Academic literature on the topic 'Cement and Bag Filter'

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Journal articles on the topic "Cement and Bag Filter"

1

Numanovich, Abdullayev Ibrohim, and Umirzakov Zuxriddin Axtamjanovich. "Research On The Operation Of Bag Filters For Dust And Gas Cleaning In Cement Production (On The Example Of Factories In The Ferghana Region Of The Republic Of Uzbekistan)." American Journal of Interdisciplinary Innovations and Research 02, no. 11 (2020): 115–23. http://dx.doi.org/10.37547/tajiir/volume02issue11-21.

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Cement production is one of the most common man-made air pollutants. In this regard, the need for dust collection in this process is obvious. The article presents an analysis of the used designs of dust collection devices in the cement production of the Fergana region of the Republic of Uzbekistan. Methods of tissue filter regeneration are analyzed. The results of experimental studies on the state of synthetic fabric bag filters installed on air purifiers from dust and gas flows are presented. The choice of the standard size, design and the required number of fabric bag filters was made. For t
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2

Dang, Xiao Qing, Hong Sheng Hu, and Pang Min. "Numerical Simulation and Application of Gas Flow Distribution of ESP Transformed to Baghouse in Cement Kiln Head." Applied Mechanics and Materials 130-134 (October 2011): 2715–18. http://dx.doi.org/10.4028/www.scientific.net/amm.130-134.2715.

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By using Computational Fluid Dynamics (CFD) method,numerical simulation of gas flow distribution of ESP transform to baghouse in cement kiln head of 6000 t/d production. Through numerically simulation,air volume of every filter bag cell and head-on gas flow velocity distribution of filter bag were displayed. By adjusting the configuration parameter of the gas flow distribution device during the numerical simulation, it gives the result that the manner of installing gas flow distribution device, when the windage of the air volume of every filter bag cell is not more than 5% and the press drop o
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3

Purnomo, Chandra Wahyu, Wiratni Budhijanto, Muziibu Alfisyah, and Triyono. "Improvement of cement plant dust emission by bag filter system." IOP Conference Series: Materials Science and Engineering 316 (March 2018): 012031. http://dx.doi.org/10.1088/1757-899x/316/1/012031.

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4

Ho Sho, Kwang, Sang Joon Park, Yong Jic Kim, Gun Cheol Lee, and Kyoung Min Kim. "Utilization of separator bag filter dust for high early strength cement production." Construction and Building Materials 25, no. 5 (2011): 2318–22. http://dx.doi.org/10.1016/j.conbuildmat.2010.11.027.

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5

Gunawan, Jefri, Fatahula Fatahula, and Juhartono Juhartono. "PERUBAHAN SISTEM KONTROL DARI PLC KE DCS PADA GRUP BAG FILTER 563-BF1." Jurnal Poli-Teknologi 18, no. 3 (2019): 349–60. http://dx.doi.org/10.32722/pt.v18i3.2414.

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Bag filter is an equipment in cement industries that used for handling dust from material or separate fines dust with air to make the area is not dusty and it is not make accumulation material. Bag filter (563-BF1) is used for handling dusty area at outlet ball mill in the cement making process. The working systems of bag filter group (563-BF1) is controlled by PLC (Programmable Logic Control). However, the PLC is obsolete so it takes a long time to handle when damage occurs and causes the risk of production loss reach Rp 1,301,801,760.00. In addition, communication systems between PLC with Ce
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6

Kim, Kyoung Min, Sang Joon Park, and Yong Jic Kim. "Utilization of separator bag filter dust for high early strength cement production: Properties of concrete." Construction and Building Materials 40 (March 2013): 746–52. http://dx.doi.org/10.1016/j.conbuildmat.2012.09.084.

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7

Mohsenzade, F., K. Naddafi ., J. Nouri ., and A. A. Babaie . "Optimization of Bag Filter in a Cement Factory in Order to Increase of Dust Collection Efficiency." Biotechnology(Faisalabad) 5, no. 2 (2006): 130–33. http://dx.doi.org/10.3923/biotech.2006.130.133.

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8

Li, Ye Qing, Huan Zhong Wang, Jiang Zhang, Song Bai Yu, and Wen Juan Miao. "A Feasibility Study on Co-Processing of Soil Contaminated with Heavy Metals in Cement Kilns." Applied Mechanics and Materials 768 (June 2015): 135–41. http://dx.doi.org/10.4028/www.scientific.net/amm.768.135.

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The national general survey manifests that the Chinese soil is suffering from serious contamination, mainly arising from heavy metals (HM). Due to the large amount of heavy metal waste, many researchers have performed the feasibility studies on co-processing this kind of waste in cement kilns. In this paper, we review these results from the perspectives of national standards, the crystal structure of clinker, and the volatility of metals in cement kiln system. The crystal structure of clinker mineral offers physical possibility for the solidification of HM atoms. The volatility studies also in
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9

Ningsih, Rati Yuliar, Fadjar Goembira, Puti Sri Komala, and Nino Perdana Putra. "Emission and Heavy Metal Content Characteristic of Densified Refused Derived Fuels of Oil Sludge and Biomass Combination as an Alternative Fuel for Cement Plant." Indonesian Journal of Environmental Management and Sustainability 3, no. 3 (2019): 100–105. http://dx.doi.org/10.26554/ijems.2019.3.3.100-105.

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Hazardous Waste such Oil Sludge combined with biomass (coconut shell and rice husk) was utilized as an alternative fuel in cement plant in form of Densified-Refused Derived Fuel (D-RDF). D-RDF were Co-Processed with primary fuel into Rotary Kiln in order to reduce usage of fossil fuel and eliminate the hazardous waste by thermal treatment, meanwhile to recover the energy contained in the D-RDF, the utilization of these waste are expected without causing adverse effect into the environment. Co-Processing of D-RDF as alternative fuels into cement plant kiln must follow the regulation applied in
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10

Ebrahimi, Masoud, Seyyed Mohammad Taghi Fatemi Ghomi, and Behrooz Karimi. "Application of the preventive maintenance scheduling to increase the equipment reliability: Case study- bag filters in cement factory." Journal of Industrial & Management Optimization 16, no. 1 (2020): 189–205. http://dx.doi.org/10.3934/jimo.2018146.

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