标题: 具有二阶段喉部的湿壁型文氏洗涤器之研发
Development of an efficient wetted-wall venturi scrubber with a two-stage throat
作者: 陈信佑
Chen, Shin-You
蔡春进
Tsai, Chuen-Jinn
环境工程系所
关键字: 空污防制;微粒控制设备;文氏洗涤器;air pollution control;fine particles;venturi scrubber
公开日期: 2010
摘要: 传统的文式洗涤器在处理次微米微粒时的压损过高,且在长时间处理高浓度与高黏度微粒时会发生粉尘阻塞喉部的现象,使压损提高,并增加操作成本。本研究开发一种具有二阶段喉部的湿壁型高效率文氏洗涤器,目的在于避免粉尘之阻塞,并提升高浓度细微粒的处理效率。本研究利用微粒在过饱和水蒸气中異相核凝成长的原理來提高文式洗涤器的除尘效率。二段喉部的湿壁型文氏洗涤器设计,分成文氏外套管与文氏内套管兩部分,以便于制造及安装。为避免产生粉尘堆积现象,此文式洗涤器于溢流水槽底部加装兩导管來让清洗文式外套管壁面之废液流出至下方废液储存槽,洗涤后之干净空气与洗涤废液则由文式内套管一方排出,亦即废气中的粉尘洗涤与文式外套管面附着的粉尘洗涤分开。二阶段喉部的湿壁型文氏洗涤器形狀简单且容易制造,成本将较其他设备低廉。
本研究在实验室完成避免文式洗涤器的粉尘阻塞的研究,并完成高效率、低压损的设计參數及操作条件测试。
实验室的研究发现二阶喉部文氏洗涤器可在合理的压损范围内(10.7 inH2O),微粒截取气动直径可低达130 nm,对于气动粒径大于300 nm之油酸微粒去除效率达到80 %以上。对于某石化工厂含有ABS微粒废气之微粒(MMAD:562 nm, σg=1.81)总质量去除效率也可达80 %以上。对于高温制程的废气而言,处理1 CMM之废气一年的操作成本评估约为10.4万元。因此本新型的二阶段喉部文氏洗涤器,可在合理的操作成本范围内,有效解决工厂制程所产生的细微粒及白烟问题。
In traditional venturi scrubbers, the gas pressure drop is too high when removing submicron particles. In addition, particles will be plugged in the venturi throat when particle concentration is high and particles are sticky, which results in high pressure drop and high running cost. In order to avoid the plugging of the venturi throat and improve the removal efficiency of fine particles, this research intends to develop a wetted wall 2-stage venturi scrubber. Heterogeneous growth of fine particles by using super-saturation of water vapor is employed to increase the removal efficiency of the venturi scrubber. The venturi tube of the present design is divided into inner and outer venturi tubes for ease of manufacturing and assembly. There are two connecting tubes that transport the cleaning fluid at the converging section into the liquid storage tank. The scrubbed clean gas will exit from the diverging section of the inner venturi, while the cleaning water for removing deposited particles on the outer venturi’s wall is discharged into the diverging section of the outer venturi to avoid high pressure drop. The current 2-stage venturi scrubber is simple and easy to make. Its cost is lower than other air pollution control devices.The experimental results showed that the cut-off diameter of wetted wall 2-stage venturi scrubber was 130 nm in aerodynamic diameter under a reasonable pressure drop of 10.7 in H2O. The collection efficiency for particles larger than 300 nm in aerodynamic diameter was higher than 80 % and 90 % for oil and salt particles, respectively. More than 80 % total mass removal efficiency was predicted for removing fine particles in the exhaust of an ABS plant (MMAD=562 nm, σg=1.81). To remove fine particles from a high temperature gas exhaust with a flow rate of 1 CMM, the theoretical running cost of this high efficiency venturi scrubber is predicted to be NT 104 thousands per year.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079719524
http://hdl.handle.net/11536/44973
显示于类别:Thesis


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