1) selective non-catalytic reduction
选择性非催化还原
1.
Development of flue gas denitrification using NH_3 selective non-catalytic reduction;
氨选择性非催化还原烟气脱硝研究进展
2.
Effects of CO content on selective non-catalytic reduction of NO_x
CO含量对烟气选择性非催化还原反应的影响
3.
CHEMKIN code and an elementary reaction kinetics model have been used to simulate the selective non-catalytic reduction process of NO with NH3.
采用基元反应动力学模型,借助CHEMKIN软件对NH3选择性非催化还原NO的过程进行了计算分析,考察了不同反应条件(温度、NH3/NO、停留时间、O2浓度、初始NO浓度)对NO脱除效率的影响,有助于认识SNCR过程的化学反应规律。
2) SNCR
选择性非催化还原
1.
Selective non catalyst reduction (SNCR) is a mature technology for moderate NO x emission control on flue gas.
对烟气脱硝的选择性非催化还原技术进行了介绍。
2.
Experiments were carried out to study the NO_x reduction efficiency of the SNCR(Selective no-catalytic NO_x Reduction) technology using ammonia injection.
在一台小型沉降炉上进行了氨水喷射还原模拟烟气中NOx的选择性非催化还原(selectivenon-catalyticreduction,SNCR)实验研究,同时结合绝热预混模型进行了化学动力学模拟,研究了采用氨水喷射的SNCR技术的诸多影响因素。
3.
Ultra-low NO_x emission of coal-fired boilers can be achieved by adopting the selective non-catalytic reduction(SNCR) technology for separators of large-scale circulating fluidized bed(CFB) boilers.
大型循环流化床(CFB)锅炉分离器区域采用选择性非催化还原(SNCR)脱硝技术可以实现燃煤锅炉的超低NOx排放。
3) SNCR
选择性非催化还原(SNCR)
4) selective non-catalytic reduction (SNCR)
选择性非催化还原 SNCR
6) selective non-catalytic removal
选择非催化还原
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