期刊文献+
共找到7篇文章
< 1 >
每页显示 20 50 100
Latest developments for dry and wet dedusting systems for converter steel making 被引量:4
1
作者 Peter PUSCHITZ Thomas LAHNER 《Baosteel Technical Research》 CAS 2010年第S1期133-,共1页
Environmental requirements world wide and in the P.R.of China in particular have increased and authorities are increasing the pressure on steelmakers to comply with always more stringent limits and standards. Modern c... Environmental requirements world wide and in the P.R.of China in particular have increased and authorities are increasing the pressure on steelmakers to comply with always more stringent limits and standards. Modern converter steel making goes along with the innovation and new developments not only for the primary converter process itself but even more for the dedusting technologies.This paper describes the benefits and latest development of advanced off gas cleaning and recovery systems based on dry type cleaning with electrostatic precipitation and wet type gas cleaning based on wet scrubbers.Modern converter dedusting is based on suppressed combustion systems in order to reduce off gas amounts and to be able to use the gas for gas recovery.The dry type primary off gas treatment system based on electrostatic precipitator technology is the most advanced environmental solution available for converter steel making.Dry dedusting has been introduced in China successfully with a significant contribution by Siemens VAI being the market leader for converter dry dedusting systems.Siemens VAI has introduced several design improvements over the last years such as CFD modeling of flow conditions in evaporation cooler,design of chains for dust conveyors,design of ESP inlet,design and thickness of discharge electrodes and operation in energy saving mode.Additionally the DDS process has been successfully implemented in China for the De-P process.The gas recovery system for DDS has been optimized over the years with high quality equipment and integrated automation and control systems.Wet type dedusting for converter gas is a well proven technology for many years and is still widely used due to the simplicity of the process and the lower investment costs.SVAI has continuously improved it's wet dedusting technologies to provide highly energy efficient systems which can achieve lowest levels of clean gas dust while still maintaining a moderate water and energy consumption with simplified process control and standardized process control packages.Main design and process improvements include expansion joints for connection of scrubber to cooling stack,new type of droplet separator,advanced hood pressure control package,ID fan washing system,ID fan speed control system etc.The focus for wet type gas recovery systems is still on maximum safety and reliability.SVAI has also successfully improved the technological packages for converter gas recovery for wet type dedusting systems.The comparison between the two system shows the advantages of dry dedusting mainly being the lowest clean gas dust content, lower operating costs,easier handling for recycling of residuals and no need for a water treatment plants.Wet type dedusting has it's main advantages in the simple process and operation of the system,the flexible layout solutions inside the steel shop as well as generally lower investment costs.An overview on the numerous reference installations for dry- and wet type dedusting systems in China as well as world wide is given. 展开更多
关键词 wet type dedusting systems dry type dedusting systems CONVERTER
下载PDF
The Application of Cold Banding Technology for Dust Removed From BOF Gas Using Dry Dedusting Technology
2
作者 Tang Weijun Zhang Yong Ma Gangping 《Meteorological and Environmental Research》 CAS 2015年第1期14-16,共3页
Firstly, physical and chemical properties of dust removed from BOF gas are analyzed, and then the cold banding technology of dust removed from BOF gas and its application are introduced. Tests have proved that using c... Firstly, physical and chemical properties of dust removed from BOF gas are analyzed, and then the cold banding technology of dust removed from BOF gas and its application are introduced. Tests have proved that using cooled agglomerated pellets made of the dust removed from BOF gas and small amounts of modified starch as a coolant and slagging agent in steel production can bring about considerable economic, social and environmental benefits. 展开更多
关键词 BOF gas Dust removed from BOF gas using dry dedusting technology Cold banding Steelmaking China
下载PDF
宝钢分公司6^#转炉干法烟气除尘系统运行分析 被引量:2
3
作者 王英均 《宝钢技术》 CAS 2008年第1期35-37,共3页
介绍宝钢分公司6#转炉干法烟气除尘系统(DDS)的基本设备情况和设计参数。6#转炉的干法烟气除尘系统在4#,5#转炉使用的基础上做了一些改进,如增大除氧水箱的容量和除氧能力,提高静电除尘系统中电场功率等等。为保证6#转炉干法烟气除尘系... 介绍宝钢分公司6#转炉干法烟气除尘系统(DDS)的基本设备情况和设计参数。6#转炉的干法烟气除尘系统在4#,5#转炉使用的基础上做了一些改进,如增大除氧水箱的容量和除氧能力,提高静电除尘系统中电场功率等等。为保证6#转炉干法烟气除尘系统的稳定运行,达到良好的除尘效果,分析了热负荷试车中的问题,并结合4#,5#转炉烟气净化系统的运行情况,指出了干法烟气除尘系统运行、维护的重点,提出相应的建议及优化措施。 展开更多
关键词 转炉 烟气净化 千法除尘系统
下载PDF
迁钢2650 m^3全干法除尘高炉降料面实践
4
作者 赵满祥 贾军民 《南方金属》 CAS 2011年第3期38-40,共3页
对迁钢2 650 m3全干法除尘高炉降料面操作实践进行了总结.风量、打水量的精确控制使炉顶煤气满足了干法除尘工艺要求,并最终通过准确把握停气、出渣铁时机等关键环节达到了安全、快速、高效地将料面降至风口带以下的目的.
关键词 高炉 干法除尘 降料面
下载PDF
蒸发冷却器喷射用水流量计算和分析 被引量:3
5
作者 张寿康 邬志君 《宝钢技术》 CAS 2008年第1期28-30,共3页
蒸发冷却器是转炉干式除尘系统(DDS)中的一个重要组成部分,起着降低转炉烟气温度、分离烟气中粗灰的作用。蒸发冷却器出口烟气温度的控制是通过控制喷入蒸发冷却器中的水流量来实现的。采集了正处于热负荷试车阶段的6#转炉的一次无间断... 蒸发冷却器是转炉干式除尘系统(DDS)中的一个重要组成部分,起着降低转炉烟气温度、分离烟气中粗灰的作用。蒸发冷却器出口烟气温度的控制是通过控制喷入蒸发冷却器中的水流量来实现的。采集了正处于热负荷试车阶段的6#转炉的一次无间断吹炼过程的相关数据和曲线,对水流量进行了计算、比较和分析。建议适当降低蒸发冷却器出口烟气温度的设定值;调整ID风机的控制,减缓烟气量的波动带来的不利影响;调整吹炼刚开始时喷射水阀门的定开度及维持时间。 展开更多
关键词 干式除尘系统(dds) 蒸发冷却器 水流量
下载PDF
转炉干法除尘冒烟问题的研究和改进
6
作者 王健 《科技与企业》 2013年第8期285-285,共1页
本文主要针对首钢京唐公司近期干法除尘系统除尘效果不佳的情况进行分析和研究。通过对EVC(蒸发冷却器),ESP(静电除尘器)逐一排查,从而找出原因所在,并提出有效的解决方案加以实施,最终取得了很好的效果,同时也为干法除尘在现代化钢铁... 本文主要针对首钢京唐公司近期干法除尘系统除尘效果不佳的情况进行分析和研究。通过对EVC(蒸发冷却器),ESP(静电除尘器)逐一排查,从而找出原因所在,并提出有效的解决方案加以实施,最终取得了很好的效果,同时也为干法除尘在现代化钢铁企业中的应用和实践开拓了新思路。 展开更多
关键词 干法除尘 蒸发冷却器 静电除尘器 除尘效果
下载PDF
干法除尘技术在转炉炼钢的应用与发展
7
作者 任小岩 《节能与环保》 2020年第7期101-102,共2页
本文以首钢京唐钢铁联合责任有限公司3×200t转炉一次烟气干法除尘系统为基础,主要阐述了转炉煤气干法除尘与煤气回收系统的技术工艺,及装备在实际应用中的技术特点和新技术的发展。
关键词 转炉一次烟气干法除尘与煤气回收系统 静电除尘器 计算流体动力模拟 节能控制 最低排放
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部