首页> 外文会议>NATO Advanced Research Workshop on Advanced Combustion and Aerothermal Technologes: Environmental Protection and Pollution Reductions; 20060515-19; Kiev(UA) >CLEANING OF FLUE GASES OF THERMAL POWER STATIONS FROM ASH AND SULFUR DIOXIDE BY EMULSIFIER: WET CLEANING UNIT
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CLEANING OF FLUE GASES OF THERMAL POWER STATIONS FROM ASH AND SULFUR DIOXIDE BY EMULSIFIER: WET CLEANING UNIT

机译:用乳化剂清洁灰和二氧化硫火力发电厂的烟道气:湿式清洁装置

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This paper presents the results of the development of a unit for the wet cleaning of the flue gases of thermal power stations (TPSs) where coal is used, from ash and sulfur dioxide - the emulsifier. The results of experimental investigations of ash catching, verified by industrial tests, are presented in the article. The ash catching degree for provision of the optimum flow rate parameters is more than 99.9%. The usage of water solutions of reagents (NaOH, Na_2CO_3, NH_3, Ca(OH)_2) of low concentrations as a spraying liquid allows to exploit the emulsifier for sulfur dioxide SQ catching with 80-95% efficiency. Flow rate parameters for the achievement of the required efficiency have been determined experimentally. The experiments have been carried out with prepared model gas, containing a mixture of air (heated up to 160℃) and ash or SO_2 in the concentrations simulating their content in the natural flue gas. It has been determined that there is an increase in efficiency of the ash catching process when there is increase of the velocity and the flow rate of the spraying liquid. As a result, we have determined a range of flow rate parameters when stable operation of the emulsifier is provided with a 99.9% efficiency, with no higher entrainment of splashes. Sodium hydrate NaOH, soda ash Na_2CO_3, ammonia NH_3, slaked lime Ca(OH)_2, limestone CaCO_3, magnesium oxide MgO, and carbamide CO(NH_2)_2 have been selected as absorbents.
机译:本文介绍了一种用于湿式清洁热电厂烟气的装置的结果,该电厂使用的是煤,灰分和二氧化硫(乳化剂)。本文介绍了灰渣捕集的实验研究结果,并通过工业测试进行了验证。提供最佳流量参数的除灰率大于99.9%。使用低浓度试剂(NaOH,Na_2CO_3,NH_3,Ca(OH)_2)的水溶液作为喷雾液,可以利用乳化剂以80-95%的效率捕集二氧化硫SQ。通过实验确定了实现所需效率的流量参数。实验是使用准备好的模型气体进行的,该模型气体包含空气(加热到160℃)和灰分或SO_2的混合物,其浓度模拟了它们在天然气烟道气中的含量。已经确定,当喷射液体的速度和流速增加时,灰烬捕集过程的效率增加。结果,当乳化剂的稳定运行效率达到99.9%,且没有更高的夹带飞溅时,我们确定了一系列流量参数。已选择水合氢氧化钠,纯碱Na_2CO_3,氨NH_3,熟石灰Ca(OH)_2,石灰石CaCO_3,氧化镁MgO和尿素CO(NH_2)_2作为吸收剂。

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