1)  reburning
再燃工况
2)  reburning
再燃
1.
Numerical simulation on biomass gas reburning deoxidize NO_x;
生物质气再燃还原NO_x的数值模拟
2.
Experimental study on coal reburning dynamic process for NO_x reduction;
煤粉再燃还原NO_x动态过程试验研究
3.
Study on reburning using straw for nitrogen oxides reduction;
秸秆再燃还原氮氧化物的分析研究
3)  reburn
再燃
1.
Experimental Study and Kinetic Analysis on NO_x Reduction with Pulverized Coal Reburning;
煤粉再燃还原NO_x的实验研究与机理分析
2.
Thermal Experimental Studies and Numerical Simulation of NOx Reduction by Micronized Coal Reburning;
超细粉再燃降低NOx排放的热态试验研究与数值模拟
3.
Experimental Research on Spray Ammonia in Boiler and Advanced Reburning;
炉内喷氨和高级再燃的试验研究
4)  pulverized coal reburning
煤粉再燃
1.
The experiment of pulverized coal reburning was performed with a one-dimensional furnace.
采用煤粉气流均相着火模型和炭粒非均相热力着火模型对煤粉再燃脱硝效率与其着火状态的相互作用进行了研究。
5)  advanced reburning
先进再燃
1.
NO reduction performance of natural gas and petroleum gas advanced reburning;
天然气/液化气先进再燃脱硝特性研究
2.
0 software package and chemical dynamic models established by Miller (1989) and others, a simulation calculation and contrast analysis have been conducted of the principle of reburning, advanced reburning, SNCR (selective non-catalytic reduction) and hydrocarbon-added SNCR reactions.
0软件包中塞状流反应器和Miller等人的化学动力学模型,对再燃、先进再燃、选择性非催化还原(SNCR)以及加入烃类的SNCR反应的原理进行了模拟计算和比较分析,研究了不同反应温度、再燃燃料比和停留时间对脱硝效率的影响。
3.
This paper presents the mechanism of advanced reburning technology and analyzes the main influence parameters during the advanced reburning process.
先进再燃是在再燃基础上将氨基助剂喷入富燃料再燃区,可实现85%左右的NOx脱除率,具有很好的技术优势,是目前国外研究NOx控制技术的热点。
6)  reburning
再燃脱硝
1.
To combine the combustion of biomass with reburning and exploit the large-scale rational utilization of biomass is of momentous significance in establishing of the new field of energy and promoting of environmental protection.
如能将生物质燃烧和再燃脱硝技术结合起来,开发生物质大规模高效合理利用,对于开辟能源新领域,促进环保效益有其重要的意义。
2.
Many technologies have been developed to reduce NO emission, among which reburning is one of the most promising technologies.
为了解决电站锅炉排放的NO_x对环境的污染问题,许多控制NO_x的技术应运而生,其中再燃脱硝是一种很有效的方法。
参考词条
补充资料:泵工况点
分子式:
CAS号:

性质:泵完成输送液体必须具有一定的流量和一定的排出压力。在泵运行中某一时只能有一种相对应的流量和排出压力,这就是泵在此时的工况点。在实际应用时,泵的工况点:离心泵等叶片泵以流量和相对应的扬程表示;往复泵等容积泵以压差和相应的流量表示。以泵的性能曲线表示时,叶片泵的流量和扬程曲线、容积泵的压差和流量曲线与泵排出系统的阻力曲线的交点,即为该泵的运行工况点。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。