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Comparative study of tribological properties of trimethylolpropane-based biolubricants derived from methyl oleate and canola biodiesel.

机译:油酸甲酯和双低油菜籽生物柴油衍生的三羟甲基丙烷基生物润滑剂的摩擦学性能比较研究。

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A class of industrial-grade biolubricants was synthesized from methyl oleate and canola (Brassica napus) biodiesel by transesterification with trimethylolpropane (TMP) using sodium methoxide as catalyst. Model transesterification reactions were performed with methyl oleate to optimize the reaction conditions to obtain maximum yield of TMP trioleate. Methyl oleate-derived biolubricant with TMP triester composition of 91.2% was obtained after 5 h. Under similar reaction conditions, canola biodiesel-derived biolubricant comprising of 90.9% of TMP triesters was obtained. Both biolubricants were evaluated for their tribological properties using ASTM and AOCS standards. They exhibited very high viscosity indices, excellent low temperature properties and moderate oxidative stabilities. The lubricity of the biolubricants was tested on a High Frequency Reciprocating Rig (HFRR) apparatus by measuring wear scar diameter on a test sample. Canola biodiesel-derived biolubricant was found to perform better than methyl oleate-derived biolubricant based on HFRR test. Both biolubricants met ISO VG 46 specifications.Digital Object Identifier http://dx.doi.org/10.1016/j.indcrop.2013.07.018
机译:通过使用甲醇钠作为催化剂,与三羟甲基丙烷(TMP)进行酯交换反应,从油酸甲酯和低芥酸菜子(甘蓝型油菜)生物柴油合成了一类工业级生物润滑剂。用油酸甲酯进行模型酯交换反应以优化反应条件,以获得TMP三油酸酯的最大产率。 5小时后得到TMP三酯组成为91.2%的油酸甲酯源生物润滑剂。在相似的反应条件下,获得了包含90.9%的TMP三酯的低芥酸菜籽生物柴油衍生的生物润滑剂。使用ASTM和AOCS标准评估了这两种生物润滑剂的摩擦学性能。它们表现出非常高的粘度指数,出色的低温性能和适度的氧化稳定性。通过测量测试样品上的磨损痕迹直径,在高频往复钻机(HFRR)装置上测试了生物润滑剂的润滑性。根据HFRR测试,发现菜籽油生物柴油衍生的生物润滑剂的性能优于油酸甲酯衍生的生物润滑剂。两种生物润滑剂均符合ISO VG 46规范。数字对象标识符http://dx.doi.org/10.1016/j.indcrop.2013.07.018

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