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铜基作物保护剂在设施栽培径流中的归宿与迁移以及作为最佳管理措施的沉积作用的影响

Fate and transport of copper-based crop protectants in plasticulture runoff and the impact of sedimentation as a best management practice.

作者信息

Gallagher D L, Johnston K M, Dietrich A M

机构信息

Civil and Environmental Engineering, Virginia Tech, Blacksburg 24061-0246, USA.

出版信息

Water Res. 2001 Aug;35(12):2984-94. doi: 10.1016/s0043-1354(00)00594-7.

DOI:10.1016/s0043-1354(00)00594-7
PMID:11471699
Abstract

The fate and distribution of copper-based crop protectants, applied to plasticulture tomato fields to protect against disease, were investigated in a greenhouse-scale simulation of farming conditions in a coastal environment. Following rainfall, 99% of the applied copper was found to remain on the fields sorbed to the soil and plants; most of the soil-bound copper was found sorbed to the top 2.5 cm of soil between the plasticulture rows. Of the copper leaving the agricultural fields, 82% was found in the runoff with the majority, 74%. sorbed to the suspended solids. The remaining copper, 18%, leached through the soil and entered the groundwater with 10% in the dissolved phase and 8% sorbed to suspended solids. Although only 1% copper was found to leave the field, this was sufficient to cause high copper concentrations (average 2102+/-433 microg/L total copper and 189+/-139 microg/L dissolved copper) in the runoff. Copper concentrations in groundwater samples were also high (average 312+/-198 microg/L total copper and 216+/-99 microg/L dissolved copper). Sedimentation, a best management practice for reducing copper loadings. was found to reduce the total copper concentrations in runoff by 90% to a concentration of 245+/-127 microg/L; however, dissolved copper concentrations remained stable, averaging 139+/-55 microg/L. Total copper concentrations were significantly reduced by the effective removal of suspended solids with sorbed copper.

摘要

在沿海环境的温室规模养殖条件模拟中,研究了用于保护塑料栽培番茄田免受病害的铜基作物保护剂的归宿和分布。降雨后,发现99%的施用铜留在田间,吸附在土壤和植物上;大部分与土壤结合的铜被发现吸附在塑料栽培行之间顶部2.5厘米的土壤中。在离开农田的铜中,82%存在于径流中,其中大部分(74%)吸附在悬浮固体上。其余18%的铜通过土壤淋溶进入地下水,其中10%处于溶解相,8%吸附在悬浮固体上。虽然仅发现1%的铜离开农田,但这足以导致径流中铜浓度较高(总铜平均为2102±433微克/升,溶解铜为189±139微克/升)。地下水样本中的铜浓度也很高(总铜平均为312±198微克/升,溶解铜为216±99微克/升)。沉淀是减少铜负荷的最佳管理措施,被发现可将径流中的总铜浓度降低90%,降至245±127微克/升的浓度;然而,溶解铜浓度保持稳定,平均为139±55微克/升。通过有效去除吸附有铜的悬浮固体,总铜浓度显著降低。

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