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Experimental evaluation of separation performance of fine particles of circulatory circumfluent cyclone separator system

机译:循环环旋转旋风分离器分离系统细颗粒分离性能的实验评价

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Removal of fine particles from exhaust gases is an importance task currently. These particles, which are hazardous to human health or have to be recovered for products, are difficult to remove by conventional separation technology. In this work, the separation performance of fine dust in a new designed circumfluent circulatory separator system (CCSS) was investigated experimentally. The separator system that we have developed consists mainly of two circumfluent cyclones (CFC) and a separation column. Experiments were carried out to investigate the effects of inlet gas velocity and the refluxing mode on the removal efficiency of fine particles. The separator system showed 100% removal efficiency of particles equal and greater than 1.0 mu m, and 97% for particles 0.3-0.6 mu m in diameter at the inlet gas velocity range of 17-36.5 m/s when the gas discharged from the second separator returned to the separation column. In addition, the pressure drops of CCSS are only about 20% higher than that of the common cyclone. This work demonstrates that CCSS has a low pressure drop and higher removal efficiency of fine particles. Consequently, it provides an easy, cheap and efficient alternative approach for removal of fine particles from gas steam.
机译:从废气中除去细颗粒是目前的重要任务。这些颗粒对人体健康或必须用于产品的危险,难以通过常规分离技术除去。在这项工作中,通过实验研究了新设计的环状循环分离器系统(CCSS)中细粉尘的分离性能。我们开发的分离器系统主要由两个环状旋风分离器(CFC)和分离柱组成。进行实验,以研究入口气体速度和回流模式对细颗粒去除效率的影响。分离器系统显示颗粒的100%颗粒的去除效率,颗粒的颗粒在入口气体速度范围为17-36.5 m / s的入口气体速度范围内的颗粒为0.3-0.6μm。分隔符返回分离栏。此外,CCS的压降仅比公共旋风分离器高约20%。这项工作表明,CCSS具有低压下降和细颗粒的更高的去除效率。因此,它提供了一种简单,便宜和有效的替代方法,用于从气体蒸汽中除去细颗粒。

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