Innovations in metal oxides-biochar nanoparticles for dye removal

IF 5.45 Q1 Physics and Astronomy Nano-Structures & Nano-Objects Pub Date : 2024-07-24 DOI:10.1016/j.nanoso.2024.101269
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Abstract

Metal oxide-biochar nanoparticles have emerged as promising materials for the removal of dyes from aqueous solutions due to their unique properties and environmental compatibility. In this mini-review, we provide a comprehensive overview of recent advancements in the applications of metal oxide-biochar nanoparticles for dye removal. We begin by discussing the synthesis methods employed for the fabrication of metal oxide-biochar nanoparticles, including hydrothermal synthesis, co-precipitation, and sol-gel methods. The synergistic effects of combining metal oxides with biochar are explored, highlighting the enhanced adsorption capacities and photocatalytic activities of the resulting nanocomposites. Furthermore, we delve into the mechanisms underlying the adsorption and photocatalytic degradation of dyes by metal oxide-biochar nanoparticles. The role of surface functional groups, pore structures, and electron transfer processes in dye adsorption and degradation processes is elucidated. Additionally, we review recent studies investigating the application of metal oxide-biochar nanoparticles in real-world scenarios, including wastewater treatment and environmental remediation. Case studies demonstrating the efficacy of these nanomaterials in removing various dye pollutants from aqueous solutions are presented, emphasizing their potential for large-scale implementation. Finally, we discuss future perspectives and challenges in the field, including the need for standardized synthesis protocols, comprehensive characterization techniques, and further exploration of the environmental implications of metal oxide-biochar nanoparticles. Overall, this mini-review provides valuable insights into the recent advancements and potential applications of metal oxide-biochar nanoparticles for dye removal, highlighting their importance in addressing water pollution challenges.

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用于去除染料的金属氧化物-生物炭纳米颗粒的创新技术
金属氧化物-生物炭纳米颗粒因其独特的性质和环境兼容性,已成为去除水溶液中染料的有前途的材料。在这篇微型综述中,我们将全面综述金属氧化物-生物炭纳米颗粒在去除染料应用方面的最新进展。我们首先讨论了金属氧化物-生物炭纳米颗粒的合成方法,包括水热合成法、共沉淀法和溶胶-凝胶法。我们探讨了金属氧化物与生物炭结合的协同效应,强调了由此产生的纳米复合材料具有更强的吸附能力和光催化活性。此外,我们还深入研究了金属氧化物-生物炭纳米颗粒对染料的吸附和光催化降解机理。我们阐明了表面官能团、孔隙结构和电子传递过程在染料吸附和降解过程中的作用。此外,我们还回顾了近期有关金属氧化物-生物炭纳米颗粒在现实世界中应用的研究,包括废水处理和环境修复。案例研究展示了这些纳米材料从水溶液中去除各种染料污染物的功效,强调了其大规模应用的潜力。最后,我们讨论了该领域未来的前景和挑战,包括标准化合成方案的需求、综合表征技术以及进一步探索金属氧化物-生物炭纳米颗粒对环境的影响。总之,这篇微型综述为金属氧化物-生物炭纳米颗粒在去除染料方面的最新进展和潜在应用提供了宝贵的见解,突出了它们在应对水污染挑战方面的重要性。
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来源期刊
Nano-Structures & Nano-Objects
Nano-Structures & Nano-Objects Physics and Astronomy-Condensed Matter Physics
CiteScore
9.20
自引率
0.00%
发文量
60
审稿时长
22 days
期刊介绍: Nano-Structures & Nano-Objects is a new journal devoted to all aspects of the synthesis and the properties of this new flourishing domain. The journal is devoted to novel architectures at the nano-level with an emphasis on new synthesis and characterization methods. The journal is focused on the objects rather than on their applications. However, the research for new applications of original nano-structures & nano-objects in various fields such as nano-electronics, energy conversion, catalysis, drug delivery and nano-medicine is also welcome. The scope of Nano-Structures & Nano-Objects involves: -Metal and alloy nanoparticles with complex nanostructures such as shape control, core-shell and dumbells -Oxide nanoparticles and nanostructures, with complex oxide/metal, oxide/surface and oxide /organic interfaces -Inorganic semi-conducting nanoparticles (quantum dots) with an emphasis on new phases, structures, shapes and complexity -Nanostructures involving molecular inorganic species such as nanoparticles of coordination compounds, molecular magnets, spin transition nanoparticles etc. or organic nano-objects, in particular for molecular electronics -Nanostructured materials such as nano-MOFs and nano-zeolites -Hetero-junctions between molecules and nano-objects, between different nano-objects & nanostructures or between nano-objects & nanostructures and surfaces -Methods of characterization specific of the nano size or adapted for the nano size such as X-ray and neutron scattering, light scattering, NMR, Raman, Plasmonics, near field microscopies, various TEM and SEM techniques, magnetic studies, etc .
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