实现可持续的循环经济:基于藻类的生物塑料以及物联网和机器学习的作用

IF 6.2 3区 工程技术 Q1 ENGINEERING, CHEMICAL
Abu Danish Aiman Bin Abu Sofian, Hooi Ren Lim, Prof. Sivakumar Manickam, Dr. Wei Lun Ang, Prof. Dr. Pau Loke Show
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引用次数: 0

摘要

聚羟基烷酸酯(PHA)、聚乳酸(PLA)、海藻酸盐、卡拉胶和乌尔凡等可持续材料在生物塑料生产中的潜力越来越大,为促进可持续循环经济提供了机遇。本综述探讨了它们的特性、应用和挑战。从藻类中提取的生物塑料为石油基塑料提供了一种环境友好型替代品,由于与传统塑料相关的环境问题不断升级,这种转变对社会至关重要。该书强调了物联网(IoT)和机器学习在完善这些生物塑料的生产和开发过程中的作用。物联网可监控培养条件、数据收集和过程控制,以实现更可持续的生产。机器学习可以加强藻类培养,增加藻类生物塑料的原材料供应,提高其效率和产量。研究结果表明,基于藻类的生物塑料、物联网和机器学习有望促进未来环境的可持续发展。通过利用这些先进技术,优化生物塑料生产成为可能,从而有可能彻底改变材料行业,并应对现有挑战,实现可持续循环经济。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Towards a Sustainable Circular Economy: Algae-Based Bioplastics and the Role of Internet-of-Things and Machine Learning

Towards a Sustainable Circular Economy: Algae-Based Bioplastics and the Role of Internet-of-Things and Machine Learning

Towards a Sustainable Circular Economy: Algae-Based Bioplastics and the Role of Internet-of-Things and Machine Learning

The growing potential of sustainable materials such as polyhydroxyalkanoates (PHAs), polylactic acid (PLA), alginate, carrageenan, and ulvan for bioplastics production presents an opportunity to promote a sustainable circular economy. This review investigates their properties, applications, and challenges. Bioplastics derived from algae offer an environmentally friendly alternative to petroleum-based plastics, a shift of paramount importance to society due to the escalating environmental concerns associated with traditional plastics. The role of the internet-of-things (IoT) and machine learning in refining these bioplastics' production and development processes is emphasized. IoT monitors cultivation conditions, data collection, and process control for more sustainable production. Machine learning can enhance algae cultivation, increasing the supply of raw materials for algal bioplastics and improving their efficiency and output. The study results indicate the promise of algae-based bioplastics, IoT, and machine learning in fostering a more environmentally sustainable future. By harnessing these advanced technologies, optimization of bioplastic production is possible, potentially revolutionizing the materials industry and addressing existing challenges toward achieving a sustainable circular economy.

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来源期刊
ChemBioEng Reviews
ChemBioEng Reviews Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
7.90
自引率
2.10%
发文量
45
期刊介绍: Launched in 2014, ChemBioEng Reviews is aimed to become a top-ranking journal publishing review articles offering information on significant developments and provide fundamental knowledge of important topics in the fields of chemical engineering and biotechnology. The journal supports academics and researchers in need for concise, easy to access information on specific topics. The articles cover all fields of (bio-) chemical engineering and technology, e.g.,
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