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辐照/食品检测

     随着经济社会的高速发展,食品安全问题日益凸突,食品安全严重影响人们的身体健康,引起人们高度关注,成为当前社会的热点和焦点,进一步规范食品安全问题是当前刻不容缓的事,而食品分析是保障食品安全的重要环节。化学发光法分析速度快,可满足大批量食品样品的快速检测要求,在食品分析中具有重要的应用。近年来,BPCL超微弱发光测量仪已经被用于食品中的微量金属元素、添加剂、抗生素、农残、营养成分,以及辐照食品辐照残留量的分析测定。另一方面,BPCL超微弱发光测量仪还被广泛应用于食物的抗氧化性研究,是一种研究食品抗衰老功效的有力研究工具。研究成果在Analytical Chemistry, Food Chemistry, Journal of Agricultural and Food Chemistry等与食品分析相关的国际知名期刊上发表例子有:

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[1]      Zhang R K, Li G K, Hu Y H. Simple and excellent selective chemiluminescence-based CS2 On-Line detection system for rapid analysis of sulfur-containing compounds in complex samples. Analytical Chemistry, 2015, 87(11): 5649-5655.

[2]      Guo Y J, Sun L Q, Yu B Y, Qi J. An integrated antioxidant activity fingerprint for commercial teas based on their capacities to scavenge reactive oxygen species. Food Chemistry, 2017, 237: 645-653.

[3]      He Y, Xu B, Li W H, Yu H L. Silver nanoparticle-based chemiluminescent sensor array for pesticide discrimination. Journal of Agricultural and Food Chemistry, 2015, 63(11): 2930-2934.

[4]      Kang J K, Han L, Chen Z L, Shen J M, Nan J, Zhang Y H. Sensitized chemiluminescence of 2-phenyl-4,5-di(2-furyl)-1H-imidazole/K3Fe(CN)6/propyl gallate system combining with solid-phase extraction for the determination of propyl gallate in edible oil. Food Chemistry, 2014, 159(11): 445-450.

[5]      Zhang Y, Tan C, Fei R H, Liu X X, Zhou Y, Chen J, Chen H C, Zhou R, Hu Y G. Sensitive chemiluminescence immunoassay for E. coli O157:H7 detection with signal dual-amplification using glucose oxidase and laccase. Analytical Chemistry, 2014, 86(2):1115-1122.

[6]      Zhu J F, Wu M C. Characterization and free radical scavenging activity of rapeseed meal polysaccharides WPS-1 and APS-2. Journal of Agricultural & Food Chemistry, 2009, 57(3): 812-819.

[7]      Guo S S, Deng Q C, Xiao J S, Xie B J, Sun Z. Evaluation of antioxidant activity and preventing DNA damage effect of pomegranate extracts by chemiluminescence method. Journal of Agricultural & Food Chemistry, 2007, 55(8): 3134-3140.

[8]      Kang J K, Li X, Geng J W, Han L Tang J L, Jin Y R, Zhang Y H. Determination of hyper in in seed of Cuscuta chinensis Lam. by enhanced chemiluminescence of CdTe quantum dots on calcein/K3Fe(CN)6 system. Food Chemistry, 2012,134(4): 2383-2388.

[9]      Fu J J, Guo L P, Zhang S M, Bao J S, Yu X J, Yu M H. The identification of foods treated with gamma irradiation by the use of a luminescence technique: a case study of milk powder. International Journal of Food Science & Technology, 2005, 40(7): 783-788.

[10]   Wang J, Yu Y. Relationship between ultra-weak bioluminescence and vigour or irradiation dose of irradiated wheat. Luminescence, 2009, 24(4): 209-212.

[11]   傅俊杰,董智挺,王匀,等. 辐照糖类食品的快速鉴别检测方法研究. 中国食品学报, 2007, 6(5): 119-123.

[12]   张世民,傅俊杰,包劲松. 辐照后食品超微弱发光性质的变化. 核农学报, 2005, 19(2):105-108.

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