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Looking to buy the best Metrohm Chromatography System for sale? Get Quotes sends your requirements to expert suppliers in Australia so you get personalised quotes to compare Chromatography System prices, specifications, features and terms then choose the one that’s right for you. Also compare servicing, consumables and reviews, so you can buy with confidence.
Metrohm | Precision Instruments Metrohm AG is an internationally active producer of precision instruments for chemical analysis, in particular ion analysis, based in Herisau, Switzerland. Metrohm is the leading manufacturer of titration devices and one of the two biggest manufacturers of ion chromatography systems.
What are the different types of chromatography systems available in Australia?
However, there are different types of chromatography systems that are commonly used in laboratories worldwide, including:
Gas chromatography (GC)
Liquid chromatography (LC)
High-performance liquid chromatography (HPLC)
Ion chromatography (IC)
Size-exclusion chromatography (SEC)
Affinity chromatography
Thin-layer chromatography (TLC)
Paper chromatography
Each of these chromatography systems has its own advantages and limitations, and the choice of system depends on the specific application and the type of sample being analyzed.
What is the cost of a chromatography system in Australia?
However, the cost of a chromatography system in Australia can vary depending on the type and specifications of the system. Generally, the cost can range from a few thousand dollars to tens of thousands of dollars. It is best to consult with a supplier or manufacturer for specific pricing information.
What are the key features to look for when buying a chromatography system?
When buying a chromatography system, it is important to consider the following key features:
Type of chromatography: There are different types of chromatography such as gas chromatography (GC), liquid chromatography (LC), and ion chromatography (IC). Choose the type that is suitable for your application.
Column: The column is the heart of the chromatography system. Consider the column size, material, and packing material.
Detector: The detector is used to measure the analyte concentration. Choose a detector that is sensitive, selective, and compatible with your sample.
Software: The software is used to control the chromatography system and analyze the data. Look for software that is user-friendly, has advanced features, and can handle large data sets.
Pump: The pump is used to deliver the mobile phase to the column. Choose a pump that is accurate, precise, and can deliver a wide range of flow rates.
Sample injection system: The sample injection system is used to introduce the sample into the chromatography system. Choose a system that is reliable, precise, and can handle a wide range of sample volumes.
Mobile phase: The mobile phase is the solvent that carries the sample through the column. Choose a mobile phase that is compatible with your sample and column.
Column oven: The column oven is used to control the temperature of the column. Choose an oven that is accurate, precise, and can maintain a stable temperature.
Column switching: Column switching allows you to switch between different columns without stopping the chromatography system. Choose a system that has a reliable and fast column switching mechanism.
Maintenance and support: Consider the availability of spare parts, technical support, and maintenance services. Choose a system that is easy to maintain and has good customer support.
What is the difference between HPLC and GC chromatography systems?
HPLC (High Performance Liquid Chromatography) and GC (Gas Chromatography) are two different types of chromatography systems used to separate and analyze different compounds in a sample. The main difference between the two is the type of mobile phase used. HPLC uses a liquid mobile phase, while GC uses a gas mobile phase.
In HPLC, the sample is dissolved in a liquid mobile phase and passed through a stationary phase, which separates the different components based on their chemical properties. HPLC is typically used for separating and analyzing non-volatile compounds, such as proteins, peptides, and carbohydrates.
In GC, the sample is vaporized and passed through a stationary phase, which separates the different components based on their boiling points and vapor pressures. GC is typically used for separating and analyzing volatile compounds, such as hydrocarbons, fatty acids, and alcohols.
Overall, the choice between HPLC and GC depends on the type of sample being analyzed and the properties of the compounds of interest.
What is the maintenance required for a chromatography system?
The maintenance required for a chromatography system includes regular cleaning of the system components, such as the column, detector, and injector, to prevent contamination and ensure accurate results. The system should also be calibrated regularly to ensure accurate measurements and peak identification. Other maintenance tasks may include replacing worn or damaged parts, checking for leaks, and monitoring system performance. It is important to follow the manufacturer's recommended maintenance schedule and procedures to ensure optimal system performance and longevity.
What is the warranty period for a chromatography system?
However, the warranty period for a chromatography system may vary depending on the manufacturer, model, and type of system. It is best to check the product specifications or contact the manufacturer for more information about the warranty period.
What is the delivery time for a chromatography system in Australia?
There is no specific answer to this question as delivery times for chromatography systems in Australia can vary depending on factors such as the supplier, the specific system being ordered, and any potential delays in shipping or customs clearance. It is best to contact the supplier directly for an estimated delivery time.
What is the installation process for a chromatography system?
The installation process for a chromatography system involves several steps, including site preparation, system assembly, and system testing. Site preparation involves ensuring that the location where the system will be installed is suitable and meets the necessary requirements for power, ventilation, and other environmental factors. System assembly involves assembling the various components of the chromatography system, including the columns, pumps, detectors, and other accessories. System testing involves verifying that the system is functioning properly and that all components are working together as expected. This may involve running test samples through the system and analyzing the results to ensure that the system is producing accurate and reliable data. Once the system has been installed and tested, it can be used for a variety of chromatography applications, including analytical and preparative chromatography, protein purification, and other applications.
What is the training required to operate a chromatography system?
The training required to operate a chromatography system varies depending on the type of system and the level of expertise required. Generally, a basic understanding of chemistry and laboratory safety is necessary. Specific training may include learning how to prepare samples, set up the system, calibrate instruments, and interpret results. Additional training may be required for more advanced techniques such as high-performance liquid chromatography (HPLC) or gas chromatography (GC). It is important to follow manufacturer guidelines and seek guidance from experienced professionals when operating a chromatography system.
What is the after-sales support provided by the supplier of a chromatography system?
The after-sales support provided by the supplier of a chromatography system typically includes installation, training, maintenance, repair, and technical support. The supplier may offer on-site installation and training to ensure that the system is set up correctly and the user is familiar with its operation. Maintenance and repair services may be provided to keep the system running smoothly and address any issues that arise. Technical support may be available via phone or email to assist with troubleshooting or answer any questions that the user may have. Some suppliers may also offer software updates or upgrades to improve the performance of the system.
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