Combining management practices to reduce sediment, nutrients, and herbicides in runoff

地表径流 凿子 环境科学 耕作 农学 阿特拉津 异丙甲草胺 沉积物 营养物 播种 肥料 免耕农业 作物轮作 土壤水分 水文学(农业) 作物 土壤科学 土壤肥力 化学 杀虫剂 生物 生态学 地质学 地理 古生物学 岩土工程 考古 有机化学
作者
M.B. Zeimen,Keith A. Janssen,Daniel W. Sweeney,Gary M. Pierzynski,Kyle R. Mankin,Daniel L. Devlin,David L. Regehr,Michael R. Langemeier,Kent McVay
出处
期刊:Journal of Soil and Water Conservation [Soil and Water Conservation Society]
卷期号:61 (5): 258-267 被引量:40
标识
DOI:10.1080/00224561.2006.12435895
摘要

ABSTRACT: Best management practices have been recommended for controlling nutrient, herbicide, or sediment losses with surface runoff. This study was designed to determine the best overall combination of tillage and application practices to reduce surface losses from cropland. Runoff was collected from two Kansas sites in sorghum-soybean rotation during the 2001 to 2004 crop years and analyzed for bioavailable phosphorus (P), soluble P, total P, ammonium, nitrate, total nitrogen (N), sediment, atrazine, and metolachlor concentrations. No-till treatments consistently experienced higher runoff water volumes than the chisel/disk tillage system used to warm and dry these clay soils in the spring. For this reason the no-till treatments also had higher nutrient and herbicide losses than chisel/disk tillage regardless of use of high or low application management techniques. The high included fertilizer and herbicide application practices intended to reduce losses with runoff while the standard application broadcast applied fertilizer and herbicide at planting. Few consistent differences were seen for pollutant loss between the high and standard application management. When average losses for all eight location-years were compared to chisel/disk low, soluble P losses were 3.0 and 2.1 times higher for no-till low and no-till high, respectively; metolachlor losses were 2.4 and 2.7 times higher for no-till low and no-till high, respectively; and atrazine losses were 4.8 and 6.1 times higher for no-till low and no-till high, respectively. The chisel/disk low did experience two times higher sediment losses compared with the no-till low or no-till high, when averaging over all eight location-years. However, tolerable soil loss was not exceeded. Chisel/disk low generally had small losses for all tested pollutants and may be the best management combination to simultaneously reduce nutrient, herbicide, and sediment losses with cropland runoff for sites like those used in this study.

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