首页> 外文会议>2nd International Nitrogen Conference , Oct 14-18, 2001, Potomac, Maryland, USA >Effect of Winter Cover Crops on Soil Nitrogen Availability, Corn Yield, and Nitrate Leaching
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Effect of Winter Cover Crops on Soil Nitrogen Availability, Corn Yield, and Nitrate Leaching

机译:冬季覆盖作物对土壤氮素利用,玉米产量和硝态氮淋溶的影响

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Biculture of nonlegumes and legumes could serve as cover crops for increasing main crop yield, while reducing NO_3 leaching. This study, conducted from 1994 to 1999, determined the effect of monocultured cereal rye (Secale cereale L.), annual ryegrass (Lolium multiflorum), and hairy vetch (Vicia villosa), and bicultured rye/vetch and ryegrass/vetch on N availability in soil, corn (Zea mays L.) yield, and NO_3-N leaching in a silt loam soil. The field had been in corn and cover crop rotation since 1987. In addition to the cover crop treatments, there were four N fertilizer rates (0, 67, 134, and 201 kg N ha~(-1), referred to as N_0, N_1, N_2, and N_3, respectively) applied to corn. The experiment was a randomized split-block design with three replications for each treatment. Lysimeters were installed in 1987 at 0.75 m below the soil surface for leachate collection for the N_0, N_2, and N_3 treatments. The result showed that vetch monoculture had the most influence on soil N availability and corn yield, followed by the bicultures. Rye or ryegrass monoculture had either no effect or an adverse effect on corn yield and soil N availability. Leachate NO_3-N concentration was highest where vetch cover crop was planted regardless of N rates, which suggests that N mineralization of vetch N continued well into the fall and winter. Leachate NO_3-N concentration increased with increasing N fertilizer rates and exceeded the U.S. Environmental Protection Agency's drinking water standard of 10 mg N I~(-1) even at recommended N rate for corn in this region (coastal Pacific Northwest). In comparisons of the average NO_3-N concentration during the period of high N leaching, monocultured rye and ryegrass or bicultured rye/vetch and ryegrass/ vetch very effectively decreased N leaching in 1998 with dry fall weather. The amount of N available for leaching (determined based on the presidedress nitrate test, the amount of N fertilizer applied, and N uptake) correlated well with average NO_3-N during the high N leaching period for vetch cover crop treatment and for the control without the cover crops. The correlation, however, failed for other cover crops largely because of variable effectiveness of the cover crops in reducing NO_3 leaching during the 5 years of this study. Further research is needed to determine if relay cover crops planted into standing summer crops is a more appropriate approach than fall seeding in this region to gain sufficient growth of the cover crop by fall. Testing with other main crops that have earlier harvest dates than corn is also needed to further validate the effectiveness of the bicultures to increase soil N availability while protecting the water quality.
机译:非豆科植物和豆科植物的双培养可以作为遮盖作物,以增加主要作物的产量,同时减少NO_3的浸出。从1994年到1999年进行的这项研究确定了单培养的黑麦(Secale graine L.),一年生的黑麦草(Lolium multiflorum)和多毛紫菜(Vicia villosa)的影响,以及双培养的黑麦/ v子和黑麦草/ v子对氮素有效性的影响。在土壤中,玉米(Zea mays L.)产量高,而在壤土壤土中NO_3-N的淋溶作用。自1987年以来,该田地一直是玉米和轮作作物。除了进行轮作作物处理外,还有4种氮肥用量(0、67、134和201 kg N ha〜(-1),称为N_0, N_1,N_2和N_3分别应用于玉米。该实验是随机分割区设计,每种处理重复三次。 1987年将测渗仪安装在土壤表面以下0.75 m处,以收集N_0,N_2和N_3处理的渗滤液。结果表明,v子单一栽培对土壤氮素利用率和玉米产量影响最大,其次是双重栽培。黑麦或黑麦草单作对玉米产量和土壤氮素利用率无影响或有不利影响。不考虑氮肥施用量,种植紫v覆盖作物的渗滤液NO_3-N浓度最高,这表明紫etch氮的氮矿化作用一直持续到秋冬季。随着氮肥用量的增加,渗滤液中的NO_3-N浓度也随之增加,甚至超过了美国环境保护署规定的10 mg N I〜(-1)的饮用水标准,即使在该地区(沿海西北太平洋)的玉米推荐氮含量下也是如此。比较高氮淋溶期的平均NO_3-N浓度,单干黑麦和黑麦草或双培养黑麦/紫etch和黑麦草/紫etch在1998年秋季干旱天气下非常有效地减少了N淋溶。紫菜覆盖作物处理和不施氮肥的对照在高氮淋洗期间可淋溶的氮含量(根据前期硝酸盐试验确定,氮肥施用量和氮吸收量)与平均NO_3-N密切相关。覆盖作物。然而,这种关系在其他覆盖作物上失败了,这主要是因为在该研究的5年中,覆盖作物在减少NO_3淋洗方面的有效性差异很大。需要进行进一步的研究以确定与该地区的秋季播种相比,种植成夏季直立作物的中继覆盖作物是否比秋季播种更合适,以便在秋季之前获得足够的覆盖作物生长。还需要对收获日期早于玉米的其他主要农作物进行测试,以进一步验证双菌种在提高土壤氮素利用率的同时保护水质的有效性。

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