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Biochar based nanocomposites for photocatalytic degradation of emerging organic pollutants from water and wastewater

机译:基于生物炭的纳米复合材料,用于水和废水中新兴有机污染物的光催化降解

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摘要

Biochar (BC) is the part of carbon family that acts as an excellent photocatalyst when combined with other nanomaterial catalysts, results in the formation of new hybridised nanomaterial known as Biochar supported photocatalyst (BSPs). These BSPs show amazing physio-chemical properties and are highly efficient for degradation of water pollutants. Comparing with pure nano photocatalyst, Biochar supported catalyst has better surface area, highly porous, better catalysing ability, stability and recoverability. This review throws light on combining cost efficient biochar and catalytic nanoparticles for effective degradation of pollutants. The synthesis and the performance of these BSPs are also discussed. The combined hybridised biochar has significant edge over pure biochar and catalytic nanoparticles. This review also discusses about the photodegradation mechanism of various BSPs. Water contaminants such as phenol, dyes or pharmaceutical compounds are very hazardous and pose a serious threat to the ecosystem. Thus, these pollutants can be degraded effectively and cost-efficiently by various BSPs. Lastly, this review paper shows the limitations and ways to tackle it in future for further research.
机译:生物炭(BC)是当与其他纳米材料结合时作为优异的光催化剂的碳系列的一部分,导致形成新的杂交的纳米材料作为Biochar负载的光催化剂(BSP)。这些BSP展示了惊人的物理化学性质,对水污染物的降解具有高效。与纯纳米光催化剂相比,Biochar负载催化剂具有更好的表面积,高度多孔,催化能力,稳定性和可回收性。本综述在结合成本效率的生物炭和催化纳米粒子的情况下投掷了污染物的有效降解的光。还讨论了这些BSP的合成和性能。合并的杂交的生物炭在纯Biochar和催化纳米粒子上具有显着的边缘。该审查还讨论了各种BSP的光降解机制。水污染物如酚,染料或药物化合物是非常危险的,对生态系统构成严重威胁。因此,这些污染物可以通过各种BSP有效且成本高效地降解。最后,这篇综述论文显示了将来解决进一步研究的局限性和方法。

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