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首页> 外文期刊>Agricultural Water Management >Effects of mulching and nitrogen on soil temperature, water content, nitrate-N content and maize yield in the Loess Plateau of China
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Effects of mulching and nitrogen on soil temperature, water content, nitrate-N content and maize yield in the Loess Plateau of China

机译:黄土高原覆盖和氮肥对土壤温度,水分,硝态氮和玉米产量的影响。

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摘要

In the semi-arid region of the Loess Plateau in China, the use of alternative field management practices is essential for sustainable agriculture. The purpose of this study was to investigate the effect of mulching and fertilization on the soil temperature, soil water content, soil nitrate-N content and grain yield of maize. The experiment was conducted over three consecutive years and used randomly assigned field plots with five replicates. The six treatments consisted of no fertilizer without plastic film (CK), no fertilizer with plastic film (ZM), basal fertilizer without plastic film (BN), basal fertilizer with plastic film (BM), basal and top dressing without plastic film (BTN) and basal and top dressing with plastic film (BTM). The soil temperature of the 10-cm mulching treatment was significantly higher than that of the no-mulching treatment, and the average soil temperature of the mulching treatment increased by 2.3 degrees C before July and nearly 1.2 degrees C after July. The soil water content in the mulching treatment was significantly higher than that in the no-mulching treatment at 0-60 cm, which was not significantly different from the 140-200 cm depth. The trend in the soil nitrate-N content distribution revealed symmetrical shapes along the center of the furrows, and the standard symmetrical distribution reduced gradually with an increase in soil depth under the plastic film mulching conditions. The soil nitrate-N content under basal fertilizer was 1.65 times higher than that without fertilizer at 0-10 cm at 36 days after sowing. The soil nitrate-N content in the topsoil was reduced from 48.67 to 30.77 mg/kg after 58 days. We found that plastic film mulching with basal fertilizer increased maize yield by 10.61%, 9.48%, and 15.36%, and top dressing increased the yield by 16.61%, 20.94%, and 12.24% over the three consecutive years. A treatment involving plastic film mulching, basal fertilizer and top dressing is recommended. Further studies are required to investigate the effect of mulching on increased soil temperature, soil water content and soil nitrate-N content, which simultaneously affect yield, and to determine the effects on the field microclimate. (C) 2015 Elsevier B.V. All rights reserved.
机译:在中国黄土高原的半干旱地区,采用替代田间管理措施对可持续农业至关重要。本研究的目的是研究地膜覆盖和施肥对玉米温度,土壤水分,土壤硝态氮含量和谷物产量的影响。该实验连续三年进行,并使用了随机分配的田地图,重复了五次。这六种处理方法包括:无肥料无塑料膜(CK),无肥料和塑料膜(ZM),无肥料的塑料膜(BN),无农药塑料膜的基肥(BM),无农药塑料膜的基肥和追肥(BTN) )以及塑料薄膜(BTM)的基础和顶层敷料。 10厘米覆盖处理的土壤温度明显高于非覆盖处理的土壤温度,覆盖处理的平均土壤温度在7月之前升高了2.3摄氏度,在7月之后升高了近1.2摄氏度。覆膜处理的土壤含水量在0-60 cm处明显高于非覆膜处理,与140-200 cm深度无明显差异。在覆膜条件下,土壤硝态氮含量分布趋势显示出沿犁沟中心对称的形状,随着土壤深度的增加,标准对称分布逐渐减小。播种后36天,0-10 cm时,基肥下土壤硝态氮含量是不施肥的1.65倍。 58天后,表层土壤中的硝态氮含量从48.67降至30.77 mg / kg。我们发现,使用基肥覆盖的塑料薄膜连续三年使玉米增产10.61%,9.48%和15.36%,而追肥使玉米增产16.61%,20.94%和12.24%。建议采用覆盖塑料膜,基肥和追肥的处理。需要进行进一步的研究来研究覆盖对土壤温度升高,土壤水分含量和硝酸盐氮含量的影响,同时影响产量,并确定对田间小气候的影响。 (C)2015 Elsevier B.V.保留所有权利。

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