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Efficacy of organic mulches on soil water conservation, weed incidence and crop water productivity in summer rice

机译:有机覆盖物对夏稻田土壤水分养护,杂草发生和作物水分生产率的影响

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摘要

A field experiment was conducted to assess the impact of organic mulches on soil water status, root growth, weed incidence and crop water productivity of IET 4786 in dry season under rotational submergence (RS) against continuous submergence (CS). Bio-mulches like Azolla microphylla, rice chaff, saw dust, subabool (Leucaena leucocephala L.) green leaf and farm yard manure were applied in rotational submergence at 15 days after transplanting. Irrigation at 5 days interval (RS) decreased the soil waterstatus in rice by >30% but application of mulches helped to maintain a higher (15.9 — 20.8%) soil water status in root zone at different stress cycles. RS saved about 30% irrigation water over CS but alternate wetting and drying under RS caused much soil cracking of puddled soil, restricted root growth and increased the weed growth. The lowest water productivity (0.35 kg m~3) was recorded under rotational stress. However, application of bio-mulches improved the field water use efficiency by 19.7%> to41.2%> over continuous submergence and 20 to 54% over rotational stress control. Mulching reduced the water cost for grain production by up to 37%.
机译:进行了一项田间试验,以评估有机覆盖物对旱季旋转淹水(RS)与连续淹水(CS)情况下IET 4786的土壤水分状况,根生长,杂草发生率和作物水分生产率的影响。在移栽后第15天,将生物覆盖物(例如满江红,稻壳,锯末,粉刺变叶(Leucaena leucocephala L.)绿叶和农家粪肥)旋转淹没。每隔5天(RS)灌溉使水稻的土壤水分状况降低了30%以上,但在不同的胁迫周期下,覆盖膜的施用有助于在根区保持较高的土壤水分状况(15.9-20.8%)。相对于CS,RS节省了约30%的灌溉水,但在RS下交替进行的湿润和干燥导致大量水裂开了水坑土,限制了根的生长并增加了杂草的生长。在旋转应力下记录了最低的水生产率(0.35 kg m〜3)。但是,生物覆盖物的应用使田间用水效率比连续淹没提高了19.7%至41.2%,而对旋转应力控制则提高了20至54%。覆盖膜可将谷物生产的水成本降低多达37%。

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