文章摘要
谢雨芮1,2,王艳梅 1,2,耿晓东 1,2,王建圆1,刘 震 1,2,李 志 1,2.山桐子油脱色工艺优化及其品质效应分析[J].广东农业科学,2020,47(9):121-126
查看全文    HTML 山桐子油脱色工艺优化及其品质效应分析
Optimization of Decolorization Process of Idesia polycarpa Maxim. Oil and Analysis of Its Quality Effect
  
DOI:10.16768/j.issn.1004-874X.2020.09.016
中文关键词: 山桐子油  木本油料植物  精炼  活性白土  脱色率  脂肪酸含量  油脂品质
英文关键词: Idesia polycarpa Maxim oil  woody oil plant  refine  activated clay  decolorization rate  fatty acid content  oil quality
基金项目:河南省高等学校重点科研项目(19A220001);国家自然科学基金(30900138)
作者单位
谢雨芮1,2,王艳梅 1,2,耿晓东 1,2,王建圆1,刘 震 1,2,李 志 1,2 1. 河南农业大学林学院河南 郑州 4500022. 中原地区森林资源培育国家林业局重点实验室河南 郑州 450002 
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中文摘要:
      【目的】探究山桐子毛油的优良脱色工艺,提高山桐子油脂的稳定性与安全性,为科研工作和生产活动提供理论参考。【方法】以冷榨山桐子毛油作为试验材料,通过脱胶和脱酸处理,对吸附剂种类、吸附剂用量、脱色时间、脱色温度和搅拌速度的单因素对比试验,得出适用于山桐子毛油的脱色条件;对脱色后的山桐子油进行脂肪酸成分、理化性质测定,分析脱色工艺对山桐子油的品质效应。【结果】吸附剂为活性白土,用量为 8%~9%,时间为 30~40 min,温度为 100~110 ℃,搅拌速度为 240~300 r/min,山桐子毛油的脱色率达到90% 以上,为最佳脱色工艺。山桐子毛油以 9% 的活性白土、时间 40 min、温度 110 ℃、搅拌速度 300 r/min 脱色后,过氧化值下降,脂肪酸含量占比基本不变。【结论】通过优化的脱色工艺对山桐子毛油进行脱色,可以大幅提高山桐子油的脱色率,对油脂品质的负向效应影响较小,该工艺对山桐子油脂加工与利用有重要指导意义。
英文摘要:
      【Objective】The study was conducted to explore the excellent decolorization technology of Idesia polycarpa Maxim. crude oil, improve the stability and safety of I. polycarpa oil, and provide theoretical references for scientific research and production activities.【Method】Taking cold pressed I. polycarpa crude oil as test material, single factor experiment on types of adsorbent, adsorbent dosage, decolorization time, decolorization temperature and stirring speed was conducted through degumming and deacidification, and decolorization conditions applicable to I. polycarpa oil were obtained. The fatty acid composition, physical and chemical properties of I. polycarpa oil after decolorization were determined and quality effect of decoloration process on I. polycarpa oil was analyzed.【Result】The results showed that the adsorbent was active clay, the dosage was 8%-9%, the time was 30-40 min, the temperature was 100-110℃ , and the stirring speed was 240-300 r/min, the decolorization rate of the I. polycarpa oil was more than 90%, which was the optimum decoloration process. When the decolorization was performed with 9% active clay, with the time of 40 min, the temperature of 110℃ , and the stirring speed of 300 r/min, the peroxide value of I. polycarpa oil decreased and the proportion of fatty acid content remained unchanged.【Conclusion】The decolorization rate of I. polycarpa oil can be greatly improved through optimized decolorization process, which has little negative effect on I. polycarpa oil quality. This process has important guiding significance for the processing and utilization of I. polycarpa oil.
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