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Catalyst Characterization from
BEL Japan Inc.
BELSORP-mini:
Specific Surface area and pore size distribution
of porous and powdered material. Up to three samples
can be measured simultaneously and independently.
Liquid Nitrogen level control is not necessary due
to our unique measuring method of dead volume.(Patent
ending).

BEL-SOFC :
Evaluation and Deterioration System for Flat plate
single Cell in SOFC. Upto 1000 C temperature and
100Kpa pressure range. Execellent compact automatic
system for SOFC studies.

BEL-CAT catalyst Analyzer :
Evaluation such as TPD, TPR, TPO, METAL, Dispersion,
BET 1 Point Method and Pulse Adsorption can all
be carried out in the single instrument. Equipped
with high sensitivity 4 element TCD Detector. Our
Unique TPD sample cell does not allow re- adsorption
and also catalyst temperature can be measured directly.
Therefore highly reproducible data can be generated.
BEL-CAT is a flow method system.
BELSORP-max :
Simultanuous 3 sample measurement Very low surface
area by Krypton. Pore Size Distribution and Specific
Surface Area, Adsorption Isotherm Measurement of
of a variety of non-corros sive gase NH3 etc, Vapour
Adsorption and Chemisorption option available. No
need for liquid Nitrogen level control as dead volume
change is continuously measured by a ptented method.
Excellent BELMASTER software for quick and easy
evaluation of all parameters.
BEL-Metal3:
Measures Rare metal adsorption to find out 1) Metal
dispersion rate (2) metal surface area, (3) average
metal particle size.
BELSORP-BG:
For measurement of Binary gas adsorption isotherm
from different molecular weight gases involving
volumetric and gravimetric methods.

3G Porometer system :
The Xonics Porometer 3G is a pore Size and permeability
analyzer suitable for through-pore samples such
as membrane filters, paper, porous plastics, thin
films and other sheet materials. It can analyze
geotextiles, fabrics, woven and sintered metal sheet
filters and many other porous materials. The 3'.
generation product seriese uses the well-known liquid
expulsion technique.
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