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Oils 7600 Homogenizing Autosampler -Dual-Matrix Autosampler for Oils & Coolants Testing
As oils testing laboratories face more complex sample types, the Oils 7600 Homogenizing Autosampler delivers robust, reliable automation for ICP analysis. Designed to handle dual-matrix testing, the Oils 7600 allows labs to switch between oil and coolant samples on demand—all from a single system.
Featuring a dual-port rinse station, improved mixing capability, and faster XYZ movement, the Oils 7600 provides accurate sample homogenization and rapid throughput without compromising data quality.
Key Benefits:
*Mixes samples immediately prior to analysis for accurate results
*Dual-matrix design enables fast switching between oil and coolant testing
*Fast, smooth XYZ movement improves throughput
*Accurate positioning to ± 0.4 mm
*No probe/stirrer alignment drift
*Reduced cross-contamination with drip capture and dual rinse station
*Robust sample handling for viscous or particulate-laden samples
Why Sample Mixing Matters
Used oil samples often contain particulate matter that settles in the sample tube prior to analysis, which can produce non-representative results. The Oils 7600 solves this by mixing each sample immediately before measurement, ensuring consistent and accurate analysis.
A stirring paddle located next to the sample probe mixes the sample efficiently. Both the probe and stirrer are cleaned at the rinse station, minimizing carryover.
Mixing settings are configurable through the dashboard software to accommodate viscous oil samples and challenging matrices.
Fast, Accurate, and Efficient
*Each sample is automatically homogenized prior to analysis
*While one sample is being drawn, the next sample is stirred to increase efficiency
*Faster, smoother XYZ movement saves up to 2 seconds per sample compared to previous models
*Analyze up to 2 samples per minute using ASXPRESS PLUS rapid sample introduction for ASTM 5185 and ASTM 6130 testing
Maintain Sample Integrity
*Integrated drip cup travels with the sample probe and stirring paddle to capture droplets and prevent cross contamination
*Dual port rinse station minimizes carryover and improves sample integrity
*Designed for robust performance with viscous and particulate samples
Fast Switching Between Sample Types The Oils 7600 features two discrete liquid flow paths and a dual port rinse station, enabling quick switching between oil and coolant testing in as little as 5 minutes.
*Oils testing rinse: kerosene or white spirit
*Coolants testing rinse: water or nitric acid
*By swapping the sample probe, stirring paddle, and ICP glassware, analysts can rapidly change between workflows
Filtered Probe for Longevity:
The included stainless steel filtered probe helps remove large particles and protects downstream components, extending the life of the system. The probe is durable and easy to clean.
Ideal Applications:
*Oils testing laboratories
*Used oil analysis (ASTM 5185)
*Coolants testing (ASTM 6130)
*ICP-MS and ICP-OES sample automation
*Environmental and industrial testing labs
For Enquiry Send Email Or Contact Septech Marketing LLP Now!
Flash chromatography is a widely used purification technique in organic and pharmaceutical laboratories for the rapid separation of chemical compounds from complex mixtures. As an advanced form of preparative column chromatography, it utilizes pressurized gas or pumps to force the mobile phase through a column packed with a stationary phase, typically silica gel. This controlled pressure significantly accelerates the separation process compared to traditional gravity-driven column chromatography, reducing purification times from several hours or days to just minutes.
The technique operates on the principle of differential adsorption, where compounds in a mixture interact differently with the stationary phase and travel through the column at varying rates. As a result, individual components can be effectively separated and collected in distinct fractions. Flash chromatography is highly versatile and can accommodate a broad range of sample sizes, from milligram-scale research applications to larger-scale industrial processes.
Modern flash chromatography systems often incorporate automated controls, gradient elution capabilities, and advanced detection methods, enhancing reproducibility, efficiency, and accuracy. It is extensively applied in drug discovery, natural product isolation, chemical synthesis, and quality control laboratories. Owing to its speed, reliability, and adaptability, flash chromatography has become an indispensable tool for chemists, enabling the efficient purification of compounds and supporting innovation across scientific and industrial research fields.
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The ACCQPrep HP150 is a user-friendly preparative HPLC system designed to simplify purification workflows by eliminating unnecessary and complex method parameters commonly found in traditional HPLC systems. Built for efficiency and ease of use, it delivers high performance without requiring extensive training.
Key Features & Benefits
✅ Simplified Operation
Intuitive control via PeakTrak® software
Eliminates overly complex method setup
Designed specifically with chemists in mind
✅ Fully Integrated Software
Embedded system — no stand-alone PC required
Compact footprint with built-in touchscreen interface
Free software updates to adapt to evolving lab needs
✅ Smart Lab Monitoring
Active solvent level monitoring
Waste level detection to prevent overflow
Reduced risk of solvent spills and lab interruptions
✅ Intelligent Fraction Collection
RFID-enabled collection racks
Prevents missed or overfilled test tubes
Improves collection accuracy and efficiency
Designed for Modern Prep Labs:The ACCQPrep HP150 combines automation, safety features, and simplified controls into a compact preparative HPLC platform. It is ideal for laboratories seeking:
*Reliable compound purification
*Reduced operator error
*Streamlined workflows
*Compact, all-in-one HPLC systems
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Supercritical Fluid Chromatography (SFC) is an advanced separation technique that uses a supercritical fluid—most commonly carbon dioxide (CO₂)—as the mobile phase. In its supercritical state, CO₂ exhibits properties of both a gas (low viscosity, high diffusivity) and a liquid (solvation strength), enabling fast, efficient, and high-resolution separations.
SFC bridges the gap between gas chromatography (GC) and liquid chromatography (LC), offering the speed of GC with the versatility of LC.
How SFC Works
When CO₂ is brought above its critical temperature and pressure, it becomes a supercritical fluid. In this state, it:
Penetrates stationary phases efficiently (like a gas)
How SFC Works
When CO₂ is brought above its critical temperature and pressure, it becomes a supercritical fluid. In this state, it:
*Penetrates stationary phases efficiently (like a gas)
*Dissolves analytes effectively (like a liquid)
*Enables rapid mass transfer and shorter run times
Modifiers such as methanol or ethanol are often added to enhance solubility for polar compounds.
Dissolves analytes effectively (like a liquid)
Enables rapid mass transfer and shorter run times
Modifiers such as methanol or ethanol are often added to enhance solubility for polar compounds.
Key Components of an SFC System
An SFC system typically includes:
*Pump – Delivers liquid CO₂ and organic modifiers at precise flow rates
*Injector – Introduces the sample into the mobile phase
*Column oven – Maintains controlled temperature for reproducibility
*Chromatographic column – Packed with stationary phase for separation
*Detector – Commonly UV, PDA, MS, or ELSD for compound detection
*Back Pressure Regulator (BPR) – Maintains pressure to keep CO₂ in its supercritical state
Advantages of SFC:
✔ Faster separations compared to traditional HPLC
✔ High efficiency and sharp peak resolution
✔ Reduced solvent consumption (greener technology)
✔ Easy solvent removal due to volatile CO₂
✔ Ideal for chiral separations
✔ Compatible with mass spectrometry detection
Applications of SFC :SFC is widely used in:
*Pharmaceutical analysis – Chiral drug separation, impurity profiling
*Environmental testing – Pesticides and pollutant analysis
*Natural products research – Plant extracts and bioactive compounds
*Chemical research & synthesis labs – Reaction monitoring and purification
Why SFC is Growing in Popularity Supercritical Fluid Chromatography offers a powerful alternative to traditional HPLC by providing:
*Higher throughput
*Improved selectivity
*Lower operational costs
*Environmentally friendly workflows
As laboratories increasingly prioritize speed, sustainability, and analytical performance, SFC continues to gain adoption in both analytical and preparative-scale applications.
Chromatography
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