基于自动模糊逻辑控温生物反应器和d -优化设计的生物润滑油生产优化

P. Obasa, B. Adejumo
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摘要

现有的许多生物润滑剂的工艺参数优化都是基于各因素的相互作用和产率,而不考虑其理化性质。这项工作的目的是利用与所生产的生物润滑油的物理化学性质相关的设定目标,优化生产高质量生物润滑剂的反应温度和时间。所使用的反应器由一个反应器槽(2500 cm3)、温度、时间、搅拌器(搅拌)、转速范围分别为0 - 300℃、0 - 120分钟和80 - 500转/分。在design Expert 11.0软件包中使用响应面法(Doptimal design)设计最佳温度和时间矩阵。并将优化后的蓖麻籽油生物润滑油产率与国际润滑油标准进行了比较。结果表明,模糊逻辑控制反应器在运行过程中具有较好的成品率。采用模糊逻辑反应器制备的实验设计基质的生物润滑剂产率在79% ~ 96%之间。从研究中得到了较高的数值,除了倾点值较低。模糊逻辑温控反应器生产蓖麻油生物润滑剂的产率较高,其物理和热性能也较好,这可能是生产过程中温度和反应时间均匀的结果。生产生物润滑油的最佳条件考虑到生产最优质生物润滑油的最佳设定目标,考虑到在研究中获得的所有物理-热性能。最佳反应条件为反应时间99 (99.5)min,反应温度250℃,理想值为0.76。物热性能为96.48%,压力为33.7 mPa。s (33.7 cP), 15.5 mPa。s (15.5 cP), 179.9oC, 2910 oc, 15.9oC,用于粘度在40℃,粘度在100℃,粘度指数,闪点,倾点。在最佳条件下生产的生物润滑剂的理化性能均在国际推荐标准范围内。从设定的参数数量目标出发,确定了生产的最佳条件,得出模糊逻辑控制反应器产品是较好的生物润滑剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of bio-lube production using the automated fuzzy logic controlled temperature bioreactor and D-optimal design
Optimization of process parameters of many existing biolubricant were carried out based on the factor interactions and yield without putting the physicochemical properties into consideration. The aim of the work is to optimize the reaction temperature and time for the production of high-quality biolubricant using set objectives in relation to the physicochemical properties of the bio-lube produced. The reactor used consists of a reactor tank (2500 cm3 ), temperature, time, stirrer (agitation), speed ranged between 0 - 300oC, 0 - 120 minutes and 80 - 500 rpm respectively. The optimum temperature and time design matrix using Response Surface Methodology (Doptimal design) in Design Expert 11.0 software package. The results of the optimized yield of the castor seed oil biolubricant produced were compared with international standards for lubricant. The result shows better yield in the operational process of the fuzzy logic-controlled reactor. The yield of biolubricant for the experimental design matrix produced using the fuzzy logic reactor ranged between 79 - 96 %. Higher values were obtained from the study, except for the pour point values that were lower. The higher yield and the physical and thermal properties in castor oil biolubricant from the fuzzy logic temperature-controlled reactor could be as result of the uniform temperature and reaction time during the production process. The optimum condition for the bio-lube produced considering the optimum set goals for best quality biolubricant produced considering the set goal objective to comprise all the physico-thermal properties obtained in the study. The optimum condition was obtained at ninety-nine (99.5) minutes reaction time and 250oC reaction temperature with desirability value of 0.76. with the physico-thermal properties of 96.48 %, 33.7 mPa.s (33.7 cP), 15.5 mPa.s (15.5 cP), 179.9oC, 291oC, 15.9oC, for viscosity at 40oC, viscosity at 100oC, viscosity Index, Flash point, pour point. The physicochemical properties of biolubricant produced at optimum condition are within the recommended international standard. It can be concluded that the fuzzy logic-controlled reactor product is better biolubricant considering the number of parameters set goal to determine the optimum condition for production.
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