Automated Liquid–Liquid Displacement Porometry (LLDP) for the Non-Destructive Characterization of Ultrapure Water Purification Filtration Devices

Author:

Peinador René I.1ORCID,Darbouret Daniel2,Paragot Christophe2,Calvo José I.34ORCID

Affiliation:

1. Institut de la Filtration et des Techniques Séparatives (IFTS), Rue Marcel Pagnol, 47510 Foulayronnes, France

2. Millipore S.A.S., (affiliate of Merck KGaA, Darmstadt, Germany), 78280 Guyancourt, France

3. Departamento de Física Aplicada, ETSIIAA, Universidad de Valladolid, 34071 Palencia, Spain

4. Institute of Sustainable Processes (ISP), Dr. Mergelina s/n, 47071 Valladolid, Spain

Abstract

This scientific publication presents a novel modification of the liquid–liquid displacement porosimetry (LLDP) method, aiming for the non-destructive automated analysis of water purification membrane filtration devices in the microfiltration (MF) and ultrafiltration (UF) range. The technical adaptation of LLDP enables the direct in-line porosimetric analysis of commercial filtration devices, avoiding the filtration devices’ destruction. Six commercially available filtration devices with polyethersulfone (PES) and polysulfone (PS) membranes were studied using an improved device developed by the IFTS, which was based on a commercial LLDP instrument. The filtration devices were evaluated in three different configurations: flat disks, hollow fibers, and pleated membranes. The results obtained using the proposed method were compared with other characterization techniques, including submicronic efficiency retention, image analysis of scanning electron microscopy (SEM), and gas–liquid displacement porosimetry (GLDP). The comparison of the results demonstrated that the proposed method accurately determined the porosimetric characteristics of the filters. It proved to be a precise technique for the non-destructive in-line evaluation of filter performance, as well as for periodic quality control and the fouling degree assessment of commercial filtration devices. This modified LLDP approach offers significant potential for the advanced characterization and quality assessment of water purification membrane filtration devices, contributing to improved understanding and optimization of their performance.

Funder

French Nouvelle Aquitaine Region

Publisher

MDPI AG

Subject

Filtration and Separation,Chemical Engineering (miscellaneous),Process Chemistry and Technology

Reference30 articles.

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2. Ultrafiltration;Bechhold;Z. Chem. Ind. Kolloide,1908

3. (2015). Standard Test Method for Determining Bacterial Retention of Membrane Filters Utilized for Liquid Filtration (Standard No. ASTM F838−20).

4. Mahon, H.I. (1966). Permeability Separatory Apparatus, Permeability Separatory Membrane Element, Method of Making the Same and Process Utilizing the Same. (3,228,876), U.S. Patent.

5. Mahon, H.I. (1966). Permeability Separatory Apparatus and Process Utilizing Hollow Fibers. (3,228,877), U.S. Patent.

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