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采用四种辐射条件下的光芬顿工艺处理医院临床分析实验室废水及毒性响应

Treatment of a clinical analysis laboratory wastewater from a hospital by photo-Fenton process at four radiation settings and toxicity response.

机构信息

Research Group on Water and Wastewater Advanced Treatment Technologies (GPTec), Department of Chemistry and Biology, Federal University of Technology-Paraná (UTFPR), Deputado Heitor de Alencar Furtado St., 5000, Ecoville, Curitiba, Paraná, 81280-340, Brazil.

Laboratory of Ecotoxicology, Department of Chemistry and Biology, Federal University of Technology-Paraná (UTFPR), Deputado Heitor de Alencar Furtado St., 5000, Ecoville, Curitiba, Paraná, 81280-340, Brazil.

出版信息

Environ Sci Pollut Res Int. 2021 May;28(19):24180-24190. doi: 10.1007/s11356-021-12860-7. Epub 2021 Feb 19.

Abstract

The photo-Fenton process was performed with four radiation settings to treat clinical analysis laboratory wastewater (CALWW) from a hospital, with the aim of evaluating its treatability and acute toxicity response in Daphnia magna and Lactuca sativa. The experiments were performed in a borosilicate bench-scale conventional reactor for 320 min. The light radiation was suspended 13 cm from the CALWW surface for mild radiation or immersed into the matrix for intense radiation. All photo-Fenton experimental conditions were set at pH 3.0, 15 mg L of Fe, and initial HO of 300 mg L. The initial Fe concentration was converted to Fe ion in the first 15 min of photooxidation for all processes. Furthermore, the intense radiation processes regenerated Fe faster than other systems. Neither mild UVA-Vis nor mild UVC-Vis radiation significantly treated the organic matter or phenols. However, mild UVC-Vis resulted in a higher biodegradability transformation rate (biochemical oxygen demand/chemical oxygen demand 0.51), indicating that it could treat more recalcitrant organic matter than mild UVA-Vis. Intense radiation proved to be more efficient, with a chemical oxygen demand removal rate of 95% for intense UVA-Vis and 99% for intense UVC-Vis treatments. All treatments reduced acute toxicity in D. magna. Moreover, photo-Fenton treatment by intense UVA-Vis decreased toxicity ~98%, compared to mild and intense UVC-Vis, ~75%. Both of the mild radiation treatments inhibited the germination of L. sativa seeds. The intense UVA-Vis photo-Fenton treatment was the only setting that removed phytotoxicity, resulting in a non-significant effect, and the intense UVC-Vis treatment inhibited the seed growth.

摘要

采用四种辐射设置进行光-Fenton 法处理来自医院的临床分析实验室废水(CALWW),旨在评估其在大型溞和莴苣中的可处理性和急性毒性反应。实验在硼硅酸盐台式常规反应器中进行了 320 分钟。光线辐射在距离 CALWW 表面 13 厘米处以轻度辐射,或浸入基质中以进行强烈辐射。所有光-Fenton 实验条件均设定为 pH 3.0、15mg/L 的 Fe 和初始 HO 为 300mg/L。在所有过程中,初始 Fe 浓度在光氧化的前 15 分钟内转化为 Fe 离子。此外,强烈辐射过程比其他系统更快地再生 Fe。轻度 UVA-Vis 和轻度 UVC-Vis 辐射均不能有效处理有机物或酚类物质。然而,轻度 UVC-Vis 导致更高的生物降解转化速率(生化需氧量/化学需氧量 0.51),表明它可以处理比轻度 UVA-Vis 更难生物降解的有机物。强烈辐射证明更有效,强烈 UVA-Vis 的化学需氧量去除率为 95%,强烈 UVC-Vis 的去除率为 99%。所有处理均降低了大型溞的急性毒性。此外,与轻度和强烈 UVC-Vis 相比,强烈 UVA-Vis 光-Fenton 处理可将毒性降低约 98%。两种轻度辐射处理均抑制了莴苣种子的萌发。强烈 UVA-Vis 光-Fenton 处理是唯一去除植物毒性的设置,其效果不显著,而强烈 UVC-Vis 处理抑制了种子的生长。

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