Synthesis of green nanoparticles for energy, biomedical, environmental, agricultural, and food applications: A review

Синтез «зелёных» наночастиц для энергетики, медицины, охраны окружающей среды, сельского хозяйства и пищевой промышленности: обзор
David W. Rooney, Pow‐Seng Yap, Ahmed I. Osman, Mohamed Farghali, Ikko Ihara, Abdelazeem S. Eltaweil, Yubin Zhang, Israa M. A. Mohamed, Ahmed K. Rashwan, Eman M. Abd El-Monaem, Mai M. Badr
2024-01-20

biomass-derived nanoparticlesbiomedical applications (antibacterials, anticancers, drug delivery)energy applications (carbon quantum dots, photovoltaics)environmental remediation (water and soil purification)green synthesis of nanoparticles
Abstract Nanomaterials have been rapidly developed during the last decades, yet many nanoparticles synthesized by classical methods are toxic and their synthesis procedure is not sustainable. Here we review the green synthesis of nanoparticles from biomass and waste with a focus on synthetic mechanisms and applications in energy production and storage, medicine, environmental remediation, and agriculture and food. Biomass use for synthesis include microorganisms, fungi, plants, and agro-industrial bio-waste. Compared to conventional synthesis, green synthesis allows a 30% reduction in energy consumption, cost savings of up to 40%, and a 50% increase in production output. Biomedical applications comprise antibacterials, anticancers, antioxidants, and drug delivery mechanisms. Carbon quantum dots and photovoltaics are discussed in the energy section. Agricultural and food applications focus on nanofertilization, pest control, and food quality. Environmental remediation includes water and soil purification.
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Agricultural and food applications of green nanoparticles cover nanofertilization, pest control, and food quality improvement.
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Compared to conventional synthesis, green synthesis achieves a 30% reduction in energy consumption.
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Energy applications of green nanoparticles include carbon quantum dots and photovoltaic uses for energy production and storage.
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Environmental remediation applications include water and soil purification using green-synthesized nanoparticles.
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Green synthesis of nanoparticles from biomass and waste (microorganisms, fungi, plants, agro-industrial bio-waste) is a viable alternative to classical methods.
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Green synthesis offers cost savings of up to 40% and a 50% increase in production output versus conventional methods.
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Green-synthesized nanoparticles have biomedical applications including antibacterial, anticancer, antioxidant activities, and drug delivery.

Nanoparticles synthesized via green (biomass- and waste-derived) methods

Synthesis mechanisms and application performance of these green nanoparticles for energy (production and storage), biomedical (antibacterial, anticancer, antioxidant, drug delivery), environmental remediation (water and soil purification), and agricultural/food (nanofertilization, pest control, food quality) uses, including comparisons to conventional synthesis in energy, cost, and yield

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2024-01-20
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Authors
David W. Rooney
Pow‐Seng Yap
Ahmed I. Osman
Mohamed Farghali
Ikko Ihara
Abdelazeem S. Eltaweil
Yubin Zhang
Israa M. A. Mohamed
Ahmed K. Rashwan
Eman M. Abd El-Monaem
Mai M. Badr
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