Solid Phase Extractor LB-10SPE

Solid Phase Extractor LB-10SPE

Solid Phase Extractor LB-10SPE process even small sample volumes without losing critical analytes. Great versatility for high-throughput labs is offered with individual or batch sample processing. Our innovative design prevents contamination between samples. It keeps atomized compounds at bay, ensuring your results remain accurate and reliable. Equipped with vacuum tank to withstand high negative pressure, ensuring stable operation. The extractor is in great demand due to its adjustable extraction speed and airtightness function.

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Specifications

Capacity 24 Holes
Workplace dimensions 240 × 70 × 138 mm
Pressure Display Pressure Gauge
Vacuum Degree 0.098 MPa
Flow Control Valve 24 pcs
Packaging dimensions 300 × 100 × 150 mm
Net weight 7.5 Kg
Gross weight 9 Kg

Features

  • Solid Phase Extractor with transparent organic glass construction
  • Anti-cross contamination and anti-atomization
  • Non-phase separation operation
  • High capacity with batch or individual processing
  • High negative pressure resistance
  • Durable PTFE extraction column tray and test tube rack
  • Multi-channel control with corrosion-resistant joints

Applications

Solid Phase Extractor is widely used across environmental monitoring and protection, food, and beverage, pharmaceutical, biotechnology, medical, clinical laboratories, chemical manufacturing, production, forensic science, agriculture, and agribusiness.

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Laboratory ion chromatography is a versatile analytical technique used for the precise separation and quantification of ions in controlled laboratory settings. It involves a sample's injection into a chromatographic system, where ions are separated within a column based on their affinity for a stationary phase. Our ion chromatography is particularly valuable for analyzing inorganic ions, both anions and cations, and it finds extensive applications in environmental monitoring, water quality assessment, pharmaceutical research, and food and beverage analysis. Offering high sensitivity and selectivity, IC empowers scientists to accurately determine the composition and concentration of ions in diverse samples, playing a crucial role in quality control, scientific research, and understanding ionic content in various materials and solutions within the laboratory.

Dimensions (L x W x H) 350 x 470 x 650 mm
Weight 34 kgs
Whole plastic pipeline Made of PEEK material
Six way valve Rheodyne electromagnetic six-way valve, compression resistance of 7000 psi, collect signals automatically
 IC Pump Type High-pressure and low-pulse two-piston tandem advection pump
IC Pump Maximum Pressure  35 MPa (PEEK)
IC Pump Pressure Display Accuracy  ≤ 0.1Mpa
IC Pump Flow Stability (0.2 to 0.5) mL/min ≤3 % (0.5 to 1.0) mL/min ≤2 % >1.0mL/min ≤ 2 %
Dimensions (L x W x H) 325 x 400 x 500 mm
Weight 21 kgs
Whole plastic pipeline Made of PEEK material
Six way valve PEEK material FLOM series of six way valve, pressure 5000 psi, a signal automatic collecting and flow function
Dimensions (L x W x H) 500 x 570 x 510 mm
Weight 40 kgs
Whole plastic pipeline Made of PEEK material
Six way valve Rheodyne electromagnetic six-way valve, compression resistance of 7000 psi, collect signals automatically.

Labotronics Thin-Layer Chromatography systems facilitate effective compound separation ensuring high reproducibility for various experiments. These TLC systems are designed to be compatible with a wide range of solvents, allowing for versatile applications in laboratory settings. They offer customizable adsorbent layer thickness, improving separation efficiency and resolution for diverse analytical needs. Our TLC systems are designed for both small-scale studies and large-scale industrial applications, offering essential support for researchers and quality control professionals.

Camera 20 million pixels
Pixel Density 16-bit (65536 grayscale)
Focus Method Autofocus
Exposure Timer Range 0 to 2000 ms

Laboratory gas chromatography is a powerful analytical technique used for the separation and analysis of volatile compounds within a controlled laboratory environment. It operates based on the principles of gas-liquid partitioning, where a sample is injected into a chromatographic column and then vaporized and carried by an inert gas through the column. As the sample travels through the column, different components separate based on their affinity for the stationary phase, with each component eluting at a specific time, creating a chromatogram. Our laboratory GC is widely employed in various scientific disciplines, including chemistry, biochemistry, environmental science, and forensic analysis. It is used for tasks such as identifying and quantifying compounds in complex mixtures, analyzing volatile organic compounds, and ensuring product quality control. The technique offers high sensitivity and precision, making it an essential tool for researchers and scientists to understand and characterize chemical compositions.

Sample injector temperature range
Power supply AC 110 V / 220 V ± 10 % ; 50 Hz / 60 Hz
Dimensions ( W x D x H ) 800 x 570 x 650 mm
Gross weight 75 kgs
Sample injector temperature range RT +7 °C ~ 420 °C
Power supply AC 220 V ± 10 % ; 50 Hz / 60 Hz
Dimensions ( W x D x H ) 1020 x 660 x 740 mm
Gross weight 82 kgs

Labotronics liquid chromatography is a widely used analytical technique in which a liquid mobile phase carries a sample through a chromatographic column filled with a stationary phase, facilitating the separation and analysis of compounds in a mixture. It is employed across diverse fields, including chemistry, pharmaceuticals, environmental science, and biology, to separate, identify, and quantify substances based on their chemical properties. Our analytical liquid chromatography comes in various forms, such as high-performance liquid chromatography (HPLC), ultra-high-performance liquid chromatography (UHPLC), and liquid chromatography-mass spectrometry (LC-MS), each offering unique advantages for specific applications. With its versatility, high sensitivity, and ability to handle a broad range of sample types, LC plays a pivotal role in quality control, research, and diagnostics, making it an indispensable tool for scientists and researchers in numerous laboratory settings.

Pump System Isocratic
Pump Flow Rate 0.001 to 9.999 mL/min
Pump Flow Rate Accuracy ≤ ± 0.5% (1 mL/min, water, room temperature)
Pump Flow Rate Precision RSD ≤ 0.08% (1 mL/min, water, room temperature)
Pump System Gradient
Pump Flow Rate 0.001 to 9.999 mL/min
Pump Flow Rate Accuracy ≤ ± 0.5% (1 mL/min, water, room temperature)
Pump Flow Rate Precision RSD ≤ 0.08% (1 mL/min, water, room temperature)
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