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Step Isothermal TGA: Enhanced Component Separation in Thermal Analysis

In thermogravimetric analysis (TGA), one of the primary objectives is to separate and characterize individual components within a sample based on their thermal […]

Enhancing Gravimetric Precision Under Extreme Conditions: The Role of the Quadrupole Magnetic Control System (QMS) in the AMI MSB

Magnetic Suspension Balances (MSBs) have become indispensable tools for gravimetric analysis under extreme conditions—including high pressures, elevated temperatures, and corrosive atmospheres […]

Quantifying Zeolite Acidity: TPD Techniques with AMI

Temperature-programmed desorption (TPD) of basic probe molecules is a widely used technique for characterizing the acid properties of zeolites […]

High-Temperature DSC: AMI-made precision to 1500 °C

Differential Scanning Calorimetry (DSC) is a fundamental technique used to study phase transitions, heat capacity, and thermal stability in materials […]

Commercial and Lab Scale Reactors

Catalytic reactors are essential tools for evaluating catalyst performance, studying reaction kinetics, and simulating commercial-scale processes. However, selecting […]

Understanding Temperature-Programmed Reduction (TPR): Parameters and Profiles

Temperature-programmed reduction (TPR) is a powerful technique for obtaining direct information on the reducibility of catalysts and catalyst precursors […]

Advanced Temperature-Programmed Oxidation (TPO) of Coked Catalysts Using Methanation and FID Detection

Today, advanced techniques such as TEM, Laser Raman Spectroscopy, EELS, ¹³C NMR, and temperature-programmed oxidation (TPO) are widely used to study coked catalysts […]

Comparison of Static and Dynamic Chemisorption Methods

In previous issues of AMI notes, we discussed the application of dynamic techniques—specifically, pulse chemisorption and temperature-programmed desorption […]