首页> 外文OA文献 >Development of a Low NOx Burner System for Coal Fired Power Plants Using Coal and Biomass Blends
【2h】

Development of a Low NOx Burner System for Coal Fired Power Plants Using Coal and Biomass Blends

机译:利用煤和生物质混合物开发用于燃煤电厂的低NOx燃烧器系统

摘要

The low NOx burner (LNB) is the most cost effective technology used in coal-fired power plants to reduce NOx. Conventional (unstaged) burners use primary air for transporting particles and swirling secondary air to create recirculation of hot gases. LNB uses staged air (dividing total air into primary, secondary and tertiary air) to control fuel bound nitrogen from mixing early and oxidizing to NOx; it can also limit thermal NOx by reducing peak flame temperatures. Previous research at Texas A&M University (TAMU) demonstrated that cofiring coal with feedlot biomass (FB) in conventional burners produced lower or similar levels of NOx but increased CO. The present research deals with i) construction of a small scale 29.31 kW (100,000 BTU/hr) LNB facility, ii) evaluation of firing Wyoming (WYO) coal as the base case coal and cofiring WYO and dairy biomass (DB) blends, and iii) evaluating the effects of staging on NOx and CO.Ultimate and Proximate analysis revealed that WYO and low ash, partially composted, dairy biomass (LA-PC-DB-SepS) had the following heat values and empirical formulas: CH0.6992N0.0122O0.1822S0.00217 and CH_1.2554N_0.0470O_0.3965S_0.00457. The WYO contained 3.10 kg of Ash/GJ, 15.66 kg of VM/GJ, 0.36 kg of N/GJ, and 6.21 kg of O/GJ while LA-PC-DB-SepS contained 11.57 kg of Ash/GJ, 36.50 kg of VM/GJ, 1.50 kg of N/GJ, and 14.48 kg of O/GJ.The construction of a LNB nozzle capable of providing primary, swirled secondary and swirled tertiary air for staging was completed. The reactor provides a maximum residence time of 1.8 seconds under hot flow conditions. WYO and DB were blended on a mass basis for the following blends: 95:5, 90:10, 85:15, and 80:20. Results from firing pure WYO showed that air staging caused a slight decrease of NOx in lean regions (equivalence ratio, greater than or equal to 1.0) but an increase of CO in rich regions (=1.2). For unstaged combustion, cofiring resulted in most fuel blends showing similar NOx emissions to WYO. Staged cofiring resulted in a 12% NOx increase in rich regions while producing similar to slightly lower amounts of NOx in lean regions. One conclusion is that there exists a strong inverse relationship between NOx and CO emissions.
机译:低NOx燃烧器(LNB)是燃煤电厂用于减少NOx的最具成本效益的技术。常规(无级)燃烧器使用一次空气来输送颗粒,并使二次空气回旋以形成热气体的再循环。 LNB使用分段空气(将总空气分为一次,二次和三次空气)来控制与燃料结合的氮,防止其过早混合并氧化成NOx;它还可以通过降低峰值火焰温度来限制热NOx。德克萨斯农工大学(TAMU)的先前研究表明,在常规燃烧器中将煤与肥育场生物质(FB)一起烧制产生的NOx含量较低或相似,但CO含量增加。 / hr)LNB设施,ii)评估以怀俄明(WYO)煤为基本案例的煤,以及将WYO和乳品生物质(DB)混合物共烧,以及iii)评估分级对NOx和CO的影响。 WYO和低灰分的部分堆肥奶类生物质(LA-PC-DB-SepS)具有以下热值和经验公式:CH0.6992N0.0122O0.1822S0.00217和CH_1.2554N_0.0470O_0.3965S_0.00457。 WYO包含3.10千克灰/GJ、15.66千克VM / GJ,0.36千克N / GJ和6.21千克O / GJ,而LA-PC-DB-SepS包含11.57千克灰/GJ、36.50千克灰/ GJ VM / GJ,1.50 kg的N / GJ和14.48 kg的O / GJ.LNB喷嘴的构造已经完成,该喷嘴可以提供一次,二次涡流和三次涡流供分段使用。在热流条件下,反应器的最大停留时间为1.8秒。将WYO和DB混合成以下混合物:95:5、90:10、85:15和80:20。燃烧纯WYO的结果表明,空气分级使稀薄区域的NOx略有下降(当量比,大于或等于1.0),而富裕区域的CO上升(= 1.2)。对于无级燃烧,共燃导致大多数混合燃料显示出与WYO相似的NOx排放。分阶段共烧导致富油区的NOx含量增加了12%,而贫油区的NOx含量却略低。一个结论是,NOx和CO排放之间存在很强的反比关系。

著录项

  • 作者

    Gomez Patsky O.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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