Preliminary evaluation on insecticidal and rodenticidal effectsof Baishajing spray agent in cargo containers

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  • 1 School of Medicine, Anhui University of Science and Technology, Huainan 232001, Anhui Province, China;
    2 Jiangsu Entry?Exit Inspection and Quarantine Bureau, Nanjing 210001, Jiangsu Province, China

Received date: 2013-10-21

  Online published: 2014-04-20

Supported by

Supported by the Science and Technology Projects of the State General Administration of Quality Supervision, Inspection and Quarantine of China (No. 2013IK225)

Abstract

Objective To study the insecticidal and rodenticidal effects of Baishajing spray agent in cargo containers. Methods In the field test for evaluating the insecticidal and rodenticidal effects of Baishajing spray agent, Culex pipiens pallens, Musca domestica, Blattella germanica, SD rats, and ICR mice were selected as subjects, and an ultrafine atomizer was used to spray Baishajing spray agent into empty and heavy containers. Results For Cx. pipiens pallens, M. domestica, B. germanica, SD rats, and ICR mice exposed to Baishajing spray agent, the 1 hour knock?down rates were all 100% (2400/2400, 2400/2400, 1800/1800, 120/120, and 120/120), and the 24 hour mortality (72 hour for B. germanica) were also 100% (2400/2400, 2400/2400, 1800/1800, 120/120, and 120/120). Conclusion Baishajing spray agent is capable of rapidly killing mosquitoes, flies, cockroaches, and rodents quickly, and it is worthy of study and promotion.

Cite this article

WANG Tongyu, YANG Qinggui, YE Song, ZHU Guangyao, LU Jun, WU Bingyao, LIU Qianying . Preliminary evaluation on insecticidal and rodenticidal effectsof Baishajing spray agent in cargo containers[J]. Chinese Journal of Vector Biology and Control, 2014 , 25(2) : 168 -169 . DOI: 10.11853/j.issn.1003.4692.2014.02.022

References

[1] 宋锋林, 曹鑫, 李建训, 等. 国境口岸医学媒介生物入侵的形势和管理策略[J]. 中国国境卫生检疫杂志, 2006, 29增刊:80-84.
[2] 吕建华, 赵英杰, 鲁玉杰. 3种植物精油对4种主要储粮害虫的生物活性研究[J]. 中国粮油学报, 2006, 21(3):325-328.
[3] UNEP. 2002 report of the methyl bromide technical options committee[C]. Nairobi:UNEP, 2003:1-3.
[4] Papadimitriou VC, Portmann RW, Fahey DW, et al. Experimental and theoretical study of the atmospheric chemistry and global warming potential of SO2F2[J]. Phys Chem, 2008, 112:12657-12666.
[5] Hunt SR. New greenhouse gas discovered: sulfuryl fluoride, 4800x worse than CO2
[N]. TG Daily, 2009-03-12.
[6] 国家质量监督检验检疫总局. GB/T 13917.2-2009 农药登记用卫生杀虫剂室内药效试验及评价. 第2部分:气雾剂[S]. 北京:中国标准出版社, 2009.
[7] 陆永贵, 丁永健. 口岸卫生处理实用手册[M]. 南京:东南大学出版社, 2010:7-344.
[8] 李勃, 张志荣, 谢建军, 等. 一种新型杀虫消毒合剂的药效实验研究[J]. 中华卫生杀虫药械, 2011, 17(1):42-44.
[9] Cochran R, Dipaolo D. Exposure assessment document for pesticide products containing sulfury fluoride
[R]. California:California Environmental Protection Agency, 2006:18-32.
[10] IPCS. Pesticide residues in food-2005. Toxicological evaluations[M]. Geneva:WHO, IPCS, 2006:454-516.
[11] 邹钦. 消毒杀虫药械使用中存在的两大误区[J]. 中华卫生杀虫药械, 2006, 12(5):360-361.
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