任小龙, 贾志宽, 陈小莉. 不同模拟雨量下微集水种植对农田水肥利用效率的影响[J]. 农业工程学报, 2010, 26(3): 75-81.
    引用本文: 任小龙, 贾志宽, 陈小莉. 不同模拟雨量下微集水种植对农田水肥利用效率的影响[J]. 农业工程学报, 2010, 26(3): 75-81.
    Effect of micro-catchment rainwater harvesting on water and nutrient use efficiency in farmland under different simulated rainfall conditions[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2010, 26(3): 75-81.
    Citation: Effect of micro-catchment rainwater harvesting on water and nutrient use efficiency in farmland under different simulated rainfall conditions[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2010, 26(3): 75-81.

    不同模拟雨量下微集水种植对农田水肥利用效率的影响

    Effect of micro-catchment rainwater harvesting on water and nutrient use efficiency in farmland under different simulated rainfall conditions

    • 摘要: 为了探索微集水种植的增产机理及其适宜的雨量范围,通过大田模拟降雨试验,在2006-2007年研究了作物生长期间不同降雨量下微集水种植玉米对农田水肥利用效率的影响。结果表明,在230~440 mm雨量下,微集水种植玉米可提高其籽粒产量及水肥利用效率,2006年籽粒产量、农田水分利用效率(WUE)以及氮、磷和钾养分利用效率(NUEN、NUEP和NUEK)在230 mm雨量下较对照分别提高了75.4%、73.3%、56.0%、44.4%和106.8%,340 mm雨量下分别提高了36.7%、40.2%、22.8%、18.1%和35.5%,440 mm雨量下与平作相比差异不明显;2007年籽粒产量、WUE、NUEN、NUEP和NUEK在230 mm雨量下较对照分别提高了82.8%、77.4%、64.0%、52.2%和123.9%,340 mm雨量下分别提高了43.4%、43.1%、30.4%、21.8%和41.2%;440 mm雨量下籽粒产量、WUE和NUEN分别提高了11.2%、9.5%和10.1%。由此可知,在玉米全生育期降雨量230~440 mm范围内,通过微集水种植可以增加籽粒产量,提高农田水肥利用效率,尤其在雨量较低时,提高水肥利用效率及增产效果尤为明显。

       

      Abstract: In order to determine the optimum method for increasing the productivity and the ranges of rainfalls applicable for the plastic-covered furrow and ridge farming practice for rainwater concentration (RC), the experiment simulated different rainfalls to examine the effects of RC on the efficiency of farmland fertilizer utilization of corn plants in 2006-2007 (summer corn and spring corn were planted as the indicators in 2006 and 2007, respectively). The results showed that with the rainfalls ranging within 230-440 mm, RC practice could enhance the grain yield, water use efficiency (WUE) and nutrient use efficiency (NUE). In 2006, compared to conventional flat (CF) practice, the grain yield, WUE, NUEN, NUEP and NUEK under RC increased by 75.4%, 73.3%, 56.0%, 44.4% and 106.8%, respectively, at the rainfall of 230mm, and by 36.7%, 40.2%, 22.8%, 18.1% and 35.5% at the rainfall of 340mm, respectively. At the rainfall of 440mm, however, no significant difference was observed between RC and CF. In 2007, the grain yield, WUE, NUEN, NUEP and NUEK under RC were 82.8%, 77.4%, 64.0%, 52.2% and 123.9% higher, respectively, at the rainfall of 230mm than those of CF, and 43.4%, 43.1%, 30.4%, 21.8% and 41.2% higher, respectively, at the rainfall of 340mm than those of CF, while at the rainfall of 440mm, the grain yield, WUE and NUEN were 11.2%, 9.5% and 10.1% higher, respectively, under RC than under CF. Therefore, It is concluded that the RC farming practice could increase grain yield and improve WUE and NUE in farmland during the corn growing seasons with rainfall ranging 230-440 mm. It is also found that especially under lower rainfall, the practice had more obvious effect on the improvement of WUE and NUE and the increase of grain yield.

       

    /

    返回文章
    返回