汤施展,陈中祥,黄 丽,吴 昊,覃东立,吴 松,李晨辉,王 鹏.红外光谱法测定水产品中石油烃残留[J].食品安全质量检测学报,2022,13(14):4650-4656
红外光谱法测定水产品中石油烃残留
Determination of petroleum hydrocarbon residues in aquatic products by infrared spectroscopy
投稿时间:2022-04-01  修订日期:2022-07-07
DOI:
中文关键词:  石油烃  水产品  红外光谱法  微波消解法
英文关键词:petroleum hydrocarbon  aquatic products  infrared spectroscopy  microwave digestion method
基金项目:中央级公益性科研院所基本科研业务费专项(HSY201704M)
作者单位
汤施展 农业农村部渔业环境及水产品质量监督检验测试中心(哈尔滨), 中国水产科学研究院黑龙江水产研究所 
陈中祥 中国水产科学研究院黑龙江水产研究所 
黄 丽 农业农村部渔业环境及水产品质量监督检验测试中心(哈尔滨), 中国水产科学研究院黑龙江水产研究所 
吴 昊 吉林市吉光科技有限责任公司 
覃东立 农业农村部渔业环境及水产品质量监督检验测试中心(哈尔滨), 中国水产科学研究院黑龙江水产研究所 
吴 松 农业农村部渔业环境及水产品质量监督检验测试中心(哈尔滨), 中国水产科学研究院黑龙江水产研究所 
李晨辉 农业农村部渔业环境及水产品质量监督检验测试中心(哈尔滨), 中国水产科学研究院黑龙江水产研究所 
王 鹏 农业农村部渔业环境及水产品质量监督检验测试中心(哈尔滨), 中国水产科学研究院黑龙江水产研究所 
AuthorInstitution
TANG Shi-Zhan Supervision, Inspection and Testing Center for Fishery Environment and Aquatic Products (Harbin), Ministry of Agriculture and Rural Affairs, Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences 
Chen Zhongxiang Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences 
HUANG Li Supervision, Inspection and Testing Center for Fishery Environment and Aquatic Products (Harbin), Ministry of Agriculture and Rural Affairs, Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences 
WU Hao Jilin Jiguang Technology Limited Liability Corporations 
QIN Dong-Li Supervision, Inspection and Testing Center for Fishery Environment and Aquatic Products (Harbin), Ministry of Agriculture and Rural Affairs, Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences 
WU Song Supervision, Inspection and Testing Center for Fishery Environment and Aquatic Products (Harbin), Ministry of Agriculture and Rural Affairs, Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences 
LI Chen-Hui Supervision, Inspection and Testing Center for Fishery Environment and Aquatic Products (Harbin), Ministry of Agriculture and Rural Affairs, Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences 
WANG Peng Supervision, Inspection and Testing Center for Fishery Environment and Aquatic Products (Harbin), Ministry of Agriculture and Rural Affairs, Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences 
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中文摘要:
      目的 建立微波消解前处理结合红外光谱法测定水产品中石油烃残留量的分析方法。方法 试样经微波消解后, 用四氯乙烯液-液萃取, 萃取液经活化硅酸镁和无水硫酸钠去除干扰后, 氮气吹至近干, 四氯乙烯定容, 经红外光谱检测, 记录2930、2960、3030 cm?1处的吸光度值, 计算出石油烃在水产品中的含量。结果 石油烃在0.4~6.4和5.0~100.0 mg/L范围内呈良好的线性关系(r2>0.998), 使用6%活度的硅酸镁填充吸附柱至60 mm时, 吸附效率最佳, 在此条件下测试的方法检出限(limit of detection, LOD)为0.18 mg/kg, 定量限(limit of quantitation, LOQ)为0.57 mg/kg, 相对标准偏差(relative standard deviations, RSDs)在1.99%~6.36%之间, 加标回收率在91.5%~110.5%之间(n=5)。结论 该方法具有检测范围宽、稳定性好、准确度高的优点, 能满足水产品中石油烃残留量检测需要。
英文摘要:
      Objective To establish an analytical method for the determination of petroleum hydrocarbon residues in aquatic products by microwave digestion pretreatment combined with infrared spectroscopy. Methods After digested by microwave, the sample was extracted by liquid-liquid extraction with tetrachloroethylene, and the extraction solution was activated by activated magnesium silicate and anhydrous sodium sulfate, then blown to nearly dry with nitrogen, and the volume was fixed with tetrachloroethylene, and then determinate by infrared spectroscopy, the absorbance values at 2930, 2960 and 3030 cm?1 were recorded to calculate the content of petroleum hydrocarbons in the organism in aquatic products. Results The petroleum hydrocarbon had good linear relationship (r2>0.998) in the range of 0.4?6.4 and 5.0?100.0 mg/L, under the optimum adsorption condition of which the column was filled with magnesium silicate with 6% activity to 60 mm, limit of detection (LOD) was 0.18 mg/kg, limit of quantitation (LOQ) was 0.57 mg/kg, and the relative standard deviations (RSDs) were 1.99%?6.36%, and the recoveries were 91.5% ?110.5% (n=5). Conclusion The method has the advantages of wide detection range, good stability and high accuracy, and can meet the detection needs of petroleum hydrocarbon residues in aquatic products.
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