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Switchgrass (Panicum virgatum L.) nutrients use efficiency and uptake characteristics, and biomass yield for solid biofuel production under Mediterranean conditions

机译:柳枝((Panicum virgatum L.)养分的利用效率和吸收特性以及地中海条件下固体生物燃料生产的生物量产量

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摘要

Switchgrass produces high amounts of biomass that can be used for solid biofuel production. In this study, the dry biomass yield vs. N-P-K nutrient uptake relations as well as the N-mineralization and the N-fertilization recovery fraction for switchgrass (cv. Alamo) were determined under field conditions for three N-fertilization (0, 80 and 160 kg ha~(-1)) and for two irrigation (0 and 250 mm) levels, in two soils in central Greece with rather different moisture status over the period 2009-2012. It was found that dry biomass yield on the aquic soil may reach 27-301 ha~(-1) using supplemental irrigation, and remain at high levels (19-24 t ha~(-1)) without irrigation. In the xeric soil, however, lower biomass yields of 14 -15 t ha~(-1) may be produced with supplemental irrigation. The average N-concentration varies between 0.23% in stems and 1.10% in leaves, showing the very low needs in N. P-content varies between 0.16% in leaves and 0.03% in stems, whereas K-content fluctuates between 0.67% and 0.78%. Linear biomass yield-nutrient uptake relationships were found with high R~2, pointing to nutrient use efficiencies of 240 and 160 kg kg~(-1), for N and K respectively. The base N-uptake ranged 70-84 kg ha~(-1) in the aquic to 60 kg ha~(-1) or less in the xeric soil. N-recovery fraction was about 30% in the aquic soil and lower in the xeric. Therefore, switchgrass is very promising for biomass production and its introduction in land use systems (especially in aquic soils of similar environments) should be seriously taken into consideration.
机译:柳枝produces产生大量可用于固体生物燃料生产的生物质。在这项研究中,在田间条件下测定了三种氮肥(0、80和80)的柳枝((阿拉木图)的干生物量产量与NPK养分吸收关系以及氮矿化和氮肥回收率。在希腊中部的两种土壤中,2009-2012年期间的水分状况差异很大,分别为160 kg ha〜(-1))和两种灌溉水平(0和250 mm)。研究发现,补充灌溉后,潮土上的干生物量产量可能达到27-301 ha〜(-1),而没有灌溉,则保持在较高水平(19-24 t ha〜(-1))。然而,在干燥的土壤中,补充灌溉可能会导致较低的生物量产量14 -15 t ha〜(-1)。茎中的平均氮含量在茎的0.23%和叶片中的1.10%之间变化,表明对氮的需求非常低。叶片中的P含量在0.16%和茎中的0.03%之间变化,而钾含量在0.67%和0.78之间波动%。氮与钾的养分吸收效率呈线性关系,R〜2较高,表明养分利用效率分别为240和160 kg kg〜(-1)。基地中氮的基本吸收量在水生环境中为70-84 kg ha〜(-1),在干燥土壤中不超过60 kg ha〜(-1)。在潮土中氮的回收率约为30%,而在旱地中则较低。因此,柳枝for在生物质生产方面非常有前途,应认真考虑将其引入土地利用系统(尤其是在类似环境的含水土壤中)。

著录项

  • 来源
    《Biomass & bioenergy》 |2014年第9期|24-31|共8页
  • 作者单位

    University of Thessaly, Dept of Agriculture, Crop Production and Rural Environment, Laboratory of Agronomy and Applied Crop Physiology, Fytokoy Str., 38446 Volos, Greece;

    University of Thessaly, Dept of Agriculture, Crop Production and Rural Environment, Laboratory of Agronomy and Applied Crop Physiology, Fytokoy Str., 38446 Volos, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Switchgrass; NUE; Base uptake; N-P-K-uptake; Biomass production;

    机译:柳枝;NUE;基本吸收;N-P-K摄取;生物质生产;
  • 入库时间 2022-08-18 00:10:02

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