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Lab-scale co-firing of virgin and torrefied bamboo species Guadua angustifolia Kunth as a fuel substitute in coal fired power plants

机译:实验室规模的原始和焙烧竹种Guadua angustifolia Kunth共燃,作为燃煤电厂的燃料替代品

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摘要

Bamboo is a potential sustainable biomass source for renewable heat and power production as it presents common fuel characteristics with other biomass feedstocks regarding heating value and chemical composition. This paper presents an evaluation of the combustion behaviour of the bamboo species Guadua angustifolia Kunth, virgin as well as torrefied, in blends with coal or pure, comparing with other biomass feedstocks such as wood and herbaceous biomass. The bamboo pre-treatment and the combustion experiments were carried out at dedicated installations at ECN, including a laboratory scale batch tor-refaction reactor and a combustion simulation test facility. The results on combustion and co-firing reveal that in terms of fouling, the untreated bamboo shows behaviour closer to herbaceous biomass rather than to wood, with specific fouling factors of wood, bamboo and herbaceous biomass of 0.91·10~(-3), 2.9·10~(-3), 3.1·10~(-3) K·m~2·W~(-1)·g~(-1) respectively. Dry torrefaction improves its physical properties by increasing the density and grindability without improving significantly its fouling behaviour while the fouling behaviour of wet torrefied bamboo is similar to woody biomass; the specific fouling factors of dry torrefied and wet torrefied bamboo are 2.4·10~(-3) and 0.89·10~(-3) K·m~2·W~(-1)·g~(-1) respectively. The fouling behaviour of biomass and coal blends lies between the fuels of the blend. Alternative bamboo species were evaluated using the alkali index A; based on their fuel composition. It appears that the fouling behaviour of alternative species is better than for G. angustifolia, therefore these should be further analysed.
机译:竹子是一种潜在的可持续的生物质资源,可用于可再生的热能和电力生产,因为它具有与其他生物质原料有关的热值和化学成分的共同燃料特性。本文介绍了与煤或纯煤混合的原始和焙烤过的竹种Guadua angustifolia Kunth的燃烧行为,并与其他生物质原料(如木材和草本生物质)进行了比较。竹子的预处理和燃烧实验是在ECN的专用设备上进行的,包括实验室规模的间歇式折光反应器和燃烧模拟测试设备。燃烧和共烧的结果表明,就结垢而言,未经处理的竹子表现出的行为更接近于草本生物量而不是木材,木材,竹子和草本生物量的具体结垢因子为0.91·10〜(-3),分别为2.9·10〜(-3),3.1·10〜(-3)K·m〜2·W〜(-1)·g〜(-1)。干烘焙通过增加密度和可磨性来改善其物理性质,而不会显着改善其污垢行为,而湿法烘焙的竹子的污垢行为类似于木质生物质;干焙和湿焙竹的具体结垢因子分别为2.4·10〜(-3)和0.89·10〜(-3)K·m〜2·W〜(-1)·g〜(-1)。生物质和煤混合物的结垢行为介于混合物的燃料之间。使用碱性指数A评估其他竹种;根据它们的燃料成分。看来替代物种的结垢行为要比古铜对虾更好,因此应进一步分析这些问题。

著录项

  • 来源
    《Biomass & bioenergy》 |2014年第6期|28-41|共14页
  • 作者单位

    Energy Research Centre of the Netherlands (ECN), P.O. Box 1, 1755 ZG Petten, The Netherlands;

    Energy Research Centre of the Netherlands (ECN), The Netherlands;

    Energy Research Centre of the Netherlands (ECN), The Netherlands;

    Energy Research Centre of the Netherlands (ECN), The Netherlands;

    Energy Research Centre of the Netherlands (ECN), The Netherlands;

  • 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

    Combustion; Guadua; angustifolia; Kunth; Torrefaction;

    机译:燃烧;瓜杜阿;桔梗昆斯烘焙;

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