A novel on-site system for the treatment of pharmaceutical laboratory wastewater by supercritical water oxidation.

Teerada Ruamchat, Rumiko Hayashi, Somkiat Ngamprasertsith, Yoshito Oshima
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Abstract

For the on-site treatment of laboratory waste, we have been developing a compact-sized reaction system for the treatment of laboratory wastewater using supercritical water oxidation (SCWO) technology. Pharmaceutical laboratory wastewater is one of the most difficult wastewaters to treat because of its high concentration of halogenated organic compounds. We proposed a new cascade process in which two reactors are consecutively combined, carrying out hydrolysis in the first reactor followed by SCWO in the second reactor, for the complete removal of halogenated organic compounds. Dichloromethane was chosen as a representative model of chlorinated compounds. There have been many previous studies on the hydrolysis of dichloromethane, which results in the coproduction of formaldehyde and HCl. However, there has been less investigation on the kinetics of formaldehyde oxidation in supercritical water. In this study, we focus on the oxidation of formaldehyde in supercritical water with and without a catalyst. As a result, formaldehyde can be completely decomposed at 400 degrees C and 25 MPa within a very short contact time in a heterogeneous system with a MnO(2) catalyst.

超临界水氧化法处理制药实验室废水的新型现场系统。
在实验室废水的现场处理方面,我们一直在开发一种小型反应系统,用于使用超临界水氧化(SCWO)技术处理实验室废水。制药实验室废水因其高浓度的卤化有机物而成为最难处理的废水之一。我们提出了一种新的串联工艺,即两个反应器连续组合,在第一个反应器中进行水解,在第二个反应器中进行SCWO,以完全去除卤化有机化合物。选择二氯甲烷作为氯化化合物的代表性模型。前人对二氯甲烷的水解进行了大量的研究,其结果是甲醛和HCl的共产。然而,对超临界水中甲醛氧化动力学的研究较少。在本研究中,我们重点研究了甲醛在超临界水中有催化剂和无催化剂的氧化。结果表明,在MnO(2)催化剂的非均相体系中,甲醛在400℃和25 MPa的条件下可以在很短的接触时间内完全分解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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