Greenhouse gas emissionsGreenhouse gas emissions (abbreviated as GHG emissions) from human activities strengthen the greenhouse effect, contributing to climate change. Carbon dioxide (), from burning fossil fuels such as coal, oil, and natural gas, is one of the most important factors in causing climate change. The largest emitters are China followed by the US, although the United States has higher emissions per capita. The main producers fueling the emissions globally are large oil and gas companies.
Greenhouse gas inventoryGreenhouse gas inventories are emission inventories of greenhouse gas emissions that are developed for a variety of reasons. Scientists use inventories of natural and anthropogenic (human-caused) emissions as tools when developing atmospheric models. Policy makers use inventories to develop strategies and policies for emissions reductions and to track the progress of those policies. Regulatory agencies and corporations also rely on inventories to establish compliance records with allowable emission rates.
Greenhouse gas monitoringGreenhouse gas monitoring is the direct measurement of greenhouse gas emissions and levels. There are several different methods of measuring carbon dioxide concentrations in the atmosphere, including infrared analyzing and manometry. Methane and nitrous oxide are measured by other instruments. Greenhouse gases are measured from space such as by the Orbiting Carbon Observatory and networks of ground stations such as the Integrated Carbon Observation System.
Gaz à effet de serreLes gaz à effet de serre (GES) sont des composants gazeux qui absorbent le rayonnement infrarouge émis par la surface terrestre et contribuent ainsi à l'effet de serre. L'augmentation de leur concentration dans l'atmosphère terrestre est l'un des facteurs à l'origine du réchauffement climatique. Un gaz ne peut absorber les rayonnements infrarouges qu'à partir de trois atomes par molécule, ou à partir de deux si ce sont deux atomes différents.
Soil organic matterSoil organic matter (SOM) is the organic matter component of soil, consisting of plant and animal detritus at various stages of decomposition, cells and tissues of soil microbes, and substances that soil microbes synthesize. SOM provides numerous benefits to the physical and chemical properties of soil and its capacity to provide regulatory ecosystem services. SOM is especially critical for soil functions and quality.
Particulate organic matterParticulate organic matter (POM) is a fraction of total organic matter operationally defined as that which does not pass through a filter pore size that typically ranges in size from 0.053 millimeters (53 μm) to 2 millimeters. Particulate organic carbon (POC) is a closely related term often used interchangeably with POM. POC refers specifically to the mass of carbon in the particulate organic material, while POM refers to the total mass of the particulate organic matter.
Matière organiquevignette|Le bois est essentiellement composé de matière organique (lignine et cellulose principalement), très dense en carbone. La matière organique (parfois abrégée MO) est la matière fabriquée par les êtres vivants (végétaux, animaux, champignons et autres décomposeurs dont micro-organismes). La matière organique compose leurs tissus (tige, coquille, muscles, etc). Elle compose la biomasse vivante et morte (nécromasse) au sein d'un cycle décomposition/biosynthèse où une part de cette matière est fossilisée (charbon, pétrole, gaz naturel), minéralisée ou recyclée dans les écosystèmes et agro-écosystèmes.
Fugitive gas emissionsFugitive gas emissions are emissions of gas (typically natural gas, which contains methane) to atmosphere or groundwater which result from oil and gas or coal mining activity. In 2016, these emissions, when converted to their equivalent impact of carbon dioxide, accounted for 5.8% of all global greenhouse gas emissions. Most fugitive emissions are the result of loss of well integrity through poorly sealed well casings due to geochemically unstable cement.
Scale of temperatureScale of temperature is a methodology of calibrating the physical quantity temperature in metrology. Empirical scales measure temperature in relation to convenient and stable parameters or reference points, such as the freezing and boiling point of water. Absolute temperature is based on thermodynamic principles: using the lowest possible temperature as the zero point, and selecting a convenient incremental unit. Celsius, Kelvin, and Fahrenheit are common temperature scales.
TempératureLa température est une grandeur physique mesurée à l’aide d’un thermomètre et étudiée en thermométrie. Dans la vie courante, elle est reliée aux sensations de froid et de chaud, provenant du transfert thermique entre le corps humain et son environnement. En physique, elle se définit de plusieurs manières : comme fonction croissante du degré d’agitation thermique des particules (en théorie cinétique des gaz), par l’équilibre des transferts thermiques entre plusieurs systèmes ou à partir de l’entropie (en thermodynamique et en physique statistique).