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山毛豆油磷酸辅助脱胶工艺条件优化
引用本文:胡林子,李新华,马永全,于新. 山毛豆油磷酸辅助脱胶工艺条件优化[J]. 食品科学, 2011, 32(8): 83-87. DOI: 10.7506/spkx1002-6630-201108019
作者姓名:胡林子  李新华  马永全  于新
作者单位:1.沈阳农业大学食品学院2.仲恺农业工程学院轻工食品学院
基金项目:广东省科技计划项目(2008B030302001)
摘    要:目的:研究酸种类、酸添加量、加水量、脱胶温度、搅拌时间对山毛豆毛油脱胶率的影响。方法:在单因素试验基础上,利用响应面分析法对山毛豆毛油脱胶工艺进行优化。结果:得到山毛豆酸辅助脱胶最佳工艺条件为磷酸添加量2.47g/kg、加水量4.1%、脱胶温度62℃、搅拌时间45min。该条件下山毛豆毛油脱胶率为92.48%,与模型预测值91.5256%接近,脱胶山毛豆油中磷脂含量为0.095%。结论:磷酸辅助脱胶技术可对山毛豆毛油中的磷脂进行有效脱除。

关 键 词:非洲山毛豆  磷酸  脱胶  响应面法  

Optimizing Process Conditions for Phosphoric Acid-assisted Degumming of Tephrosia vogelii Hook f. Seed Oil
HU Lin-zi,LI Xin-hua,MA Yong-quan,YU Xin. Optimizing Process Conditions for Phosphoric Acid-assisted Degumming of Tephrosia vogelii Hook f. Seed Oil[J]. Food Science, 2011, 32(8): 83-87. DOI: 10.7506/spkx1002-6630-201108019
Authors:HU Lin-zi  LI Xin-hua  MA Yong-quan  YU Xin
Affiliation:1. College of Food Science, Shenyang Agricultural University, Shenyang 110866, China;2. College of Light Industry and Food Science, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China
Abstract:Objective: To optimize process conditions for the degumming of Tephrosia.vogelii Hook f. seed oil such as acid kind and amount, water amount, temperature and stirring time for maximizing degumming rate. Methods: On the basis of single factor experiments, phosphoric acid amount, water amount, temperature and stirring time were optimized by response surface analysis. Results: Phosphoric acid was found to be the best degumming agent for T.vogelii Hook f. seed oil. The optimum degumming conditions were determined as follows: stirring at 62 ℃ for 45 min in the presence of 2.47 g/kg phosphoric acid and 4.1% water. Under these conditions, the actual degumming rate was 92.48 % (the degummed oil contained 0.095% phosphatide), close to the predicted value of 91.5256%. Conclusion: The phosphoric acid aided degumming process can effectively remove phospholipid from T.vogelii Hook f. seed oil.
Keywords:Tephrosia vogelii Hook f. seed  phosphoric acid  degumming  response surface methodology  
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