应用于解剖实验室废水净化的清洁环境策略:光电-费尔-芬顿工艺的混合和综合性能

Maikow Zago , Fernando H. Borba , Liziara Cabrera , Daiana Seibert , Nicoli Justen , Jonas J. Inticher , Camila F. Zorzo
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引用次数: 0

摘要

甲醛(CH2O)是实验室解剖标本的重要防腐剂;使用高浓度CH2O溶液以避免解剖片的恶化。除了高浓度的CH2O外,有机含量可能会从储存在水箱中的材料中渗出,从而增加所产生废水的复杂性。解剖实验室高浓度甲醛废水(ALW-CFA)对人类和生态系统具有潜在的毒性,因此在排放前需要进行适当的处理。在本工作中,通过应用光电- fenton工艺(PEF-Fered)研究了ALW-CFA样品中CH2O的降解和毒性水平的降低。应用RSM法研究了初始溶液pH、电流强度、H2O2初始浓度等pef - fes工艺的适宜操作条件,并对CH2O和TOC的还原效果进行了研究。然后,在PEF-Fered过程中增加O3 (PEF-Fered-O3),旨在提高体系的氧化电位。然而,同时使用多种氧化输入(混合过程)对ALW-CFA的降解并不感兴趣,因此,提供较低毒性水平(LC50 %= 56.94)的最佳处理策略是AO - H2O2和O3,在以下操作条件下,溶液pH为4.5,CH2O去除率为90%,TOC去除率为85%;电流强度为2.4,H2O2浓度为24000 mg l-1。随着先进联合处理技术的应用,该废水的污染潜力降低,证明了对人类健康和生态系统的总体保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Clean environmental strategy applied to anatomy laboratory wastewater purification: a hybrid and integrated performance of a photo-electro-Fered-Fenton process

Clean environmental strategy applied to anatomy laboratory wastewater purification: a hybrid and integrated performance of a photo-electro-Fered-Fenton process
Formaldehyde (CH2O) is an important preservative of anatomic pieces in laboratories; Solutions with high concentrations of CH2O are used to avoid the deterioration of anatomic pieces. Besides the high concentration of CH2O, organic content may leachate from the material stored in the tanks, increasing the complexity of the wastewater generated. The anatomy laboratory wastewater with high formaldehyde concentration (ALW-CFA) presents potential toxic effects to humans and the ecosystem in general, for this reason, proper treatment is demanded before its discharge. In the present work, the degradation of CH2O and reduction of toxicity levels of ALW-CFA samples were studied through the application of the process photo-electro-Fered-Fenton process (PEF-Fered). The suitable operational conditions of the process PEF-Fered such as initial solution pH, current intensity, and H2O2 initial concentration, were studied by the application of an RSM evaluating the reduction of concentrations of CH2O and TOC. Then, the increment of O3 to the PEF-Fered process was performed (PEF-Fered-O3), aiming to increase the oxidative potential of the system. However, it was observed that the use of many oxidative inputs at the same time (hybrid process) was not interesting for the ALW-CFA degradation, thus, the best treatment strategy which provided a lower toxicity level (LC50 %= 56.94) was the AO followed by H2O2 and O3, with a removal of 90 % of CH2O and 85 % of TOC, under the following operational conditions, solution pH 4.5; the current intensity of 2.4 and H2O2 concentration of 24,000 mg l-1. With the application of the advanced combined treatment, the pollution potential of this wastewater was reduced, evidencing the protection of human health and ecosystems in general.
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