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球磨联合臭氧催化氧化处理罐底油泥的研究

Research on Treatment of Oily Sludge from the Tank Bottom by Ball Milling Combined with Ozone-Catalyzed Oxidation.

作者信息

Chen Hong-Shuo, Zhang Qi-Ming, Yang Zi-Jian, Liu Yang-Sheng

机构信息

College of Environmental Sciences and Engineering, Peking University, Beijing 100871, People's Republic of China.

出版信息

ACS Omega. 2020 May 20;5(21):12259-12269. doi: 10.1021/acsomega.0c00958. eCollection 2020 Jun 2.

Abstract

Difficult separation of oil-solid phase and high fine content of the recovered oil were two problems in the treatment of oily sludge from the tank bottom by the hot water-based extraction process. To solve the problems, one technology with "ball milling + ozone-catalyzed oxidation" as the core was studied, and the process parameters of ball milling and ozone-catalyzed oxidation were respectively optimized. After ball milling treatment, the oil content of dry oily sludge decreased from 33.9 to 10.2%. Then, an ozone catalytic oxidation treatment technology with aluminum ore as the catalyst was developed to further treat this stubborn oily sludge. Under the optimal conditions, the oil content of oily sludge could be further reduced to 0.28%, which met the treatment and disposal requirements stipulated in GB4284-2018. For further research on the contribution of the catalyst to the ozone catalytic oxidation system, the reaction activation energy and reaction rates of ozone oxidation and ozone catalytic oxidation were compared from the perspective of kinetics. The results showed that, with the catalyst addition, the reaction rate constants increased about three times and the reaction activation energy reduced 82.26%, which showed the effectiveness of the catalyst on the kinetics quantitatively. The combined process with "ball milling + ozone-catalyzed oxidation" as the core can solve the two problems in the treatment of oily sludge from the tank bottom by hot water-based extraction and provides a reference for the harmless and resourceful treatment of oily sludge from the tank bottom.

摘要

油固相分离困难以及回收油的细颗粒含量高是采用热水萃取工艺处理罐底油泥时面临的两个问题。为解决这些问题,研究了一种以“球磨+臭氧催化氧化”为核心的技术,并分别优化了球磨和臭氧催化氧化的工艺参数。经过球磨处理后,干油泥的含油率从33.9%降至10.2%。然后,开发了以铝矿石为催化剂的臭氧催化氧化处理技术,对这种顽固的油泥进行进一步处理。在最佳条件下,油泥的含油率可进一步降至0.28%,满足GB4284-2018规定的处理处置要求。为进一步研究催化剂对臭氧催化氧化体系的贡献,从动力学角度比较了臭氧氧化和臭氧催化氧化的反应活化能和反应速率。结果表明,加入催化剂后,反应速率常数提高了约三倍,反应活化能降低了82.26%,从定量角度表明了催化剂在动力学方面的有效性。以“球磨+臭氧催化氧化”为核心的联合工艺能够解决热水萃取处理罐底油泥时的两个问题,为罐底油泥的无害化和资源化处理提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bba/7271350/3bcacfe71d85/ao0c00958_0001.jpg

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