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首页> 外文期刊>Pest Management Science >Dissipation of fomesafen in fumigated, anaerobic soil disinfestation-treated, and organic-amended soil in Florida tomato production systems
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Dissipation of fomesafen in fumigated, anaerobic soil disinfestation-treated, and organic-amended soil in Florida tomato production systems

机译:熏蒸,厌氧土壤消毒治疗中的食品缔昔芬耗散,佛罗里达州番茄生产系统的有机修正土

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BACKGROUND Fumigated, anaerobic soil disinfestation-treated (ASD), and organic-amended soil management strategies have been investigated as potential methyl bromide (MBr) alternatives for controlling diseases, nematodes, and weeds in soil. Nutsedge and broadleaf weed control using fomesafen has been reported to be comparable to MBr in normal cropping systems. There is no information on the fate of fomesafen used in combination with alternative practices. In this study, the fate of fomesafen in these alternative systems was measured by liquid chromatography-tandem mass spectrometry (LC/MS-MS) following extraction using a modified Quick Easy Cheap Effective Safe (QuEChERS) method. RESULTS The reported half-life (DT50) values for fomesafen in the top 15 cm of soil were from 62.9 to 107.3 days. The DT50 values in organic-amended soil were higher than in ASD-treated soil in the top 15 cm. For all treatments, reductions in concentrations were positively correlated with lower redox potentials and organic matter content. Some leaching of fomesafen into the 16-30 cm zone was observed in all treatments. CONCLUSIONS The DT50 values in this study were generally higher than those reported in previous studies performed at different locations. Due to increased losses of the herbicide and subsequent reduction in weed control, fomesafen is likely not to be suitable for effective weed control in systems using ASD techniques employing composted poultry litter and molasses. Integration of fomesafen using composted yard waste 1 (CYW1) and Soil Symphony Amendment (SSA) may result in acceptable weed control. Given that the soil was very sandy and the pH was higher than the pKa, fomesafen might leach deeper than 30 cm, particularly with the use of chemical soil fumigants (CSFs). (c) 2019 Society of Chemical Industry
机译:背景熏蒸,厌氧土壤消毒治疗(ASD),以及有机修正的土壤管理策略被研究为潜在的甲基溴(MBR)控制土壤中的疾病,线虫和杂草的替代品。据报道,使用Fomesafen的NutsEdge和Broadleaf Weed控制与正常种植系统中的MBR相当。没有关于与替代实践结合使用的Fomesafen的命运的信息。在本研究中,通过液相色谱 - 串联质谱(LC / MS-MS)使用改性的快速容易便宜的有效安全(QueChers)方法,通过液相色谱 - 串联质谱(LC / MS-MS)测量这些替代系统中的Fomesafen的命运。结果前15厘米土壤中的杂草缔群的半衰期(DT50)值为62.9至107.3天。有机修正的土壤中的DT50值高于前15厘米的ASD处理的土壤中。对于所有治疗,浓度的减少与较低的氧化还原电位和有机物质含量正相关。在所有治疗中都观察到Fomesafen的一些浸出到16-30厘米区。结论本研究中的DT50值通常高于在不同地点进行的先前研究中报告的那些。由于除草剂的损失增加并随后减少了杂草控制,Fomesafen可能不适合使用堆肥家禽垃圾和糖蜜的ASD技术在系统中的有效杂草控制。使用堆肥院子垃圾1(CYW1)和土壤交响曲修正案(SSA)的集成融合可能导致可接受的杂草控制。鉴于土壤是非常含沙性的,pH值高于PKA,Fomesafen可能浸出比30厘米更深,特别是在使用化学土地熏蒸剂(CSF)。 (c)2019年化学工业协会

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