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楼主: Iodine
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https://doi.org/10.1007/978-1-137-06698-5r reducing and stabilizing nanoparticles (NPs). Fungal nanotechnology has represented exceptional technique in this area, owing to its nontoxicity, eco-friendly nature for fungal NPs, and nanostructure synthesis by reducing enzymes using either intracellular or extracellular techniques. Further, eas
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https://doi.org/10.1057/9781137262868cal properties. Chemical and physical strategies have been used before, but their usefulness has been constrained by the creation of hazardous byproducts, energy-intensive experimental processes, and expensive instrumentations. The eco-benign fabrication of NPs has been proposed as a potential subst
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Richard E. Miller,Colin K. Khouryonmental remediation technologies have piqued the interest of researchers. The application of nanoremediation has grown significantly in recent years as a promising method of converting harmful pollutants into simple, harmless compounds. Among the physical, chemical, and biological techniques used i
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Wild , Species in North Americarom the rapid growth of populations and industrialization have come environmental pollution problems, which have resulted in abnormalities in nature. A lot of work has been done on environmental remediation by using different techniques, such as adsorption, photocatalytic degradation, ion exchange,
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Social Indicators Research Programmesionalized nanomaterials in water treatment offers the potential to remove chemical contaminants such as dyes, heavy metals, and pharmaceuticals. This chapter discusses noncarbon-based materials such as metal-based nanoparticles, geosorbents (bentonite, zeolite, sepiolite, etc.), chitosan, and magnet
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