Yang Yue, Cao Tiantian, Xiong Yong, Huang GuoYong, Wang Wenqiang, Liu Qi, Xu Shengming
School of Minerals Processing and Bioengineering, Central South University, Changsha 410083, China; Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, China.
Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, China.
Waste Manag. 2018 Aug;78:595-601. doi: 10.1016/j.wasman.2018.05.055. Epub 2018 Jun 27.
Deoiling enjoys great significance in recycling and landfill of spent hydrotreating (HDT) catalyst. In this study, a novel approach for oil removal from spent HDT catalyst with assistance of ultrasound was developed. The effects of variables on oil removal were investigated by response surface methodology and central composite design method. The oil removal efficiency reaches 96.03 ± 0.82% under the optimum conditions of liquid-solid ratio 16.00 ml·g, 75 °C, sodium hydroxide dosage 3.88 wt%, and 40 kHz ultrasonic irradiation for 3.25 h. Under the optimum conditions, the contact angle of spent catalyst is 98.7° before oil removal, and then reduces to 57.2° after deoiling with the help of ultrasound, but turns to 72° after deoiling in the absence of ultrasound, which further verifies that the oil removal efficiency can be improved by ultrasound. Compared to traditional extraction or hydrothermal methods for removing oil from spent catalyst, the proposed approach introduced ultrasonic force field to enhance oil removal efficiency without adding organic solvent or surfactant.
脱油在废加氢处理(HDT)催化剂的回收利用和填埋处理中具有重要意义。在本研究中,开发了一种借助超声从废HDT催化剂中脱油的新方法。采用响应面法和中心复合设计方法研究了各变量对脱油效果的影响。在液固比16.00 ml·g、75°C、氢氧化钠用量3.88 wt%以及40 kHz超声辐照3.25 h的最佳条件下,脱油效率达到96.03±0.82%。在最佳条件下,废催化剂脱油前的接触角为98.7°,借助超声脱油后降至57.2°,而在无超声脱油后变为72°,这进一步证实了超声可提高脱油效率。与传统的从废催化剂中脱油的萃取或水热方法相比,该方法引入超声力场来提高脱油效率,且无需添加有机溶剂或表面活性剂。