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Preparation of High-Performance CdS@C Catalyst Using Cd-Enriched Biochar Recycled From Plating Wastewater

机译:使用CD富集的Biochar从电镀废水中再循环的高性能CDS @ C催化剂的制备

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Biochar is widely used for the adsorptive removal of Cd from water and soil, but the produced Cd-enriched biochar carries a risk of secondary pollution. In this work, biochar derived from rice straw was used to adsorb Cd from plating wastewater. The Cd-enriched biochar showed a saturated adsorption capacity of about 63.5 mg/g and could be recycled and used in a mesoporous carbon-supported CdS (CdS@C) photocatalyst after pyrolysis carbonization and a hydrothermal reaction. The results demonstrated that the as-prepared CdS@C photocatalyst contained mixed cubic and hexagonal CdS phases, with a considerably lower band gap (2.1 eV) than pure CdS (2.6 eV). CdS@C exhibited an enhanced photocatalytic performance for the degradation of organic dyes under visible light irradiation compared with pure CdS due to its excellent light-harvesting capacity and efficient electron-hole separation. Moreover, the continuous formation of active species (h+, ?OH, and O2??) was responsible for the photodegradation of organic dyes using CdS@C. This work provides new insights for the safe disposal of Cd-enriched wastewater and for improving the economic viability of Cd-contaminated resources by recovering a value-added photocatalyst.
机译:生物炭广泛用于来自水和土壤的吸附去除Cd,但产生的CD富集的生物炭携带二次污染的风险。在这项工作中,衍生自稻草的生物炭用于从电镀废水中吸附CD。富含CD的Biochar显示饱和吸附容量约为63.5mg / g,可以在热解碳化和水热反应后再循环并用于介孔的碳负载的Cds(CDS @ C)光催化剂。结果表明,AS制备的CDS @ C光催化剂含有混合立方和六边形CDS相,具有比纯CDS(2.6eV)相当低的带隙(2.1eV)。 CDS @ C由于其优异的光捕获容量和高效的电子空穴分离而在可见光照射下,具有增强的光催化性能,可用于可见光照射下的有机染料。此外,活性物质(H +,βOH和O 2)的连续形成负责使用CDS @ C的有机染料的光降解。这项工作为安全处理CD富集的废水提供了新的见解,并通过恢复增值光催化剂来改善CD污染资源的经济可行性。

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