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   * NEX CG II Series
   * NEX DE
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   * NEX QC
   * NEX QC Marine Fuel Analyzer
   * NEX OL
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     * Bunker Fuels
     * Catalysts Recovery
     * Fuel Cell Technologies
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   * NEX CG II Series
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   * NEX QC Marine Fuel Analyzer
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     * Bunker Fuels
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NEX QC SERIES

Affordable EDXRF Analyzers


NEX QC+ QUANTEZ

Advanced EDXRF Analyzer


NEX DE

High-performance EDXRF


NEX DE VS

Small Spot Analysis EDXRF


NEX CG II SERIES

Cartesian Geometry EDXRF


NEX OL

Process EDXRF Analyzer


NEX XT

Process Sulfur Analyzer


NEX LS

Process Coating Analyzer



APPLIED RIGAKU TECHNOLOGIES


ELEMENTAL ANALYSIS BY ENERGY DISPERSIVE X-RAY FLUORESCENCE (EDXRF)

Silicone Coatings
Analysis of Sulfur in Fuel
Wood
Wovens & Nonwovens
Marine Fuels
Auto Catalyst Recycling
Cement
Environment to Food
Fuel Cell Technologies
Geology
Metals & Alloys
Metal Coatings
Mining and Refining
Petroleum
Plastics & Polymers
Online Process Control
RoHS / WEEE
Semiconductors
Silicone Coatings
Analysis of Sulfur in Fuel
Wood
Wovens & Nonwovens
Marine Fuels
Auto Catalyst Recycling
Cement
Environment to Food
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EDXRF ELEMENTAL ANALYZERS ARE THE TOOL OF CHOICE FOR MANY APPLICATIONS

Many industries and organizations use Rigaku EDXRF elemental analyzers to solve
their analytical needs. Applications range from research & development to
industrial and in-plant quality assurance and many others. EDXRF analyzers are
ideal tools for measuring ultra-low and trace element concentrations up to
percent levels in almost any matrix.

Typical uses of EDXRF analyzers include the analysis of petroleum oils, fuels,
catalysts, plastics, textiles, food, feeds, fertilizers, soils, personal care
products, wastewater, air filters, geological materials, and so much more. EDXRF
elemental analyzers are also well-suited for the determination of coatings on
paper and plastic substrates, metals and alloys, for auto catalyst recycling,
and the rapid screening of waste oil, used oil, and refuse-derived fuel. In
addition, X-ray transmission process gauges are specifically optimized for the
total sulfur analysis needs of refineries, pipelines, blending operations,
bunkering terminals, and other storage facilities.


 * Rigaku EDXRF
 * About Rigaku
 * Our Technology


NON-DESTRUCTIVE ELEMENTAL ANALYSIS OF SODIUM THROUGH URANIUM FROM PPB LEVELS TO
100%



Applied Rigaku Technologies specializes in benchtop and on-line elemental
analyzers for the non-destructive analysis of solids, liquids, powders,
coatings, and thin films. Our company engineers, manufactures, and distributes
Rigaku energy dispersive XRF analyzers worldwide.

Rigaku EDXRF elemental spectrometers offer users the flexibility and reliability
needed to measure elements sodium (Na) through uranium (U) in a variety of
matrices for a wide range of applications. Our benchtop EDXRF analyzers include
the compact NEX QC Series for routine quality control needs, the advanced NEX DE
for more demanding workflows, the NEX DE VS for small spot analysis
applications, and the NEX CG II Series indirect excitation analyzers for complex
applications and research.

For real-time process control needs, we offer the NEX XT total sulfur analyzer,
NEX OL multi-element process analyzer for liquid streams, and the NEX LS
scanning multi-element coating analyzer


WHO WE ARE

Since 1951, Rigaku has been at the forefront of analytical and industrial
instrumentation technology. Today, with hundreds of major innovations to their
credit, the Rigaku group of companies are world leaders in the field of
analytical X-ray instrumentation. Rigaku employs over 1,500 people worldwide in
operations based in Japan, the U.S., Europe, South America, and China.



Applied Rigaku Technologies, a division of Rigaku, was established in 2009 in
Austin, Texas, USA, specializing in Rigaku’s EDXRF technology. In July 2023, the
company relocated to a new, larger facility in Cedar Park, Texas, still
conveniently located near Austin.

Applied Rigaku Technologies is responsible for engineering, manufacturing, and
distributing Rigaku EDXRF elemental analyzers for non-destructive analytical
chemistry applications, including atomic spectroscopy and quantitative and
qualitative elemental analysis. Applied Rigaku Technologies provides users with
advanced, high-quality EDXRF analyzers and offers customer-focused solutions and
support backed by Rigaku innovation and years of EDXRF experience.


EDXRF ELEMENTAL ANALYZERS

EDXRF, a primary type of X-ray fluorescence (XRF), provides quick,
non-destructive multi-element analysis in a wide range of matrices, even in the
most challenging sample types. In general, EDXRF systems are easy to use, have a
small footprint, and cost less to operate than other technologies. These
advantages make Rigaku EDXRF analyzers attractive systems for many applications.

EDXRF elemental analysis provides one of the simplest, most accurate, and most
economical analytical methods for determining the chemical and/or elemental
composition of many types of materials. The technique is non-destructive,
requires little to no sample preparation, and is well-suited for almost all
sample types. Rigaku EDXRF elemental analyzers can be employed to measure a wide
range of atomic elements, from sodium (Na) through uranium (U), while providing
elemental detection limits from low parts-per-million (ppm) to high weight
percent (wt%). In addition to elemental analysis, EDXRF spectrometers may be
used to measure the thickness and composition of multi-layer thin films.

Benchtop EDXRF analyzers offered are NEX QC Series for routine quality control,
NEX DE for bulk analysis, NEX DE VS for small spot analysis, and NEX CG II
Series for complex applications and research.

For real-time process control, the NEX OL process elemental analyzer for liquid
streams and the NEX LS scanning multi-element coating analyzer are offered.


PROCESS SULFUR ANALYZER

In addition, NEX XT, a robust X-ray transmission (XRT) process gauge, is offered
for total sulfur analysis needs. Applications for the NEX XT include bunker fuel
blending to meet MARPOL Annex VI sulfur restrictions, interface detection of
different grade fuels delivered via pipelines, refinery feedstock blending and
monitoring, and the quality monitoring of crude at remote collection and storage
facilities.


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