Refining & Petrochemicals
Refining & Petrochemical Solutions
When it comes to ensuring product quality and optimizing processes, identifying elemental impurities is essential for quality control laboratories in refineries and in the production of fuels. We can provide you with a variety of detection solutions developed for routine applications with high sample volumes as well as for experimental laboratories with frequently shifting areas of focus in their chemical analyses. Analytik Jena’s diverse range of solutions keeps you in compliance with international regulations and can improve your analysis workflow of petroleum products, natural gas, and alternative fuels.
Applications & Techniques
Applications
TOC/TNb Determination in Refinery Effluents
TOC Determination in Brine Samples Coming from Desalting Process of Crude Oil
Determination of TOC in Oil Shale
TOC/TNb-Bestimmung in Raffinerieabwässern
Applications
Determination of Total Volatile Sulfur in Gaseous Hydrocarbons and Liquefied Petroleum Gases by Ultraviolet Fluorescence According to ASTM D6667 resp. ASTM D7551
Elemental Analysis for N/S/Cl Determination in Biofuels and Their Precursors
Heavy Fuel Oil, Feed Materials and Residues – Trustable Determination of High Nitrogen Contents in Viscose, Complex Matrices
Diesel Fuels and Fuel Additives – Interference-free Determination of Sulfur Traces by UV Fluorescence Detection with MPO
Standard Test Method for Determining Organic Chloride in Aromatic Hydrocarbons and Related Chemicals by Microcoulometry acc. to ASTM D5808
Determination of Total Sulfur in Aromatic Hydrocarbons and Related Chemicals by Ultraviolet Fluorescence acc. to ASTM D7183
Determination of Trace Nitrogen in Liquid Petroleum Hydrocarbons by Oxidative Combustion and Chemiluminescence Detection Acc. to ASTM D4629 / DIN 51444
Determination of Ultra Low Nitrogen in Aromatic Hydrocarbons by Oxidative Combustion and Reduced Pressure Chemiluminescence Detection Acc. to ASTM D7184
Determination of Nitrogen Contents in Petroleum Products by Boat-Inlet and Chemiluminescence Detection Acc. to ASTM D5762
Determination of Total Chlorine in Different Types of Hydraulic Fluids by Coulometric Titration After High-temperature Combustion
Ultra-sensitive High-throughput TS Analysis in Light Hydrocarbons, Spark Ignition Engine Fuel, and Diesel Engine Fuel by UV Fluorescence according to ASTM D5453 - Vertical Approach
Matrix-independent TS Determination in Light Hydrocarbons, Spark Ignition Engine Fuel, and Diesel Engine Fuel by UV Fluorescence according to ASTM D5453
Applications
Analysis of elemental impurities in naphtha by ICP-MS according to ASTM D8110-17 (English)
Applications
Trace Metals Analysis in Water-Methanol-Oil Mixtures by HR ICP-OES
Specification Analysis of Gasoline by HR ICP-OES
AppNote Analysis of Elemental Impurities in Diesel by HR ICP-OES according to ASTM D7111-16 (English)
AppNote ICP-OES Aalysis of Fresh and Produced Waters in Hydraulic Fracturing Fluids
Applications
Determination of Ultra Low Nitrogen in Aromatic Hydrocarbons by Oxidative Combustion and Reduced Pressure Chemiluminescence
Determination of Trace Nitrogen Contents in Different Types of Fuels and Fuel Blends According to ASTM D4629 resp. DIN 51444
TN Determination in Bio-based Fuels According to ASTM D4629 – Standard Test Method for Trace Nitrogen in Liquid Hydrocarbons by Syringe/Inlet Oxidative Combustion and Chemiluminescence Detection
Determination of Total Sulfur in Aromatic Hydrocarbons and Related Chemicals by UV Fluorescence according to ASTM D7183
Determination of Total Sulfur in Light Hydrocarbons, Spark Ignition Engine Fuel and Diesel Engine Fuel by Ultraviolet Fluorescence according to ASTM D5453
Determination of Sulfur Content of Automotive Fuels – Ultraviolet Fluorescence Method According to EN ISO 20846 – Removal of Nitrogen Interferences by N-based Cetane Improvers
Fast and Reliable TS Determination in Liquefied Pressurized Gases (LPG) according to ASTM D6667, ASTM D7551, and DIN EN 17178
Whitepapers
New paths for LPG analytics
We are presenting a new method for LPG analysis that improves the safety of your lab, the quality of your results, and speed of your analysis. Even non-specialist personnel can thus safely and quickly measure liquefied pressurized gases/liquefied petroleum gases (LPG) samples. This method of LPG analysis is suitable for the detection of nitrogen, sulfur, carbon, and chlorine compounds.
Advances in the Analysis of New and Used Lubricating Oils by High-Resolution ICP-OES
Say goodbye to the challenges of lubricating oil analysis using ICP-OES. The PQ9100 from Analytik Jena offers a unique vertical torch design that eliminates soot formation while the dual view PLUS eliminates tedious sample preparation. Unrivaled plasma stability coupled with the highest resolution on the market makes the PQ9100 a laboratory staple.
Poster Session
Analysis of Elemental Impurities in Naphtha by ICP-MS According to ASTM D8110-17
Various metals have negative effects on the production process, as well as the final product performance, therefore need to be analyzed in Naphtha. See how our patented ICP-MS technology exceeds all ASTM D8110-17 requirements by using the highest sensitivity to enable excellent detection limits, all in a user-friendly, easy to use and to maintain way.
Analysis of Elemental Impurities in Crude Oil by ICP-OES Based on ASTM D7691-16
Various metals have negative effects on the refining process, as well as the final product performance, therefore need to be analyzed in Crude Oil. See how our ICP-OES technology demonstrates an exceeding ability to analyze trace metals in Crude Oil using simple sample preparation with no ashing required and is incredibly easy to maintain with no soot collected in the vertical torch.
Web Seminars
Analysis & monitoring of oil, gas and petrochemical products
To ensure product quality and process optimization, the determination of elemental impurities is crucial for control labs in refineries and in the production of alternative fuels. Analytik Jena's versatile solutions help you comply with international regulations and improve analysis of petroleum products, natural gas and alternative fuels.
Creating Value in the Downstream Oil & Gas Industry
In this web seminar our product specialists present solution strategies for complex application challenges in the downstream oil and gas industry. A special focus is on ICP-OES techniques for the analysis of elemental impurities in fuels like diesel, gasoline or naphta as well as the routine determination of carbon, nitrogen, sulfur and chlorine in these fuels via elemental analysis.
Overcoming Challenges of Analyzing High-Matrix Samples with ICP-OES
Trace element analysis of mid-to high-matrix samples is a major concern for many laboratories. Mining samples, high-purity metals, chemicals and petrochemicals or highly contaminated soils and industrial wastewater often require a complex analysis process. In this web seminar, our product expert for ICP-OES presents methods and ways to perform the analysis of high-matrix samples in challenging applications by utilizing a high-resolution ICP-OES.
PlasmaQuant 9000 – Customer Testimonials
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