机构地区:[1]安徽省农业科学院土壤肥料研究所,安徽合肥230031 [2]长丰县农业技术推广中心,安徽长丰231100
出 处:《植物营养与肥料学报》2016年第5期1259-1266,共8页Journal of Plant Nutrition and Fertilizers
基 金:公益性行业(农业)科研专项"南方低产水稻土改良技术研究与示范"(201003016);"水田合理耕层构建技术指标研究与集成示范"(2015031118);国家科技支撑计划"淮北平原中低产砂姜黑土改良关键技术研究与示范"(2012BAD05B0206)资助
摘 要:【目的】研究不同氮肥基追比例运筹方式下小麦秸秆直接还田对白土稻田理化性状和水稻产量的影响,为江淮低产白土改良培肥提供科学依据。【方法】采用两因素裂区试验,因素一为小麦秸秆(S)直接还田(3000kg/hm^2)和小麦秸秆不还田;因素二为氮肥基肥–分蘖肥–穗肥施用比例。设3种基施:分蘖肥:穗肥比例(80–0–20、60–20–20和40–30–30),共6个处理,分别为N_(80–0–20)、N_(80–0–20+S)、N_(60–20–20)、N_(60–20–20+S)、N_(40–30–30)和N_(40–30–30+S)。水稻收获期采集0—20 cm代表性土壤样品分析理化性状,包括p H、有机质、氮磷钾养分含量、阳离子交换量(CEC)、团聚体结构和容重,测定水稻籽粒产量。【结果】与不还田相比,3种氮肥运筹方式下,小麦秸秆还田土壤p H均明显升高,以40–30–30方式升高幅度最大,增加达到显著水平;无论是否实施麦秸还田,不同氮肥运筹方式间土壤p H差异不显著。土壤有机质、有效磷、速效钾含量明显提高,CEC增大。土壤中>5 mm和1~0.25 mm两个粒径机械稳定性及水稳定性大团聚体数量增多,<0.25 mm小团聚体数量减少,团聚体质量提高;土壤容重下降,总孔隙度增加,白土淀浆板结的不良物理性状改善,氮肥60–20–20运筹方式下秸秆直接还田改良培肥白土效果最好。4年4地试验,与无秸秆的对照相比,3种氮肥运筹方式下,水稻籽粒产量分别提高10.2%~23.4%、0.8%~5.5%、4.9%~6.4%和6.4%~9.6%,平均增产16.2%、3.6%、5.5%和8.1%,N_(60-20-20+S)处理水稻籽粒产量最高。【结论】综合水稻产量、秸秆还田后土壤养分状况、团聚体稳定性和容重、孔隙度等物理性状,安徽省江淮丘陵白土单季稻区,水稻基肥–分蘖肥–穗肥施用比例60–20–20运筹方式下,配合实施小麦秸秆直接还田,能有效改良培肥低产白土稻田,提高水稻产量。【Objectives】The effects of wheat straw directly returning to paddy soil under different ratios of basal-topdressing of nitrogen(N) applications on soil physical-chemical properties and rice yield were studied to provide a scientific base for fertility improvement of low-yield white paddy soil in Jianghuai hilly lands.【Methods】Two factor split field experiments were conducted concussively for four years. Wheat straw returning(3000 kg/hm^2) or not was the main factor; N fertilizer was divided into three parts and applied in basal, tillering stage and heading stage 80–0–20, 60–20–20, and 40–30–30. The treatments were coded as N_(80–0–20), N_(80–0–20) + S, N_(60–20–20), N_(60–20–20)+ S, N_(40–30–30) and N_(40–30–30) + S. Samples of 0–20 cm topsoil were collected toanalyze soil physical-chemical properties, aggregates composition and bulk density. Rice yields were investigated.【Results】Compared with no wheat straw returning, wheat straw returning improved soil p H effectively under the three N ratios. Under the N ratio of 40–30–30, the soil p H was significantly increased,from acidic and slightly acidic to slightly acidic and neutral, respectively. The soil organic matter, available P,K contents and CEC were also increased significantly with the returning of wheat straw. The contents of 5 mm and 1–0.25 mm mechanical-stable and water stable aggregates were increased, and micro aggregates( 0.25mm) were reduced, which indicated the improvement of soil aggregate quality. Soil bulk density was decreased,and total porosity was increased which showed the adverse physical properties of white soil were improved.Straw addition under the N application ratio of 60–20–20 showed the best effect on the improvement of white soil. Rice grain yields in four experimental sites under three N application ratios were increased by10.2%–23.4%, 0.8%–5.5%, 4.9%–6.4% and 6.4%–9.6%, with the mean of 16.2%, 3.6%, 5.5% and 8.1%,respectivel
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