Current and Emerging Techniques for High-Pressure Membrane Integrity Testing
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Stephen R Gray | Eddy R Ostarcevic | Joseph Jacangelo | Marlene J Cran | J. Jacangelo | S. Gray | E. Ostarcevic | M. Cran
[1] Hannes Flühler,et al. Tracer Characteristics of Brilliant Blue FCF , 1995 .
[2] H. Yeh,et al. Single-quantum-dot-based DNA nanosensor , 2005, Nature materials.
[3] Wyatt N Vreeland,et al. Using Image Attributes to Assure Accurate Particle Size and Count Using Nanoparticle Tracking Analysis. , 2017, Journal of pharmaceutical sciences.
[4] S. Panglisch,et al. Development of a new integrity testing system , 2003 .
[5] Arjang Hassibi,et al. A CMOS fluorescent-based biosensor microarray , 2009, 2009 IEEE International Solid-State Circuits Conference - Digest of Technical Papers.
[6] Chun-Yang Zhang,et al. Single quantum dot-based nanosensor for multiple DNA detection. , 2010, Analytical chemistry.
[7] F. Gaboriaud,et al. Effects of pH on plaque forming unit counts and aggregation of MS2 bacteriophage , 2007, Journal of applied microbiology.
[8] Y. Matsui,et al. Comparison of removal performance of two surrogates for pathogenic waterborne viruses, bacteriophage Qβ and MS2, in a coagulation–ceramic microfiltration system , 2009 .
[9] Günter Gauglitz,et al. Surface plasmon resonance sensors: review , 1999 .
[10] P. Smart,et al. An evaluation of some fluorescent dyes for water tracing , 1977 .
[11] Stephaney D. Leskinen,et al. Rapid Ultrafiltration Concentration and Biosensor Detection of Enterococci from Large Volumes of Florida Recreational Water , 2008, Applied and Environmental Microbiology.
[12] D. Lim,et al. A rapid and automated fiber optic-based biosensor assay for the detection of Salmonella in spent irrigation water used in the sprouting of sprout seeds. , 2004, Journal of food protection.
[13] Christopher Yu,et al. Evaluation of methods for reverse osmosis membrane integrity monitoring for wastewater reuse , 2015 .
[14] F. Vollmer. Optical microresonators: label-free detection down to single viral pathogens , 2010 .
[15] A. Baker. Fluorescence excitation-emission matrix characterization of river waters impacted by a tissue mill effluent. , 2002, Environmental science & technology.
[16] Peter J. Scales,et al. Assessment of pressure decay test for RO protozoa removal validation in remote operations , 2016 .
[17] Greg Leslie,et al. Removal Efficiency and Integrity Monitoring Techniques for Virus Removal by Membrane Processes , 2012 .
[18] Benny D. Freeman,et al. Reverse osmosis desalination: water sources, technology, and today's challenges. , 2009, Water research.
[19] Optical microarray biosensors , 2005, Analytical and bioanalytical chemistry.
[20] D. Lim,et al. Detection of microorganisms and toxins with evanescent wave fiber-optic biosensors , 2003, Proc. IEEE.
[21] T. B. Hansen,et al. Comparison of methods for assessing reverse osmosis membrane treatment of shrimp process water. , 2005, Journal of food protection.
[22] Pierre Le-Clech,et al. Production and characterisation of UF membranes by chemical conversion of used RO membranes , 2013 .
[23] S. Minami,et al. Excitation-Emission Matrix Scanning Spectrofluorometer , 1991 .
[24] N. Weisbrod,et al. The use of fluorescent dyes as tracers in highly saline groundwater , 2008 .
[25] Dmitri Ivnitski,et al. Biosensors for detection of pathogenic bacteria , 1999 .
[26] Peng Zhang,et al. ZnO QD@PMAA-co-PDMAEMA nonviral vector for plasmid DNA delivery and bioimaging. , 2010, Biomaterials.
[27] T. Lim,et al. Use of Fluorescein as a Ground Water Tracer in Brackish Water Aquifers , 2007, Ground water.
[28] D W Branch,et al. Detection of viral bioagents using a shear horizontal surface acoustic wave biosensor. , 2008, Biosensors & bioelectronics.
[29] A. Bourlinos,et al. Fabrication of fluorescent nanodiamond@C core–shell hybrids via mild carbonization of sodium cholate–nanodiamond complexes , 2011 .
[30] Nandakishore Rajagopalan,et al. Use of paramagnetic particles in membrane integrity testing , 2008 .
[31] Lan Yang,et al. On-chip single nanoparticle detection and sizing by mode splitting in an ultrahigh- Q microresonator , 2010 .
[32] K. D. Williams,et al. Membranes: A fluorescent technology to ensure ro antiscalant performance , 2003 .
[33] J. Lozier,et al. Monitoring membrane integrity using high sensitivity laser turbidimetry , 2001 .
[34] M. Bieroza,et al. Continuous fluorescence excitation-emission matrix monitoring of river organic matter. , 2010, Water research.
[35] Satoshi Takizawa,et al. Effects of nanoparticles on the ultrafiltration of surface water , 2009 .
[36] Manish Kumar,et al. Reverse osmosis integrity monitoring , 2007 .
[37] N. Jaffrezic‐Renault,et al. Miniaturized biosensor for avian influenza virus detection , 2008 .
[38] María-Isabel Rocha-Gaso,et al. Surface Generated Acoustic Wave Biosensors for the Detection of Pathogens: A Review , 2009, Sensors.
[39] Jae-Hong Kim,et al. Removal of biological and non-biological viral surrogates by spiral-wound reverse osmosis membrane elements with intact and compromised integrity. , 2004, Water research.
[40] Srinivas Sista,et al. Development of a surface plasmon resonance biosensor for the identification of Campylobacter jejuni. , 2007, Journal of microbiological methods.
[41] Matthias I. J. Stich,et al. New Plastic Microparticles and Nanoparticles for Fluorescent Sensing and Encoding , 2007 .
[42] M. Wilf,et al. Design considerations for wastewater treatment by reverse osmosis. , 2005, Water science and technology : a journal of the International Association on Water Pollution Research.
[43] M. Nesladek,et al. Boosting nanodiamond fluorescence: towards development of brighter probes. , 2013, Nanoscale.
[44] Aaron S. Anderson,et al. Waveguide-Based Biosensors for Pathogen Detection , 2009, Sensors.
[45] A. Baker. Fluorescence properties of some farm wastes: implications for water quality monitoring. , 2002, Water research.
[46] F. Gu,et al. Surface plasmon resonance biosensors incorporating gold nanoparticles. , 2012, Macromolecular bioscience.
[47] W. Gernjak,et al. Monitoring reverse osmosis performance: Conductivity versus fluorescence excitation–emission matrix (EEM) , 2013 .
[48] Jurg Keller,et al. Reverse osmosis integrity monitoring in water reuse: The challenge to verify virus removal - A review. , 2016, Water research.
[49] Peter J. Scales,et al. Demonstration of robust water recycling: Hazard analysis and critical control point report. A report of a study funded by the Australian Water Recycling Centre of Excellence , 2015 .
[50] E. Tric,et al. Experimental analysis of groundwater flow through a landslide slip surface using natural and artificial water chemical tracers , 2007 .
[51] Peer C. Kamp,et al. Development of a membrane integrity monitoring strategy for the UF/RO Heemskerk drinking water treatment plant , 2001 .
[52] William E Lee,et al. Detection of Newcastle disease virus using an evanescent wave immuno-based biosensor , 1996 .
[53] James H. Naismith,et al. Membrane integrity — direct turbidity measurement of filtrate from MF membrane modules at an operating potable water treatment plant , 2005 .
[54] Lee Josephson,et al. Magnetic Nanoparticle Sensors , 2009, Sensors.
[55] K. Miura,et al. Simple synthesis of ultra-small nanodiamonds with tunable size and photoluminescence , 2013 .
[56] Dominique Patureau,et al. Virus removal and integrity in aged RO membranes. , 2016, Water research.
[57] S. Arnold,et al. Single virus detection from the reactive shift of a whispering-gallery mode , 2008, Proceedings of the National Academy of Sciences.
[58] Bobby Pejcic,et al. The role of biosensors in the detection of emerging infectious diseases. , 2006, The Analyst.
[59] Robert M. Clark,et al. Application of nanoscale probes for the evaluation of the integrity of ultrafiltration membranes , 2006 .
[60] Benito Jose Marinas,et al. Improving membrane integrity monitoring indirect methods to reduce plant downtime and increase microbial removal credit , 2002 .
[61] Peter Ertl,et al. Microfluidic Systems for Pathogen Sensing: A Review , 2009, Sensors.
[62] R. Trussell,et al. Monitoring the integrity of reverse osmosis membranes , 1998 .
[63] Mark Hernandez,et al. Fluorescent microspheres as virion surrogates in low-pressure membrane studies , 2009 .
[64] R. Stuetz,et al. Probabilistic analysis of fluorescence signals for monitoring dual reticulation water recycling schemes. , 2010, Water science and technology : a journal of the International Association on Water Pollution Research.
[65] S. Ozdemir,et al. Detecting single viruses and nanoparticles using whispering gallery microlasers. , 2011, Nature nanotechnology.
[66] Claudia F. Galinha,et al. Two‐dimensional fluorescence as a fingerprinting tool for monitoring wastewater treatment systems , 2011 .
[67] Z. Kabala,et al. Limitations and potential of commercially available rhodamine WT as a groundwater tracer , 2001 .
[68] Younan Xia,et al. Localized surface plasmon resonance spectroscopy of single silver nanocubes. , 2005, Nano letters.
[69] Kenneth M. Persson,et al. Integrity breaches in a hollow fiber nanofilter - Effects on natural organic matter and virus-like particle removal. , 2016, Water research.
[70] J. Rose,et al. Comparison of sulfur hexafluoride, fluorescein and rhodamine dyes and the bacteriophage PRD-1 in tracing subsurface flow , 2003 .
[71] Sal Giglia,et al. High sensitivity binary gas integrity test for membrane filters , 2008 .
[72] A. C. Pandey,et al. Synthesis of Highly Luminescent Manganese Doped ZnS Nanophosphor , 2006 .
[73] Carme Pastells,et al. Nanoparticle-based biosensors for detection of pathogenic bacteria , 2009 .
[74] Yingyu Li,et al. Recent developments and applications of surface plasmon resonance biosensors for the detection of mycotoxins in foodstuffs. , 2012, Food chemistry.
[75] Frances S. Ligler,et al. RAPTOR: A PORTABLE, AUTOMATED BIOSENSOR , 2000 .
[76] Bing Wu,et al. The roles of bacteriophages in membrane-based water and wastewater treatment processes: A review. , 2017, Water research.
[77] Changwon Suh,et al. Use of fluorescent silica particles for checking the integrity of microfiltration membranes , 2011 .
[78] Fangying Wu,et al. Fluorescent Method for the Determination of Sulfide Anion with ZnS:Mn Quantum Dots , 2009, Journal of Fluorescence.
[79] J. Boudou,et al. Fluorescent nanodiamonds derived from HPHT with a size of less than 10 nm , 2013 .
[80] S. Leone,et al. Excitation wavelength dependence of fluorescence intermittency in CdSe/ZnS core/shell quantum dots. , 2007, Nano letters.
[81] L. Balan,et al. Synthesis, Characterization and Biological Applications of Water-Soluble ZnO Quantum Dots , 2011 .
[82] Bob Carr,et al. Nanoparticle Tracking Analysis A Review of Applications and Usage in the Analysis of Exosomes and Microvesicles , 2013 .
[83] Samer Adham,et al. Low‐pressure membranes: assessing integrity , 1995 .
[84] Wangjing Ma,et al. Easy synthesis of highly fluorescent carbon quantum dots from gelatin and their luminescent properties and applications , 2013 .
[85] A. Baker. Fluorescence excitation-emission matrix characterization of some sewage-impacted rivers. , 2001, Environmental science & technology.
[86] F. Adu. The Virology of the Polio Virus , 2022 .
[87] M. Bieroza,et al. Fluorescence spectroscopy as a tool for determination of organic matter removal efficiency at water treatment works , 2009 .
[88] Philippe Moulin,et al. Application of magnetic nanoparticles for UF membrane integrity monitoring at low-pressure operation , 2010 .
[89] Matthew B. Stewart,et al. Molecular Scale Modeling of Membrane Water Treatment Processes , 2013 .
[90] M. Kitis,et al. Evaluation of biologic and non-biologic methods for assessing virus removal by and integrity of high pressure membrane systems , 2003 .
[91] M. Storey,et al. Fluorescence monitoring at a recycled water treatment plant and associated dual distribution system--implications for cross-connection detection. , 2010, Water research.
[92] Anthony Bennett,et al. Drinking water: Pathogen removal from water – technologies and techniques , 2008 .
[93] Donald R Paul,et al. Reformulation of the solution-diffusion theory of reverse osmosis , 2004 .
[94] R. Trussell,et al. Rejection of MS‐2 virus by RO membranes , 1998 .
[95] John C. Adams. Shedding Light on Continuous Water Monitoring , 2009 .
[96] F. Ligler,et al. Evanescent wave fluorescence biosensors. , 2005, Biosensors & bioelectronics.
[97] Avner Adin,et al. Fluorescent dye labeled bacteriophages--a new tracer for the investigation of viral transport in porous media: 1. Introduction and characterization. , 2002, Water research.
[98] Richard O'Kennedy,et al. Antibody-Based Sensors: Principles, Problems and Potential for Detection of Pathogens and Associated Toxins , 2009, Sensors.
[99] Markus Busch,et al. Engineering Aspects of Reverse Osmosis Module Design , 2010 .
[100] R. Stuetz,et al. Distinguishing Stage 1 and 2 reverse osmosis permeates using fluorescence spectroscopy. , 2009, Water science and technology : a journal of the International Association on Water Pollution Research.
[101] Giyoung Kim,et al. Antibody Immobilization on Waveguides Using a Flow–Through System Shows Improved Listeria monocytogenes Detection in an Automated Fiber Optic Biosensor: RAPTOR™ , 2006, Sensors (Basel, Switzerland).
[102] Yuan Yan,et al. Fluorescence Fingerprint of Waters: Excitation-Emission Matrix Spectroscopy as a Tracking Tool , 2000 .
[103] H. Cui,et al. Growth Mechanism of Flowerlike Gold Nanostructures: Surface Plasmon Resonance (SPR) and Resonance Rayleigh Scattering (RRS) Approaches to Growth Monitoring , 2008 .
[104] Haifang Wang,et al. Fluorescent carbon dots and nanodiamonds for biological imaging: preparation, application, pharmacokinetics and toxicity. , 2012, Current drug metabolism.
[105] R. Stuetz,et al. Characterisation of reverse osmosis permeates from municipal recycled water systems using fluorescence spectroscopy: Implications for integrity monitoring , 2012 .
[106] Mehmet Kitis,et al. Microbial removal and integrity monitoring of ro and NF Membranes , 2003 .
[107] Keith E. Carns,et al. Low‐Pressure Membrane Filtration for Removing Giardia and Microbial Indicators , 1991 .
[108] L. Balan,et al. Folic acid-conjugated core/shell ZnS:Mn/ZnS quantum dots as targeted probes for two photon fluorescence imaging of cancer cells. , 2011, Acta biomaterialia.
[109] Jianhua Zhang,et al. A new integrated potable reuse process for a small remote community in Antarctica , 2016 .
[110] Y. Gogotsi,et al. Wet chemistry route to hydrophobic blue fluorescent nanodiamond. , 2009, Journal of the American Chemical Society.
[111] R. Bro,et al. Tracing dissolved organic matter in aquatic environments using a new approach to fluorescence spectroscopy , 2003 .
[112] Huan-Cheng Chang,et al. Preparation and characterization of green fluorescent nanodiamonds for biological applications , 2009 .
[113] J. Callis,et al. Rapid Scanning Fluorescence Spectroscopy , 1977 .
[114] Yoram Cohen,et al. Pulsed marker method for real-time detection of reverse osmosis membrane integrity loss , 2015 .