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Phosphates are the naturally occurring form of the element .

In , a phosphate is an , salt, or derived from a phosphoric acid. It most commonly means orthophosphate, a derivative of orthophosphoric acid, .

The phosphate or orthophosphate ion is derived from phosphoric acid by the removal of three . Removal of one proton gives the dihydrogen phosphate ion while removal of two protons gives the hydrogen phosphate ion . These names are also used for salts of those anions, such as ammonium dihydrogen phosphate and trisodium phosphate.

File:3-phosphoric-acid-3D-balls.png|
File:2-dihydrogenphosphate-3D-balls.png|
Dihydrogen
phosphate File:1-hydrogenphosphate-3D-balls.png|
Hydrogen
phosphate File:0-phosphate-3D-balls.png|
Phosphate or orthophosphate

In organic chemistry, phosphate or orthophosphate is an , an ester of orthophosphoric acid of the form where one or more hydrogen atoms are replaced by groups. An example is trimethyl phosphate, . The term also refers to the trivalent functional group in such esters. Phosphates may contain sulfur in place of one or more oxygen atoms ( and organothiophosphates).

Orthophosphates are especially important among the various phosphates because of their key roles in , , and , and their economic importance for and industry. The addition and removal of phosphate groups ( and dephosphorylation) are key steps in cell .

can condense to form .


Chemical properties
The phosphate ion has a of 94.97 g/mol, and consists of a central atom surrounded by four atoms in a arrangement. It is the of the hydrogen phosphate ion , which in turn is the conjugate base of the dihydrogen phosphate ion , which in turn is the conjugate base of , .

Many phosphates are in at standard temperature and pressure. The sodium, potassium, , , and ammonium phosphates are all water-soluble. Most other phosphates are only slightly soluble or are insoluble in water. As a rule, the hydrogen and dihydrogen phosphates are slightly more soluble than the corresponding phosphates.


Equilibria in solution
In water solution, orthophosphoric acid and its three derived anions coexist according to the dissociation and recombination equilibria below
(2025). 9780805371710, Benjamin Cummings.
K_{a1} = \frac{\ce{H+}\ce{H2PO4-}}{\ce{H3PO4}} \approx 7.5 \times 10^{-3}p Ka1 = 2.14
K_{a2} = \frac{\ce{H+}\ce{HPO4^2-}}{\ce{H2PO4-}} \approx 6.2 \times 10^{-8}p Ka2 = 7.20
K_{a3} = \frac{\ce{H+}\ce{PO4^3-}}{\ce{HPO4^2-}} \approx 2.14 \times 10^{-13}p Ka3 = 12.37
Values are at 25°C and 0 ionic strength.

The p K a values are the pH values where the concentration of each species is equal to that of its . At pH 1 or lower, the phosphoric acid is practically undissociated. Around pH 4.7 (mid-way between the first two p K a values) the dihydrogen phosphate ion, , is practically the only species present. Around pH 9.8 (mid-way between the second and third p K a values) the monohydrogen phosphate ion, , is the only species present. At pH 13 or higher, the acid is completely dissociated as the phosphate ion, .

This means that salts of the mono- and di-phosphate ions can be selectively crystallised from aqueous solution by setting the pH value to either 4.7 or 9.8.

In effect, , and behave as separate because the successive p K a differ by more than 4.

Phosphate can form many ions such as , , and triphosphate, . The various ions (which are usually long linear polymers) have an empirical formula of and are found in many compounds.


Biochemistry of phosphates
In biological systems, phosphorus can be found as free phosphate anions in solution ( inorganic phosphate) or bound to organic molecules as various .Jastrzab Renata, Nowak Martyna, Zabiszak Michał, Odani Akira, Kaczmarek Małgorzata T. Significance and properties of the complex formation of phosphate and polyphosphate groups in particles present in living cells 10.1016/j.ccr.2021.213810 Coordination Chemistry Reviews Volume 435, 15 May 2021, 213810

Inorganic phosphate is generally denoted Pi and at physiological () pH primarily consists of a mixture of and ions. At a neutral pH, as in the (pH = 7.0), the concentrations of the orthophosphoric acid and its three anions have the ratios \begin{align}

 \frac{[\ce{H2PO4-}]}{[\ce{H3PO4}]} &\approx 7.5 \times 10^4 \\[4pt]
 \frac{[\ce{HPO4^2-}]}{[\ce{H2PO4-}]} &\approx 0.62 \\[4pt]
 \frac{[\ce{PO4^3-}]}{[\ce{HPO4^2-}]} &\approx 2.14 \times 10^{-6}
     
\end{align}

Thus, only the and ions are present in significant amounts in the cytosol (62% , 38% ). In extracellular fluid (pH = 7.4), this proportion is inverted (61% , 39% ).

Inorganic phosphate can also be present as anions , which give orthophosphate by :

Organic phosphates are commonly found in the form of esters as (e.g. AMP, ADP, and ATP) and in and . Free orthophosphate anions can be released by the hydrolysis of the bonds in ATP or ADP. These and dephosphorylation reactions are the immediate storage and source of energy for many processes. ATP and ADP are often referred to as high-energy phosphates, as are the in muscle tissue. Similar reactions exist for the other nucleoside diphosphates and triphosphates.


Bones and teeth
An important occurrence of phosphates in biological systems is as the structural material of bone and teeth. These structures are made of crystalline calcium phosphate in the form of . The hard dense enamel of may contain , a calcium phosphate where some of the groups have been replaced by ions.


Medical and biological research uses
Phosphates are medicinal salts of phosphorus. Some phosphates, which help cure many urinary tract infections, are used to make urine more acidic. To avoid the development of in the urinary tract, some phosphates are used. For patients who are unable to get enough phosphorus in their daily diet, phosphates are used as dietary supplements, usually because of certain disorders or diseases. Injectable phosphates can only be handled by qualified health care providers.


Plant metabolism
Plants take up phosphorus through several pathways: the arbuscular mycorrhizal pathway and the direct uptake pathway.


Adverse health effects
Hyperphosphatemia, or a high blood level of phosphates, is associated with elevated in the general population. The most common cause of hyperphosphatemia in people, dogs, and cats is kidney failure. In cases of hyperphosphatemia, limiting consumption of phosphate-rich foods, such as some meats and dairy items and foods with a high phosphate-to-protein ratio, such as soft drinks, fast food, processed foods, condiments, and other products containing phosphate-salt additives is advised.Renal Dietitian Team, Reducing phosphate in your diet, Oxford University Hospitals NHS Foundation Trust, 2022 review

Phosphates induce vascular , and a high concentration of phosphates in blood was found to be a predictor of cardiovascular events.


Production

Geological occurrence
Phosphates are the naturally occurring form of the element , found in many phosphate minerals. In mineralogy and geology, phosphate refers to a rock or ore containing phosphate ions. Inorganic phosphates are to obtain phosphorus for use in agriculture and industry.

The largest global producer and exporter of phosphates is . Within North America, the largest deposits lie in the region of central , the Soda Springs region of southeastern , and the coast of . Smaller deposits are located in , , Georgia, and . The small island nation of Nauru and its neighbor , which used to have massive phosphate deposits of the best quality, have been mined excessively. Rock phosphate can also be found in Egypt, Israel, Palestine, Western Sahara, , Tunisia, Togo, and Jordan, countries that have large phosphate-mining industries.

mines are primarily found in:

In 2007, at the current rate of consumption, the supply of phosphorus was estimated to run out in 345 years. However, some scientists thought that a "" would occur in 30 years and from Institute for Sustainable Futures said that at "current rates, reserves will be depleted in the next 50 to 100 years". Reserves refer to the amount assumed recoverable at current market prices. In 2012 the USGS estimated world reserves at 71 billion tons, while 0.19 billion tons were mined globally in 2011.U.S. Geological Survey Phosphate Rock Phosphorus comprises 0.1% by mass of the average rockU.S. Geological Survey (while, for perspective, its typical concentration in vegetation is 0.03% to 0.2%), and consequently there are quadrillions of tons of phosphorus in Earth's 3×1019-ton crust,American Geophysical Union, Fall Meeting 2007, abstract #V33A-1161. Mass and Composition of the Continental Crust albeit at predominantly lower concentration than the deposits counted as reserves, which are inventoried and cheaper to extract. If it is assumed that the phosphate minerals in are mainly hydroxyapatite and fluoroapatite, phosphate minerals contain roughly 18.5% phosphorus by weight. If phosphate rock contains around 20% of these minerals, the average phosphate rock has roughly 3.7% phosphorus by weight.

Some phosphate rock deposits, such as Mulberry in Florida, are notable for their inclusion of significant quantities of radioactive uranium isotopes. This is a concern because radioactivity can be released into surface waters from application of the resulting phosphate fertilizer.

In December 2012, Cominco Resources announced an updated compliant resource of their Hinda project in Congo-Brazzaville of 531 million tons, making it the largest measured and indicated phosphate deposit in the world.

Around 2018, Norway discovered phosphate deposits almost equal to those in the rest of Earth combined.

In July 2022 China announced quotas on phosphate exportation.

The largest importers in millions of metric tons of phosphate are Brazil 3.2, India 2.9 and the USA 1.6.


Mining
The three principal phosphate producer countries (China, Morocco and the United States) account for about 70% of world production.

+ Production and global reserves of natural phosphate by country in 2019
(USGS, 2021) ! Country !! Production
(millions kg) !! Share of
global
production (%) !! Reserves
(millions kg)
'


Ecology
In ecological terms, because of its important role in biological systems, phosphate is a highly sought after resource. Once used, it is often a limiting nutrient in environments, and its availability may govern the rate of growth of organisms. This is generally true of environments, whereas nitrogen is more often the limiting nutrient in marine (seawater) environments. Addition of high levels of phosphate to environments and to micro-environments in which it is typically rare can have significant ecological consequences. For example, blooms in the populations of some organisms at the expense of others, and the collapse of populations deprived of resources such as oxygen (see ) can occur. In the context of pollution, phosphates are one component of total dissolved solids, a major indicator of water quality, but not all phosphorus is in a molecular form that algae can break down and consume.

Calcium hydroxyapatite and calcite precipitates can be found around in topsoil. As clay minerals promote biomineralization, the presence of bacteria and clay minerals resulted in calcium hydroxyapatite and calcite precipitates.

Phosphate deposits can contain significant amounts of naturally occurring heavy metals. Mining operations processing can leave piles containing elevated levels of , , , , , and . Unless carefully managed, these waste products can leach heavy metals into groundwater or nearby estuaries. Uptake of these substances by plants and marine life can lead to concentration of toxic heavy metals in food products.


See also
  • Diammonium phosphate –
  • Disodium phosphate –
  • Monosodium phosphate –
  • compounds
  • Ouled Abdoun Basin
  • Phosphate conversion coating


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