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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Integrated double mulching practices optimizes soil temperature and improves soil water utilization in arid environments
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Integrated double mulching practices optimizes soil temperature and improves soil water utilization in arid environments

机译:集成的双重覆盖做法可在干旱环境中优化土壤温度并提高土壤水分利用率

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摘要

Water shortage threatens agricultural sustainability in many arid and semiarid areas of the world. It is unknown whether improved water conservation practices can be developed to alleviate this issue while increasing crop productivity. In this study, we developed a "double mulching" system, i.e., plastic film coupled with straw mulch, integrated together with intensified strip intercropping. We determined (i) the responses of soil evaporation and moisture conservation to the integrated double mulching system and (ii) the change of soil temperature during key plant growth stages under the integrated systems. Experiments were carried out in northwest China in 2009 to 2011. Results show that wheat-maize strip intercropping in combination with plastic film and straw covering on the soil surface increased soil moisture (mm) by an average of 3.8 % before sowing, 5.3 % during the wheat and maize co-growth period, 4.4 % after wheat harvest, and 4.9 % after maize harvest, compared to conventional practice (control). The double mulching decreased total evapotranspiration of the two intercrops by an average of 4.6 % (P 0.05), compared to control. An added feature was that the double mulching system decreased soil temperature in the top 10-cm depth by 1.26 to 1.31 degrees C in the strips of the cool-season wheat, and by 1.31 to 1.51 degrees C in the strips of the warm-season maize through the 2 years. Soil temperature of maize strips higher as 1.25 to 1.94 degrees C than that of wheat strips in the top 10-cm soil depth under intercropping with the double mulching system; especially higher as 1.58 to 2.11 degrees C under intercropping with the conventional tillage; this allows the two intercrops to grow in a well "collaborative" status under the double mulching system during their co-growth period. The improvement of soil moisture and the optimization of soil temperature for the two intercrops allow us to conclude that wheat-maize intensification with the double mulching system can be used as an effective farming model in alleviating water shortage issues experiencing in water shortage areas.
机译:水资源短缺威胁着世界许多干旱和半干旱地区的农业可持续性。尚不知道是否可以开发出改进的节水措施来减轻这一问题,同时提高作物的生产力。在这项研究中,我们开发了一种“双重覆盖”系统,即塑料膜与秸秆覆盖物结合在一起,并与强化的间作作物整合在一起。我们确定了(i)土壤蒸发和水分保持对一体化双覆盖系统的响应,以及(ii)在一体化系统下关键植物生长阶段土壤温度的变化。 2009年至2011年在中国西北地区进行了试验。结果表明,小麦-玉米地带间作与塑料膜和秸秆覆盖在土壤表面的结合使播种前的土壤水分(mm)平均增加3.8%,而播种期则增加5.3%与常规做法相比,小麦和玉米共生期(小麦收获后为4.4%,玉米收获后为4.9%)。与对照相比,两次覆盖平均减少了两个间作的总蒸散量(4.6%)(P <0.05)。一个附加的功能是,双覆盖系统使凉季小麦条带顶部10厘米深处的土壤温度降低1.26至1.31摄氏度,而温暖季节条带土壤温度降低1.31至1.51摄氏度。玉米经历了2年。在双覆盖系统下,在土壤最表层10cm处,玉米条的土壤温度比小麦条高1.25至1.94℃;与传统耕作间作时,尤其是在1.58至2.11摄氏度之间;这使得两个农作物在共同生长期间在双重覆盖系统下能够以良好的“协作”状态生长。两次间作的土壤水分的改善和土壤温度的优化使我们得出结论,采用双覆盖系统的小麦玉米集约化可作为减轻缺水地区遇到的缺水问题的有效耕作模式。

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