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作 者:赵莎莎[1] 金邦荃[1] 顾晓俊[1] 冯璇[1] 沈丽叶[1] 韩燕妮[1] 刘春泉[2] 李大婧[2]
机构地区:[1]南京师范大学金陵女子学院,江苏南京210097 [2]江苏省农业科学院农产品加工所,江苏南京210014
出 处:《南京师范大学学报(工程技术版)》2013年第2期81-86,共6页Journal of Nanjing Normal University(Engineering and Technology Edition)
基 金:2010江苏省大学生创新项目;2011江苏省现代农业技术创新项目(CX(11)2067-1)
摘 要:分别研究了盐酸-微波法和纤维素酶(Cellulase,Case)-微波法制备猕猴桃果肉中可溶性膳食纤维-果胶(SDF-P),在此基础上,用Box-Behnken响应曲面优化酶解程序,进行三联工艺的整合,试图有效提高SDF-P得率和含量.结果表明,经0.2%盐酸预处理(500 W/40 s微波)后的果肉粉,进入酶解环节并优化,得到的最佳酶解工艺条件为体积浓度0.2%Case、15∶1(V∶W)、500 W和30 s微波处理.采用优化后的三联工艺,极大提高猕猴桃果肉中SDF-P含量至(48.8±0.03)%(p<0.01),纯度提高2.8倍;同时其得率也达到11%左右,分别是酸解或酶解工艺的1.7倍和2.1倍.由此可见,采用酸-酶-微波的三联工艺,可高效制备猕猴桃果肉SDF-P,降低工业成本.This paper studies the preparation of soluble dietary fiber-pectin(SDF-P) from actinidia pomace, in which HC1- microwave is contained, and cellulase-microwave treatments respectively. On this basis, eellulase hydrolysis procedures are optimized by the Box-Behnken response surface for effectively increasing the yield and content of SDF-P. The results show that actinidia pomace with O. 2% HC1 ( 500 W/40 s microwave ) initially comes into eellulase hydrolysis. The optimal conditions for extraction are achieved by treating O. 2% cellulase, 15 : 1 V: W, 500 W and 30s microwave. The triple technology increases the content of SDF-P to ( 48.8 ± 0.03 ) % very significantly (p 〈 0.01 ), 2.8 times as HC1- microwave or cellulase-mierowave treatment. Its yield is also over 11% , which increases by 1.7 and 2. 1 times. In summary, SDF-P can be extracted by triple technology efficiently by HCl-cellulase-microwave with lower industry cost.
关 键 词:SDF-P 纤维素酶 微波 三联工艺 猕猴桃果肉
分 类 号:TS2[轻工技术与工程—食品科学与工程]
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