Agilent Biofuel Analyzers
Others | 2013 | Agilent TechnologiesInstrumentation
The shift from fossil fuels to bio-based energy demands rigorous evaluation of alternative fuels at each production step. Reliable analysis of physical and chemical properties ensures fuel quality, process efficiency and environmental compliance. Robust analytical platforms enable producers and regulators to monitor conversions during milling, fermentation, and distillation, safeguarding product uniformity and calorific value.
This document describes preconfigured analytical solutions designed to streamline biofuel testing workflows. The aim is to showcase Agilent’s ready-to-go GC and FTIR systems that accelerate deployment, ensure compliance with ASTM and EN standards, and provide comprehensive monitoring from feedstock handling to final fuel quality.
Systems leverage gas chromatography and infrared spectroscopy to address a broad range of biofuel parameters:
Factory-validated configurations demonstrated fast, reproducible performance:
Emerging advancements in multidimensional GC and miniaturized FTIR promise improved selectivity, portability and speed. Integration of real-time analytics, cloud-based data management and predictive maintenance will further optimize process control. New biofeedstocks and catalyst developments will drive the demand for adaptable methods and modular instrumentation.
Agilent’s portfolio of factory-pretested GC and FTIR analyzers offers rapid, standards-compliant biofuel analysis from raw materials to finished fuels. By combining robust instrumentation, validated methods and full-service support, these solutions empower producers to enhance quality assurance, increase throughput and foster sustainable energy innovation.
GC
IndustriesEnergy & Chemicals
ManufacturerAgilent Technologies
Summary
Significance of the Topic
The shift from fossil fuels to bio-based energy demands rigorous evaluation of alternative fuels at each production step. Reliable analysis of physical and chemical properties ensures fuel quality, process efficiency and environmental compliance. Robust analytical platforms enable producers and regulators to monitor conversions during milling, fermentation, and distillation, safeguarding product uniformity and calorific value.
Objectives and Overview
This document describes preconfigured analytical solutions designed to streamline biofuel testing workflows. The aim is to showcase Agilent’s ready-to-go GC and FTIR systems that accelerate deployment, ensure compliance with ASTM and EN standards, and provide comprehensive monitoring from feedstock handling to final fuel quality.
Methodology and Instrumentation
Systems leverage gas chromatography and infrared spectroscopy to address a broad range of biofuel parameters:
- GC-based analyzers: Agilent 7890B and 490 Micro GC platforms pretested for fatty acid methyl ester (FAME) profiling, glycerol and glyceride quantification, and trace alcohol determination in biodiesel per ASTM D6584, EN 14105, EN 14110 and related methods.
- Optional Deans Switch for two-dimensional GC separations, enabling improved resolution of coeluting compounds according to EN 13132-2000.
- FTIR analyzers: portable 4500 and 5500 Series instruments for rapid, non-destructive measurement of biodiesel concentration, blend verification, and contamination screening in line with ASTM D7371 and EN 14078 protocols.
Instrumentation Used
- Agilent 7890B Gas Chromatograph with Electronic Pneumatic Control for precise temperature and flow regulation.
- Agilent 490 Micro GC Analyzer configured for multichannel analysis of permanent gases and hydrocarbons.
- Agilent 7696A Sample Prep WorkBench for automated derivatization and high-throughput sample processing.
- Agilent 4500 and 5500 Series Portable FTIR Spectrometers for on-site spectroscopy and functional group fingerprinting.
Main Results and Discussion
Factory-validated configurations demonstrated fast, reproducible performance:
- Biodiesel runs achieved clear separation of glycerol, mono-, di- and triglyceride zones within 30 minutes, with consistent retention times across multiple injections.
- Biogas analyzers quantified H₂, CH₄, CO₂, H₂S and C₂–C₇ hydrocarbons in seconds, enabling real-time caloric value assessment and process control.
- FTIR methods delivered immediate biodiesel content and contamination data, facilitating quality decisions in the field.
Benefits and Practical Applications
- Out-of-the-box operation reduces method development time by up to 80%, boosting lab productivity.
- Preconfigured methods and compliance with international standards ensure regulatory acceptance and reliable reporting.
- Comprehensive support—including consumables kits, method files and optional on-site startup assistance—minimizes downtime.
- Modular architecture allows customization for milling, fermentation, dehydration, wastewater treatment and other critical processes.
Future Trends and Potential Applications
Emerging advancements in multidimensional GC and miniaturized FTIR promise improved selectivity, portability and speed. Integration of real-time analytics, cloud-based data management and predictive maintenance will further optimize process control. New biofeedstocks and catalyst developments will drive the demand for adaptable methods and modular instrumentation.
Conclusion
Agilent’s portfolio of factory-pretested GC and FTIR analyzers offers rapid, standards-compliant biofuel analysis from raw materials to finished fuels. By combining robust instrumentation, validated methods and full-service support, these solutions empower producers to enhance quality assurance, increase throughput and foster sustainable energy innovation.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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