Supervision Critical Control Points of Vegetable Quality Safety and Informationization Technology Option

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Abstract:

Agricultural product quality safety problems have already arose our government and public attention. This article analyzed vegetable quality safety supervision critical control points on aspects of origin environment and variety testing, production process management, processing, storage and circulation distribution industry chain .Discussed new generation of information technology application such as the Internet of things in China s supervision of agricultural products quality safety, put forward the future trend of agricultural products quality safety supervision is to realize informationization, network, remote, real-time and precision.

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Advanced Materials Research (Volumes 726-731)

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4446-4453

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August 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Jiang Li-na, Wang Qiang and Zheng Ji-ci, Study on Spatial Distribution of Soil Heavy Metal Content in Vegetable Plantation, 4th ed. vol 22. Journal of Soil and Water Conservation, 2008, pp.174-178.

Google Scholar

[2] Yang Xiao-e,LI Ting-qiang, Analysis on China's environment quality of agricultural and pollution of agricultural products [J ]. China Food and Nutrition 2003, (10): 22-24.

Google Scholar

[3] Dong Xiu-jin Risk assessment on regional agricultural environment and vegetable quality safety. [D] Master Dissertation of Zhejiang University.

Google Scholar

[4] Zhang Qiang,Editor, Implementation crop seed resources managing and using standard and technical specification for quality inspection identification handbook. Beijing Electronic Press, 2003.

Google Scholar

[5] [5]Liu Li, Fang Zhen-xing and LI Long-sheng, Field Control for Quality and Safety of Crop Products, 5th ed., Hunan Agricultural Sciences, 2010, pp.94-96.

Google Scholar

[6] Deng Qi-zhi, Hu Liang-hua,Zhou Xue-hui Tan Gang Wang Da-lin Research on agricultural product quality safety and specific strategy. Research on Crop,2010,24(4),322-323.

Google Scholar

[7] Certification and Accreditation Administration of China HACCP Authentication and analysis of a hundred famous food business cases .Beijing: China Agricultural Science and Technology Press. (2006)

Google Scholar

[8] Chen Peng-fei, LiuLiang-yun and WangJi-hua, Real-Time Analysis of Soil N and P with Near Infrared Diffuse Reflectance Spectroscopy, 12th ed., Spectroscopy and Spectral Analysis, 2008, pp.295-298.

Google Scholar

[9] Liu Chun-ju ,Liu Chun-quan, Li Da-jing Biological sensor and its progress of application in food detection, Jiangsu Agricultural Sciences,2009,4:353-356

Google Scholar

[10] LinLin and Ma Ya-jun, Applications of biochip technology in pathogen detection, 3rd ed., vol.6.Journal of Pathogen Biology, 2011, pp.232-235.

Google Scholar

[11] Fei Zhen-yuan. Bar Code technology and its application [M ]. Shanghai: Shanghai Science and Technology Literature Press,1992,33.

Google Scholar

[12] Yang Xin-ting,,Sun Chuan-heng,Qian Jian-ping The design and implementation of agricultural product quality traceability labels based on the UCC / EAN128 bar code[J].Packaging Engineering,2006,6(27):113-114

Google Scholar

[13] Pobanz C W, "A Microwave Noncontact Identification Transpondent Using Subharmonic Inerrogation," IEEE Transactions on Microwave Theory and Techniques, vol.43, pp.1673-1679, 1995.

DOI: 10.1109/22.392939

Google Scholar

[14] Lawrence S Gould, What You Need To Know About RFID, 2nd ed., vol. 112. Automotive manufacturing &production, 2000, pp.11-15.

Google Scholar

[15] Chu Jiang, Xu Li-bo, JiangLi-juan, Jiang Yan-hui and Cao Liang, The Development Analysis of Agricultural Facilities, 3rd ed., vol. 35. Transactions of The Chinese Society of Agricultural Machinery, 2004, pp.191-192.

Google Scholar

[16] Liu Ai-min, Feng Zhi-ming and Xu Li-ming, The Modern Precision Agriculture and Technological System, 2nd ed., vol.5.Journal of China Agricultural University, 2000, pp.20-25.

Google Scholar

[17] Rong Kai, Yang Wei-xing and Duan Xiang-suo, Research Application, Situation and Future Developing Trend of Precision Farming, 3rd ed., vol. 16. Acta Agricultural Turae Shanghai, 2000, pp.5-8.

Google Scholar

[18] TongJun-mao and Tang Ming-xiang, Problems and Suggestions on Development of Food Cold Chain in China, 4th ed., Food Science and Technology, 2002, pp.1-4.

Google Scholar

[19] Shenuang-lei, Zan Lin-sen and Duan Jun-biao, Implementation of beef quality and safety traceability system via internet, 7th ed., vol.23. Transactions of the Chinese Society of Agricultural Engineering, 2007, pp.170-173.

Google Scholar

[20] Hu Jian-nan, Lu Chang-hua, Wang Li-fang Animal product quality traceability system and distributed data acquisition platform [A ]. Symposium of China digital agriculture and rural infomationization academic seminar[C].Beijing: China Agriculture Press,2005:316-319.

Google Scholar

[21] U.S. Department of Agriculture. National Animal Identification System[EB/OL]. http://animalid.aphis.usda.gov/nais/index.shtml. 2006-09-20.

Google Scholar

[22] Taiwan international RFID application exhibition. RFID technology marketing Taiwan agriculture, to build RFID agricultural country.[EB/OL]. http://www.taipeitradeshows.com.tw/rfidtaiwan2007/chinese/presscenter/news_view.shtml?docno=1131. 2007-08-1.

Google Scholar