化合物。实际上,高糖,蛋白质和脂肪含量使食物废物流作为酶储存的有吸引力的原料,鉴于每年产生的丰富的体积。作为工业生物催眠术的酶提供与生态可持续性的传统化学工艺相比具有独特优势,以及工艺效率。在此,已经努力将食物废物流的固定化酶驱动的储存描绘成诸如生物燃料,生物活性化合物,可生物降解的塑料,益生元,甜味剂,稀有糖,表面活性剂等的可销售产品。目前的挑战和前景也突出了尊重工业上可适应的生物催化系统,实现可持续制造的最终目标与最小浪费产生。基于应用的酶固定化的策略对于设计成本效益和可持续的工业上适用的生物催化剂是必不可少的。随着对支持物质影响的更深层次的影响,并分析极端环境,酶可能具有提高食品加工总体可持续性的显着潜力。

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