首页> 外文期刊>Journal of Agricultural and Food Chemistry >Ozone and hydrogen peroxyacetic acid treatment to reduce or remove EBDCsand ETU residues in a solution
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Ozone and hydrogen peroxyacetic acid treatment to reduce or remove EBDCsand ETU residues in a solution

机译:臭氧和氢过氧乙酸处理可减少或去除溶液中的EBDC和ETU残留物

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Laboratory studies were conducted in a model system to determine the effects of ozone (1 and 3 ppm) and hydrogen peroxyacetic acid (HPA) (5 and 50 ppm) at pH 4.6, 7.0, and 10.7 and at 10 and 21 degreesC on the degradation of mancozeb in solution over a 30 min period. All samples were analyzed for residues by GLC and HPLC. Ozonation and HPA treatment were effective in degrading mancozeb in solution. Rate of mancozeb degradation was dependent on pH, with the fastest rate at pH 7.0. Ethylenethiourea (ETU) residue concentrations in the mancozeb solutions were monitored over 60 min. Under controlled conditions, the ETU residue concentrations increased during the 15 min reaction time and then decreased for all three pH values. At 3 ppm of ozone treatment, no ETU residues were detected at all three pH ranges after 15 min of reaction time. Degradation of ETU by HPA was greatest at pH 4.6, and no ETU residues remained after 5 min at either 5 or 50 ppm. The results showed that ozone and HPA gave excellent degradation of pesticide residues depending on pH and temperature. These experiments indicated the potential for the removal of pesticide residues on fruit and in processed products.
机译:在模型系统中进行了实验室研究,以确定在pH 4.6、7.0和10.7以及在10和21摄氏度下,臭氧(1和3 ppm)和过氧乙酸氢(HPA)(5和50 ppm)对降解的影响30分钟内在溶液中加入Mancozeb。通过GLC和HPLC分析所有样品的残留物。臭氧和HPA处理可有效降解溶液中的代森锰锌。代森锰锌的降解速率取决于pH,在pH 7.0时最快。在60分钟内监测mancozeb溶液中的乙硫脲(ETU)残留浓度。在受控条件下,ETU残留物浓度在15分钟的反应时间内增加,然后对于所有三个pH值均降低。在3 ppm的臭氧处理条件下,反应时间15分钟后,在所有三个pH范围内均未检测到ETU残留。 HPA对ETU的降解在pH 4.6时最大,并且5分钟后无论浓度为5或50 ppm,都没有残留ETU残留物。结果表明,臭氧和HPA可以根据pH和温度对农药残留进行出色的降解。这些实验表明了去除水果和加工产品中农药残留的潜力。

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