竹叶中叶绿素的提取工艺及其功能性应用研究

申申1,2, 段君禄1, 李宇1, 王承1, 傅佳佳1,2*, 王鸿博1

化工新型材料 ›› 2018, Vol. 46 ›› Issue (1) : 117 -120.

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化工新型材料 ›› 2018, Vol. 46 ›› Issue (1) : 117-120.
科学研究

竹叶中叶绿素的提取工艺及其功能性应用研究

    申申1,2, 段君禄1, 李宇1, 王承1, 傅佳佳1,2*, 王鸿博1
作者信息 +

Research on the extraction and functional application of chlorophyll from bamboo leaves

  • Sheng Shen1,2, Duan Junlu1, Li Yu1, Wang Cheng1, Fu Jiajia1,2, Wang Hongbo1
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文章历史 +
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摘要

以毛竹叶为原料,使用丙酮作为提取剂,通过振荡水浴预处理,辅助超声波作用提取毛竹叶叶绿素,并且对叶绿素提取效率进行测试。对主要参数(如振荡时间、超声时间、超声功率等)设计了单因素试验。得出较适宜的提取工艺为:振荡水浴处理时间10min,超声波清洗器处理时间20min,超声功率140W,在此条件下,叶绿素提取效率较高,提取含量达到2.39mg/g。同时,采用不同方法制备聚乙烯醇(PVA)/叶绿素膜,通过荧光显微镜、扫描电子显微镜(SEM)对制得PVA/叶绿素膜进行观测。结果表明,PVA/叶绿素膜保持叶绿素的荧光特性;在纺丝工艺中,叶绿素吸附在纤维表面形成PVA/叶绿素膜。

Abstract

The bamboo leaves were subjected to acetone solvent for chlorophyll extraction.The reaction was carried out in the shaking water bath prior to the ultrasonic cleaner treating.The chlorophyll extraction efficiency was investigated.Moreover,in order to acquire favorable main values,the single-factor experiments was designed for main parameters,viz.treating time of shaking water bath as well as temperature and power of ultrasonic cleaner.The proper parameters for launching the process were:shaking water bath treating time of 10min,ultrasonic cleaner extraction time of 20min and power of 140W.Under this condition,higher extraction efficiency could be achieved,which was 2.39mg/g.Additionally,PVA/chlorophyll films prepared through different methods were observed by fluorescence microscopy and SEM.Results indicated that PVA/chlorophyll film retained the fluorescence characteristics of chlorophyll.In the spinning process,chlorophyll was absorbed on the surface of fibers forming PVA/chlorophyll film.

关键词

振荡水浴 / 超声波清洗器 / 毛竹叶 / 叶绿素 / PVA/叶绿素膜

Key words

shaking water bath / ultrasonic cleaner / bamboo leave / chlorophyll / PVA/chlorophyll film

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竹叶中叶绿素的提取工艺及其功能性应用研究[J]. 化工新型材料, 2018, 46(1): 117-120 DOI:

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参考文献

[1] Kinumoto T,Matsumura T,Yamaguchi K,et al.Material processing of bamboo for use as a gas diffusion layer in proton exchange membrane fuel cells[J].Acs Sustainable Chemistry & Engineering,2015,3(7).1374-1380.
[2] Sharma B,Gatóo A,Bock M,et al.Engineered bamboo for structural applications[J].Construction & Building Materials,2015,81:66-73.
[3] 杨国恩,吴志平,李申平.竹叶叶绿素的提取及其性质的稳定性[J].中南林学院工业学院报,2005,25(3):106-110.
[4] 朱晓敏,王胜利,刘卫洁.以超声辅助浊点萃取法提取竹叶中的叶绿素[J].化学试剂,2015,37(3),263-266.
[5] 陈新香,蔡碧琼,蔡珠玉,等.芦荟皮叶绿素的提取及稳定性研究[J].江西农业大学学报,2010,32(1):175-180.
[6] 张静平.超声波辅助提取毛竹叶中叶绿素的研究[J].实验与技术,2008,24(6),488-489.
[7] 陆志,廖威.毛竹叶化学成分的初步测定[J].山西大学学报(自然科学版),2003,26(1):46-48.
[8] 邱尔发,陈存及,梁一池,等.不同种源毛竹叶表叶绿素浓度动态[J].福建林学院学报,2002,22(4):312-315.
[9] 王立娟.超声波辅助提取紫丁香叶叶绿素的工艺[J].农业工程学报,2009(s1):171-174.
[10] 钟爱国.鲜竹叶中叶绿素的超声波萃取[J].科学技术与工程,2006,6(21):3474-3475.
[11] Mendes-Pinto M M,Silva Ferreira A C,Caris-Veyrat C,et al.Carotenoid,chlorophyll,and chlorophyll-derived compounds in grapes and port wines[J].Journal of Agricultural and Food Chemistry,2005,53(26):10034-10041.
[12] Yang H,Huan B,Chen Y,et al.Biomass-based pyrolytic polygeneration system for bamboo industry waste:evolution of the char structure and the pyrolysis mechanism[J].Energy & Fuels,2016,30(8):6430-6439.
[13] 廖维良,赵美顺,杨红.超声波辅助提取技术研究进展[J].广东药学院学报,2012(3):347-350.

基金资助

国家自然科学基金(31470509、31201134);江苏省基础研究计划(自然科学基金)青年基金项目(BK2012112);江苏省产学研前瞻性研究项目(BY2013015-24、BY2016022-23);现代丝绸国家工程实验室技术创新基金项目资助(苏州大学丝绸工程省级重点实验室开放课题)(KJS1312);江苏高校品牌建设工程资助项目(PPZY2015B147);中央高校基本科研业务费专项资金资助(JUSRP51622A)

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