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A model for evaluating production and environmental performance of kenaf in rotation with conventional row crops

机译:用常规行作物旋转旋转生产和环境性能的模型

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The potential inclusion of kenaf (Hibiscus cannabinus L.) into the conventional corn (Zea mays L.) and soybean (Glycine max L) rotation of the U.S. Midwest requires investigation. A new kenaf model within the Agricultural Production Systems Simulator (APSIM) was developed and subsequently used to address questions needed for decision making: 1) what is the optimum planting date of kenaf Under water nitrogen limited and non-limited conditions in central Iowa; 2) does soil nitrate accumulation vary among kenaf, corn, and soybean crops?; 3) is soil organic matter (SOC) influenced in the long term?; and 4) how do kenaf water use efficiency (WUE) and nitrogen use efficiency (NUE) compare to corn and soybean? The model indicated that simulated optimum planting date for maximizing kenaf production ranged from April 15 to June 1. Model analysis of different rotation systems showed that there was a slight tradeoff between kenaf stem biomass and soybean yield. Long term soil organic carbon simulations (30 years) indicated a slight decrease over time while inclusion of kenaf in the corn-soybean (C-S) rotation did not affect this trend. In conclusion, this study brings to the scientific literature a new kenaf model that provided information that was missing for decision support. (C) 2017 Elsevier B.V. All rights reserved.
机译:将keanaf(芙蓉大麻L.)潜在包含到常规的玉米(Zea mays L.)和大豆(甘氨酸Max L)旋转中的旋转需要调查。农业生产系统模拟器(APSIM)内的新KENAF模型开发并随后用于解决决策所需的问题:1)北纳中部水氮限制和非有限条件下康联的最佳种植日期是什么; 2)土壤硝酸盐积累是否在洋麻,玉米和大豆作物之间变化? 3)是在长期影响的土壤有机物(SoC)吗? 4)Kenaf水用效率(WUE)和氮气使用效率(NUE)与玉米和大豆相比?该模型表明,用于最大化KENAF生产的模拟最佳种植日期为4月15日至6月1.不同旋转系统的模型分析表明,康地区干生物质和大豆产量之间存在轻微的权衡。长期土壤有机碳模拟(30年)表明随着时间的推移表明略有下降,同时将KENAF在玉米 - 大豆(C-S)旋转中不影响这种趋势。总之,本研究为科​​学文献带来了一种新的kEnaf模型,提供了缺少决策支持的信息。 (c)2017 Elsevier B.v.保留所有权利。

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