Details

Title

Separation of Contaminants in The Freeze/Thaw Process

Journal title

Chemical and Process Engineering

Yearbook

2017

Volume

vol. 38

Issue

No 2

Authors

Keywords

freeze crystallization ; snow metamorphism ; landfill leachate ; wastewater ; sludge dewatering

Divisions of PAS

Nauki Techniczne

Coverage

249-264

Publisher

Polish Academy of Sciences Committee of Chemical and Process Engineering

Date

2017.06.30

Type

Artykuły / Articles

Identifier

DOI: 10.1515/cpe-2017-0019 ; ISSN 2300-1925 (Chemical and Process Engineering)

Source

Chemical and Process Engineering; 2017; vol. 38; No 2; 249-264

References

Brimblecombe (1985), Relocation and preferential elution of acidic solute through the snowpack of a small remote high - altitude Scottish catchment, Ann Glaciol, 7, 141. ; Beier (2007), Trickle - freeze separation of contaminants from saline wastewater, Int J Min Reclam Environ, 21, doi.org/10.1080/17480930701197643 ; Vesilind (1990), Freezing of water and wastewater sludge, Environ Eng, 116, doi.org/10.1061/(ASCE)0733-9372(1990)116:5(854) ; Sommerfeld (1970), The classification of snow metamorphism, Glaciol, 9, 3, doi.org/10.3198/1970JoG9-55-3-18 ; Brimblecombe (1987), Observations of the preferential loss of major ions from melting snow and laboratory ice, Water Res, 21, doi.org/10.1016/0043-1354(87)90181-3 ; Tao (2006), b Micromechanics of wastewater sludge floc : Force - deformation relationship at cyclic freezing and thawing, Colloid Interface Sci, 298, doi.org/10.1016/j.jcis.2006.01.002 ; Zapf (1986), Gilje Concentration of impurities during melting of snow made from secondary sewage effluent, Water Sci Technol, 18, 151. ; Marbouty (1980), An experimental study of temperature gradient metamorphism in snow, Glaciol, 26, 303. ; Tao (2006), a Interaction between wastewater - sludge floc and moving ice front, Chem Eng Sci, 61, doi.org/10.1016/j.ces.2006.04.019 ; Reed (1986), A rational method for sludge dewatering via freezing Pollution Available at : http : / / www jstor org / stable, Journal Water Control Federation, 58, 911. ; Dawson (1999), Freeze - thaw dewatering of oil sands fine tails, Can Geotech J, 36, 587, doi.org/10.1139/t99-028 ; Meyer (2009), Organic contaminant release from melting snow Influence of chemical partitioning, Environ Sci Technol, 1, doi.org/10.1021/es8020217 ; Parker (1999), Ultra - rapid freezing of water treatment residuals, Water Res, 33, doi.org/10.1016/S0043-1354(98)00449-7 ; Meyer (2011), Modelling the elution of organic chemicals from a melting homogeneous snow pack, Water Res, 45, doi.org/10.1016/j.watres.2011.04.011 ; Colbeck (1980), Thermodynamics of snow metamorphism due to variations in curvature, Glaciol, 26, 291. ; Halde (1979), Concentration of impurities by progressive freezing, Water Res, 14, 575, doi.org/10.1016/0043-1354(80)90115-3 ; Johannessen (1978), Chemistry of snow meltwater : Changes in concentration during melting, Water Resour Res, 14, 615, doi.org/10.1029/WR014i004p00615 ; Kyprianidou (1990), Freeze concentration of aqueous solutions In ) Crystallization as a separation process Chapter ACS Symposium, Ser, 27. ; Chian (2002), Sludge freezing at high speed Drying, Technol, 20, 1019, doi.org/10.1081/DRT-120003775 ; Chen (2001), High - speed sludge freezing, Water Res, 35, 3502, doi.org/10.1016/S0043-1354(01)00048-3 ; Johannessen (1975), Acid precipitation in Norway : The regional distribution of contaminants in snow and the concentration processes during snowmelt Proceedings of the Isotopes and impurities in snow and ice symposium Grenoble, Int Ass Hydrol Sci Publ, 118, 116. ; Wakisaka (2001), Ice crystallization in a pilot - scale freeze wastewater treatment system, Chem Eng Process, 40, doi.org/10.1016/S0255-2701(00)00112-4 ; Baker (1969), Trace organic contaminant concentration by freezing - III ; Ice washing, Water Res, 3, 717, doi.org/10.1016/0043-1354(69)90013-X ; Di Iaconi (2002), Combined chemical and biological degradation of tannery wastewater by a periodic submerged filter SBBR ), Water Res, 36, 2205, doi.org/10.1016/S0043-1354(01)00445-6 ; Bales (1989), Ion elution through shallow homogeneous snow, Water Resour Res, 25, 1869, doi.org/10.1029/WR025i008p01869 ; Corte (1962), Vertical migration of particles in front of a moving freezing plane, Geophys Res, 67, doi.org/10.1029/JZ067i003p01085 ; Wright (1976), Sewage effluent turned to snow : Provides storage , removes pollutants, Civil Eng, 88, 89. ; Meyer (2006), Measuring the release of organic contaminants from melting snow under controlled conditions, Environ Sci Technol, 40, doi.org/10.1021/es060049q ; Nakamura (1976), The coagulation of particles in suspension by freezing - thawing, Colloid Polym Sci, 254. ; Baker (1967), Trace organic contaminant concentration by freezing Low inorganic aqueous solutions, Water Res, 1, doi.org/10.1016/0043-1354(67)90064-4 ; Gay (2003), Wastewater treatment by radial freezing with stirring effects, Water Res, 37, 2520, doi.org/10.1016/S0043-1354(03)00020-4 ; Geo (2004), Treatment of pulp mill and oil sands industrial wastewaters by the partial spray freezing process, Water Res, 38, doi.org/10.1016/j.watres.2003.10.053 ; Baker (1967), a Trace organic contaminant concentration by freezing - II ; Inorganic aqueous solutions, Water Res, 1, doi.org/10.1016/0043-1354(67)90078-4 ; Muller (1992), Wastewater reuse by freeze concentration with falling film reactor, Water Sci Technol, 26, 1475. ; Montusiewicz (2010), Freezing / thawing effects on anaerobic digestion of mixed sewage sludge, Bioresour Technol, 101, doi.org/10.1016/j.biortech.2009.12.125 ; Cisse (1971), A study of the trapping and rejection of insoluble particles during the freezing of water Growth, Cryst, 10, 67, doi.org/10.1016/0022-0248(71)90047-9 ; Tatarniuk (2009), Freeze separation of salt contaminated melt water and sand wash water at snow storage and sand recycling facilities Cold Reg, Sci Technol, 57, doi.org/10.1016/j.coldregions.2009.03.001

Editorial Board

Editorial Board

Ali Mesbah, UC Berkeley, USA ORCID logo0000-0002-1700-0600

Anna Gancarczyk, Institute of Chemical Engineering, Polish Academy of Sciences, Poland ORCID logo0000-0002-2847-8992

Anna Trusek, Wrocław University of Science and Technology, Poland ORCID logo0000-0002-3886-7166

Bettina Muster-Slawitsch, AAE Intec, Austria ORCID logo0000-0002-5944-0831

Daria Camilla Boffito, Polytechnique Montreal, Canada ORCID logo0000-0002-5252-5752

Donata Konopacka-Łyskawa, Gdańsk University of Technology, Poland ORCID logo0000-0002-2924-7360

Dorota Antos, Rzeszów University of Technology, Poland ORCID logo0000-0001-8246-5052

Evgeny Rebrov, University of Warwick, UK ORCID logo0000-0001-6056-9520

Georgios Stefanidis, National Technical University of Athens, Greece ORCID logo0000-0002-4347-1350

Ireneusz Grubecki, Bydgoszcz Univeristy of Science and Technology, Poland ORCID logo0000-0001-5378-3115

Johan Tinge, Fibrant B.V., The Netherlands ORCID logo0000-0003-1776-9580

Katarzyna Bizon, Cracow University of Technology, Poland ORCID logo0000-0001-7600-4452

Katarzyna Szymańska, Silesian University of Technology, Poland ORCID logo0000-0002-1653-9540

Marcin Bizukojć, Łódź University of Technology, Poland ORCID logo0000-0003-1641-9917

Marek Ochowiak, Poznań University of Technology, Poland ORCID logo0000-0003-1543-9967

Mirko Skiborowski, Hamburg University of Technology, Germany ORCID logo0000-0001-9694-963X

Nikola Nikacevic, University of Belgrade, Serbia ORCID logo0000-0003-1135-5336

Rafał Rakoczy, West Pomeranian University of Technology, Poland ORCID logo0000-0002-5770-926X

Richard Lakerveld, Hong Kong University of Science and Technology, Hong Kong ORCID logo0000-0001-7444-2678

Tom van Gerven, KU Leuven, Belgium ORCID logo0000-0003-2051-5696

Tomasz Sosnowski, Warsaw University of Technology, Poland ORCID logo0000-0002-6775-3766



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