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运用改性活性炭对烟叶氨基酸水解液进行脱色最佳工艺研究
引用本文:田浩,肖丹,钏助胜,石瑶,潘俊,王瀚墨,李晚谊,夏禄华. 运用改性活性炭对烟叶氨基酸水解液进行脱色最佳工艺研究[J]. 中国烟草科学, 2012, 33(4): 85-89. DOI: 10.3969/j.issn.1007-5119.2012.04.018
作者姓名:田浩  肖丹  钏助胜  石瑶  潘俊  王瀚墨  李晚谊  夏禄华
作者单位:1. 云南省农业科学院药用植物研究所,昆明 650223;
2. 云南盟生药业有限公司,昆明 650217;
3. 海正药业(杭州)有限公司,浙江 富阳 311404
基金项目:昆明市科技计划项目“植物功能饮生产技术产业化研究”(昆科计字08G040203号)
摘    要:为提高烟草综合利用率,以生产烟碱及茄尼醇后的烟叶废渣为原料,通过酸水解生产氨基酸,以不同酸碱溶液对活性炭进行改性,以改性后的活性炭为脱色剂对氨基酸水解液进行脱色.研究活性炭脱色处理中活性炭处理方式、pH、活性炭用量、脱色温度、脱色时间等因素对各种氨基酸收率和脱色率的影响.结果表明,最佳的脱色工艺为:0.25 % KOH处理活性炭、pH=10、活性炭用量为2.5 %、脱色温度20 ℃、脱色20 min,所得产物氨基酸收率79.14 %,脱色率达83.89 %.改性后的活性炭显著提高了Tyr、His、Lys、Ile和Leu这5种氨基酸的收率.

关 键 词:烟草  废弃物  氨基酸  活性炭  脱色  
收稿时间:2010-07-15

Study on the Active Carbon for Absorbing Amino Acids in Static State from Tobacco Waste Hydrolysates
TIAN Hao,XIAO Dan,CHUAN Zhusheng,SHI Yao,PAN Jun,WANG Hanmo,LI Wanyi,XIA Luhua. Study on the Active Carbon for Absorbing Amino Acids in Static State from Tobacco Waste Hydrolysates[J]. Chinese Tobacco Science, 2012, 33(4): 85-89. DOI: 10.3969/j.issn.1007-5119.2012.04.018
Authors:TIAN Hao  XIAO Dan  CHUAN Zhusheng  SHI Yao  PAN Jun  WANG Hanmo  LI Wanyi  XIA Luhua
Affiliation:1. Medical Plant Institute, Yunnan Academy of Agricultural Sciences, Kunming 650223, China;2. Yunnan Mengsheng Pharm Co., Ltd., Kunming 650217, China;3. Hisun Pharmaceutical (Hangzhou) Co., Ltd., Fuyang, Zhejiang 311404, China
Abstract:In order to enhance utilization efficiency of tobacco,the amino acid was produced by HCl hydrolysis from tobacco waste,and the amino acids solution was decolored by activated carbon.The absorption capacity of 16 amino acids and the decoloration of tobacco waste hydrolysates by different activated carbon modified were investigated.The results showed that the optimum technology was as follow:the quantity of active carbon(with 0.25% KOH) 2.5 %,temperature 20 oC,pH 10.0,time 20 min.The yield of amino acids was 79.14 %,the decolorizing rate was 83.89% and the yield of total amino acids,Tyr,His,Lys,Ile and Leu had been improved greatly.
Keywords:tobacco  waste  amino acid  active carbon  decoloration
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