首页> 外文会议>International Conference on Advances in Energy Research >Epoxidation of castor oil fatty acid methyl esters (COFAME) as a lubricant base stock using heterogeneous ion-exchange resin (IR-120) as a catalyst
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Epoxidation of castor oil fatty acid methyl esters (COFAME) as a lubricant base stock using heterogeneous ion-exchange resin (IR-120) as a catalyst

机译:蓖麻油脂肪酸甲酯(COFAME)作为润滑剂碱性使用非均相离子 - 交换树脂(IR-120)作为催化剂的环氧化

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Castor oil fatty acid methyl esters (COFAME) epoxide was derived by In-situ epoxidation reaction from COFAME to be used as a bio-lubricant basestock. During the reaction acetic acid was acted as an active oxygen carrier and hydrogen peroxide (H2O2) was an oxygen donor in the presence of strongly acidic cation ion-exchange resin (Amberlite IR 120) as a heterogeneous catalyst. In-situ epoxidation reaction was carried out at H2O2, acetic acid to ethylenic unsaturation molar ratio of 1.5 and 0.5 respectively; catalyst loading 15 wt%, reaction temperature 60 °C and reaction time 10 h. The objective of the study was to improve the thermo-oxidative stability of epoxidised COFAME. The resulting products were confirmed by ~1H NMR, FTTR spectroscopy and also analysed for oxirane oxygen content (OOC). Required physico-chemical properties were estimated for unmodified COFAME and epoxidised COFAME. Thermo-oxidative stability of epoxide was determined by thermo gravimetric analysis (TGA) technique in an inert and oxygen atmosphere. Thermo-oxidative stability of COFAME and its epoxide was compared with conventional servo hydraulic lubricant base stock oil. The present work has clearly illustrated significant improvement in the thermo-oxidative stability of COFAME epoxide i.e. after the structural modification.
机译:通过从CoFame的原位环氧化反应中衍生蓖麻油脂肪酸甲酯(COFAME)环氧化物作为生物润滑剂基础。在反应期间,乙酸作用为活性氧载体,并且过氧化氢(H 2 O 2)是氧供体,在浓度的阳离子离子交换树脂(Amberlite IR 120)作为非均相催化剂存在下。原位环氧化反应在H 2 O 2,乙酸中进行,烯键式不饱和摩尔比分别为1.5和0.5;催化剂负载15wt%,反应温度60℃和反应时间10小时。该研究的目的是提高环氧化CoFame的热氧化稳定性。通过〜1H NMR,FTTR光谱法确认所得产物,并分析环氧乙烷氧含量(OOC)。针对未修饰的COFAME和环氧化COFAME估计所需的物理化学性质。通过在惰性和氧气气氛中的热重量分析(TGA)技术测定环氧化物的热氧化稳定性。将CoFame及其环氧化物的热氧化稳定性与常规伺服液压润滑剂碱储备油进行比较。本作本作清楚地说明了CoFame环氧化物的热氧化稳定性的显着改善。在结构改性之后。

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