柳枝稷在复垦露天矿上的产量

Carol A. Brown, J. Skousen, T. Griggs
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引用次数: 1

摘要

在农业用地上种植用于生物燃料生产的作物引发了选择生物质作物作为燃料而不是为不断增长的世界人口提供食物的冲突。这增加了在边缘土地上种植生物燃料原料的兴趣。柳枝稷(Panicum virgatum L.)是一种暖季多年生草本植物,在贫瘠土地上低水分、低养分条件下产量高,是一种可行的生物能源作物。从以前的研究来看,边际农田的柳枝稷产量从5000到10000公斤公顷不等。西维吉尼亚州有大面积的开采地表,可以提供足够的面积生产柳枝稷作为生物燃料工业的原料。对于复垦土地,研究人员确定了5000公斤公顷-1的产量目标,作为土地所有者经济可行性所需的产量。本研究建立于2008年,旨在确定西弗吉尼亚州矿区不同品种柳枝稷的产量。三个品种的柳枝稷在汉普郡山和霍贝特两个矿场进行了试验。汉普郡山矿区在20世纪90年代初利用表土和处理过的城市污泥进行了复垦,其产量一直是两个矿区中最高的,第五年的产量为9066公斤公顷。岩洞型品种的生物量为15,600公斤/公顷,高于其他两个品种,Shawnee和Carthage,分别为8,600和3,000公斤/公顷。另一个矿区,霍贝特,是在2008年用破碎的、未风化的砂岩开采的。柳枝稷第五年的产量为890公斤公顷-1,其中岩洞型产量最高,为1275公斤公顷-1。两个站点具有不同的物理土壤特征。虽然两个地点的%细粒含量都很低,但岩石碎片含量都很高(材料尺寸>2mm),但霍贝特的%细粒含量明显低于汉普郡山。如果主要目标是获得用于生物燃料生产的高产量的柳枝稷,则应考虑土壤类型和质量以及选择播种的柳枝稷品种。
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YIELD OF SWITCHGRASS ON RECLAIMED SURFACE MINES 1
Growing crops for biofuel production on agricultural land has caused conflict between choosing biomass crops for fuel instead of food for a growing world population. This has increased interest in growing biofuel feedstocks on marginal lands. Switchgrass (Panicum virgatum L.), a warm-season perennial grass, has been shown to be a viable bioenergy crop because it produces high yields on marginal lands under low water and nutrient conditions. From previous studies, switchgrass yields on marginal croplands varied from 5,000 to 10,000 kg ha -1 . West Virginia contains immense acreages of reclaimed surface mine lands and could offer enough area for the production of switchgrass as a feedstock for a biofuel industry. For reclaimed lands, yield targets of 5,000 kg ha -1 were established by researchers as the yield necessary for economic feasibility for landowners. This study was established in 2008 to determine switchgrass yields of different cultivars on mine sites in West Virginia. Three varieties of switchgrass were tested on two mine sites, Hampshire Hill and Hobet. The Hampshire Hill mine site, which was reclaimed in the early 1990's using top soil and treated municipal sludge, consistently had the highest yield of the two sites with a fifth year yield of 9,066 kg ha -1 averaged across varieties. Cave-in-Rock variety produced 15,600 kg ha -1 of biomass which was more than the other two varieties, Shawnee and Carthage, at 8,600 and 3,000 kg ha -1 . The other mine site, Hobet, was prepared using crushed, unweathered sandstone in 2008. Yields of switchgrass were 890 kg ha -1 for the fifth year of production, with Cave-in-rock producing the most biomass at 1,275 kg ha -1 . The two sites had different physical soil characteristics. While both sites had low contents of % fines and high rock fragment contents (material >2mm in size) Hobet had significantly lower % fines than Hampshire Hill. The type and quality of soil and the variety of switchgrass selected for seeding should be considered when the goal is chiefly high yields of switchgrass for biofuel production.
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