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Original Articles

Results of Field Measurements of Industrial Particulate Sources and Electrostatic Precipitator Performance

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Pages 117-121 | Published online: 13 Mar 2012

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Qian Du, Lipeng Su, Pengfei Yuan, Huiyi Li, Jianmin Gao, Zhifeng Zhao, Heming Dong & Shaohua Wu. (2017) The Application of Continuum Model in Simulating Char Fragmentation and Residual Ash Formation. Combustion Science and Technology 189:4, pages 643-659.
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Zhichao Li, He Jing & Pratim Biswas. (2016) Capture of submicrometer particles in a pressurized electrostatic precipitator. Aerosol Science and Technology 50:10, pages 1115-1129.
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B. Ryan Ball, Kevin R. Smith, John M. Veranth & Ann E. Aust. (2000) BIOAVAILABILITY OF IRON FROM COAL FLY ASH: Mechanisms of Mobilization and of Biological Effects. Inhalation Toxicology 12:sup4, pages 209-225.
Read now
SampoI. Ylätalo & Jukka Hautanen. (1998) Electrostatic Precipitator Penetration Function for Pulverized Coal Combustion. Aerosol Science and Technology 29:1, pages 17-30.
Read now
Kyung Hoon Yoo, Joon Sik Lee & Myung Do Oh. (1997) Charging and Collection of Submicron Particles in Two-Stage Parallel-Plate Electrostatic Precipitators. Aerosol Science and Technology 27:3, pages 308-323.
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KurtA. Christensen & Hans Livbjerg. (1996) A Field Study of Submicron Particles from the Combustion of Straw. Aerosol Science and Technology 25:2, pages 185-199.
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Martin Mohr, S. Ylätalo, N. Klippel, E.I. Kauppinen, O. Riccius & H. Burtscher. (1996) Submicron Fly Ash Penetration Through Electrostatic Precipitators at Two Coal Power Plants. Aerosol Science and Technology 24:3, pages 191-204.
Read now
FranciscoJ. Romay-Novas & David Y. H. Pui. (1988) Generation of Monodisperse Aerosols in the 0.1–1.0-μm Diameter Range Using a Mobility Classification–Inertial Impaction Technique. Aerosol Science and Technology 9:2, pages 123-131.
Read now
Y. -S. Cheng, R.L. Carpenter, E.B. Barr & C.H. Hobbs. (1985) Size Distribution of Fine Particle Emissions from a Steam Plant with a Fluidized-Bed Coal Combustor . Aerosol Science and Technology 4:2, pages 175-189.
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A. S. Damle, D. S. Ensor & M. B. Ranade. (1982) Coal Combustion Aerosol Formation Mechanisms: A Review. Aerosol Science and Technology 1:1, pages 119-133.
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Dean D. Taylor & Richard C. Flagan. (1982) The Influence of Combustor Operation on Fine Particles from Coal Combustion. Aerosol Science and Technology 1:1, pages 103-117.
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Articles from other publishers (33)

Y. Zhou, Y. Liu, Z. Shi, X. Li & M. Yu. (2024) Enhanced size-dependent efficiency of removal of ultrafine particles: New solution of two-stage electrostatic precipitator with thermophoresis. Separation and Purification Technology 346, pages 127479.
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José Morán, Li Li, Hui Ouyang, Yuechen Qiao, Bernard A. Olson & Christopher J. HoganJr.Jr.. (2023) Characterization of the bidimensional size and charge distribution of sub- and supermicrometer particles in an electrostatic precipitator. Powder Technology 425, pages 118578.
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Renhui Ruan, Qiwei An, Houzhang Tan, Shiyao Jia, Xuebin Wang, Jianghua Peng & Peng Li. (2022) Effect of calcined kaolin on PM0.4 formation from combustion of Zhundong lignite. Fuel 319, pages 123622.
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Anatol Jaworek, Arkadiusz T. Sobczyk, Andrzej Krupa, Artur Marchewicz, Tadeusz Czech, Łukasz Śliwiński & Grzegorz Boryczko. (2021) Hybrid electrostatic filtration system for fly ash particles emission control. Journal of Electrostatics 114, pages 103628.
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Jürgen Oischinger, Michael Steiner, Martin Meiller, Michael Hebauer, Stefan Beer, Robert Daschner, Andreas Hornung & Jan Kramb. (2020) Optimization of the fractional collection efficiencies for electrostatic precipitators used in biomass-fired boilers. Biomass and Bioenergy 141, pages 105703.
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Emma M. Stapleton, Jacob E. Simmering, Robert B. Manges, Octav Chipara, Elizabeth A. Stone, Joseph Zabner, Thomas M. Peters, Ted Herman, Phil M. Polgreen & Alejandro P. Comellas. (2020) Continuous in-home PM2.5 concentrations of smokers with and without a history of respiratory exacerbations in Iowa, during and after an air purifier intervention. Journal of Exposure Science & Environmental Epidemiology 30:5, pages 778-784.
Crossref
Darius Vainorius. 2020. Aerozolio ultrasmulkių kietųjų dalelių sąveikos akustiniame lauke skaitiniai ir eksperimentiniai tyrimai. Aerozolio ultrasmulkių kietųjų dalelių sąveikos akustiniame lauke skaitiniai ir eksperimentiniai tyrimai.
Haolun Xu, Sau Chung Fu, Wing Tong Leung, Tsz Wai Lai & Christopher Y. H. Chao. (2019) Enhancement of submicron particle deposition on a semi-circular surface in turbulent flow. Indoor and Built Environment 29:1, pages 101-116.
Crossref
A. Jaworek, A.T. Sobczyk, A. Krupa, A. Marchewicz, T. Czech & L. Śliwiński. (2019) Hybrid electrostatic filtration systems for fly ash particles emission control. A review. Separation and Purification Technology 213, pages 283-302.
Crossref
Ulrich Kleinhans, Christoph Wieland, Flemming J. Frandsen & Hartmut Spliethoff. (2018) Ash formation and deposition in coal and biomass fired combustion systems: Progress and challenges in the field of ash particle sticking and rebound behavior. Progress in Energy and Combustion Science 68, pages 65-168.
Crossref
Ezzat Jaroudi, Ivan Sretenovic, Greg Evans & Honghi Tran. (2018) Factors affecting particulate removal efficiency of kraft recovery boiler electrostatic precipitators: a technical review. TAPPI Journal 17:05, pages 273-283.
Crossref
Tiffany L.B. Yelverton, Angelina T. Brashear, David G. Nash, James E. Brown, Carl F. Singer, Peter H. Kariher & Jeffrey V. Ryan. (2018) Comparison of gaseous and particulate emissions from a pilot-scale combustor using three varieties of coal. Fuel 215, pages 572-579.
Crossref
Bao-Yu Guo, Ai-Bing Yu & Jun Guo. (2014) Numerical modeling of electrostatic precipitation: Effect of Gas temperature. Journal of Aerosol Science 77, pages 102-115.
Crossref
A.D. Bhanarkar, A.G. Gavane, D.S. Tajne, S.M. Tamhane & P. Nema. (2008) Composition and size distribution of particules emissions from a coal-fired power plant in India. Fuel 87:10-11, pages 2095-2101.
Crossref
Chikao Kanaoka. 2006. Powder Technology. Powder Technology 137 151 .
. 2006. Powder Technology. Powder Technology 153 168 .
Chikao Kanaoka. 2006. Powder Technology Handbook, Third Edition. Powder Technology Handbook, Third Edition.
. 2006. Powder Technology Handbook. Powder Technology Handbook 665 680 .
D. Yu, M.H. Xu, X. Liu, J. Huang & G. Li. (2008) Mechanisms of Submicron and Residual Ash Particle Formation during Pulverised Coal Combustion: A Comprehensive Review. Developments in Chemical Engineering and Mineral Processing 13:3-4, pages 467-482.
Crossref
L. Morawska, V. Agranovski, Z. Ristovski & M. Jamriska. (2002) Effect of face velocity and the nature of aerosol on the collection of submicrometer particles by electrostatic precipitator. Indoor Air 12:2, pages 129-137.
Crossref
Ye Zhuang, Yong Jin Kim, Tai Gyu Lee & Pratim Biswas. (2000) Experimental and theoretical studies of ultra-fine particle behavior in electrostatic precipitators. Journal of Electrostatics 48:3-4, pages 245-260.
Crossref
B. Wehner, T. C. Bond, W. Birmili, J. Heintzenberg, A. Wiedensohler & R. J. Charlson. (1999) Climate-Relevant Particulate Emission Characteristics of a Coal Fired Heating Plant. Environmental Science & Technology 33:21, pages 3881-3886.
Crossref
Kevin R. Smith, John M. Veranth, JoAnn S. Lighty & Ann E. Aust. (1998) Mobilization of Iron from Coal Fly Ash Was Dependent upon the Particle Size and the Source of Coal. Chemical Research in Toxicology 11:12, pages 1494-1500.
Crossref
Kurt A. Christensen, Michael Stenholm & Hans Livbjerg. (1998) The formation of submicron aerosol particles, HCl and SO2 in straw-fired boilers. Journal of Aerosol Science 29:4, pages 421-444.
Crossref
Helena Manninen, Annikki Perkiö, Juha Palonena, Karl Peltola & Juhanl Ruuskanen. (1996) Trace metal emissions from co-combustion of refuse derived and packaging derived fuels in a circulating fluidized bed boiler. Chemosphere 32:12, pages 2457-2469.
Crossref
F.T. Tanasescu & M. Slanina. (1994) Modelling of charged aerosols under pulsed corona. Modelling of charged aerosols under pulsed corona.
S. Ylätalo, E. Kauppinen, J. Joutsensaari, J. Jokiniemi & J. Hautanen. (1993) 46 O 01 Dependence of electrostatic precipitator penetration function on the pulverised coal combustion conditions. Journal of Aerosol Science 24, pages S587-S588.
Crossref
M. W. McElroy, R. C. Carr, D. S. Ensor & G. R. Markowski. (1982) Size Distribution of Fine Particles from Coal Combustion. Science 215:4528, pages 13-19.
Crossref
ROGER J. CHENG. 1982. Energy, Resources and Environment. Energy, Resources and Environment 591 598 .
Warren H. White & David E. Patterson. (1981) On the relative contributions of NO2 and particles to the color of smoke plumes. Atmospheric Environment (1967) 15:10-11, pages 2097-2104.
Crossref
S. K. Friedlander. (2008) FUTURE AEROSOLS OF THE SOUTHWEST: IMPLICATIONS FOR FUNDAMENTAL AEROSOL RESEARCH * . Annals of the New York Academy of Sciences 338:1, pages 588-598.
Crossref
V. Estcourt & N. Frisch. (1980) Measuring and Reporting Fly Ash Resistivity. IEEE Transactions on Power Apparatus and Systems PAS-99:2, pages 573-581.
Crossref
Richard C. Flagan. (1979) Submicron particles from coal combustion. Symposium (International) on Combustion 17:1, pages 97-104.
Crossref

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