...
首页> 外文期刊>Renewable & Sustainable Energy Reviews >Review of the use of additives to mitigate operational problems associated with the combustion of biomass with high content in ash-forming species
【24h】

Review of the use of additives to mitigate operational problems associated with the combustion of biomass with high content in ash-forming species

机译:审查添加剂的使用来减轻与生物量燃烧相关的操作问题,具有灰分形状的高含量

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The impact of additives addition on the combustion behavior of biomass with high content in ash-forming species is evaluated in this review. Their influence on both emissions (particulate matter and gaseous emissions) and deposits formation (fouling and slagging) are here considered. The uncertainty in the availability, under current sustainability criteria, of good-quality woody biomass (i.e. woody biomass with low content in ash-forming species, mainly derived from stem wood), along with the growing demand for biomass fuels, has caused the pellet industry to attempt to diversify the sources of raw material. Other types of biomass such as bark, non woody biomass (cereals and herbaceous materials), and residues from the agricultural industry are also potentially useful as raw materials due to the large volumes available. These fuels present however some challenges. They vary strongly in composition, impacting significantly their combustion behaviour. The high content in ash forming species, such as alkali and alkaline-earth species, chlorine, phosphorous, nitrogen, and silicon can lead to an increase in gaseous (e.g. sulfur oxides and nitrogen oxides) and particulate matter (PM) emissions. They can also lead to operational problems, such as fouling, corrosion, slagging, and agglomeration during the combustion process. There are several routes to mitigate these ash-related problems, whose applicability depends on the technology and scale. In the present review, the use of additives to reduce emissions and deposits formation, as well as further operational problems these may trigger, is evaluated. However, the high heterogeneity in biomass composition and varying nature of the aforementioned combustion issues hinders the possibility to use a "one-size-fits-all" additive, resulting in the need for developing further understanding on the impact of different additives according to biomass composition and combustion conditions. For example, aluminosicates have proven to be effective to reduce fine particulate matter emissions, but they increase the gaseous emissions of HCl and SOx. The impact of Ca-based additives on PM and alkali-induced slagging is inconclusive, although they can capture gaseous emissions such as HCl and SOx. The additive application method and combustion conditions play on top a very significant role. For all this, reaching conclusions on the type of additive, amount, and application method is very challenging. With this work the authors aim at providing an overview of the state-of-art on the use of additives in biomass combustion, as well as to offer a framework to advance in the regulation on the use of additives.
机译:在本综述中,评估了添加剂对生物质的燃烧行为的影响,在本综述中评估了灰形成物种中的高含量。它们对散射(颗粒物质和气体排放)和沉积物形成(污垢和粘合剂)的影响。在当前可持续性标准的可用性下的不确定性,高质量的木质生物量(即,灰色成形物种含量低的木质生物量,主要来自茎木),随着对生物质燃料的需求不断增长,导致颗粒行业试图使原材料来源多样化。其他类型的生物质如树皮,非木质生物量(谷物和草本材料)以及来自农业产业的残留物也可能是由于可用的大量而导致的原材料。然而,这些燃料存在一些挑战。它们在组成中差异很大,影响其燃烧行为显着。灰分成形物种的高含量,例如碱和碱土 - 地球物种,氯,磷,氮和硅,可以导致气态(例如硫氧化物和氮氧化物)和颗粒物质(PM)排放增加。它们还可以导致操作问题,例如在燃烧过程中污垢,腐蚀,粘合和凝聚。有几条路线可以减轻这些与灰关相关的问题,其适用性取决于技术和规模。在本综述中,评估使用添加剂来减少排放和沉积物,以及这些可能触发的进一步操作问题。然而,生物质组成中的高异质性和上述燃烧的不同性质妨碍了使用“单尺寸适合 - 所有”添加剂的可能性,导致进一步了解对不同添加剂的影响的进一步了解生物质的影响组成和燃烧条件。例如,硅酸盐已被证明是有效减少细颗粒物质排放,但它们增加了HCl和Sox的气态排放。 Ca基添加剂对PM和碱诱导的粘液的影响是不确定的,尽管它们可以捕获HCl和Sox等气体排放。添加剂应用方法和燃烧条件在最重要的作用上发挥着重要作用。所有这一切,达到添加剂类型,量和应用方法的结论非常具有挑战性。通过这项工作,作者旨在概述使用生物量燃烧中添加剂的最先进的概述,以及提供框架,以便在使用添加剂的使用调节方面提前。

著录项

相似文献

  • 外文文献
  • 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