Residue dynamics of carbendazim and mancozeb in grape (Vitis Vinifera L.) berries
Kaushik Banerjee
Abstract
Kaushik Banerjee
Abstract
The residue dynamics of carbendazim and mancozeb in grape berries is reported. The fungicides were sprayed in accordance with the most critical use pattern i.e. 4 times at 15 days interval separately at recommended and double doses. The residues of each fungicide dissipated following 1st order rate kinetics. The half-lives of carbendazim and mancozeb were 7.3 and 8.1 days at recommended dose and 4.6 and 5.7 days at double dose. Ethylenethiourea (ETU), the toxic metabolite of mancozeb was detectable at harvest following four sprays of mancozeb at recommended dose. At double dose, however, the residues of ETU could be detected even after three sprays of mancozeb. The pre-harvest intervals for carbendazim and mancozeb were found to be 26 and 12 days at recommended dose and 33 and 17 days at double dose, respectively.
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The residue dynamics of carbendazim and mancozeb in grape berries is reported. The fungicides were sprayed in accordance with the most critical use pattern i.e. 4 times at 15 days interval separately at recommended and double doses. The residues of each fungicide dissipated following 1st order rate kinetics. The half-lives of carbendazim and mancozeb were 7.3 and 8.1 days at recommended dose and 4.6 and 5.7 days at double dose. Ethylenethiourea (ETU), the toxic metabolite of mancozeb was detectable at harvest following four sprays of mancozeb at recommended dose. At double dose, however, the residues of ETU could be detected even after three sprays of mancozeb. The pre-harvest intervals for carbendazim and mancozeb were found to be 26 and 12 days at recommended dose and 33 and 17 days at double dose, respectively.
Key concepts: Mancozeb, Carbendazim, Fungicide, Residue (chemistry), Chemistry, Horticulture, Pesticide, Toxicology