Program of Chemical Engineering, State University of West Parana, Toledo, Brazil.
Laboratory of Catalysis and Biofuel Production (LabCatProBio), Federal University of Paraná (UFPR), Palotina, Brazil.
Environ Technol. 2021 Sep;42(21):3338-3347. doi: 10.1080/09593330.2020.1728391. Epub 2020 Feb 18.
In this work, the reduction of the moisture content from waste oils by a bentonite-based adsorption process was investigated as an alternative for reuse in energy production. Waste cooking oil (WCO) and waste poultry fat (WPF) were characterised (moisture and viscosity, values of acidity, saponification, and peroxide), as well as bentonite clay adsorbent. The response surface methodology (RSM) was applied to define the best moisture adsorption condition by bentonite-based adsorbent regarding a full factorial experimental design (FFED). In the framework of RSM, the adsorbent mass, oil acidity, and agitation speed were varied in three levels in the range of 1.5-3.0 g, 1-38 mg g, and 50-150 rpm, respectively, while the adsorption time was fixed in 24 h. Under the best moisture adsorption condition, kinetic tests were performed in a 1-24 h contact time range, besides performing equilibrium adsorption tests at 5 h contact time. Around 90% moisture removal was attained with 1.5 g adsorbent, acidity value of 1 mg g and 50 rpm agitation speed, achieving the equilibrium in 5 h. A multilayer adsorption process, as described by the BET isotherm model, was acting in dried bentonite clay, allowing getting excellent moisture adsorption capacity (∼200 mg g). Therefore, moisture removal from waste oils by a bentonite clay-based adsorption process has provided results that are suitable and recommendable for economically viable biodiesel production.
本工作研究了膨润土吸附工艺降低废油水分含量,以期替代废油用于能源生产。对废食用油(WCO)和废家禽脂肪(WPF)进行了特性分析(水分和黏度、酸度、皂化值和过氧化物值),以及膨润土吸附剂。应用响应面法(RSM)通过膨润土基吸附剂确定最佳水分吸附条件,采用完全因子实验设计(FFED)。在 RSM 框架内,吸附剂质量、油酸度和搅拌速度分别在 1.5-3.0g、1-38mg/g 和 50-150rpm 的范围内变化,吸附时间固定为 24h。在最佳水分吸附条件下,在 1-24h 的接触时间范围内进行动力学测试,并在 5h 的接触时间进行平衡吸附测试。使用 1.5g 吸附剂、1mg/g 酸度值和 50rpm 搅拌速度,可去除约 90%的水分,在 5h 内达到平衡。BET 等温模型描述的多层吸附过程作用于干燥的膨润土黏土,可获得良好的水分吸附能力(约 200mg/g)。因此,膨润土吸附工艺可有效降低废油中的水分含量,从而为经济可行的生物柴油生产提供了合适且值得推荐的结果。