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利用介孔ZnO/g-CN催化剂进行阳光辅助降解纺织污染物及植物毒性评估

Sunlight-assisted degradation of textile pollutants and phytotoxicity evaluation using mesoporous ZnO/g-CN catalyst.

作者信息

Leelavathi H, Abirami N, Muralidharan R, Kavitha Helen P, Tamizharasan S, Sankeetha S, Arulmozhi R

机构信息

Department of Chemistry, SRM Institute of Science and Technology Kattankulathur 603203 Tamil Nadu India.

Department of Physics, Vel Tech High Tech Dr Rangarajan Dr Sakunthala Engineering College Avadi Chennai 600 062 Tamil Nadu India.

出版信息

RSC Adv. 2021 Aug 5;11(43):26800-26812. doi: 10.1039/d1ra03806k. eCollection 2021 Aug 2.

Abstract

Accessibility of adequate safe and fresh water for human consumption is one of the most significant issues throughout the world and extensive research is being undertaken to resolve it. Nanotechnology is now an outstanding medium for water treatment and remediation from microorganisms and organic dyes, as compared to conventional treatment methods. For this task graphitic carbon nitride (g-CN) is a potential nanomaterial for environmental remediation, but its photogenerated charge carrier recombination rate restricts its use in practical applications. Hence, in the current study, we used a simple one-step calcination method to synthesize various ratios of ZnO/g-CN binary nanocomposites. The band gap of g-CN is 2.70 eV, but it is shifted to 2.60 eV by the 0.75 : 1 ZnO/g-CN binary nanocomposite. Moreover, phase structure, morphology, thermal stability, oxidation state, elemental analysis, and surface area were evaluated using XRD, SEM, TEM, TGA, XPS, and BET analysis. The optimal ZnO loading content was determined and the mechanism of enhanced photocatalytic activity was studied in detail. The photocatalytic efficiency of the best catalyst was employed for the degradation of textile effluent followed by phytotoxicity evaluation using methylene blue (MB), and rhodamine B (RhB) as a model substrate was tested. Furthermore, the textile effluent treatment analysis discovered that the 75 mg concentration of 0.75 : 1 ZnO/g-CN catalyst degraded up to 80% within 120 min and significantly reduced the concentrations of different physico-chemical parameters of textile effluents. These treated effluents have no phytotoxic effects on fenugreek plants, according to a pot study. It was found that the mesoporous 0.75 : 1 ZnO/g-CN catalyst can be used as an effective and low-cost technique for the degradation of azo dyes in textile wastewaters.

摘要

获取充足的安全淡水以供人类饮用是全球最为重要的问题之一,人们正在进行广泛研究以解决这一问题。与传统处理方法相比,纳米技术如今是用于从微生物和有机染料中进行水处理及修复的出色媒介。对于此任务,石墨相氮化碳(g-CN)是一种用于环境修复的潜在纳米材料,但其光生电荷载流子复合率限制了其在实际应用中的使用。因此,在当前研究中,我们采用一种简单的一步煅烧法合成了不同比例的ZnO/g-CN二元纳米复合材料。g-CN的带隙为2.70 eV,但通过0.75∶1的ZnO/g-CN二元纳米复合材料,其带隙移至2.60 eV。此外,使用XRD、SEM、TEM、TGA、XPS和BET分析对相结构、形态、热稳定性、氧化态、元素分析和表面积进行了评估。确定了最佳的ZnO负载量,并详细研究了光催化活性增强的机制。采用最佳催化剂的光催化效率对纺织废水进行降解,随后以亚甲基蓝(MB)和罗丹明B(RhB)作为模型底物进行植物毒性评估测试。此外,纺织废水处理分析发现,75 mg浓度的0.75∶1 ZnO/g-CN催化剂在120分钟内降解率高达80%,并显著降低了纺织废水中不同物理化学参数的浓度。根据盆栽研究,这些处理后的废水对胡芦巴植物没有植物毒性影响。研究发现,介孔0.75∶1 ZnO/g-CN催化剂可作为一种有效且低成本的技术用于降解纺织废水中的偶氮染料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6502/9037679/52c8bba4619d/d1ra03806k-f1.jpg

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