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室燃炉共处置危险废物研究现状及其发展思考 被引量:2
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作者 蒋旭光 张绍睿 严建华 《化工进展》 EI CAS CSCD 北大核心 2016年第7期2195-2204,共10页
室燃炉共处置危险废物作为一种新兴的危险废物焚烧处置技术,具有锅炉资源丰富、改造成本低、废物破坏率高等优点,可缓解危险废物处置能力不足现状。虽然目前国内外已有一些基础研究,但仍存在尚无大规模连续共处置经验、缺少对共处置危... 室燃炉共处置危险废物作为一种新兴的危险废物焚烧处置技术,具有锅炉资源丰富、改造成本低、废物破坏率高等优点,可缓解危险废物处置能力不足现状。虽然目前国内外已有一些基础研究,但仍存在尚无大规模连续共处置经验、缺少对共处置危险废物时污染物排放规律和对室燃炉性能影响等技术性问题的研究。本文介绍了国内外室燃炉共处置危险废物的研究现状,同时介绍了具有相同处置原理、极具参考价值的室燃炉共处置污水污泥、固体回收废物的研究现状,分析了室燃炉共处置废物燃料时细颗粒物和气体污染物排放规律、重金属元素在不同灰分中的分配比例以及共处置对于锅炉运行工况的影响。最后指出了实现室燃炉共处置危险废物的大规模工业应用必须满足的三项要求,提出了对室燃炉共处置危险废物未来研究重点的思考。 展开更多
关键词 室燃炉 共处置 废物处理 环境 回收
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ВВД—4型锅炉改造简介 被引量:1
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作者 孙海琦 《设备维修》 1981年第4期38-39,共2页
宣化钢铁公司动力厂将ВВД—4型旧锅炉改造成煤粉室燃炉,投资较少,取得了提高出力,降低煤耗,改善了劳动条件的效果。但锅炉指标还未达到国内先进水平。改造的内容主要是①增加辐射受热面积和空气预热器,②增加一台风扇式磨煤机及两台... 宣化钢铁公司动力厂将ВВД—4型旧锅炉改造成煤粉室燃炉,投资较少,取得了提高出力,降低煤耗,改善了劳动条件的效果。但锅炉指标还未达到国内先进水平。改造的内容主要是①增加辐射受热面积和空气预热器,②增加一台风扇式磨煤机及两台蜗壳式燃烧器,改变了燃烧方式,③采用布风点火。改造后的效果如下: 展开更多
关键词 改造 风扇式磨煤机 辐射受热面 室燃炉 烧器 烧方式 动力厂 两台 蜗壳 积和
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技术研究开发与新燃煤理论
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作者 李德福 《环境研究与监测》 2015年第4期13-19,65,共8页
作者通过多年对燃煤设备的潜心研究,提出了燃煤理论的新概念,即不但使煤中炭得到充分燃烧,而且可使煤在高于1400℃、并有含水蒸汽的高温热风供给条件下,使煤气化和高温裂解再燃烧,这一理论在研制多膛(室)室燃炉中得到验证,其热效率突破1... 作者通过多年对燃煤设备的潜心研究,提出了燃煤理论的新概念,即不但使煤中炭得到充分燃烧,而且可使煤在高于1400℃、并有含水蒸汽的高温热风供给条件下,使煤气化和高温裂解再燃烧,这一理论在研制多膛(室)室燃炉中得到验证,其热效率突破100%,达到188.05%,并使煤低位发热值成倍的增加,排烟黑度降为零级,节能和减排效果均达到80%以上,该技术能推动行业革命性的发展。 展开更多
关键词 煤新理论 多膛()室燃炉 碳氢化合物 气化裂解 热效率 低位发热值
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Conversion of Fuel-N to N2O and NOx during Coal Combustion in Combustors of Different Scale 被引量:3
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作者 周昊 黄燕 +2 位作者 莫桂源 廖子昱 岑可法 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第9期999-1006,共8页
With focus on investigating the effect of combustor scale on the conversion of fuel-N to NOx and N20, experiments are carried out in three combustors, including single coal particle combustion test rig, laboratory sca... With focus on investigating the effect of combustor scale on the conversion of fuel-N to NOx and N20, experiments are carried out in three combustors, including single coal particle combustion test rig, laboratory scale circulating fluidized-bed boiler (CFB) and full scale CFB in this work. For single coal particle combustion, the majority of f-uel-N (65%-82%) is released as NOx, while only a little (less than 8%) fuel-N yields N20. But in labora- tory scale CFB, the conversion of fuel-N to N20 is increases, but the conversion of fuel-N to NOx is quite less than that of single coal particle combustion. This is because much char in CFB can promote the NOx reduction by in- creasing N20 formation. In full scale CFB, both of the conversion of fuel-N to NOx and the conversion of fuel-N to N20 are smaller than laboratory scale CFB. 展开更多
关键词 fuel-N N2O NOx COAL fluidized bed
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Parametric Study of Turbulent Flow in a Three-Dimensional Side-Dump Combustor
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作者 T.M.Liou 《Journal of Thermal Science》 SCIE EI CAS CSCD 1993年第4期282-287,共6页
Turbulent flows in a three-dimensional side-dump combustor under various side-inlet angles and head heights are presented in terms of the axial mean velocity,swirl intensity,size of the head recirculation zone,and fra... Turbulent flows in a three-dimensional side-dump combustor under various side-inlet angles and head heights are presented in terms of the axial mean velocity,swirl intensity,size of the head recirculation zone,and fraction of the inlet mass flow rate transported into the head region.The turbulence model adopted is the algebraic Reynolds stress(k-ε-A)model.The effect of the side-inlet angle and the head height on the characteristics of the confined impinging flows are documented and some improved explanations to the existence of the optimum inlet angle and head height are addressed in this study. 展开更多
关键词 k-ε-A model side-dump combustor side-inlet angle head height
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Experimental Study on Combustion Characteristics and NOX Emissions of Pulverized Anthracite Preheated by Circulating Fluidized Bed 被引量:18
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作者 WANG Jun ZHU Jian-guo LU Qing-gang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第4期355-361,共7页
A 30 kW bench-scale rig of pulverized anthracite combustion preheated by a circulating fluidized bed (CFB) was developed. The CFB riser has a diameter of 90 mm and a height of 1,500 mm. The down-fired combustion cha... A 30 kW bench-scale rig of pulverized anthracite combustion preheated by a circulating fluidized bed (CFB) was developed. The CFB riser has a diameter of 90 mm and a height of 1,500 mm. The down-fired combustion chamber (DFCC) has a diameter of 260 mm and a height of 3,000 mm. Combustion experiments were carded out using pulverized anthracite with 6.74% volatile content. This low volatile coal is difficult to ignite and burn out. Therefore, it requires longer burnout time and higher combustion temperature, which results in larger NOx emis- sions. In the current study, important factors that influence the combustion characteristics and NOx emissions were investigated such as excess air ratio, air ratio in the reducing zone, and fuel residence time in the reducing zone. Pulverized anthracite can be quickly preheated up to 800~C in CFB when the primary air is 24% of theo- retical air for combustion, and the temperature profile is uniform in DFCC. The combustion efficiency is 94.2%, which is competitive with other anthracite combustion technologies. When the excess air ratio ranges from 1.26 to 1.67, the coal-N conversion ratio is less than 32% and the NOx emission concentration is less than 371 mg/m^3 (@6% O2). When the air ratio in the reducing zone is 0.12, the NOx concentration is 221 mg/m^3 (@6% O2), and the coal-N conversion ratio is 21%, which is much lower than that of other boilers. 展开更多
关键词 circulating fluidized bed preheat pulverized anthracite NOx
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Numerical Investigation of the Flow inside the Combustion Chamber of a Plant Oil Stove
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作者 B. Pritz M. Werler +1 位作者 H. Wirbser M. Gabi 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第5期491-496,共6页
Recently a low cost cooking device for developing and emerging countries was developed at KIT in cooperation with the company Bosch und Siemens Hausger^ite GmbH. After constructing an innovative basic design further d... Recently a low cost cooking device for developing and emerging countries was developed at KIT in cooperation with the company Bosch und Siemens Hausger^ite GmbH. After constructing an innovative basic design further development was required. Numerical investigations were conducted in order to investigate the flow inside the combustion chamber of the stove under variation of different geometrical parameters. Beyond the performance improvement a further reason of the investigations was to rate the effects of manufacturing tolerance problems. In this paper the numerical investigation of a plant oil stove by means of RANS simulation will be presented. In or- der to reduce the computational costs different model reduction steps were necessary. The simulation results of the basic configuration compare very well with experimental measurements and problematic behaviors of the ac- tual stove design could be explained by the investigation. 展开更多
关键词 plant oil stove cooking device fuel evaporation combustion chamber CFD RANS
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