Appareils de culture cellulaire! (translation in progress): suppliers, wholesalers and manufacturers on Hellopro
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CAPILLARY REACTOR

CAPILLARY REACTOR

In order to perform small-scale continuous reactions under definite conditions, delay loops are required which have a predetermined reaction volume to ensure a predetermined residence time and can be operated at a defined temperature. A simple setup to meet these requirements is a capillary inserted in a heat transfer fluid. However, the geometrical configuration of the capillary may strongly influence the width of the residence time distribution which should be as small as possible to achieve favorable values of yield and selectivity. The capillary microreactor module consists of a stainless steel capillary multiply coiled in an 8-shaped geometry. The temperature is set by means of two electrically heatable cartridges inserted into the two regions enclosed by the coil. In order to control the reaction temperature, Pt 100 temperature sensors are embodied in the heatable cartridges and attached to the capillary. The 8-shaped configuration in connection with the strong curvature of the coil, which leads to additional secondary flows, results in a favorably narrow residence time distribution. The total volume of the heated capillary is usually 4 mL which corresponds to a residence time adjustable between 0.1 to 20 minutes when regarding a throughput range of 0.2 to 50 mL/min characteristic for a standard HPLC pump. The capillary can be replaced by a corresponding spare part or capillaries made from other materials can be inserted when appropriate for special reactions. >>>
View the product on ehrfeld.com Ehrfeld
APPLIFLEX

APPLIFLEX

The AppliFlex Single Use Bioreactor AppliFlex is the single use bioreactor range designed by Applikon. Manufactured according to the highest quality standards and backed by 50 years of bioreactor and sensor experience, an accurate measurement and control of important parameters is guaranteed. The combination of the bioreactor with sensors and control system offers great opportunities for cGMP applications. >>>
View the product on applikon.co.uk Applikon Biotechnology Ltd
LABORATORY REACTORS LBO

LABORATORY REACTORS LBO

The LBO series is a range of small capacity reactors specifically designed for laboratories, pilot plant and similar applications. The use of the same form of construction and the same glass-linings, as for equipment of larger dimensions (see the AE, BE and CE series), permits the faithful scaling up of laboratory results to industrial scale production. Nominal capacity range 4 ÷ 40 Design data Pressure: - 1 to +6 bar Temperature: -25 to +200 °C Design and calculation codes VSR/ISPESL, AD-MerkbIätter/TÜV, SVTI, ASME VIll div.1, BS 5500, CODAP/DRIRE, Stoomwezen, SA or CE stamp (PED). Construction tolerances To DIN 28006 T2. The details given above refer to the standard reactors. Equipment with different capacities, working pressures and temperatures, construction and test codes etc., to Client's specifications, can also be supplied. >>>
View the product on tycontechnoglass.com Tycon technoglass Groupe - Robbins & Myers
UTR200 - POWERFUL ULTRASONIC REACTOR FOR IN-LINE USE

UTR200 - POWERFUL ULTRASONIC REACTOR FOR IN-LINE USE

The sonoreactor UTR200 (200 watts, 24kHz) works as an ultrasonic bath but at a 50 times higher intensity. Its characteristics in terms of quality are the same as those of the other Hielscher ultrasonic processors, such as the UP200S . In addition, it is dry-running protected. It is suited for the direct or indirect sonication of liquids e.g. for cell disruption, homogenizing or emulsifying . The beaker-shaped sonotrode is machined from one piece in order to prevent leakages. The upper part of the sonotrode is oscillation-free and can be used for mounting the respective accessories for diverse application cases. A corresponding reactor cover takes the Eppendorf tubes or test tubes for indirect sonication. For a more intense sonication of vials and test tubes for processes, such as dispersing, homogenizing and emulsifying, please take a look at our VialTweeter. By means of the reactor cover the chamber is hermetically sealed. If the cover has an additional inlet and outlet the sonoreactor can be used as a flow system. A sieving extension with a bajonet lock takes a pile of sieves for fine grain sizes (diameter 75mm, finest mesh size 5 micron). The ultrasound, which is transmitted to the sieves, accelerates the wet sieving process. Besides the application combination with various accessories, the UTR200 is a powerful alternative to common ultrasonic baths. Technical Data power: 200W power control: amplitude 20-100% pulse range: 0-100% operating frequency: 24kHz dimensions (LxWxH): 120x200x210mm weight: 1.5kg power supply: 230V~, 2A, 50-60Hz 110-120V~, 4A, 50-60Hz >>>
View the product on hielscher.com Hielscher
700 BAR REACTORS

700 BAR REACTORS

Small volume, high pressure autoclaves A range of high pressure stirred autoclaves to 10 litres and 700 bar available as a standard. Constructed from stainless steel or Hastelloy. Small volume high pressure autoclaves with integrated magnetic coupling with rpm measurement, gas entry and vent valves, pressure gauge and bursting disc. Shown is a range of stirred and unstirred autoclaves. Shown are autoclaves rated to 700 bar with pressure gauge, bursting disc, valve and an optional thermocouple. Versions up to 200 bar are available with quick release clamping system. Larger vessels 60 ml and above are available with additional entries and dip pipes, sampling systems, cooling coils, etc. The HTM system incorporates an electrical heater with copper adapters to allow different size bodies to use the same heater while still keeping good heat transfer. The motor is mounted so that it may swing out to allow removal of the vessel. The HTM unit is fitted with all necessary connections to control heating, cooling (via cooling coil) and electrical connections. The HPM pneumatic base unit allows all cover connections (gas, vent, liquid, etc.) and the drive motor to remain in place while the vessel is removed. The vessel is fitted into the heating body which is then pneumatically raised to meet the cover. This allows a greater throughput of reactions without time consuming and fiddly disconnection of services after each run. A control system is available to accurately control heating and rpm while displaying the temperature in the vessel, the rpm and the pressure. >>>
View the product on kenkimble.com Ken Kimble (Reactor Vessels) Ltd
ORGANIC WASTE SYSTEMS

ORGANIC WASTE SYSTEMS

Organic waste, or Bio-waste is an important topic in today’s environmentally conscious world. Bio-waste has an energy value that may be recovered. This is obviously more beneficial to the environment than many other methods of disposal such as land-fill Organic waste systems may be either pneumatic, where the waste is transported to the slurry container, or self-contained where the waste is deposited directly into a unit housed within a standard road container The waste is never exposed to the air after it has been loaded resulting in better hygiene, reduced smell, reduced rodent nuisance and, since waste is reduced in volume and can be held for up to 3 weeks between collections, potentially reduced collection cost The Environmental objective is to install more bio-waste handling plants. As this objective is realised, bio-waste will increasingly be perceived as having an energy value that can be recovered. >>>
View the product on quirepace.co.uk Quirepace Ltd
ADDITIONS

ADDITIONS

The automated addition of liquid reagents into a reactor from a pump is a very common process. Classically, this is performed either volumetrically from a calibrated syringe or gravimetrically from a pump and balance combination. The first planned Lara™ module is an automated additions unit to compliment the Lara™ core system. Where appropriate, the functionality of the Lara modules can also be achieved using third party equipment. Please contact our technical support team for assistance. >>>
View the product on radleys.co.uk Radleys
CAPILLARY REACTOR

CAPILLARY REACTOR

In order to perform small-scale continuous reactions under definite conditions, delay loops are required which have a predetermined reaction volume to ensure a predetermined residence time and can be operated at a defined temperature. A simple setup to meet these requirements is a capillary inserted in a heat transfer fluid. However, the geometrical configuration of the capillary may strongly influence the width of the residence time distribution which should be as small as possible to achieve favorable values of yield and selectivity. The capillary microreactor module consists of a stainless steel capillary multiply coiled in an 8-shaped geometry. The temperature is set by means of two electrically heatable cartridges inserted into the two regions enclosed by the coil. In order to control the reaction temperature, Pt 100 temperature sensors are embodied in the heatable cartridges and attached to the capillary. The 8-shaped configuration in connection with the strong curvature of the coil, which leads to additional secondary flows, results in a favorably narrow residence time distribution. The total volume of the heated capillary is usually 4 mL which corresponds to a residence time adjustable between 0.1 to 20 minutes when regarding a throughput range of 0.2 to 50 mL/min characteristic for a standard HPLC pump. The capillary can be replaced by a corresponding spare part or capillaries made from other materials can be inserted when appropriate for special reactions. >>>
View the product on ehrfeld.com Ehrfeld
AUTOCLAVABLE GLASS BIOREACTORS

AUTOCLAVABLE GLASS BIOREACTORS

The laboratory scale glass bioreactors and fermentors are designed for research applications such as process optimization, screening studies, product optimization, scale up/scale down studies and for educational programs. The systems are built according to the specific demands of a process using an extensive array of standard components. Because of the modularity and flexibility, the user can always adapt the systems to changed process demands. This results in low initial investment and low running costs. The stirred tank reactor (STR) is the most widely used bioreactor type. Glass autoclavable bioreactors and fermentors are available in 1 - 2 - 3 - 5 - 7 - 15 and 20 liter total volume. >>>
View the product on applikon.co.uk Applikon Biotechnology Ltd
CARTRIDGE REACTOR

CARTRIDGE REACTOR

The cartridge reactor is designed to perform heterogeneously catalyzed reactions using a fixed bed catalyst. It comprises a small heatable tubular cartridge with a total volume of 0.5 mL, the packing of which is held between two stainless steel sinter frits. Heat is transferred to the catalyst cartridge from an outer tubular shaft which is equipped with electrical heating cartridges and serves as a preheater of the reactants before entering the catalyst volume. Fluid flow is from the top to the bottom of the cartridge. The temperature of the reaction is measured by means of a Pt 100 temperature sensor inserted in the fixed bed catalyst. The catalyst cartridge can be easily exchanged. Its vertical installation allows replacement even when the module is locked in position. The module is easy to clean after disassembly. >>>
View the product on ehrfeld.com Ehrfeld
BIOREACTORS

BIOREACTORS

Laboratory scale bioreactor systems are available from 1 liters to 20 liters and pilot scale units are in the range of 20 to 200 liters. Large (production) scale vessels are supplied to m3 volumes upon request. * Autoclavable bioreactors (glass), cell culture / fermentation: 1 – 20L * Bio Bench, S.I.P. bioreactors, cell culture / fermentation: 7 – 30L * Pilot Bioreactors, S.I.P. (C.I.P), cell culture / fermentation: 20 – 270L >>>
View the product on applikon.co.uk Applikon Biotechnology Ltd
CARTRIDGE REACTOR

CARTRIDGE REACTOR

The cartridge reactor is designed to perform heterogeneously catalyzed reactions using a fixed bed catalyst. It comprises a small heatable tubular cartridge with a total volume of 0.5 mL, the packing of which is held between two stainless steel sinter frits. Heat is transferred to the catalyst cartridge from an outer tubular shaft which is equipped with electrical heating cartridges and serves as a preheater of the reactants before entering the catalyst volume. Fluid flow is from the top to the bottom of the cartridge. The temperature of the reaction is measured by means of a Pt 100 temperature sensor inserted in the fixed bed catalyst. The catalyst cartridge can be easily exchanged. Its vertical installation allows replacement even when the module is locked in position. The module is easy to clean after disassembly. >>>
View the product on ehrfeld.com Ehrfeld
BIOREACTORS CONTROL CONSOLES I-CONTROL

BIOREACTORS CONTROL CONSOLES I-CONTROL

The i-CONTROL is a fieldbus powered control system and utility console. It is used to control processes in bioreactor systems from laboratory scale to pilot plant and production scale. Due to the variety of I/O offered, it also is possible to apply the i-CONTROL in a Dual bioreactor set-up as well as in a Quad (4 fermenters) configuration. The modular design allows the system to be used with a wide range of industry standard control platform (like Siemens, Allan Bradley and Delta V). >>>
View the product on applikon.co.uk Applikon Biotechnology Ltd
CRYOREACTOR

CRYOREACTOR

The CryoReactor was originally developed to perform continuous small-scale organometallic reactions at low temperatures. The essential prerequisites were precooling of the reactants, mixing at low temperature and chemical transformation in a cooled delay loop ensuring a definite residence time. In order to meet these requirements, a system was designed comprising two capillary-type heat exchangers, a multilamination micromixer and a reaction capillary which are placed together into an insulated steel vessel (“Dewar”) filled with a cryogenic agent. Accordingly, the CryoReactor combines several functions and can be regarded as an integrated unit. The CryoReactor module satisfies completely the prerequisites of the Modular Microreaction System and can be combined with all other modules. Materials in contact with reactants are as usual stainless steel and perfluorinated elastomers and polymers, respectively. The module can easily be connected to the coolant circulation of an external cryostat unit and operated at temperatures down to -100 °C. With some minor modifications the module is similarly appropriate for hightemperature applications. It can be operated up to temperatures of +300 °C. >>>
View the product on ehrfeld.com Ehrfeld
CRYOREACTOR

CRYOREACTOR

The CryoReactor was originally developed to perform continuous small-scale organometallic reactions at low temperatures. The essential prerequisites were precooling of the reactants, mixing at low temperature and chemical transformation in a cooled delay loop ensuring a definite residence time. In order to meet these requirements, a system was designed comprising two capillary-type heat exchangers, a multilamination micromixer and a reaction capillary which are placed together into an insulated steel vessel (“Dewar”) filled with a cryogenic agent. Accordingly, the CryoReactor combines several functions and can be regarded as an integrated unit. The CryoReactor module satisfies completely the prerequisites of the Modular Microreaction System and can be combined with all other modules. Materials in contact with reactants are as usual stainless steel and perfluorinated elastomers and polymers, respectively. The module can easily be connected to the coolant circulation of an external cryostat unit and operated at temperatures down to -100 °C. With some minor modifications the module is similarly appropriate for hightemperature applications. It can be operated up to temperatures of +300 °C. >>>
View the product on ehrfeld.com Ehrfeld
BIOREACTORS CONTROLLERS ADI 1060 BIO CONTROLLER

BIOREACTORS CONTROLLERS ADI 1060 BIO CONTROLLER

The ADI 1060 is a control system developed to control multiple bioreactors with a large number of controlloops. The advanced system offers a great flexibility in configuring and displaying processes using an easy to operate user-interface. The distributed processing design guarantees a high level of reliability. The brains of the system is in the ADI 1060 Bio Controller while the I/O signal processing takes place in the ADI 1040 Bio Interface. >>>
View the product on applikon.co.uk Applikon Biotechnology Ltd
MEANDER REACTOR

MEANDER REACTOR

The meander reactor module is essentially a device with a meander-shaped reaction channel characterized by a total volume of 11 mL and low flow resistance. Further channels closely adjacent to the reaction channel are operated with a heat transfer medium which enables an efficient heat exchange and precise temperature control. The maximum operating pressure is 20 bar. The module has been primarily designed for reactions requiring relatively long residence time, typically in the range of 0.3 to 60 minutes, and involving fluids with high viscosity, typical for instance in the case of polymerisation reactions. It can be completely disassembled and is easy to clean so that even massive fouling or plugging of the reaction channel by resin-like materials results in no major problems. In order to achieve longer residence times, several meander reactor modules are arrangeable to units with correspondingly larger reaction volumes and residence times, respectively. >>>
View the product on ehrfeld.com Ehrfeld
MEANDER REACTOR

MEANDER REACTOR

The meander reactor module is essentially a device with a meander-shaped reaction channel characterized by a total volume of 11 mL and low flow resistance. Further channels closely adjacent to the reaction channel are operated with a heat transfer medium which enables an efficient heat exchange and precise temperature control. The maximum operating pressure is 20 bar. The module has been primarily designed for reactions requiring relatively long residence time, typically in the range of 0.3 to 60 minutes, and involving fluids with high viscosity, typical for instance in the case of polymerisation reactions. It can be completely disassembled and is easy to clean so that even massive fouling or plugging of the reaction channel by resin-like materials results in no major problems. In order to achieve longer residence times, several meander reactor modules are arrangeable to units with correspondingly larger reaction volumes and residence times, respectively. >>>
View the product on ehrfeld.com Ehrfeld




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