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Maize Straw Strip Mulching as a Replacement for Plastic Film Mulching in Maize Production in a Semiarid Region

机译:玉米秸秆剥离覆盖为半干旱地区玉米生产中的塑料薄膜覆盖的替代品

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Straw strip mulching in maize ( Zea mays L.) production is showing a positive effect with the increasing negative effects coming from crop straw and plastic film residues. Therefore, it is imperative to develop comprehensive utilization of straw, and promote the green development of agriculture in rainfed regions. A dryland field experiment was conducted in semiarid northwestern China in 2017 and 2018 and included three treatments: maize straw strip mulching with alternating strips of mulched and non-mulched soil (MSSM), and double ridge-furrow fully mulched soil with white or black plastic film (DRWP or DRBP, respectively). The results show that the interaction between mulching treatment and year significantly influenced maize silage yield, grain yield, biomass yield, aboveground plant water content at silage maize harvest stage, ears ha ?1 , kernels ear ?1 , and thousand kernel weight ( p 0.001, p = 0.002, p 0.001, p 0.001, p 0.001, p 0.001, p 0.001, and p 0.001, respectively). For silage, maize growth under straw strip mulching was greater than that of the double ridge mulching system. Silage yield of MSSM was significantly higher than that of DRWP and DRBP, but maize grain and biomass yields under MSSM were significantly lower those under DRWP and DRBP in 2017 and 2018. Compared with the double ridge mulching system, net economic return from silage with MSSM was significantly increased by 28.31% and 20.85% in 2017 and 2018, respectively, and net economic return from grain was 6.67% lower in 2017 and 2.34% higher in 2018. The MSSM treatment exhibited water-temperature coupling; the MSSM treatment significantly reduced soil temperature in the 0–25 cm soil layer by 1.23–2.14 °C and increased soil water storage in the 0–200 cm soil layer by 9.75 and 24.10 mm in 2017 and 2018, respectively, thereby delaying growth development of maize by about 13 days. Therefore, straw mulch can replace plastic film mulch and serve as an environmentally friendly cultivation method for maize in semiarid rainfed regions.
机译:在玉米(Zea Mays L.)生产中的稻草剥离覆盖物在作物秸秆和塑料薄膜残留量增加的阴性效应上显示出积极影响。因此,旨在发展秸秆综合利用,促进雨水区农业绿色发展。在2017年和2018年,在中国半干旱地区进行了旱地实验,包括三种治疗方法:玉米秸秆剥离覆盖覆盖和非覆盖土壤(MSSM)的条带,以及白色或黑色塑料的双脊沟完全覆盖的土壤电影(分别为DRWP或DRBP)。结果表明,覆盖治疗与年的相互作用显着影响玉米青贮饲料产量,籽粒产量,生物质产量,青贮玉米收获阶段的地下植物水含量,耳朵HA?1,粒耳α1,千核重量(P < 0.001,p = 0.002,p <0.001,p <0.001,p <0.001,p <0.001,p <0.001和p <0.001)。对于青贮饲料,秸秆条带覆盖下的玉米生长大于双脊覆盖系统的玉米生长。 MSSM的青贮饲料率明显高于DRWP和DRBP,但MSSM下的玉米谷物和生物量产量在2017年和2018年的DRWP和DRBP下显着降低。与双岭覆盖系统相比,净经济回报与MSSM的青贮饲料2017年和2018年分别显着增加28.31%和20.85%,2017年粮食的净经济申报率降低了6.67%,2018年较高2.34%。MSSM治疗表现出水温耦合; MSSM处理在0-25厘米的土壤层中的土壤温度显着降低1.23-2.14°C,并在2017年和2018年将0-200厘米土壤层的土壤储水量增加了9.75和24.10毫米,从而延缓了增长的发展玉米约13天。因此,秸秆覆盖物可以取代塑料薄膜覆盖物,并用作半干旱地区玉米环保培养方法。

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