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首页> 外文期刊>Agricultural Water Management >Effects of mulching biodegradable films under drip irrigation on soil hydrothermal conditions and cotton (Gossypium hirsutum L.) yield
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Effects of mulching biodegradable films under drip irrigation on soil hydrothermal conditions and cotton (Gossypium hirsutum L.) yield

机译:滴灌薄膜在水土水热条件下的滴灌胶片和棉花(Gossymium hirsutum L.)产量的影响

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摘要

Biodegradable mulches are advocated as an alternative to plastic mulches. Here, we carried out an experiment in Xinjiang, an arid region in China, to demonstrate the effects of mulching biodegradable films under drip irrigation on soil conditions and cotton (Gossypium hirsutum L.) yield in 2015 (with less precipitation) and 2016 (with more precipitation). Plastic mulch made from polyethylene (PE) and four types of biodegradable mulch were compared, namely, BD1 to BD4, with different levels of thickness and induction periods. Our results indicated that PE mulch was the most efficient in soil water and heat conservation. Biodegradable mulches performed similarly in warming the soil in both years, which increased topsoil (5-20 cm depth) temperature than no mulching in the cropping season by 0.66 degrees C and 0.61 degrees C in 2015 and 2016, respectively. The effect of mulching on increasing soil water storage was stronger in the wet year. The increased soil water storage (0-100 cm depth) by biodegradable mulches than no mulching was 113 mm and 194 mm in 2015 and 2016, respectively. Earlier onset of the phenological events of cotton growth was similar between PE mulch and biodegradable mulches. Mulching shortened the number of days from sowing to cotton maturity by 4 days and 10 days in 2015 and 2016, respectively. Compared with no mulching, biodegradable mulches achieved better performance in enhancing cotton yield and water use efficiency (WUE) in the dry year (916 kg ha(-1); 1.85 kg ha(-1) mm(-1)) than in the wet year (568 kg ha(-1); 1.22 kg ha(-1) mm(-1)). Although PE mulch resulted in the highest yield, there was no significant difference in WUE between PE mulch and BD1 or BD2. Therefore, some of the commercially available biodegradable mulches can be used as a competitive alternative to plastic mulch to enhance crop yield and control soil pollution.
机译:可生物降解的覆盖物被提倡作为塑料覆盖物的替代品。在这里,我们在中国的干旱地区进行了一项实验,展示了2015年土壤条件和棉花(Gossypium Hirsutum L.)产量下造成覆盖可生物降解薄膜的影响(较少降水)和2016年(与更多降水)。比较由聚乙烯(PE)和四种生物降解覆盖物制成的塑料覆盖物,即BD1至BD4,具有不同的厚度和诱导期。我们的结果表明,PE覆盖物在土壤水和热保守中最有效。可生物降解的覆盖物在两年内加热土壤时,这种覆盖物在耕地(5-20​​cm深度)温度增加到2015年和2016年在0.66摄氏度和0.61摄氏度中没有覆盖。湿的年度覆盖对土壤蓄水量增加的影响。在2015年和2016年,可生物降解覆盖物的土壤储水量增加(0-100cm深度)比无覆盖物的覆盖物覆盖率增加113毫米,194毫米。 PE覆盖物和可生物降解的覆盖物之间的棉花生长的酚类事件的早期发作类似。在2015年和2016年分别缩短了播种到棉花成熟的天数。与没有覆盖相比,可生物降解的覆盖物在干燥年内提高棉花产量和水使用效率(WUE)的更好性能(916公斤(-1); 1.85千克HA(-1)mm(-1))比在潮湿的一年(568千克(-1); 1.22 kg ha(-1)mm(-1))。虽然PE覆盖物导致最高产量,但PE覆盖物和BD1或BD2之间的WUE没有显着差异。因此,一些市售的可生物降解的覆盖物可用作塑料覆盖物的竞争替代品,以提高作物产量和对照土壤污染。

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