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1

Munir, Cheryan, a cura di. Ultrafiltration and microfiltration handbook. Lancaster, Pa: Technomic Pub. Co., 1998.

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2

1959-, Lindsey Karen, Crull Anna W e Business Communications Co, a cura di. Membrane microfiltration: Materials, markets & opportunities. Norwalk, Conn., U.S.A: Business Communications Co., 1988.

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3

Beverage microfiltration: A comprehensive guide. Ames, Iowa: Wiley-Blackwell, 2008.

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4

United States. Environmental Protection Agency, a cura di. Microfiltration technology: EPOC Water, Inc. [Washington, D.C.]: U.S. Environmental Protection Agency, [1993], 1993.

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5

Wang, Zhan, a cura di. Modelling of the Microfiltration Process. Singapore: Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-0471-6.

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6

1958-, Zydney Andrew L., a cura di. Microfiltration and ultrafiltration: Principles and applications. New York: M. Dekker, 1996.

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7

Association, American Water Works, a cura di. Microfiltration and ultrafiltration membranes for drinking water. Denver, CO: American Water Works Association, 2016.

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8

Risk Reduction Engineering Laboratory (U.S.), a cura di. DuPont/Oberlin microfiltration technology: Applications analysis report. Cincinnati, Ohio: Risk Reduction Engineering Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1991.

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9

Samer, Adham, a cura di. Development of a microfiltration and ultrafiltration knowledge base. Denver, CO: AWWA Research Foundation and American Water Works Association, 2005.

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10

United States. Environmental Protection Agency. Office of Research and Development e Superfund Innovative Technology Evaluation Program (U.S.), a cura di. EPOC Water Inc. microfiltration technology: Applications analysis report. Cincinnati, OH: National Risk Management Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1995.

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11

Amar, Levy. Analyzing, quantifying and optimizing crossflow microfiltration of fine suspensions. [New York, N.Y.?]: [publisher not identified], 2019.

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12

Prapakornwiriya, Narongechai. Microfiltration based process for the production of mustard protein isolates. Ottawa: National Library of Canada, 2003.

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13

Kiourtsidis, S. Advances in crossflow microfiltration process applied in wastewater treatment-modelling. Manchester: UMIST, 1994.

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14

Rush, I. A. An investigation of the zero-flux concept in crossflow microfiltration. Manchester: UMIST, 1997.

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15

Gupta, Santosh Kumar Sen. Liquid radwaste processing with crossflow microfiltration and spiral wound reverse osmosis =: Traitement des effluents radioactifs liquides par microfiltration tangentielle et osmose inverse sur modules spirales. Chalk River, Ont: Waste Processing Technology Branch, Chalk River Laboratories, 1995.

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16

Peng, Yen-shun. The simulation of tubular membranes in an electrically assisted microfiltration process. Manchester: UMIST, 1996.

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17

Gupta, S. K. Sen. Liquid radwaste processing with crossflow microfiltration and spiral wound reverse osmosis. Chalk River, Ont: Chalk River Laboratories, 1995.

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18

United States. Environmental Protection Agency, a cura di. Membrane microfiltration: E.I. DuPont de Nemours and Company, Inc., Oberlin Filter Company. [Washington, D.C.]: U.S. Environmental Protection Agency, [1991], 1991.

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19

American Water Works Association. Conference. Regulatory issues facing microfiltration & ultrafiltration membrane filtration facilities: Conference workshop SUN 9. Denver, CO: American Water Works Association, 2002.

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20

Chan, K. L. Simulation of the pore structure and perfomance of certain types of microfiltration membranes. Manchester: UMIST, 1988.

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21

M, Clark Mark, Lee Yonghun e Construction Engineering Research Laboratories (U.S.), a cura di. Comparative evaluation of ultrafiltration/microfiltration membranes for removal of nitrocellulose (NC) fines from wastewater. [Champaign, IL]: US Army Corps of Engineers, Construction Engineering Research Laboratories, 1997.

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22

Jafferali, R. A stochastic model to simulate the structure and performance of microfiltration and the growth of animal cell cultures. Manchester: UMIST, 1995.

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23

Trussell, R. Shane. Reclaimed water desalination technologies: A full-scale performance and cost comparison between electrodialysis reversal and microfiltration/reverse osmosis. Alexandria, VA: WateReuse Research Foundation, 2012.

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24

Canada. Dept. of Fisheries and Oceans. Microfiltration and Ultraviolet Irradiation to Eliminate Ceratomyxa Shasta (Myxozoa: Myxosporea), A Salmonid Pathogen, From Fraser River Water, British Columbia. S.l: s.n, 1985.

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25

Starbard, Nathan. Beverage Industry Microfiltration. Wiley & Sons, Incorporated, John, 2009.

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26

Cheryan, Munir. Ultrafiltration and Microfiltration Handbook. Taylor & Francis Group, 1998.

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27

Cheryan, Munir. Ultrafiltration and Microfiltration Handbook. Taylor & Francis Group, 1998.

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28

Rayess, Youssef El. Microfiltration: Principles, Process and Applications. Nova Science Publishers, Incorporated, 2019.

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29

Zeman. Microfiltration and Ultrafiltration: Principles and Applications. CRC Press LLC, 2017.

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30

DuPont/Oberlin microfiltration system, Palmerton, Pennsylvania. [Washington, D.C.?]: U.S. Environmental Protection Agency, Superfund Innovative Technology Evaluation, 1992.

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31

Silva, Claudio Mudado. Flux prediction in high-shear microfiltration. 1999.

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32

Microfiltration and Ultrafiltration: Principles and Applications. CRC Press LLC, 2017.

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33

Leos, J. Zeman, e Andrew L. Zydney. Microfiltration and Ultrafiltration: Principles and Applications. CRC Press LLC, 2017.

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34

(Contributor), Samer Adham, Kuang-ping Chiu (Contributor), Karl Gramith (Contributor) e Joan Oppenheimer (Contributor), a cura di. Development of Microfiltration and Ultrafiltration Knowledge Base. American Water Works Research Foundation, 2005.

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35

Marchant, Justin Quinton. The crossflow microfiltration of concentrated titania dispersions. 1999.

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36

Association, American Water Works, a cura di. Microfiltration and ultrafiltration membranes for drinking water. Denver, CO: American Water Works Association, 2005.

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37

Ismail, Baharum. Crossflow microfiltration of concentrated non-Newtonian slurries. 1996.

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38

Works, American Water. B112-15 Microfiltration and Ultrafiltration Membrane Systems. American Water Works Association, 2015.

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39

AWWA. AWWA B112-19 Microfiltration and Ultrafiltration Membrane Systems. American Water Works Association, 2020.

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40

SITE program demonstration of the DuPont/Oberlin microfiltration technology. Cincinnati, OH: Risk Reduction Engineering Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1992.

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41

Delphos, Paul J. M53 Microfiltration and Ultrafiltration Membranes for Drinking Water, Second Edition. American Water Works Association, 2016. http://dx.doi.org/10.12999/awwa.m53ed2.

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42

Evaluation of crossflow microfiltration for removing nitrocellulose fines from wastewater. Champaign, Ill: US Army Corps of Engineers, Construction Engineering Research Laboratories, 1995.

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43

Zhang, Guan Mei. Crossflow microfiltration modelling and mechanical means to prevent membrane fouling. 1992.

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44

Association, American Water Works. Microfiltration and Ultrafiltratiion Membranes in Drinking Water (M53) (Awwa Manual) (Awwa Manual). American Waterworks Association, 2005.

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45

The production of mustard protein isolates: An aqueous process using microfiltration and enzyme treatment. Ottawa: National Library of Canada, 2002.

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46

Das, Rasel, a cura di. Polymeric Membranes for Water Purification and Gas Separation. Materials Research Forum LLC, 2021. http://dx.doi.org/10.21741/9781644901632.

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Abstract (sommario):
Various organic and synthetic polymers are important materials for the removal of organic and inorganic pollutants from wastewater and the separation of gases. The book discusses various types of membranes for microfiltration, ultrafiltration, nanofiltration, reverse osmosis, forward osmosis etc. A number of nanomaterials are available for the modification of polymeric membranes.
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47

Das, Rasel, a cura di. Polymeric Membranes for Water Purification and Gas Separation. Materials Research Forum LLC, 2021. http://dx.doi.org/10.21741/9781644901632.

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Abstract (sommario):
Various organic and synthetic polymers are important materials for the removal of organic and inorganic pollutants from wastewater and the separation of gases. The book discusses various types of membranes for microfiltration, ultrafiltration, nanofiltration, reverse osmosis, forward osmosis etc. A number of nanomaterials are available for the modification of polymeric membranes.
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