首页> 外文期刊>Fuel >Investigation into the applicability of Bond Work Index (BWI) and Hardgrove Grindability Index (HGI) tests for several biomasses compared to Colombian La Loma coal
【24h】

Investigation into the applicability of Bond Work Index (BWI) and Hardgrove Grindability Index (HGI) tests for several biomasses compared to Colombian La Loma coal

机译:与哥伦比亚La Loma煤相比,结合功指数(BWI)和Hardgrove可磨性指数(HGI)测试对几种生物质的适用性调查

获取原文
获取原文并翻译 | 示例
           

摘要

With increasing quantities of biomass being combusted in coal fired power stations, there is an urgent need to be able to predict the grindability of biomass in existing coal mills, but currently no standard biomass grindability test exists. In this study, the applicability of the Hardgrove Grindability Index (HGI) and Bond Work Index (BWI) as standard grindability tests for biomass were investigated for commercially sourced wood pellets, steam exploded pellets, torrefied pellets, sunflower pellets, eucalyptus pellets, miscanthus pellets, olive cake and Colombian La Loma coal. HGI predicts the behaviour of fuels in vertical spindle mills and BWI for tube and ball mills. Compared to La Loma (HGI of 46), all biomasses tested performed poorly with low HGI values (14-29). Miscanthus pellets had the highest BWI or Wi at 426 kW h/t. Despite similar HGI values, some untreated biomasses showed lower BWI values (Eucalyptus pellets Wi 87 kW h/t, HGI 22) compared to others (sunflower pellets Wi 366 kW h/t, HGI 20). Torrefied pellets had the lowest Wi (16 kW h/t), with La Loma coal at 23 kW h/t. Wood, miscanthus and sunflower pellets exhibited mill choking during the BWI test, as the amount of fines produced did not increase with an increasing revolution count. An approximate correlation between HGI and BWI was found for the biomass samples which did not experience mill choking in the BWI test. Milling results in this paper suggest that biomass pellets should be composed of pre-densified particles close to the target size in order to minimise the energy use in mills and possibility of mill choking. Our findings would also suggest that the BWI is a valid test for predicting the potential for mill choking of biomass in a tube and ball mill. HGI, however, appears to be a poor method of predicting the grindability of biomass in vertical spindle mills. A new standard grindability test is required to test the grindability of biomasses in such mills. (C) 2015 Elsevier Ltd. All rights reserved.
机译:随着燃煤电厂中燃烧的生物质数量的增加,迫切需要能够预测现有磨煤机中生物质的可磨性,但是目前尚无标准的生物质可磨性测试。在这项研究中,研究了哈德格罗夫可磨性指数(HGI)和粘结功指数(BWI)作为生物质标准可磨性测试的适用性,用于商业来源的木屑颗粒,蒸汽爆炸性颗粒,焙烤颗粒,向日葵颗粒,桉树颗粒,桔梗颗粒,橄榄饼和哥伦比亚La Loma煤炭。 HGI预测立式主轴磨机中燃料的行为,以及管式和球磨机的BWI。与La Loma(HGI为46)相比,所有测试的生物量均表现出差的HGI值(14-29)。芒草颗粒的BWI或Wi最高,为426 kW h / t。尽管HGI值相近,但某些未处理生物质的BWI值(桉树颗粒Wi功率为87 kW h / t,HGI 22)却较低(B葵花籽颗粒Wi为366 kW h / t,HGI 20)。焙烧后的球团矿的Wi含量最低(16 kW h / t),而La Loma煤炭为23 kW h / t。在BWI试验中,木材,桔梗和向日葵颗粒均显示出mill塞现象,因为随着转数的增加,产生的细屑数量并未增加。对于在BWI测试中未经历碾磨的生物质样品,发现HGI和BWI之间存在近似的相关性。本文的研磨结果表明,生物质颗粒应由接近目标尺寸的预致密颗粒组成,以最大程度地减少工厂的能源消耗和工厂堵塞的可能性。我们的发现还表明,BWI是预测管式球磨机中生物质在工厂中窒息潜力的有效测试。然而,HGI似乎是预测立式主轴磨机中生物质可磨性的较差方法。需要新的标准可磨性测试来测试此类磨机中生物质的可磨性。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号