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CiteSeerX — Immobilized Yeast Bioreactor Systems for .

CiteSeerX — Immobilized Yeast Bioreactor Systems for .

CiteSeerX - Document Details (Isaac Councill, Lee Giles, Pradeep Teregowda): Two different types of immobilized yeast bioreactors were examined for continuous fermentation of high-gravity worts. One of these is a fluidized bed reactor (FBR) that employs porous glass beads for yeast immobilization. The second system is a loop reactor containing a porous silicon carbide cartridge (SCCR) for .

Anaerobic Fluidized Bed Membrane Bioreactor for Wastewater .

Anaerobic Fluidized Bed Membrane Bioreactor for Wastewater .

Fluidized glass beads reduce fouling in a novel anaerobic membrane bioreactor. Water Science and Technology 2017, 76 (4), 953-962. DOI: 10.2166/wst.2017.274. Yuli Yang, .

Bioreactors & Fermenters for sale

Bioreactors & Fermenters for sale

BIOENGINEERING DIN-7080 3.5" VIEW DIAMETER BIOREACTOR TANK BOLT-ON SIGHT GLASS. 99.99. 17.42 shipping. or Best Offer. Watch. Wave Biotech PERFCONT Perfusion Controller. 94.99. 17.99 shipping. Watch. Broadley James pH Sensor FermProbe Tpull 130mm. 105.00. 22.00 shipping. or Best Offer. Watch. Kontes Cytostir 882911-8000 Stirred Bioreactor .

US5563068A - Bioreactor - Google Patents

US5563068A - Bioreactor - Google Patents

A stainless steel column housing is capped with an O-ring sealed cover to form a sealed autoclavable sterile chamber. A pair of stainless steel mesh circular cylindrical concentric inner and outer columns are within the chamber. A bed of porous glass spherical beads are packed in the region between the inner and outer mesh columns. The pH and DO are monitored and controlled while culture .

US5563068A - Bioreactor - Google Patents

US5563068A - Bioreactor - Google Patents

A stainless steel column housing is capped with an O-ring sealed cover to form a sealed autoclavable sterile chamber. A pair of stainless steel mesh circular cylindrical concentric inner and outer columns are within the chamber. A bed of porous glass spherical beads are packed in the region between the inner and outer mesh columns. The pH and DO are monitored and controlled while culture .

Aerobic dechlorination of low-chlorinated biphenyls by .

Aerobic dechlorination of low-chlorinated biphenyls by .

Cells of an aerobic three-membered bacterial co-culture, designated as ECO3, capable of cometabolizing and aerobically dechlorinating low-chlorinated biphenyls in the presence of biphenyl, were immobilized on Manville silica beads, on frosted-glass beads and on polyurethane foam cubes in packed-bed bioreactors continuously fed with a biphenyl-saturated air stream.

Bioreactor Study Employing Bacteria with Enhanced Activity .

Bioreactor Study Employing Bacteria with Enhanced Activity .

4.6. Degradation of MC-LR in the Bioreactors. In a closed bioreactor, a glass container was incubated at 20 °C and filled with 60 mL of MC-LR dissolved in filtered freshwater from Dobczyckie Lake. Alginate beads with entrapped cells were mixed on a magnetic stirrer.

Laboratory Bioreactors / Fermentors| Reactors

Laboratory Bioreactors / Fermentors| Reactors

Volume range: 0.2/1.0 liters Sterilization: Autoclavable Vessel: Borosilicate glass single wall vessel Parallel control: Yes (up to 24 units) Use: Bacterial/Cell Culture The Solaris IO Series is a mini fermentor/bioreactor suitable for small scale laboratory applications. It is available in two different H/D ratios and the ideal device for innovative parallel process development (up to 24 .

US4833083A - Packed bed bioreactor - Google Patents

US4833083A - Packed bed bioreactor - Google Patents

The bioreactor utilizes horizontal or radial flow of the culture or growth medium across a packed bed of microcarriers with attached cells or enzymes. The radial flow utilized by the chamber.

Refining bioreactor design using autoclavable glass bonding

Refining bioreactor design using autoclavable glass bonding

glass joints lacks geometric reproducibility, because the glass substrate becomes soft in large areas along the joint, resulting in large deformations. Moreover, clamp-ing glass to other materials such as stainless steel, most frequently applied in bioreactors, is complicated, and restricts the whole design. In addition, clamping can lead

Investigation of parameters affecting a fixed bed .

Investigation of parameters affecting a fixed bed .

A BHK 21 cell line expressing a recombinant antibody was grown in a fixed bed reactor (FBR) system using a porous support made of Siran glass beads. The contribution of five process variables (bead.

CONSIDERATIONS IN THE DESIGN, DEVELOPMENT AND SCALE .

CONSIDERATIONS IN THE DESIGN, DEVELOPMENT AND SCALE .

Jan 01, 1991 · For suspension cells it is a question of settling the cells out, waiting until they have formed small nuclei/aggregates capped on the glass bead, and then increasing the re-circulation rate. These are the two basic approaches but it is largely trial and error depending upon cell type and amount of protein in the medium.

Bioreactor Parts- Chemglass Life Sciences

Bioreactor Parts- Chemglass Life Sciences

Our autoclavable borosilicate glass reactor vessels are available jacketed and unjacketed. They are made from heavy-wall tubing and include permanent graduations.

Bio Reactors- Chemglass Life Sciences

Bio Reactors- Chemglass Life Sciences

Bath Beads Baths Beakers Benchtop Reactor, ChemRxnHub Bioreactors Bellocell Cell Culture Systems Bioreactor Replacement Parts for Applikon® and Broadley-James® Control System, Bioreactor Vertical Side Arm, Bioreactors Blocks Bottles, Carboys & Jars Brushes Bubbler Burets Calibration Weights Carts Cell Culture Celltreat Plastics Centrifuge

Bioreactor Parts- Chemglass Life Sciences

Bioreactor Parts- Chemglass Life Sciences

Bioreactor Replacement Parts for Applikon Biotechnology® and Broadley-James® Brand Reactors. Chemglass Life Sciences is pleased to announce the availability of like-for-like, replacement components for the popular 2, 3, 5, 7 and 15 liter sizes of Applikon and Broadley-James stirred tank bioreactors.

Biodegradation of nonylphenol in a continuous packed-bed .

Biodegradation of nonylphenol in a continuous packed-bed .

A packed bed bioreactor, with 170 ml glass bead carriers and 130 ml medium, was tested for the removal of the endocrine disrupter, nonylphenol, with a Sphingomonas sp. The bioreactor was first continuously fed with medium saturated with nonylphenol in an attempt to simulate groundwater pollution.

(PDF) Bioreactor Design Studies for a Hydrogen-Producing .

(PDF) Bioreactor Design Studies for a Hydrogen-Producing .

Devarapalli et al. harnessed the attribute of this configuration and filled a borosilicate glass column with 6 mm soda lime glass beads [97]. This bioreactor setup had already been proved to .

Microcarrier bead separation and cell harvest using Thermo .

Microcarrier bead separation and cell harvest using Thermo .

contents from the bioreactor to the Harvestainer at a rate of five liters per minute. Microcarrier Bead Trap The bioreactor's fluid contents were pumped through its harvest port, through the Harvestainer's transfer lineset and into the 25 L Microbarrier Labtainer. The Labtainer trapped and captured the microcarrier beads. The cells

Mass transfer and bioremediation of PAHS in a bead mill .

Mass transfer and bioremediation of PAHS in a bead mill .

Glass beads were found to be far superior to Raschig rings for the intended purpose. Three sizes of spherical glass beads were then compared experimentally (1, 3, and 5mm). . 119 mgL-1h-1, which was achieved in a much more complex system. Clearly, the bead mill bioreactor designed during the present work is a simple concept that shows .

The rise of membrane bioreactors - Filtration + Separation

The rise of membrane bioreactors - Filtration + Separation

Oct 05, 2010 · Membrane bioreactors can produce a good quality of water effluent. The wastewater treatment business is a huge, worldwide activity. The membrane bioreactor is becoming the process or equipment of choice when it comes to the treatment of a wide variety of waste waters, including those from municipal sources.

Physical immobilization characteristics of a hybridoma in .

Physical immobilization characteristics of a hybridoma in .

Physical immobilization characteristics of a hybridoma in a glass bead packed‐bed reactor. O. T. Ramírez. Department of Chemical Engineering, Drexel University, Philadelphia, Pennsylvania 19104 . Jorge Elias Kalil, Isaias Raw, Multiparametric analyses of hybridoma growth on glass cylinders in a packed-bed bioreactor system with internal .

Lecture 9b scaling up - LinkedIn SlideShare

Lecture 9b scaling up - LinkedIn SlideShare

Jan 25, 2012 · Lecture 10 Animal Cell Biotechnology Other fermentor Systems: Packed-bed/fixed-bed bioreactor – glass bead column• good for anchorage-dependent cells• 1-100 litre volumes• cells attach to surface of beads (3-5 mm)• aerated medium is pumped in from a secondary vessel• inoculation could be a problem, uneven growth• heterogenous .

ORIGINAL ARTICLE Quantification of genes and gene .

ORIGINAL ARTICLE Quantification of genes and gene .

et al. (2007). The inner diameter of the bioreactor was 2Æ54 cm; each section was packed to a height of 2Æ54 cm (total fixed-bed depth of 10Æ16 cm) with 2-mm glass beads that were etched with hydrofluoric acid as described previously (Choi et al. 2007). Thus, the diame-ter ratio of the column to the glass beads for this system

Fluidized glass beads reduce fouling in a novel anaerobic .

Fluidized glass beads reduce fouling in a novel anaerobic .

This study focuses on the use of fluidized glass beads as turbulence promoters in a laboratory-scale anaerobic membrane bioreactor treating municipal wastewater at 20 °C. The addition of fluidized glass beads into an external tubular ceramic membrane enabled the operation at low crossflow velocities of 0.053–0.073 m/s (mean fluxes between 5 .

Mass transfer and bioremediation of PAHS in a bead mill .

Mass transfer and bioremediation of PAHS in a bead mill .

The optimum conditions for maximum mass transfer occurred using 5 mm spherical glass beads at 50% loading. The increase in mass transfer and biodegradation rates compared to a traditional roller bioreactor were found to be 10 fold and 11 fold, respectively.

Mobius® Single-use Bioreactors | Single-use Manufacturing .

Mobius® Single-use Bioreactors | Single-use Manufacturing .

Scalable, Simple, Smart and Reliable. Mobius® Single-Use Bioreactors are a scalable portfolio of stirred tank bioreactors that provide flexibility by configuring software, hardware, and single-use assemblies for use in fed-batch and perfusion applications.. The Mobius® Bioreactor family includes the bench scale (3 L), pilot-scale (50 L and 200 L), and clinical scale (1000 L and 2000 L .

Biochemical Engineering 2: Performance of Bioreactors .

Biochemical Engineering 2: Performance of Bioreactors .

e.g. wave bioreactors, membrane reactors, sedimentation tanks, biogas fermentors. non-stirred, aerated systems. . Use some type of solid particles in the reactor on the surfaces like glass or polymer beads for adsorption Also do adsorption with macropourous supports like cytolines, cytopores, cultisphere, siran glass beads, or HDPE structures .

double layer glass bioreactors

double layer glass bioreactors

Glass Bioreactor 5L 10L Jacketed Glass Bioreactor Vessel . The glass bioreactor is one of the important types of glass reactors And it is a vessel used to carry out the biological reaction Some of the applications of the bioreactor include the culture of aerobic cells in conducting cellular and enzymatic immobilization processes .

3 Liter Bioreactor Assembly (Cell Culture) - Broadley-James

3 Liter Bioreactor Assembly (Cell Culture) - Broadley-James

The Broadley-James 3 liter bioreactor is the latest in autoclavable benchtop glass vessels. Available in a range of sizes: 3, 5, 7, 15 and 20 liters total volume. All metal components are manufactured from 316L stainless steel with electropolish.

Small Scale Continuous Flow Bioreactor for Enhanced .

Small Scale Continuous Flow Bioreactor for Enhanced .

This project aims to design a novel bioreactor system which supports adherent cell culture, while improving upon cellular adherence and volumetric efficiency. The final design incorporated a packed bed of microcarriers within a continuous pumping system, thereby promoting bead-to-bead migration and the recycling of unattached cells. The system was