开发和评估用于可持续润滑油的蓖麻油基添加剂

Leiyami Ahungshi, Pranab Ghosh, Mainual Hoque
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引用次数: 0

摘要

全球原油储量的逐渐减少、原油成本的不断增加以及环境问题的日益严重,都是能够深刻影响人类生存的关键问题。为了应对这些挑战,研究人员必须专注于寻找替代解决方案,推动可持续生态系统的建立。本研究试图通过制造蓖麻油(CO)均聚物以及使用蓖麻油和丙烯酸正丁酯(无溶剂)共聚物来解决这些问题。该工艺使用过氧化苯甲酰(BZP)作为聚合的引发剂,并测试了所得聚合物作为润滑油添加剂的有效性。分析合成的聚合物需要利用傅立叶变换红外光谱和核磁共振光谱等光谱方法进行表征。热重分析 (TGA) 用于评估热稳定性,而凝胶渗透色谱法 (GPC) 则用于确定分子量。添加剂在提高粘度指数(VI)和降低倾点(PP)方面的效果,正在通过使用 SN150 矿物油标准的 ASTM 程序进行检验。圆盘扩散法用于评估各种聚合物的生物降解性。实验结果和数据分析表明,与均聚物相比,共聚物具有作为多功能润滑油添加剂的潜力。此外,提高共聚物中丙烯酸正丁酯的浓度可增加平均分子量,提高热稳定性,并提高粘度指数改进剂(VII)和降凝剂(PPD)的功效。这意味着改变共聚物的组成可以提高其分子特性,并增强其作为润滑油添加剂的功效。
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Development and Evaluation of Castor Oil-Based Additives for Sustainable Lubricating Oils
The gradual reduction of worldwide crude oil stores, increasing costs of crude oil, and escalating environmental worries are critical matters with the capacity to profoundly affect human existence. Meeting these challenges necessitates researchers' dedicated focus on discovering alternative solutions and advancing the creation of a sustainable ecosystem.This research seeks to tackle these issues by creating homopolymers of castor oil (CO) and copolymers using Castor oil  and n-butyl acrylate, without solvent. The process uses benzoyl peroxide (BZP) as the initiator for polymerization, and the resulting polymers are tested for their effectiveness as additives in lubricating oils. Analyzing the synthesized polymers entails utilizing spectroscopic methods like FT-IR and NMR spectroscopy for characterization purposes. Thermo-gravimetric analysis (TGA) is employed to evaluate thermal stability, while gel permeation chromatography (GPC) is utilized to ascertain molecular weight. The effectiveness of additives in enhancing viscosity index (VI) and reducing pour point (PP) is being examined through the ASTM procedure using the SN150 mineral oil standard. The disk diffusion method was utilized to evaluate the biodegradability of various polymers. The results from the experiment and the analysis of the data suggest that the copolymer shows potential as a versatile lubricating oil additive when compared to the homopolymer. Furthermore, elevating the concentration of n-butyl acrylate within the copolymer leads to heightened average molecular weight, better thermal stability, and superior effectiveness as a viscosity index improver (VII) and pour point depressant (PPD). This implies that modifying the copolymer's makeup can enhance its molecular properties and effectiveness when used as an additive in lubricating oil.
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