Agilent Analyzer Solutions Guide for the Energy and Chemical Industry - 106 Pages

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Agilent Analyzer Solutions Guide for the Energy and Chemical Industry

Catalog excerpts

IMPLEMENT NEW GC TECHNOLOGIES WHEN YOUR COMPANY IS READY FOR THEM Your business helps fuel the global economy by meeting the demand for petroleum, natural gas, and biofuel. Success depends upon safe, reliable, and efficient processes to ensure that consumers receive a consistent flow of these products. For decades, Agilent has provided reliable analytical solutions to help researchers, process managers, and line analysts meet their measurement challenges. From characterizing raw crude and natural gas… to monitoring the production of refined chemicals… to determining the quality of...

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Agilent’s energy and chemical analyzers build on our reputation for hardware excellence and technical expertise Our solutions range from basic system modifications—such as using chemically inert materials and specialty columns in systems that quantitate trace contaminants in petrochemical streams—to complex, multi-valve analyzers that let you characterize a sample’s diverse components. On the following pages, you will find Agilent’s complete energy and chemical analyzer portfolio, including: • actory tested, ready-to-use GC analytical solutions developed to meet industry F standards such as...

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To search for words or phrases used in any of the enclosed application notes, click on the Search button below to open Acrobat’s Search window. Learn more about Analyzer Solutions for the energy and chemical industry at www.agilent.com/chem/energy 4

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G3445 #523    Extended refinery gas analyzer G3445 #524    Refinery gas analyzer with nickel columns    ASTM    D1945, ASTM    D1946, UOP 539 G3445 #530    Refinery gas analyzer with H2S and oxygen using hydrogen    ASTM    D1945, ASTM    D1946, UOP 539 as a carrier gas G3445 #531    High capacity refinery gas analyzer (RGA) with large valve oven    ASTM    D1945, ASTM    D1946, UOP 539 and helium carrier gas for hydrogen sulfide and oxygen G3445 #532    Fast refinery gas analyzer with large valve oven (LVO)    UOP 539 and micropacked columns G3445 #533    Refinery gas    analyzer with...

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G3445 #611    Single channel oxygenates and aromatics in fuel analyzer    ASTM    D4815,    ASTM    D5580 G3445 #612    Dual parallel channel oxygenates and aromatics in fuel analyzer    ASTM    D4815,    ASTM    D5580 G3445 #617    Oxygenates and aromatics in gasoline by Deans Switch analyzer    EN 12177, EN    13132 G3445 #618    Low level oxygenates in light hydrocarbons by capillary flow technology    ASTM    D7423 G3445 #621    3-in-1 reformulated fuel analyzer with large valve oven    ASTM    D3606,    ASTM    D4815, ASTM D5580 7890-0340    Trace oxygenates in gasoline...

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G3440 #653    Simulated distillation analyzer,    boiling    range from    55 °C to 538 °C    ASTM    D2887 G3445 #654    Simulated distillation analyzer,    boiling    range from    100 °C to 615 °C    ASTM    D7213    (D2887    extended) G3445 #655    Simulated distillation analyzer,    boiling    range from    174 °C to 700 °C    ASTM    D6352 Analyzer Model Description    Configured per Published Method(s) G3445 #661    Sulfur in natural gas/fuel gas analyzer by sulfur chemiluminescence detector    ASTM    D5504 G3445 #662    Sulfur in fuel/petroleum liquids analyzer by sulfur...

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ASTM Method ConfigurationsGPA Method Configurations ASTM D6584    Analyzer Number BACK TO TABLE OF CONTENTS

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ISO Method Configurations ISO 6974-6    Analyzer Number Learn more about Analyzer Solutions for the energy and chemical industry at www.agilent.com/chem/energy BACK TO TABLE OF CONTENTS 10

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SOLUTIONS FOR REFINERY GAS ASTM Method Configurations Apply the latest GC technologies without disrupting your application workflow Refineries use distillation and chemical reactions to convert crude oil into fuel, lubricants, and feedstock for downstream processes. In recent years, supplyrelated performance requirements, together with environmental regulations for emissions and fuel composition, have rapidly driven new plant designs, as well as upgrades to existing refineries. The composition of refinery gases, which arise from cracking and subsequent distillation, depends on their...

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Analyzer Number Extended Hydrocarbon Analysis to C12 /C14 Full-range Separates Air High Level    Handles CONTENTS BACK TO REFINERY GAS INTRODUCTION

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ASTM D1945 ASTM D1946 mol %    mol % * This guide reports typical quantitation limits for each system configuration. These values may differ from the absolute reporting limit required by the method. Note: In the table above the symbol “-“ indicates that this parameter was not specified. Start reducing the time required to get your analysts running real world samples. Visit www.agilent.com/chem/energy BACK TO TABLE OF CONTENTS BACK TO REFINERY GAS INTRODUCTION

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