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一种新型 BiOX 光催化剂,用于“绿色”降解油田用聚合物。

A novel BiOX photocatalyst for the "green" degradation of polymers used in oilfields.

机构信息

College of Petroleum Engineering, China University of Petroleum (Beijing), 18 Fuxue Road, Changping, Beijing 102249, People's Republic of China; State Key Laboratory of Petroleum Resources and Prospecting, Ministry of Education (MOE) Key Laboratory of Petroleum Engineering, China University of Petroleum (Beijing), Fuxue Road No 18, Changping, Beijing 102249, People's Republic of China.

College of Petroleum Engineering, China University of Petroleum (Beijing), 18 Fuxue Road, Changping, Beijing 102249, People's Republic of China; State Key Laboratory of Petroleum Resources and Prospecting, Ministry of Education (MOE) Key Laboratory of Petroleum Engineering, China University of Petroleum (Beijing), Fuxue Road No 18, Changping, Beijing 102249, People's Republic of China.

出版信息

J Hazard Mater. 2022 Apr 15;428:128207. doi: 10.1016/j.jhazmat.2021.128207. Epub 2022 Jan 4.

Abstract

The wastes from functional polymers (polyanionic cellulose, polyacrylamide, potassium polyacrylamide, and hydroxyethyl cellulose) generated during oil and gas exploration and development are harmful to biodiversity and human health. However, most traditional treatments are inefficient in degradation and cause secondary pollution. In this paper, BiOBrCl a 3D flower-like solid solution with in-situ deposition of elementary substance Bi and surface oxygen vacancies was synthesized by the hydrolysis and the redox methods. The chemical compositions, the morphologies, and the UV-visible absorption properties of Bi/BiOBrCl were characterized. Moreover, the photocatalytic activity of Bi/BiOBrCl and the kinetic behavior of the RhB photocatalytic degradation were investigated. The photocatalytic degradation of RhB followed a pseudo-first-order kinetic reaction, and Bi/BiOBrCl-0.3 demonstrated the highest photocatalytic activity: The RhB degradation efficiency of Bi/BiOBrCl-0.3 was 85%, and the COD removal rate of the functional polymers conducted by Bi/BiOBrCl-0.3 was greater than 80%. The exciton photocatalytic processes of Bi/BiOBrCl was found through the electron spin resonance (ESR) and the active-species trapping analyses of the photocatalytic degradations of RhB by Bi/BiOBrCl. In summary, in this paper, the synthesis methods of Bi/BiOBrCl photocatalyst and the photocatalytic activity of the Bi/BiOBrCl on the degradations of polymers used in oilfields were reported, addressing the shortcomings of the existing treatments for polymer waste fluids that are incorporated into the oil and gas exploration and development process.

摘要

在油气勘探开发过程中产生的功能性聚合物(阴离子纤维素、聚丙烯酰胺、聚丙烯酸钾和羟乙基纤维素)废物对生物多样性和人类健康有害。然而,大多数传统处理方法在降解方面效率低下,并会造成二次污染。在本文中,通过水解和氧化还原方法合成了一种具有原位沉积元素 Bi 和表面氧空位的 3D 花状固溶体 BiOBrCl。对 Bi/BiOBrCl 的化学组成、形貌和紫外-可见吸收特性进行了表征。此外,还研究了 Bi/BiOBrCl 的光催化活性和 RhB 的光催化降解动力学行为。RhB 的光催化降解遵循准一级动力学反应,Bi/BiOBrCl-0.3 表现出最高的光催化活性:Bi/BiOBrCl-0.3 对 RhB 的降解效率为 85%,Bi/BiOBrCl-0.3 对功能聚合物的 COD 去除率大于 80%。通过电子顺磁共振(ESR)和 Bi/BiOBrCl 对 RhB 的光催化降解的活性物种捕获分析,发现了 Bi/BiOBrCl 的激子光催化过程。总之,本文报道了 Bi/BiOBrCl 光催化剂的合成方法以及 Bi/BiOBrCl 对油田用聚合物降解的光催化活性,解决了现有聚合物废物处理方法存在的问题,这些方法已被纳入油气勘探开发过程。

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