首页> 外文期刊>Industrial Crops and Products >Effects of nitrogen rate and harvest time on biomass yield and nutrient cycling of switchgrass and soil nitrogen balance in a semiarid sandy wasteland
【24h】

Effects of nitrogen rate and harvest time on biomass yield and nutrient cycling of switchgrass and soil nitrogen balance in a semiarid sandy wasteland

机译:氮率和收获时间对半干旱砂岩盐水植物和土壤氮气平衡生物量产量及养分循环的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Increasing demand for renewable energy has stimulated energy crop cultivation on marginal lands with low production potential. This study investigates potential biomass yield of switchgrass (Panicum virgatum L., cv. Blackwell), plant nutrient (nitrogen, N; phosphorus, P; potassium, K) concentration and uptake, N-use efficiency (NUE) and apparent soil N balance in a semiarid rainfed sandy wasteland of Inner Mongolia, China. The aim of this study was to optimize N fertilizer rate and harvest time to produce quality biomass sustainably with minimal soil nutrient removal through harvested crop biomass. Five N rates (0, 60, 120, 180, 240 kg N ha(-1)) and two harvest times (late summer and early fall) in one-cut system were evaluated in 2015 and 2016. Nitrogen application of 60 kg N ha(-1) significantly increased aboveground plant (AGP) biomass yield by 14.3% vs. control only during early fall harvest in 2016, with no yield response at rates > 60 kg N ha(-1). AGP nutrient concentration and nutrient uptake increased by increasing N rate, except for P concentration, which decreased. Partial factor productivity (PFP) and agronomic NUE (ANUE) of applied N fertilizer decreased quadratically with N rates > 60 kg N ha(-1). Apparent soil N budget study revealed an N deficit (0-20 cm depth) in control while N surplus increased as N rate increased which likely boosted NO3- leaching. An early fall harvest exhibited 12.5% higher biomass yield and substantially reduced biomass N and K concentration and uptake relative to late summer harvest. These findings demonstrate that an N input not exceeding 60 kg N ha(-1) would be sufficient to optimize biomass yields of Blackwell switchgrass and maintain the soil N balance on a semiarid rainfed sandy wasteland of Inner Mongolia when harvested in early fall. Therefore, N fertilization and harvest time practices should be considered simultaneously in switchgrass production systems for the continuous and sustainable biomass supply with increased feedstock quality and reduced crop fertilizer requirements.
机译:越来越多的可再生能源需求刺激了低生产潜力的边际土地上的能量作物培养。本研究调查了潜在的生物量产量(Panicum Virgatum L.,CV。Blackwell),植物营养素(氮气,N;磷,P;钾,K)浓度和摄取,N用效率(NUE)和表观土壤平衡在中国内蒙古的半干旱雨水荒地。本研究的目的是优化N肥率和收获时间,以通过收获的作物生物质进行最小的土壤养分除去质量生物质。在2015年和2016年,评估了五个率(0,60,120,180,240kg Na(-1))和两次收获时间(0,60,120,180,240kg n(-1))和两次收获时间(晚夏季和早期秋季)在2015年和2016年中评估了60 kg n的氮施氮HA(-1)在2016年早期秋季收获期间,仅在地上植物(AGP)生物质产量显着增加14.3%,速度下没有收益率> 60kg n ha(-1)。通过增加N级浓度,AGP营养浓度和营养吸收增加,除了P浓度,降低。应用N肥的部分因素生产率(PFP)和农艺NUE(ANUE)与N率为N次> 60kg N HA(-1)等二次下降。表观土壤N预算研究显示了N缺陷(0-20cm深度)控制,而N剩余增加随着N速率的增加,可能增加了NO3-浸出。早期秋季收获表现出12.5%的生物质产量和基本上减少的生物量N和K浓度和摄取相对于晚期夏季收获。这些研究结果表明,不超过60kg N公顷的N个输入(-1)可以足以优化Blackwell Esthergrass的生物量产量,并在初期收获时将土壤N平衡保持在内蒙古的半干旱雨地砂岩上。因此,应同时考虑N施肥和收获时间实践,用于连续和可持续的生物量供应,具有增加的原料质量和减少的作物肥料要求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号