Dubois Jean-Luc, Couturier Jean-Luc, Asadauskas Svajus Joseph, Labanauskas Linas, Bražinskienė Dalia, Blaauw Rolf
Arkema, Corporate R&D 420 Rue d'Estienne d'Orves 92705 Colombes France.
Centre de Recherches Rhône Alpes rue Henri Moissan - CS 42063 69491 Pierre Bénite France.
RSC Adv. 2021 Sep 20;11(49):31030-31041. doi: 10.1039/d1ra04045f. eCollection 2021 Sep 14.
Biodiesel plants are struggling to find value added applications for fatty acid methyl esters (FAME). One option for FAME valorization would be dibasic esters, which can be transesterified with 2-ethylhexyl (2EH) or other alcohols to produce lubricant basestocks and achieve the most widespread viscosity grades VG46 and VG32. Biocatalytic, metathesis and other synthetic pathways are available to produce dibasic esters. Using a ruthenium-based catalyst, methyl oleate was converted into monounsaturated dibasic ester by metathesis and reached VG22 after transesterification with 2EH in this investigation. Synthesized 2EH esters of other dibasic acids showed distinct viscometric trends. Their correlation implied that FAME from gondoic and erucic acids should result in VG32 and VG46 respectively, if converted into 2EH dibasic esters. Pour points demonstrated excellent low temperature fluidity and resistance to heat thinning when monounsaturation was retained. Oxidative stability properties remained acceptable, volatility was lower than that of VG46 mineral oils. Mixed alcohols, acids and esters can also be used for meeting VG specifications or achieving higher biobased contents. Currently petrochemical ester basestocks dominate in high performance hydraulic fluids (HF). However, fractionation of FAME into high-erucic/gondoic esters in biodiesel plants can produce a valuable biobased feedstock for large volume manufacture of HF and other lubricants.
生物柴油工厂正在努力为脂肪酸甲酯(FAME)寻找增值应用。FAME增值的一个选择是二元酯,它可以与2-乙基己醇(2EH)或其他醇进行酯交换反应,以生产润滑剂基础油,并实现最广泛使用的粘度等级VG46和VG32。可通过生物催化、复分解反应和其他合成途径来生产二元酯。在本研究中,使用钌基催化剂,通过复分解反应将油酸甲酯转化为单不饱和二元酯,并在与2EH进行酯交换反应后达到VG22的粘度等级。其他二元酸的合成2EH酯呈现出不同的粘度趋势。它们之间的相关性表明,如果将来自贡多酸和芥酸的FAME转化为2EH二元酯,分别应得到VG32和VG46的粘度等级。当保留单不饱和性时,倾点显示出优异的低温流动性和抗热变稀性能。氧化稳定性仍然可以接受,挥发性低于VG46矿物油。混合醇、酸和酯也可用于满足VG规格要求或实现更高的生物基含量。目前,石化酯基础油在高性能液压油(HF)中占主导地位。然而,在生物柴油工厂中将FAME分离为高芥酸/贡多酸酯,可以生产出一种有价值的生物基原料,用于大规模生产HF和其他润滑剂。