王倩倩,许勃,董威杰,李庆鹏,王娴,陈云堂,石晓华,崔龙.丙烯酰胺水溶液的辐照消减效应研究[J].食品安全质量检测学报,2018,9(21):5671-5677
丙烯酰胺水溶液的辐照消减效应研究
Study on irradiation reduction effect of acrylamide aqueous solution
投稿时间:2018-08-27  修订日期:2018-11-01
DOI:
中文关键词:  60Co-γ  辐照  丙烯酰胺  降解
英文关键词:60Co-γ  irradiation  acrylamide  reduction
基金项目:河南省科技攻关计划项目(162102110057)
作者单位
王倩倩 河南省科学院同位素研究所有限责任公司 
许勃 河南省科学院同位素研究所有限责任公司 
董威杰 河南省科学院同位素研究所有限责任公司 
李庆鹏 中国农业科学院农产品加工研究所 
王娴 河南省科学院同位素研究所有限责任公司 
陈云堂 河南省科学院同位素研究所有限责任公司 
石晓华 郑州大学化工与能源学院 
崔龙 河南省科学院同位素研究所有限责任公司 
AuthorInstitution
WANG Qian-Qian School of Chemical Engineering and Energy 
XU Bo School of Chemical Engineering and Energy,Zhengzhou University 
DONG Wei-Jie School of Chemical Engineering and Energy,Zhengzhou University 
LI Qing-Peng Institute of Food Science and Technology CAAS 
WANG Xian School of Chemical Engineering and Energy,Zhengzhou University 
CHEN Yun-Tang School of Chemical Engineering and Energy,Zhengzhou University 
SHI Xiao-Hua The Isotope Institute Ltd,Henan Academy of Sciences 
CUI Long School of Chemical Engineering and Energy,Zhengzhou University 
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中文摘要:
      目的 探讨食品中已生成的丙烯酰胺原位消减技术。方法 采用60Co-γ对丙烯酰胺水溶液进行辐照处理, 研究初始浓度、吸收剂量及添加HCl、Na2CO3、H2O2、VC、叔丁醇等对丙烯酰胺含量随吸收剂量变化规律。结果 丙烯酰胺含量随吸收剂量的升高而显著降低, 3 kGy以上剂量照射后, 丙烯酰胺的降解率在99%以上; Na2CO3可促进丙烯酰胺的辐照降解; H2O2、HCl起抑制作用; 低剂量下HCl及叔丁醇能促进丙烯酰胺的降解, 高剂量下则起抑制作用; 红外研究(infrared ray, IR)表明辐照生成无毒的聚丙烯酰胺。结论 辐照可有效地降解溶丙烯酰胺, Na2CO3可以作为其辐照增效剂。
英文摘要:
      Objective To explore the in-situ degradation of acrylamide generated in food. Methods Irradiation treatment of acrylamide aqueous solution was performed by 60Co-γ, and initial concentration, absorbed dose and the variation of acrylamide content with the absorbed dose by adding HCl, Na2CO3, H2O2, VC and tert-butanol were studied. Results The content of acrylamide decreased significantly with the increase of the absorbed dose, and the degradation rate of acrylamide was more than 99% after irradiation above 3 kGy. Irradiation degradation of acrylamide could be promoted by Na2CO3, on the contrary inhibited by H2O2 and HCl. Under low radiation doses, HCl and tert-butanol alcohol could promote acrylamide degradation, and inhibit it at higher radiation doses. Infrared ray (IR) results showed that nontoxic polyacrylamide was produced after irradiation. Conclusion Irradiation can effectively degrade acrylamide, and Na2CO3 can be used as an irradiation synergist.
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