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首页> 外文期刊>Pest Management Science >Diffusion and emissions of 1,3-dichloropropene in Florida sandy soil in microplots affected by soil moisture, organic matter, and plastic film
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Diffusion and emissions of 1,3-dichloropropene in Florida sandy soil in microplots affected by soil moisture, organic matter, and plastic film

机译:1、3-二氯丙烯在佛罗里达沙质土壤中受土壤水分,有机物和塑料膜影响的扩散和排放

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摘要

The main objective of this study was to determine the influence of soil moisture, organic matter amendment and plastic cover (a virtually impermeable film, VIF) on diffusion and emissions of (Z)- and (E)-1,3-dichloropropene (1,3-D) in microplots of Florida sandy soil (Arredondo fine sand). Upward diffusion of the two isomers in the Arredondo soil without a plastic cover was greatly influenced by soil-water content and (Z)-1,3-D diffused faster than (E)-1,3-D. In less than 5h after 1,3-D injection to 30cm depth, (Z)- and (E)-1,3-D in air dry soil had diffused to a 10cm depth, whereas diffusion for the two isomers was negligible in near-water-saturated soil, even 101h after injection. The diffusion rate of (Z)- and (E)-1,3-D in near-field-capacity soil was between the rates in the two water regimes. Yard waste compost (YWC) amendment greatly reduced diffusion of (Z)- and (E)-1,3-D, even in air-dry soil. Although upward diffusion of (Z)- and (E)-1,3-D in soil with VIF cover was slightly less than in the corresponding bare soil; the cover promoted retention of vapors of the two isomers in soil pore air in the shallow subsurface. More (Z)-1,3-D vapor was found initially in soil pore air than (E)-1,3-D although the difference declined thereafter. As a result of rapid upward movement in air-dry bare soil, (Z)- and (E)-1,3-D were rapidly volatilized into the atmosphere, but emissions from the near-water-saturated soil were minimal. Virtually impermeable film and YWC amendment retarded emissions. This study indicated that adequate soil water in this sandy soil is needed to prevent rapid emissions, but excess soil water slows diffusion of (Z)- and (E)-1,3-D. Thus, management for optimum water in soil is critical for pesticidal efficacy and the environment
机译:这项研究的主要目的是确定土壤水分,有机质改良剂和塑料覆盖物(几乎不渗透的薄膜,VIF)对(Z)-和(E)-1,3-二氯丙烯的扩散和排放的影响(1 ,3-D)在佛罗里达沙质土壤(Arredondo细砂)中。两种异构体在没有塑料覆盖层的Arredondo土壤中的向上扩散受到土壤水含量的极大影响,并且(Z)-1,3-D的扩散速度快于(E)-1,3-D。在注入1,3-D至30cm深度后不到5小时内,空气干燥土壤中的(Z)-和(E)-1,3-D扩散至10cm深度,而两种异构体的扩散在近距离可忽略不计-水饱和的土壤,甚至在注入后101h。 (Z)-和(E)-1,3-D在近场土壤中的扩散速率介于两种水情之间。堆场废料堆肥(YWC)的改进大大减少了(Z)-和(E)-1,3-D的扩散,即使在风干土壤中也是如此。尽管(V)覆盖的土壤中(Z)-和(E)-1,3-D的向上扩散略小于相应的裸土;覆盖层促进了两种异构体的蒸气在浅表层土壤孔隙空气中的滞留。最初在土壤孔隙空气中发现的(Z)-1,3-D蒸气多于(E)-1,3-D,尽管其差值随后有所下降。在空气干燥的裸露土壤中快速向上运动的结果是,(Z)-和(E)-1,3-D迅速挥发到大气中,但是近水饱和土壤的排放量很小。几乎不渗透的薄膜和YWC修正剂可抑制排放。这项研究表明,在这种沙质土壤中需要足够的土壤水分以防止快速排放,但是过量的土壤水分会减慢(Z)-和(E)-1,3-D的扩散。因此,管理土壤中的最佳水分对于杀虫功效和环境至关重要

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