Yang Yuanyi, Li Hui, Lei Zhenghuan, Liu Hongwu, Zeng Mingyou, Yang Tingting, Chen Keming, Duan Yi
School of Civil Engineering and Geometrics, Southwest Petroleum University, Chengdu, 610500, China.
Research Institute of Engineering Safety Assessment and Protection of Southwest Petroleum University, Chengdu, 610500, China.
Sci Rep. 2024 Jan 29;14(1):2345. doi: 10.1038/s41598-024-52334-7.
Oil-based drilling cutting pyrolysis residues (ODCPRs), bauxite, and sintering additives were applied to manufacture ceramic proppants with low density and high strength in this work. The effect of ODCPRs ratio, sintering temperature, holding time, and the content of additives on the performance of the proppants was comprehensively investigated, respectively. And the sintering mechanism of proppants was also discussed according to the phase, microstructure, and thermal behavior analyses. The results revealed that at the best sintering condition (1280 °C, holding for 60 min), and a mass ratio (ODCPRs: bauxite: MnO at 3:7:0.1), the well-developed granular corundum and acicular mullite formed inside the proppants and interspersed with each other to form a dense structure. The proppants presented low density and high strength as the bulk density of 1.48 g/cm, the apparent density of 2.94 g/cm, a breakage ratio of 5.25% under 52 MPa closed pressure, and the acid solubility of 4.80%, which could well meet the requirement of the standards of SY/T 5108-2014. This work provided a new pathway for recycling ODCPRs and the fabrication of high-performance proppants.
在本研究中,采用油基钻井岩屑热解残渣(ODCPRs)、铝土矿和烧结添加剂来制备低密度、高强度的陶瓷支撑剂。分别全面研究了ODCPRs比例、烧结温度、保温时间和添加剂含量对支撑剂性能的影响。并根据相、微观结构和热行为分析探讨了支撑剂的烧结机理。结果表明,在最佳烧结条件(1280℃,保温60min)下,当质量比为(ODCPRs:铝土矿:MnO为3:7:0.1)时,支撑剂内部形成发育良好的粒状刚玉和针状莫来石,相互穿插形成致密结构。支撑剂表现出低密度和高强度,堆积密度为1.48g/cm,视密度为2.94g/cm,在52MPa闭合压力下破碎率为5.25%,酸溶解度为4.80%,完全符合SY/T 5108-2014标准要求。本研究为ODCPRs的回收利用和高性能支撑剂的制备提供了一条新途径。