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首页> 外文期刊>Bioenergy research >Switchgrass, Big Bluestem, and Indiangrass Monocultures and Their Two- and Three-Way Mixtures for Bioenergy in the Northern Great Plains
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Switchgrass, Big Bluestem, and Indiangrass Monocultures and Their Two- and Three-Way Mixtures for Bioenergy in the Northern Great Plains

机译:大平原北部的柳枝,大蓝茎和印度草单一文化及其生物能源的二,三通混合物

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摘要

High yielding, native warm-season grasses could be used as renewable bioenergy feedstocks. The objectives of this study were to determine the effect of warm season grass monocultures and mixtures on yield and chemical characteristics of harvested biomass and to evaluate the effect of initial seeding mixture on botanical composition over time. Switchgrass (Panicum virgatum L.), indiangrass [Sorghastrum nutans (L.) Nash], and big bluestem (Andropogon gerardii Vitman) were planted as monocultures and in all possible two- and three-way mixtures at three USA locations (Brookings and Pierre, SD and Morris, MN) during May 2002. Biomass at each location was harvested after a killing frost once annually from 2003 to 2005. Total biomass yield significantly increased with year at all locations. Switchgrass monocultures or mixtures containing switchgrass generally out-yielded big bluestem or indiangrass in monocultures or the binary mixture. Cellulose and hemicellulose concentrations were higher in 2004 and 2005 compared with 2003. Switchgrass or mixtures containing switchgrass tended to have less cellulose than either big bluestem or indiangrass. Results were more variable for total N, lignin, and ash. Switchgrass was the dominant component of all mixtures in which it was present while big bluestem was dominant when mixed with indiangrass. Indiangrass was maintained only in monocultures and declined over years when grown in mixtures at all locations. Our results indicated if biomass yield in the northern Great Plains is a primary objective, switchgrass should be a component of binary or tertiary mixtures that also contain big bluestem and/or indiangrass.
机译:高产,天然的暖季草可以用作可再生的生物能源原料。这项研究的目的是确定暖季草单一栽培和混合物对收获生物量的产量和化学特性的影响,并评估随时间推移初始播种混合物对植物组成的影响。柳枝((Panicum virgatum L.),印度枝gra [Sorghastrum nutans(L.)Nash]和大蓝茎(Andropogon gerardii Vitman)被作为单一栽培种,并在美国的三个地点(Brookings和Pierre)以所有可能的二元和三元混合物种植。 (SD和Morris,MN)。从2003年至2005年,每年一次杀死霜冻后,每个地点的生物质都得到了收获。所有地点的总生物量产量均逐年增加。柳枝mono单一培养物或含有柳枝mixture的混合物在单一培养物或二元混合物中的产量通常超过大蓝茎或印度草。与2003年相比,2004年和2005年的纤维素和半纤维素浓度更高。柳枝or或含柳枝mixture的混合物中纤维素的含量往往低于大蓝茎或印度柳枝cellulose。总氮,木质素和灰分的结果变化更大。柳枝was是所有混合物中的主要成分,而与印度枝gra混合时,大的蓝茎则占主导地位。印第安草仅在单一栽培中得到维持,而在所有地方以混合物形式生长时,多年不育。我们的结果表明,如果北大平原北部的生物量产量是主要目标,则柳枝switch应该是二元或三元混合物的组成部分,二元或三元混合物也包含大的蓝茎和/或印度草。

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  • 来源
    《Bioenergy research》 |2013年第1期|229-239|共11页
  • 作者单位

    1.Department of Life Science and Environmental Biochemistry Miryang Campus Pusan National University 50 Cheonghak-Ri Samryangjin-Eup Miryng 627-706 South Korea;

    2.Plant Science Department South Dakota State University 1110 Rotunda Lane North Brookings SD 57007 USA;

    3.Department of Crop Sciences University of Illinois 1102 S. Goodwin Avenue Urbana IL 61801 USA;

    2.Plant Science Department South Dakota State University 1110 Rotunda Lane North Brookings SD 57007 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioenergy Biomass Monocultures Warm-season grasses Warm-season mixtures;

    机译:生物能源生物质单种养殖暖季草暖季混合物;

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