Fossil Fuel Combustion

Fossil fuel combustion is the rapid oxidation of coal, petroleum, or natural gas to release usable energy, while also producing chemical compounds that influence living systems and the environment. During this process, hydrocarbons react with oxygen at high temperatures, generating heat and commonly forming carbon dioxide and water; incomplete combustion can also produce carbon monoxide, particulate matter, and other pollutants. In biology, these emissions are important because carbon dioxide contributes to climate change, while air pollutants can disrupt respiratory health, photosynthesis, ecosystem processes, and biodiversity. Understanding fossil fuel combustion helps researchers assess environmental stress, organismal responses, and strategies for reducing ecological harm.

Fossil Fuel Combustion - Related Videos

Research

JoVE Journal - Engineering

Combustion Characterization and Model Fuel Development for Micro-tubular Flame-assisted Fuel Cells

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Cited by 13 •

2016

A protocol for creating a model fuel-rich combustion exhaust is developed through combustion characterization and is applied for micro-tubular flame-assisted fuel cell testing and research.

Education

JoVE Science Education - Environmental Sciences

Proton Exchange Membrane Fuel Cells

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2023

Source: Laboratories of Margaret Workman and Kimberly Frye - Depaul University The United States consumes a large amount of energy – the current rate is around 97.5 quadrillion BTUs annually. The vast majority (90%) of this energy comes from non-renewable fuel sources. This energy is used for electricity (39%), transportation (28%), industry (22%), and residential/commercial use (11%). As the world has a limited supply of these non-renewable sources, the United States (among others) is...

Combustion Chemistry of Fuels: Quantitative Speciation Data Obtained from an Atmospheric High-temperature Flow Reactor with Coupled Molecular-beam Mass Spectrometer

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Cited by 8 •

2018

An investigation of the oxidative combustion chemistry of novel biofuels, fuel components, or jet fuels by comparison of quantitative speciation data is presented. The data can be used for kinetic model validation and enables fuel assessment strategies.This manuscript describes the atmospheric high-temperature flow reactor and demonstrates its capabilities.

Preparation and Evaluation of Hybrid Composites of Chemical Fuel and Multi-walled Carbon Nanotubes in the Study of Thermopower Waves

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Cited by 2 •

2015

A protocol for conducting thermopower wave experiments is presented. The synthesis of hybrid composites of a chemical fuel and micro/nanostructured material, manufacturing of a thermopower wave generator, and methods for measuring the corresponding physical phenomena are described.

Probing and Mapping Electrode Surfaces in Solid Oxide Fuel Cells

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Cited by 4 •

2012

We present a unique platform for characterizing electrode surfaces in solid oxide fuel cells (SOFCs) that allows simultaneous performance of multiple characterization techniques (e.g. in situ Raman spectroscopy and scanning probe microscopy alongside electrochemical measurements). Complementary information from these analyses may help to advance toward a more profound understanding of electrode reaction and degradation mechanisms, providing insights into rational design of better materials for...

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