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Agricultural soil fumigation as a source of atmospheric methyl bromide.

机译:农业土壤熏蒸是大气中甲基溴的来源。

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摘要

Methyl bromide (MeBr) is used increasingly as a biocidal fumigant, primarily in agricultural soils prior to planting of crops. This usage carries potential for stratospheric ozone reduction due to Br atom catalysis, depending on how much MeBr escapes from fumigated soils to the atmosphere and on details of atmospheric chemical reactions. We present direct field measurements of MeBr escape; 87% of the applied MeBr was emitted within 7 days after a commercial fumigation. Covering the field with plastic sheets retarded MeBr escape somewhat but first-day losses were still 40%; thicker sections of sheets were relatively more effective than thin sections. We also measured gaseous MeBr concentrations versus depth in the soil column; these profiles display diffusion-like evolution. In soil, MeBr is partitioned among gas, liquid, and adsorbed solid phases. Calculated soil inventories agreed only roughly with applied amounts, probably due to nonequilibrium partitioning (during the first 30 min) and to uncertainties in partitioning coefficients. Fumigated fields may release less MeBr if they are covered by more gas-tight plastic films, if injection techniques are improved and injection is deeper, and if soil moistures, organic amounts, and densities are greater than in the soil studied here.
机译:甲基溴(MeBr)越来越多地用作杀菌剂,主要用于农作物种植前的农业土壤中。这种使用方式可能会由于Br原子的催化作用而使平流层中的臭氧还原,这取决于从熏蒸的土壤向大气中逸出的MeBr数量以及大气化学反应的细节。我们介绍了MeBr逸出的直接现场测量;商业熏蒸后7天内排放出了87%的MeBr。用塑料布覆盖田间地带阻碍了MeBr逃逸,但首日损失仍为40%。较厚的薄片部分比较薄的部分更有效。我们还测量了气态MeBr浓度与土壤柱深度的关系。这些轮廓显示出类似扩散的演变。在土壤中,MeBr在气相,液相和吸附固相之间分配。计算出的土壤清单仅大致与施用量相符,这可能是由于分配不平衡(在最初30分钟内)和分配系数的不确定性所致。如果熏蒸过的田地被更多的气密塑料薄膜覆盖,如果改进了注入技术并且注入更深,并且土壤的水分,有机物含量和密度大于此处研究的土壤,则释放的MeBr可能更少。

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