|本期目录/Table of Contents|

[1]朱顺兰a,刘欣怡a,姜雯书a,等.菜籽油化学改性的研究进展[J].石化技术与应用,2023,5:395-398.
 ZHU Shun-lana,LIU Xin-yia,JIANG Wen-shua,et al.Research progress on chemical modification of rapeseed oil[J].Petrochemical technology & application,2023,5:395-398.
点击复制

菜籽油化学改性的研究进展(PDF)

《石化技术与应用》[ISSN:1009-0046/CN:62-1138/TQ]

期数:
2023年5期
页码:
395-398
栏目:
出版日期:
2023-09-10

文章信息/Info

Title:
Research progress on chemical modification of rapeseed oil
文章编号:
1009-0045(2023)05-0395-04
作者:
朱顺兰a刘欣怡a姜雯书a马东飞a丁丽芹abc*
(西安石油大学 a.化学化工学院;b.陕西省绿色低碳能源材料与过程工程技术研究中心;c.西安市高碳资源低碳化利用重点实验室,陕西 西安 710065)
Author(s):
ZHU Shun-lana LIU Xin-yia JIANG Wen-shua MA Dong-feia DING Li-qinabc
(a. College of Chemistry & Chemical Engineering;b. Shaanxi Engineering Research Center of Green Low-carbon Energy Materials and Processes;c. Xi′an Key Laboratory of Low-carbon Utilization for High-carbon Resources, Xi′an Shiyou University, Xi′an 710065, C
关键词:
菜籽油生物降解化学改性低温流动性热氧化安定性抗磨性非食用
Keywords:
rapeseed oil biodegradation chemical modification low temperature fluidity thermal oxidation stability anti-wear performance non-edible.
分类号:
TQ 645
DOI:
DOI:10.19909/j.cnki.ISSN1009-0045.2023.05.0395
文献标识码:
A
摘要:
阐述了国内外菜籽油化学改性方法的研究进展。通过对菜籽油分子酯基、羧羟基和不饱和碳碳双键上的改性和修饰,以提高其低温流动性、热氧化稳定性和抗磨性等性能,可将改性后的菜籽油用于生物柴油、绝缘油或润滑油等工业领域。
Abstract:
The research progress of chemical modification methods of rapeseed oil at home and abroad was described. The modified rapeseed oil could be used in biodiesel, insulating oil, lubricating oil and other industrial fields by modifying the ester groups, carboxyl and hydroxyl groups and unsaturated carbon-carbon double bonds of rapeseed oil to improve its low temperature fluidity, thermal oxidation stability and anti-wear performance.

参考文献/References

[1] 张亮. 不同加工工艺的菜籽油品质及其生物学评价[D].无锡:江南大学,2017.[2] Ptak S, Krasodomski W, Zólty M. Improvement in low-temperature properties of fatty acid methyl esters[J]. Energies, 2022, 15(13): 4536.[3] 杨利飞.《菜籽油》国家标准解读[J].中国粮食经济,2022,368(4):67-68.[4] Guan M, Chen H, Xiong X H, et al. A study on triacylglycerol composition and the structure of high-oleic rapeseed oil[J]. Engineering, 2016, 2(2): 258-262.[5] Salimon J, Salih N, Yousif E. Triester derivatives of oleic acid: The effect of chemical structure on low temperature, thermo-oxidation and tribological properties[J]. Industrial Crops & Products, 2012, 38: 107-114.[6] 刘成, 赵丽佳, 唐晶, 等.中美贸易冲突背景下中国油菜产业发展问题探索[J].中国油脂, 2019, 44(9): 1-6.[7] 张冉, 曹娟娟, 濮超, 等.中国油菜籽和菜籽油的生产、进出口及供需分析[J].中国油脂, 2022, 47(6): 8.[8] 宋跃锋.植物油改性作绿色润滑油基础油的研究[D].合肥: 合肥工业大学, 2014.[9] 朱锐, 李祥慧, 易阳.菜籽油品质多样性与红外光谱特征的研究[J].中国油脂, 2022, 47(11): 126-135.[10] Politi J R S, Matos P R R, Sales M J A. Comparative study of the oxidative and thermal stability of vegetable oils to be used as lubricant bases[J]. Journal of Thermal Analysis and Calorimetry, 2013, 111(2) : 1437-1442.[11] Lawal S A, Choudhury I A, Nukman Y. Developments in the formulation and application of vegetable oil-based metalworking fluids in turning process[J]. The International Journal of Advanced Manufacturing Technology, 2013, 67(5/8): 1765-1776.[12] Hashem A I, Abou Elmagd W S I, Salem A E, et al. Conversion of some vegetable oils into synthetic lubricants[J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2013, 35(5): 397-400.[13] Gupta R N, Harsha A P, Singh S. Tribological study on rapeseed oil with nano-additives in close contact sliding situation[J]. Applied Nanoscience, 2018, 8(4): 567-580.[14] Panchal T M, Patel A, Chauhan D D, et al. A methodological review on bio-lubricants from vegetable oil based resources[J]. Renewable and Sustainable Energy Reviews, 2016, 70: 65-70.[15] Kumar A, Sharma A, Upadhyaya K C. Vegetable oil: Nutritional and industrial perspective[J]. Current Genomics, 2016, 17(3): 230-240.[16] 丁丽芹, 李孟阁, 念利利, 等.植物油制备润滑油添加剂的研究进展[J].石油学报(石油加工), 2019, 35(2): 8.[17] 郭力, 胡建强, 胡役芹, 等.植物油的化学改性[J].合成润滑材料, 2008, 35(3): 25-28.[18] 王后政, 赵晨伟, 金青哲, 等.菜籽油酯交换制备脂肪酸异辛酯[J].中国油脂, 2021, 46(8): 56-60.[19] 杨晶晶, 黄明洁, 曹华明, 等.菜籽油酯交换制备植物绝缘油的热稳定性分析[J].山东电力技术, 2022, 49(4): 59-62.[20] Arumugam S, Chengareddy P, Sriram G. Synthesis, characterisation and tribological investigation of vegetable oil-based pentaerythryl ester as biodegradable compressor oil[J]. Industrial Crops & Products, 2018, 123: 617-628.[21] Mello B T F, Zempulski D A, Cardozo-Filho L, et al. Hydrolysis of canola oil under subcritical conditions for biodiesel synthesis[J]. Asian Journal of Chemistry, 2016, 29(2): 398-402. [22] 刘棣阳. 菜籽油增塑剂的制备[J].西部皮革, 2020, 42(17): 2.[23] Malins K, Brinks J, Kampars V, et al. Esterification of rapeseed oil fatty acids using a carbon-based heterogeneous acid catalyst derived from cellulose[J]. Applied Catalysis A(General),2016, 519: 99-106.[24] Liao D Z, He J Y, Mao L X, et al. Synthesis and lubricating properties of neopentyl glycol oligoesters based on rapeseed oil[J]. Industrial Lubrication and Tribology, 2015, 67(5): 449-454.[25] Gryglewicz S, Muszyński M, Nowicki J. Enzymatic synthesis of rapeseed oil-based lubricants[J]. Industrial Crops & Products, 2013, 45: 25-29.[26] 李维民, 姜程, 王晓波, 等.植物油基润滑油添加剂的制备及其摩擦学性能[J].石油学报(石油加工), 2015, 31(2): 468-475.[27] 魏乐, 何超迷, 余辉, 等.环氧化菜籽绝缘油的制备及性能研究[J].可再生能源, 2014, 32(8): 1225-1230.[28] Kirpluks M, Kalnbunde D, Walterova Z, et al. Rapeseed oil as feedstock for high functionality polyol synthesis[J]. Journal of Renewable Materials, 2017, 5(3/4): 258-270.[29] 毛瑞云, 段庆华. 环氧生物质油在合成润滑油基础油的研究进展[J].化工进展, 2021, 40(Z 2): 340-347.[30] Smith P C, Ngothai Y, Nguyen Q D, et al. The addition of alkoxy side-chains to biodiesel and the impact on flow properties[J]. Fuel, 2010, 89(11):3517-3522.[31] Kolár M, Machotová J, Hájek M, et al. Application of vegetable oil-based monomers in the synthesis of acrylic latexes via emulsion polymerization[J]. Coatings, 2023, 13(2): 262.[32] Sujit T, Mahua U, Pranab G. Synthesis and performance evaluation of vegetable oil polymer as a multifunctional lube oil additive[J]. Petroleum Science and Technology, 2018, 36(23): 1983-1990.[33] 丁丽芹, 念利利, 冯豪, 等. 蓖麻油基润滑油降凝剂的合成[J].精细化工, 2021, 38(3): 619-624.[34] 秦建, 刘天霞, 王建, 等. 油酸改性石墨烯/二硫化钼复合材料润滑添加剂的制备及摩擦学特性[J].化工进展, 2022, 41(9): 4973-4985.[35] 王学军, 庄心生, 齐辉. 薄膜爽滑剂芥酸酰胺研究进展[J].塑料工业, 2022, 50(7): 1-5.

备注/Memo

备注/Memo:
陕西省自然科学基础研究计划资助项目(项目编号:2022 JM-078);西安石油大学大学生创新创业训练计划资助项目(项目编号:202210705008)
更新日期/Last Update: 2023-09-10