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首页> 外文期刊>Journal of irrigation and drainage engineering >Economic Return versus Crop Water Productivity of Maize for Various Nitrogen Rates under Full Irrigation, Limited Irrigation, and Rainfed Settings in South Central Nebraska
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Economic Return versus Crop Water Productivity of Maize for Various Nitrogen Rates under Full Irrigation, Limited Irrigation, and Rainfed Settings in South Central Nebraska

机译:内布拉斯加州中南部全面灌溉,限量灌溉和雨水灌溉条件下不同氮肥水平下玉米的经济收益与作物水分生产率的关系

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Field research was conducted at the University of Nebraska-Lincoln South Central Agricultural Laboratory (SCAL) located near Clay Center, NE, in the growing seasons of 2011 to 2014. A partial economic analysis was conducted for maize (Zea mays L.) at nitrogen (N) fertilizer treatments of 0, 84, 140, 196, and 252 kg ha~(-1) under full irrigation (FIT), limited irrigation (75% FIT), and rainfed settings for all growing seasons and then compared to crop water productivity (CWP) measured as crop water use efficiency (CWUE) and irrigation water use efficiency (IWUE). Nitrogen fertilizer increased CWUE and IWUE in all growing seasons. The CWUE values ranged from 0.90 to 2.81 kg m~(-3) and the IWUE values ranged from -1.01 to 3.24 kg m~(-3). Operational costs and net income varied among treatments and across years. Irrigation and N fertilizer rate had an interacting effect (P_(0.05) < 0.05) on both gross and net income in 2011, 2012, and 2013. Net income was maximized under rainfed settings with a N fertilizer rate between 140 (dry year) to 196 kg ha~(-1) (wet year); in contrast, the optimal N fertilizer rate under irrigated conditions was 196 kg ha~(-1). Positive relationships were observed between relative net income (RNI) and CWUE with R~2 values of 0.72, 0.87, and 0.84 for rainfed, 75% FIT, and FIT, respectively, as well as between RNI and IWUE with an R~2 value of 0.96 for 75% FIT and 0.86 for FIT. Lower CWUE and IWUE values were associated with lower RNI. With consideration to CWUE, IWUE, and partial factor productivity of N, full irrigation management is recommended under non-water-limiting conditions and limited/deficit irrigation management strategies (e.g., 75% FIT) under water-limiting conditions, with N fertilizer rate not exceeding 196 kg ha~(-1) to achieve a high economic return for the study area.
机译:在2011年至2014年的生长季节,在内布拉斯加州林肯大学南部中央农业实验室(SCAL)进行了田间研究,该实验室位于内布拉斯加州克莱中心附近。在氮肥条件下对玉米(Zea mays L.)进行了部分经济分析。 (N)在所有生长季节都进行全灌(FIT),有限灌溉(75%FIT)和雨水设置下的0、84、140、196和252 kg ha〜(-1)肥料处理水分生产率(CWP),以作物水分利用效率(CWUE)和灌溉水分利用效率(IWUE)来衡量。氮肥在所有生长季节均增加了CWUE和IWUE。 CWUE值的范围为0.90至2.81kg m·(-3),IWUE值的范围为-1.01至3.24kg m·(-3)。运营成本和净收入在不同治疗之间以及不同年份之间有所不同。灌溉和氮肥施用量对2011年,2012年和2013年的总收入和净收入都有交互作用(P_(0.05)<0.05)。在雨养条件下,氮肥施用量在140(干旱年)至干旱之间的净收入最大化。 196 kg ha〜(-1)(湿年);相比之下,灌溉条件下的最佳氮肥施用量为196 kg ha〜(-1)。雨养,75%FIT和FIT的相对净收入(RNI)与CWUE之间的正相关性分别为R〜2值分别为0.72、0.87和0.84,RNI和IWUE之间的R〜2值具有R〜2值正相关FIT为75%时为0.96,FIT为0.86。较低的CWUE和IWUE值与较低的RNI相关。考虑到氮的CWUE,IWUE和部分要素生产率,建议在非水限制条件下进行全面灌溉管理,并在水限制条件下以氮肥比率进行有限/亏缺灌溉管理策略(例如75%FIT)不超过196 kg ha〜(-1),以获得研究区域的高经济回报。

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