A STUDY ON ORGANOPHOSPHATES PESTICIDES IN CHHATTISGARH

Authors

  • Manoj Kumar Ghosh Professor of Chemistry School of Chemical sciences, Bharti Viswavidyalaya, Durg, Chhattisgarh
  • Andvidya Vastrakar Research Scholar School of Chemical sciences, Bharti Viswavidyalaya, Durg, Chhattisgarh

DOI:

https://doi.org/10.59367/bgdtss02

Abstract

Organophosphorus pesticides are being most widely used as insecticides, and thus cause poisoning cases frequently in Chhattisgarh. The organophosphorus pesticides at the early stage, such as parathion and TEPP, had powerful insecticidal effects and high toxicity for both humans and beasts, and caused poisoning accidents during spraying. Although many less toxic organophosphorus pesticides were then developed, the resistance to the pesticides was acquired by insects during their repeated use, resulting in less effectiveness of the pesticides. Thus, after year and with the repeated application of organophosphate agents, many problems have appeared as a result of excessive use of pesticides. The adverse effects of pesticides are well documented in human health, environment, pesticide residue in crops, soil and water contaminated by these pesticides. Therefore, it is necessary to shed more light on the risks associated with the irresponsible usage of organophosphate pesticide

References

Masakatsu Sakata (2005). Organophosphorus pesticides.Springer-Verlag Berlin Heidelberg,7.2

Liu J, Suzuki O, Kumazawa T et al. (1989) Rapid isolation with Sep-Pak C18 cartridges and wide-bore capillary gas chromatography of organoposphate pesticides. Forensic Sci Int 41:67–72

Cho Y, Matsuoka N, Kamiya A (1997) Determination of organophosphorus pesticides in biological samples of acute poisoning by HPLC with diode-array detector. Chem Pharm Bull 45:737–740

Mori H, Sato T, Nagase H et al. (1998) A method for rapid analysis of pesticides causing acute poisoning in patients and application of this method to clinical treatment. Jpn J Toxicol Environ Health 44:413–427

Ayman A., Goudai Alaa S., Ragaa EL., Sheikh, Magda, A. Ak,(2010) Sensitive Spectrophotometric Methods for Determination of some Organophosphorus Pesticides in Vegetable Samples. Chemical Industry & Chemical Engineering Quarterly 16 (1) 11−18

Dave Harshit, Kothari Charmy, Patel Nrupesh(2017). Organophosphorus Pesticides Determination by Novel HPLC and Spectrophotometric Method, Food Chemistry (2017), doi: http://dx.doi.org/10.1016/j.foodchem 2017.03.083

Bhushan, C., Bhardwaj, A., & Misra, S. S. (2013). State of Pesticide Regulations in India. Centre for Science and Environment, New Delhi, 1–72

Brito, N. M., Navickiene, S., Polese, L., Jardim, E. F. G., Abakerli, R. B., & Ribeiro, M. L. (2002). Determination of pesticide residues in coconut water by liquid–liquid extraction and gas chromatography with electron-capture plus thermionic specific detection and solid-phase extraction and high-performance liquid chromatography with ultraviolet detecti. Journal of Chromatography A, 957(2), 201–209

Dasika, R., Tangirala, S., &Naishadham, P. (2012). Pesticide residue analysis of fruits and vegetables. J Environ Chem Ecotoxicol, 4(2), 19–28

Devi, N. L., & Raha, P. (2013). Contamination of Organochlorine pesticides (OCPs) in India. Bulletin of Environmental and Scientific Research, 2(1), 9–14.

European Food Safety Authority. (2010). Conclusion on the peer review of the pesticide risk assessment of the active substance bitertanol. EFSA Journal, 8(10), 1850. doi:doi:10.2903/j.efsa.2010.1850

Paranthaman, R., Sudha, A., &Kumaravel, S. (2012). Determination of pesticide residues in banana by using high performance liquid chromatography and gas chromatographymass spectrometry. American Journal of Biochemistry and Biotechnology, 8(1)

Sharma, M., Kothari, C., Sherikar, O., & Mehta, P. (2014). Concurrent Estimation of Amlodipine Besylate, Hydrochlorothiazide and Valsartan by RP-HPLC, HPTLC and UV–Spectrophotometry. Journal of Chromatographic Science, 52(1), 27–35.

Zhang, Y., Li, X., Liu, H., Zhang, Y., Zhao, F., & Yu, Q. (2013). Study on universal cleaning solution in removing blended pesticide residues in Chinese cabbage. Journal of Environmental Chemistry and Ecotoxicology, 5(8), 202–207.

Ayobami A. L. , Kade E. A. , Oladimeji K. A. , Kehinde S. and Gurpreet K. (2020) Toxic Effects of Organophosphates Pesticides , doi:10.20944/preprints202008.0167.v1,https://www.researchgate.net/publication/343508919

Mohamed A. Ghorab, Mohamed S. Khalil. Toxicological Effects of Organophosphates Pesticides. International Journal of Environmental Monitoring and Analysis. Vol. 3, No. 4, 2015, pp. 218-220. doi: 10.11648/j.ijema.20150304.13

Alavanja, M. C. (2009). Introduction: pesticides use and exposure extensive worldwide. Rev Environ Health. 24(4):303-309.

Aprea, C.; Strambi, M.; Novelli, M.T.; Lunghini, L. and Bozzi, N. (2000). Biologic monitoring of exposure to organophosphorus pesticides in 195 Italian children. Environ Health Perspect. 108 (6): 521-5.

Barr, D.B.; Bravo, R.; Weerasekera, G.; Caltabiano, L.M.; Whitehead, R.D. J.; Olsson, A.O.; Caudill, S.P.; Schober, S.E.; Pirkle, J.L. and Sampson, E.J. (2004). Concentrations of dialkyl phosphate metabolites of organophosphorus pesticides in the U.S. population. Environ Health Perspect, 112 (2):186-200.

Brown, L.M.; Blair, A.; Gibson, R.; Everett, G.D.; Cantor, K.P.; Schuman, L.M.; Burmeister, L.F.; Van Lier, S.F. and Dick, F. (1990). Pesticide exposures and other agricultural risk factors for leukemia among men in Iowa and Minnesota. Cancer Res, 50 (20): 6585-91.

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Published

2023-06-30

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How to Cite

A STUDY ON ORGANOPHOSPHATES PESTICIDES IN CHHATTISGARH. (2023). International Journal of Futuristic Innovation in Engineering, Science and Technology (IJFIEST), 2(2), 52-60. https://doi.org/10.59367/bgdtss02