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Biosynthesized magnetite nanoparticles as an environmental opulence and sustainable wastewater treatment

机译:生物合成磁铁矿纳米粒子作为环境富裕和可持续废水处理

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摘要

This review emphasizes the win-win one-pot valorization process of different waste biomass that composed of many biological macromolecules (e.g. polysaccharides, polyphenols, carbohydrates, lipids, enzymes, proteins, etc.) and other biomolecules (e.g. alkaloids, terpenoids, tannins, phenolics, carotenoids, amino acids, sugars, vitamins, etc.) into biofunctionalized magnetite (Fe_3O_4) nanoparticles (BMNPs). It illustrates the sustainable recruitment of microbial intra- and extra-cellular metabolites, proteins, and/or enzymes in the biosynthesis of BMNPs. It elucidates the environmental affluence of such sustainable, cost-effective, and ecofriendly BMNPs as an antimicrobial agent for water disinfection, photo-degrader, and adsorbent for different xenobiotics, organic and inorganic water pollutants. It confers the future environmental aspects of BMNPs in biofuels production from lipids and lignocellulosic wastes, biosensors manufacturing and bio-upgrading of petroleum fractions, etc. It discusses the circular economy, challenges, and opportunities for scaling up the zero-waste green synthesis of MNPs. Nevertheless, imminent investigations are still needed to elucidate the exact rule of biological macro- and micro- molecules in BMNPs synthesis and mechanisms involved in its microbicidal and photodegradation activities. Accentuated researches are more required on the toxicity and/or biosafety of the green synthesized BMNPs to humans and other non-target organisms to ensure its eco-safety upon environmental applications.
机译:本综述强调了不同废物生物量的双赢的单罐算法,这些过程由许多生物大分子(例如多糖,多酚,碳水化合物,脂质,酶,蛋白质等)和其他生物分子(例如生物碱,萜类,单宁,酚类,类胡萝卜素,氨基酸,糖,维生素等)到生物官能化磁铁矿(Fe_3O_4)纳米颗粒(BMNP)中。它说明了在BMNP的生物合成中的微生物内和室外胞间代谢物,蛋白质和/或酶的可持续募集。它阐明了这种可持续,经济效益和生态繁体的BMNP的环境富裕,作为水消毒,光降解剂和吸附剂的抗微生物剂,用于不同的异种症,有机和无机水污染物。它赋予了生物燃料生产中BMNP的未来环境方面,从脂质和木质纤维素废物,生物传感器制造和石油级分的生物升级等讨论了循环经济,挑战和缩放零废旧绿色合成MNP的机会。尽管如此,仍然需要即将调查来阐明BMNP合成中的生物宏观和微分子的确切规则和涉及其杀微生物和光降解活性的机制。更强调的研究更需要对绿色合成BMNP的毒性和/或生物安全,对人类和其他非靶毒性生物的毒性和/或生物安全,以确保其在环境应用中的生态安全。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|145610.1-145610.17|共17页
  • 作者单位

    Department of Process Design and Development Egyptian Petroleum Research Institute (EPRI) Nasr City Cairo PO 11727 Egypt Center of Excellence October University for Modern Sciences and Arts (MSA) 6th of October City Giza PO 12566 Egypt Nanobiotechnology Program Faculty of Nanotechnology for Postgraduate Studies Cairo University Sheikh Zayed Branch Campus Sheikh Zayed City Ciza PO 12588 Egypt;

    Department of Process Design and Development Egyptian Petroleum Research Institute (EPRI) Nasr City Cairo PO 11727 Egypt Nanobiotechnology Program Faculty of Nanotechnology for Postgraduate Studies Cairo University Sheikh Zayed Branch Campus Sheikh Zayed City Ciza PO 12588 Egypt Faculty of Pharmacy October University for Modern Sciences and Arts (MSA) 6th of October City Giza PO 12566 Egypt;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biological macromolecules; Lignocellulosic wastes valorization; Microbial enzymes; Biofunctionalized magnetite nanoparticles; Wastewater treatment; Environmental challenges and future aspects;

    机译:生物大分子;木质纤维素脂肪脂肪化;微生物酶;生物官能化磁铁矿纳米粒子;废水处理;环境挑战和未来的方面;

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