Design of High Efficiency Cyclone for Tiny Cement Industry
Проектирование высокоэффективного циклона для небольшого цементного завода
2011-01-01
SCID: 54.1/rnawrzh7
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Stairmand methodair pollution controlcement industryhigh-efficiency cycloneparticulate matter
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Abstract (AI)
Air pollution is assuming alarming dimensions from industries, automobiles and house hold fuel burning. Cement industry can be classified as highly air polluting industry emitting PM (Particulate Matter) into the atmosphere. This pollutant is in the form of PM (Particulate Matter) is required to be control by installing air pollution control equipment like ESP (Electrostatic Precipitators), Bag houses, Wet scrubbers and cyclone. Cyclone is considered to be cheaper having low maintenance cost. The present paper aims at designing of high efficiency cyclone by using STAIRMAND METHOD for a tiny cement plant. The efficiency achieved with this design is of the order of 91.1 %.
Key Findings
1
Cyclones are identified as a relatively low-cost, low-maintenance alternative among cement-industry air-pollution control technologies.
2
The design addresses particulate emissions from cement production, a significant source of industrial air pollution.
3
The proposed cyclone achieves a reported particulate-removal efficiency of 91.1%.
4
The study designs a high-efficiency cyclone for particulate-matter control in a small cement plant using the Stairmand method.
Research Object
high-efficiency cyclone for particulate-matter control in a tiny cement plant
Research Subject
cyclone design and particulate-matter collection efficiency, achieving 91.1% efficiency
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2011-01-01
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