School of Environmental Science and Engineering, Tianjin University/Tianjin Key Lab of Biomass/Wastes Utilization, Tianjin, 300072, PR China.
Environment and Natural Materials Research Institute (ENMRI), City of Scientific Research and Technological Applications (SRTA-City), New Borg El-Arab City, Alexandria, 21934, Egypt.
Chemosphere. 2024 Sep;364:143132. doi: 10.1016/j.chemosphere.2024.143132. Epub 2024 Aug 19.
Oily sludge (OS) is a kind of hazardous waste generated from the petrochemical industry. Currently, pyrolysis has been widely applied for OS disposal, while low-oil content (<5 wt%) OS still lacks novel technology to achieve efficient resource utilization and harmful substances immobilization. In this study, a kind of OS-based geopolymer was developed by OS and ground granulated blast furnace slag (GGBS). The results showed that in geopolymer with 30 wt% OS, the content of total petroleum hydrocarbons (TPHs) decreased by 82%, Zn achieved 100% stabilization, and the 28 d compressive strength could still reach 32.8 MPa. The appropriate oil content filled the pores and cracks in geopolymer matrix. The constructed model compounds further elucidated the hydration mechanisms of OS-geopolymer. The nucleation effect of crude oil and micro-aggregate effect of minerals jointly improved the polymerization degree of C-(A)-S-H gels. OS promoted the transformation of [SiO] monomers into C-(A)-S-H unbranched middle groups and three-dimensional networks, thereby efficiently stabilizing harmful substances. Sustainability analysis showed that OS-based geopolymer had good environmental and economic benefits. Overall, this work provides theoretical guidance for the green transformation of OS in the construction field.
含油污泥(OS)是石油化工行业产生的一种危险废物。目前,热解已广泛应用于 OS 的处理,但对于低含油率(<5wt%)的 OS,仍然缺乏有效的资源利用和有害物质固定化新技术。本研究以 OS 和矿渣(GGBS)为原料,制备了一种基于 OS 的地质聚合物。结果表明,在含 30wt%OS 的地质聚合物中,总石油烃(TPHs)含量降低了 82%,Zn 达到了 100%的稳定化,28d 抗压强度仍可达 32.8MPa。适量的油分填充了地质聚合物基体的孔隙和裂缝。所构建的模型化合物进一步阐明了 OS-地质聚合物的水化机制。原油的成核效应和矿物的微集料效应共同提高了 C-(A)-S-H 凝胶的聚合度。OS 促进了[SiO]单体向 C-(A)-S-H 无支链中间基团和三维网络的转化,从而有效地稳定了有害物质。可持续性分析表明,基于 OS 的地质聚合物具有良好的环境和经济效益。总的来说,这项工作为 OS 在建筑领域的绿色转化提供了理论指导。