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Harvesting productivity and costs when utilizing energywood from pine plantations of the southern Coastal Plain USA

机译:利用美国南部沿海平原松树人工林的能源木收获生产力和成本

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摘要

For woody biomass to make a significant contribution to the United States' energy portfolio, harvesting contractors must economically harvest and transport energywood to conversion/processing facilities. We conducted a designed operational study in the Coastal Plain of North Carolina, USA with three replications of three treatments to measure harvesting productivity and costs when utilizing woody biomass. The treatments were: a conventional roundwood only harvest (control), an integrated harvest in which merchantable roundwood was delivered to mills and residuals were chipped for energy, and a chip harvest in which all stems were chipped for energy use. The harvesting contractor in this study typically delivers 2200-2700 t of green roundwood per week and is capable of wet-site harvesting. Results indicate that onboard truck green roundwood costs increased from 9.35 $ t in the conventional treatment to 10.98 $ t in the integrated treatment as a result of reduced felling and skidding productivity. Green energy chips were produced for 19.19 $ t onboard truck in the integrated treatment and 17.93 $ t in the chip treatment. Low skidding productivity contributed to high chip costs in the integrated treatment. Residual green biomass was reduced from 18 t ha in the conventional treatment to 4 and 3 t ha in the integrated and chip treatments, respectively. This study suggests that until energywood prices appreciate substantially, loggers are unlikely to sacrifice roundwood production to increase energywood production. This research provides unique information from a designed experiment documenting how producing energywood affects each function of a harvesting system.
机译:为了使木质生物质对美国的能源组合做出重大贡献,采伐承包商必须经济地采伐并将能源木运输到转化/加工设施。我们在美国北卡罗来纳州沿海平原进行了一项设计性的运营研究,对三种处理进行了三次重复,以测量利用木质生物量时的收割生产率和成本。处理方法是:仅传统的圆木采伐(对照);将可销售的圆木运送到工厂的综合采伐,将残渣切碎以获取能量;将所有茎干切碎以供能源使用的切屑收获。本研究中的采伐承包商通常每周交付2200-2700吨绿色原木,并且能够在湿地进行采伐。结果表明,由于砍伐和打滑生产率的降低,车载绿色原木成本从常规处理的9.35 $ t增加到综合处理的10.98 $ t。综合处理后的车载卡车的绿色能源芯片的价格为19.19美元/吨,芯片处理后的价格为17.93美元/吨。低打滑生产率导致集成处理中的高切屑成本。残留的绿色生物量分别从常规处理的18 t ha减少到综合处理和切屑处理的4 t和3 t ha。这项研究表明,除非能木价格大幅升值,否则伐木者不太可能牺牲圆木产量来增加能木产量。这项研究从设计的实验中提供了独特的信息,记录了生产能量木如何影响收割系统的每个功能。

著录项

  • 来源
    《Biomass & bioenergy》 |2013年第5期|85-95|共11页
  • 作者单位

    University of Wisconsin - Stevens Point, 800 Reserve Street, Stevens Point, WI 54481, USA;

    Forest Operations/Engineering, Virginia Tech Department of Forest Resources and Environmental Conservation, 228 Cheatham Hall, Mail Code 0324, Blacfesburg, VA 24061, USA;

    Forestry, Virginia Tech Department of Forest Resources and Environmental Conservation, 228 Cheatham Hall, Mail Code 0324, Blacfesburg, VA 24061, USA;

    Virginia Tech College of Natural Resources and Environment, 324 Cheatham Hall, Mail Code 0324, Blacfesburg, VA 24061, USA;

    USDA Forest Service - Savannah River, PO Box 700, New Ellenton, SC 29809, USA;

  • 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

    Forestry; Logging; Biomass harvesting; Energy chips; Forest operations;

    机译:林业;记录;生物量收获;能源芯片;森林作业;

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