PSL Systemtechnik GmbH
5 products found

PSL Systemtechnik GmbH products

PSL Systemtechnik - Multi-Rack Cold Finger

The Multi-Rack Cold Finger CF15 by PSL Systemtechnik is an advanced laboratory instrument designed for detailed analysis of wax and paraffin deposits in crude oil. Featuring up to 15 measuring stations, it allows for simultaneous testing of various sample conditions, thereby enhancing the efficiency of the screening process. The instrument employs a cold finger technique, wherein a cooled portion is introduced into a stirred and heated oil sample, causing waxy components to precipitate on its surface. These precipitates can then be weighed to determine both the deposition rate and the total wax content. The system includes individual temperature control and stirring speed settings for each rack of 5 measuring places, as well as a dry bath that allows for precise temperature management up to 120°C (248°F). Modular in design, this device supports numerous customization options and can be controlled via software, enabling detailed data logging, interval measurements, and later analysis. The high precision balance provides accuracy to 0.01 g, and the integrated drawers simplify handling and removal of samples during testing. Ideal for labs focusing on crude oil analysis, this instrument supports a variety of measurement needs, including wax deposition rate assessments and the evaluation of different inhibitor concentrations.

PSL Systemtechnik - Multi-Place Cold Finger - Laboratory Device for Measuring Wax Deposits

The Multi-Place Cold Finger CF6 is a laboratory instrument designed to assess wax deposits and the efficacy of wax and paraffin inhibitors in crude oil and petroleum products. This device comes with six measuring stations integrated into a conventional water bath, making it suitable for laboratories handling low to medium sample volumes. The CF6 employs an innovative lift system that segregates the sample units, allowing for parallel measurement of varying chemicals or sample concentrations. Its cooling fingers can be adjusted to precisely match the size of sample bottles, yielding accurate temperature readings at the exact location of wax deposits. The compact design minimizes space requirements in the lab and simplifies cleaning and weighing through removable cold finger sleeves. Operational safety and measurement reliability are enhanced through insulated water baths and hoses, reducing evaporation and preventing condensation. Capable of reaching sample temperatures up to 90 °C, the CF6 ensures precise and reproducible results, making it an affordable yet high-quality entry-level model for modern laboratories.

PSL Systemtechnik - Coaxial-Shear Cold Finger for Wax Deposition Analysis

The Coaxial-Shear Cold Finger cCF6 is designed for detailed wax deposition analysis under shear conditions. This compact laboratory device features six measuring stations within a temperature-controlled water bath, ideal for studying wax deposits and the efficiency of wax inhibitors. It employs a magnetic stirrer to maintain crude oil samples above the Wax Appearance Temperature (WAT), while a cooled cylindrical element, referred to as a 'cold finger,' promotes wax deposit formation on its surface. Unique to this model, the cold fingers can rotate to simulate shear forces experienced in pipelines, with varying rotation speeds to match production conditions. The device allows simultaneous testing of multiple chemicals or concentrations, with samples pre-tempered in individual units. The almost sealed water bath minimizes liquid evaporation, supporting operations up to 80°C or 90°C with insulation to prevent condensation. Its design emphasizes ease of use, space efficiency, and accurate measurement of wax deposits, enhanced by removable sleeves for simplified cleaning and weighing.

PSL Systemtechnik - Mobile Cold Finger Portable Measurement Device for Wax and Paraffin Deposits in Crude Oil

The Mobile Cold Finger mCF2 is a portable measurement device from PSL Systemtechnik, specifically designed to assess wax, paraffin deposits, and the efficacy of inhibitors in crude oil. This advanced instrument features two measuring stations, making it ideal for low sample throughput or mobile, laboratory-independent use. Incorporating the sophisticated Cold Finger measurement technology in a compact size, the mCF2 ensures precise results on-site, directly at the point of conveyance. It allows measurement of wax formation temperature (WAT), total wax content, and shear effect by simulating temperature differences and depositing the wax contained in the oil on a cold surface. The device enables observations by weighing deposits at various intervals and temperatures to calculate the deposition rate. Designed for high operating safety and user-friendly operation, the mCF2 features precise specimen positioning, a closed measuring chamber for environmental protection, and the ability to re-melt and reuse specimens. Encased in a robust transport case (weighing approximately 10 kg), the mCF2 can be used globally with just a laboratory balance and a thermostat.

PSL Systemtechnik - Differential Dynamic Scale Loop

The Differential Dynamic Scale Loop (DSL) by PSL Systemtechnik is an automated laboratory instrument designed for testing and examining the formation of scale and other salts in pipelines. Originally conceptualized for the petrochemical and oil industries, this equipment simulates realistic pipeline conditions with temperatures up to 300°C (572°F) and pressures up to 400 bar (5,800 psi). This makes it ideal for evaluating the effectiveness of scale inhibitors, antiscalants, and scale removers across various aqueous solutions including carbonate, sulphate, and salt deposits. The system uses three HPLC pumps to mix anionic and cationic solutions with a known concentration of inhibitor, allowing for stepwise adjustments and precise monitoring of sedimentation through differential pressure measurements. The model pipeline is versatile, offering different lengths and diameters to simulate various test conditions, and is primarily constructed from stainless steel. The fully automated software, WinDSL, enables complex test sequences and thorough cleaning procedures, facilitating unsupervised overnight runs and long-term experiments. The instrument is adaptable to specific requirements, ensuring its suitability for a wide range of industrial applications.