氧化锌太阳能光催化处理采出水

Nageswara Rao Lakkimsetty, Motilal Lakavat, M. Varghese, S. Gandi
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引用次数: 12

摘要

本研究是基于光催化技术结合纳米化学技术处理采出水的研究。由于阿曼苏丹国全年都有丰富的可用性,因此应用太阳能处理所生产的石油被认为是最佳选择。近年来,光催化工艺作为一种低成本、可持续处理和环境友好的技术显示出巨大的潜力。非均相光催化已成功地用于杀灭细菌、病毒、分解有机物,在工厂灌溉树木和石油工业中也有应用。以氧化锌作为光催化剂,考察其光催化活性高、光稳定性好、能带宽度宽、毒性小等特点,并对其降解采油水中有机污染物的光催化活性进行了研究。通过实验研究,观察到氧化锌作为一种潜在的催化剂用于废水处理。考察了pH、TDS、电导率、盐度、DO、TOC、COD等参数对氧化锌的性能影响。结果表明,TOC在前3小时下降,之后保持稳定,因此3小时为最佳反应时间。然而,在太阳辐射下暴露5小时,观察到COD和浊度持续下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar photo catalytic treatment of oil produced water using zinc oxide
The research study is based on photo catalytic technologies coupled with nano chemical for the treatment of oil produced water. Application of solar energy for the treatment of oil produced is considered to a best choice due to its abundance availability throughout the year round in the Sultanate of Oman. In recent years, the photo catalytic process has shown to have a great potential as a low-cost, sustainable treatment and environmentally friendly technology. Heterogeneous photocatalysis has been successfully used to destruct bacteria, viruses, decompose organic matter and there are applications in factories to irrigate trees and also applied in the petroleum industry. In this present research, zinc oxide is used as photocatalyst because of its high photo catalytic activity, photo-stability, broad band gap and less toxic and its photo catalytic activity to degrade organic pollutants in oil produced water was investigated. As per the experimental study it was observed that ZnO used as a potential catalyst in treating wastewater. The performance of the ZnO was studied by different parameters such as, pH, TDS, conductivity, salinity, DO, TOC and COD. The results showed that TOC was decreased in first three hours and thereafter it remains stable and hence 3 hours is considered as optimum reaction time. However it was observed continuous decrease in COD and turbidity for five hours of exposure under solar radiation.
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