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PCO2

Partial pressure of carbon dioxide, often used in reference to blood

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pCO2, or P_{\mathrm {CO} {\vphantom {A}}_{\smash[{t}]{2}}}, depending on the context and use, is the partial pressure of carbon dioxide (CO2). It can refer to blood physiology or to atmospheric chemistry and geochemistry, including meteorology, climate science, hydrochemistry, oceanography, and limnology to describe the fractional pressure of CO2 as a function of its concentration in gas or dissolved phases. The units of pCO2, or P_{\mathrm {CO} {\vphantom {A}}_{\smash[{t}]{2}}}, are pascal (Pa), bar (105 Pa), atm (1.013 bar), mmHg, torr (1/760 atm, or ≅ 1 mmHg), or any other standard unit of pascal (MPa) or atmospheric pressure.

01Medicine

In medicine, the partial pressure of carbon dioxide in arterial blood is called P_{a_{\mathrm {CO} {\vphantom {A}}_{\smash[{t}]{2}}}} or PaCO2. Measurement of P_{a_{\mathrm {CO} {\vphantom {A}}_{\smash[{t}]{2}}}} in the systemic circulation indicates the effectiveness of ventilation at the lungs' alveoli, given the diffusing capacity of the gas. It is a good indicator of respiratory function and the closely related factor of acid-base homeostasis, reflecting the amount of acid in the blood (without lactic acid). Normal values for humans are in the range of 35-45 mmHg. Values less than this may indicate hyperventilation and (if blood pH is greater than 7.45) respiratory alkalosis. Values greater than 45 mmHg may indicate hypoventilation, and (if blood pH is less than 7.35) respiratory acidosis.

02Geochemistry and aquatic sciences

In geochemistry and aquatic chemistry, the partial pressure of CO2, generally denoted PCO2 (with an uppercase letter), is the pressure that a hypothetical or real gas phase composed solely of pure carbon dioxide would exert on the aqueous phase when the two phases are in thermodynamic equilibrium at the sample's temperature and pressure, as described by Henry's law and Raoult's law. The thermodynamic activity of CO2 gas is its fugacity (𝑓CO2), which represents the non-ideal "effective" partial pressure of CO2 at higher total pressures and temperatures.

Oceanographers and limnologists use pCO2 to measure the amount of carbon dioxide dissolved in water, as well as to parameterize its flux into (influx) and out of (efflux) the atmosphere. Carbon dioxide reacts with water to form bicarbonate and carbonate ions, such that the relative solubility of carbon dioxide in water is greater than that of other unreactive gases (e.g. helium). As more carbon dioxide dissolves in water, its pCO2 rises until it equals the pCO2 of the overlying atmosphere. Conversely, a body of water with a pCO2 greater than that of the atmosphere effluxes carbon dioxide.

pCO2 is additionally affected by water temperature and salinity. Carbon dioxide is less soluble in warmer water than cooler water, so hot water will exhibit a larger pCO2 than cold water with the same concentration of carbon dioxide. pCO2 can be used to describe the inorganic carbon system of a body of water, together with other parameters such as pH, dissolved inorganic carbon, and alkalinity. Together, these parameters describe the concentration and speciation of inorganic carbon species (CO2(aq), HCO3, CO32−) in water.

Biological processes such as respiration and photosynthesis affect and can be affected by aquatic pCO2. Respiration degrades organic matter, releasing CO2 into the water column and increasing pCO2. Photosynthesis assimilates inorganic carbon, thereby decreasing aquatic pCO2.

03Notation in geochemistry

In contrast to the partial pressures of gases, which are often denoted by a lowercase letter in physical chemistry (e.g., pO2, pN2), PCO2 is commonly written with an uppercase letter in geochemistry.

The notation pCO2 with a lowercase letter is not recommended, as it can be confused with the Sørensen prefix p (p for power), as in the logarithmic p-scale used in analytical chemistry to denote very low numerical values, pX = -log10 X, as in pH = -log10 [H+], or pK = -log10 K, where [H+] is the effective concentration (mol/L) of hydronium ions in solution, or, more exactly, its chemical activity, and K corresponds to a reaction equilibrium constant. In Sørensen notation, pCO2 = -log [CO2] = -log PCO2 = pPCO2, which can cause severe confusion about the sign of the log value.

To avoid such confusion, a clear and unambiguous notation is necessary. There are several possibilities:

  • PCO2 = 10-3.5 (bar, atm) = 3.16 × 10-4 (bar, atm) or 316 ppmv = 0.0316 vol.%,
    (about the atmospheric CO2 concentration in early 1970);
  • log10 PCO2 (bar, atm) = -3.5;
  • pPCO2 (bar, atm) = -log10 PCO2 (bar, atm) = -log10 10-3.5 = +3.5.

The first two notations, which retain the true negative power sign (when PCO2 < 1 bar), are clear, whereas the third, with a positive sign, pPCO2 (which could be more simply written as pCO2), is unusual and not recommended in geochemistry because it can cause considerable confusion about the sign of the logarithm.

In practice, negative values of log10 PCO2 (partial pressure of CO2) in natural water are commonly reported in the scientific literature and in geochemistry textbooks, typically ranging from -1.5 to -5.5.

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Sources and credits

This article is adapted from the Wikipedia article PCO2, written by its contributors and licensed under CC BY-SA 4.0. Fathomly has changed the layout, removed citation markers, navigation and maintenance notices, and adjusted punctuation. This adapted version is shared under the same license. For references, see the original article.

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