- Uranium in the environment
Uranium in the environment, this page is about the
science ofuranium in the environment and in animals (including humans). Thelegal andsocial issues associated with uranium are discussed elsewhere. This page is a subpage ofactinides in the environment .Occurrence
From the land
Uranium is a naturally occurring element found in low levels within all rock, soil, and water. This is the highest-numbered element to be found naturally in significant quantities on earth. According to the
United Nations the normal concentration of uranium in soil is 300 μg kg-1 to 11.7 mg kg-1. (United Nations Scientific Committee on the Effects of Atomic Radiation, 1993, Report to the General Assembly, with scientific annexes, New York)It is considered to be more plentiful than
antimony ,beryllium ,cadmium ,gold , mercury,silver , ortungsten and is about as abundant asarsenic ormolybdenum . It is found in many minerals includinguraninite (most common uranium ore),autunite ,uranophane ,torbernite , andcoffinite . Significant concentrations of uranium occur in some substances such asphosphate rock deposits, and minerals such aslignite , andmonazite sands in uranium-richore s (it is recovered commercially from these sources).From the sea
Seawater contains about 3.3 parts per billion of uranium by weight (3.3 µg/kg) [http://www.webelements.com/webelements/elements/text/U/geol.html] as uranium(VI) forms soluble
carbonate complexes. The extraction of uranium from seawater has been considered as a means of obtaining the element.Sources
Note that uranium is present in most soils at a low concentration, so the mere fact that a soil contains uranium does not mean that it has been artificially contaminated by uranium. While it is possible to use the
isotope signature to identify the origin of uranium in a sample, for instance 236U is only formed in nuclear reactors fueled with 235U, but the 238U/235U ratio should be used with some caution. InAfrica a set ofnatural nuclear fission reactor s operated in one uranium rich area, theOklo region in Gabon.Metal
Munitions
"See also
Depleted uranium#Safety and environmental issues andDepleted uranium#Health Concerns "The potential danger of exposure to
depleted uranium has received widespread publicity because of the use of DU munitions in the 1991Gulf War and 1999Kosovo War , as well as current conflicts [ [http://observer.guardian.co.uk/politics/story/0,6903,772633,00.html Gulf veteran babies 'risk deformities' | Politics | The Observer ] ] "A total of just over 290 metric tons of DU projectiles were fired by the US during the Gulf War (comapred ["sic"] to 9 tons in Kosovo and 3 tons in Bosnia and Herzegovina)." [p68 UNEP study, 2003, [http://www.unep.org/pdf/iraq_ds_lowres.pdf] ] The potential long-term effects on people living in areas where DU munitions were used has also caused some concern.Fragments from projectile DU munitions could cause substantial inhalation exposure risks in certain circumstances if the exposure was high. [ [http://www.globalsecurity.org/military/systems/munitions/du.htm Depleted Uranium ] ] Studies by the
University of Denver conclude that there is no risk of radiological effects on humans from DU munitions. However, there exists evidence that thedensity of uranium particles may lead to a variety of health effects. Uranium is apyrophoric metal, which causes an incendiary affect in DU weapons, but also scatters the inert uranium 238 isotope into the air. DU exists normally in our environment. We eat it and breathe it in trace amounts on a daily basis. However, in areas where DU weapons have been used, uranium saturation can be dangerous. Because uranium is so heavy, the human body is poor at removing it. If inhaled in large amounts, it can causerespiratory arrest and is difficult to remove. If ingested, thekidneys filter uranium from the blood, and expel it in urine, but due to the difficulty of removing the large atom, it tends to accumulate more quickly than it is removed in areas of high concentrations of DU. Due to the weight of the atom, some believe this puts dangerous strain on kidney functions, and can lead to kidney failure.Air crashes
Uranium metal, as depleted uranium, has been used in aircraft for trim weights in the past (although the practice has been discontinued), so after an air crash a release of uranium or its combustion products is possible.
Dispersion of uranium metal
* Uranium metal can disperse into the air and water, United Nations Environment Programme (UNEP) study [http://www.unep.org/Documents.multilingual/Default.asp?DocumentID=241&ArticleID=3036] says in part:: "The most important concern is the potential for future groundwater contamination by corroding penetrators (ammunition tips made out of DU). The munition tips recovered by the UNEP team had already decreased in mass by 10-15% in this way. This rapid corrosion speed underlines the importance of monitoring the water quality at the DU sites on an annual basis."
* For further reading please see: [http://www.isis-online.org/publications/dprk/ir080194.html] [http://www.royalsoc.ac.uk/downloaddoc.asp?id=1183] [http://www.eh.doe.gov/techstds/standard/hdbk1081/hbk1081e.html]
Combustion
Studies of depleted uranium aerosol exposure suggest that uranium combustion product particles would quickly settle out of the air [http://www.deploymentlink.osd.mil/du_library/du_ii/du_ii_tabl1.htm] and thus could not affect populations more than a few kilometers from target areas. [http://www.health-physics.com/pt/re/healthphys/abstract.00004032-200304000-00014.htm]
The U.S. has admitted that there have been over 100 "friendly fire" incidents in which members of the U.S. military have been struck by DU munitions, and that an unknown number have been exposed to DU via inhalation of combustion products from burning DU munitions.
Corrosion
It has been reported that the corrosion of uranium in a silica rich aqueous solution forms both
uranium dioxide and uranium trioxide. [http://www.the-conference.com/2003/Gold2003/abstracts/A493.pdf]In pure water,
schoepite {(UO2)8O2(OH)12.12(H2O)} is formed [http://webmineral.com/data/Schoepite.shtml] in the first week and then after four monthsstudtite {(UO2)O2·4(H2O)} was formed. A report on the corrosion of uranium metal has been published by theRoyal Society . [http://www.royalsoc.ac.uk/downloaddoc.asp?id=1183] [http://www.royalsoc.ac.uk/downloaddoc.asp?id=1182]Uranium
metal reacts withwater to formhydrogen gas, this reaction formsuranium dioxide and 2 to 9%uranium hydride . It is important to note that the rate of corrosion due to water is far greater than that caused by oxygen at temperatures around 100 °C. At pH values below 2 the corrosion rate at 100 °C goes down greatly, while as pH values go from 7 upwards the corrosion rate declines. Gamma irradiation has little effect on the corrosion rate. M. McD. Baker, L. N. Less, S. Orman, Trans. Faraday Soc., 1966, 2513-2524 DOI: 10.1039/TF9666202513.Oxygen gas inhibits the corrosion of uranium by water. M. McD. Baker, L. N. Less and S. Orman, Transactions of the Faraday Society, 1966, 62, 2525 - 2530 DOI: 10.1039/TF9666202525.
* Further reading
** Uranium + water reaction. Part 1.—Kinetics, products and mechanism M. McD. Baker, L. N. Less, S. Orman, Trans. Faraday Soc., 1966, 2513-2524 DOI: 10.1039/TF9666202513
** Uranium + water reaction. Part 2.—Effect of oxygen and other gases, M. McD. Baker, L. N. Less and S. Orman, Transactions of the Faraday Society, 1966, 62, 2525 - 2530 DOI: 10.1039/TF9666202525.
Compounds
From uranium mining
During the extraction of uranium ore and its processing, some releases of uranium occur. The releases of
radium and other decay products of uranium are normally more important than the uranium in tailings ponds at the mines and ore processing centers."See
Uranium mining for further details."From highly active waste in the form of glass
Note that while the vast majority of the uranium is removed by
PUREX nuclear reprocessing , a small amount of uranium is left in theraffinate from the first cycle of the PUREX process. In addition due to the decay of the transplutoniumminor actinides and the residualplutonium in the waste the concentration of uranium will increase on the waste. This will occur on a time scale of hundreds and thousands of years.The waste from PUREX processing of used nuclear fuel is converted in the west into a
borosilicate glass while in the formersoviet bloc it is converted into a phosphate glass. The glass formed when placed in water will dissolve very slowly, [http://www.shef.ac.uk/isl/papers/MIOCorrosionICG2004paper.pdf] according to theITU it will require about 1 million years for 10% of the glass to dissolve in water."See
nuclear waste for more details."From spent fuel
Spent
uranium dioxide fuel is very insoluble in water, it is likely to release uranium (andfission products ) even more slowly than borosilicate glass when in contact with water.Behaviour in soil
A study has been done in the
USA on the chemical form of uranium in soil, this was published by Benjamin C. Bostick, Scott Fendorf, Mark O. Barnett, Phillip M. Jardine and Scott C. Brooks in Soil Science Society of America Journal 66:99-108 (2002) [http://soil.scijournals.org/cgi/content/full/66/1/99] .It has been suggested that it is possible to form a "reactive barrier" by adding something to the soil which will cause the uranium to become fixed. One method of doing this is to use a mineral (
apatite ) [http://www-ssrl.slac.stanford.edu/research/highlights_archive/u_ha_prb.html] while a second method is to add a food substance such asacetate to the soil. This will enable bacteria to reduce the uranium (VI) to uranium (IV) which is much less soluble.In
peat like soils the uranium will tend to bind to thehumic acids , this tends to fix the uranium in the soil. [http://www.magnet.fsu.edu/publications/2000annualreview/pdfs/NHMFL2000AR-Geochemistry.pdf] A report on the binding of uranium, other radioactive metals and non radioactive metal to humic acid has been published by the INE (German nuclear engineering research center) atFZK (Karlsruhe ) has been published. [http://www.ubka.uni-karlsruhe.de/vvv/fzk/6557/6557.pdf] also see the paper by S. Pompe, K. Schmeide, M. Bubner, G. Geipel, K.-H. Heise, G. Bernhard and H. Nitsche in "Radiochimica Acta", 2000, 88, 553-558 in which the effect of thephenol groups in the humic acid upon the binding of the uranium are studied. A series of papers have been written oncoordination polymers or uranium(VI) with polycarboxylate s, these have been used as models for the uranyl complexes of the humic acids.For instance see G. Micera "et al.", "Inorganica Chimica Acta", 1985, 109, 135-139 which is a paper about the coordination of uranium to 2,6-dihydroxy
benzoate which is a carboxylic acid which hasphenol ic groups close to thecarboxylic acid group.Some other work on the binding of
actinide s witharomatic carboxylates has been reported. A paper on the binding ofneptunium (V) {neptunyl } withbenzene -1,2,4,5-tetracarboxylic acid has been reported by F. Nectoux "et al.", "Journal of the Less-Common Metals", 1984, 97, 1-10.A
PhD thesis on the interactions of uranium withBoom Clay has been published. [http://edoc.bib.ucl.ac.be:81/ETD-db/collection/available/BelnUcetd-06252004-190343/]It is interesting to note that A. Rossberg, L. Baraniak, T. Reich, C. Hennig, G. Bernhard and H. Nitsche, "Radiochimica Acta", 2000, 88, 593-597 describes an
EXAFS study of the interactions of uranium with the degradation products ofwood such asprotocatechuic acid (3,4-dihydroxy-benzoic acid),catechol (2-hydroxyphenol),pyrogallol (1,2,3-trihydroxybenzol), andvanillic acid (4-hydroxy-3-methoxybenzoic acid).Health effects
Soluble uranium salts are
toxic , though less so than those of other heavy metals such aslead or mercury. The organ which is most affected is thekidney . Soluble uranium salts are readily excreted in theurine , although some accumulation in the kidneys does occur in the case of chronic exposure. TheWorld Health Organization has established a daily "tolerated intake" of soluble uranium salts for the general public of 0.5 μg/kg body weight (or 35 μg for a 70 kg adult): exposure at this level is not thought to lead to any significant kidney damage. [http://www.iaea.org/NewsCenter/Features/DU/faq_depleted_uranium.shtml]The
antidote for uranium in humans inbicarbonate , this is used because uranium(VI) forms complexes withcarbonate . An alternative is to use Tiron (O. Braun, C. Contino, M.-H. Hengè, E. Ansoborlo and B. Pucci, "Analusis", 1999, 27, 65-68. [http://bovik.org/du/chelators.pdf] ). An article on the design of new actinideantidote s can be read at "Chemical Reviews", 2003, 103, 4207-4282.Humans
Studies have shown that the use of DU ammunition has no measurable detrimental health effects, either in the short or long term. The
International Atomic Energy Agency reported in 2003 that, "based on credible scientific evidence, there is no proven link between DU exposure and increases in human cancers or other significant health or environmental impacts." [http://www.iaea.org/NewsCenter/Features/DU/faq_depleted_uranium.shtml]Gulf War syndrome
A two year study headed by Al Marshall of
Sandia National Laboratories analyzed some health effects associated with accidental exposure to depleted uranium during the 1991Gulf War , but did not consider any nonradiological reproductive toxicity, developmental toxicity, or immunological effects. Marshall’s study concluded that the reports of serious health risks from DU exposure are not supported by veteran medical statistics and were consistent with earlier studies form Los Alamos and the New England Journal of Medicine. [http://www.sandia.gov/news-center/news-releases/2005/def-nonprolif-sec/snl-dusand.pdf]In the
Balkans war zone, an absence of problems is seen by some as evidence of DU muntions' safety: "Independent investigations by the World Health Organization, European Commission, European Parliament, United Nations Environment Programme, United Kingdom Royal Society, and the Health Council of the Netherlands all discounted any association between depleted uranium and leukemia or other medical problems." [http://www.globalsecurity.org/military/systems/munitions/du.htm]However in 2004, the UK Pensions Appeal Tribunal Service granted a single disability claim to a Gulf War soldier who attributed his aching joints and children's health problems to depleted uranium. This claim was vigorously disputed by the MoD. [http://vitw.org/archives/405] [http://www.cadu.org.uk/news/17.htm#icbuw]
Some studies have indicated that DU passes into humans more easily than previously thought after battlefield use. [http://www.triumf.ca/safety/rpt/rpt_2/node22.html] [http://toxsci.oxfordjournals.org/cgi/content/abstract/89/1/287]
Birth defects
Most scientific studies have found no link between uranium and birth defects, but some claim statistical correlations between soldiers exposed to DU, and those who were not, concerning reproductive abnormalities.
One study concluded that epidemiological evidence is consistent with an increased risk of birth defects in the offspring of persons exposed to DU. [http://www.ehjournal.net/content/4/1/17] Environmental groups and others have expressed concern about the health effects of depleted uranium, [http://www.guardian.co.uk/uranium/story/0,7369,994981,00.html] and there is some debate over the matter. Some people have raised concerns about the use of this material, particularly in munitions, because of its mutagenicity, [http://toxsci.oxfordjournals.org/cgi/content/abstract/89/1/287] teratogenicity in mice, [http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=12539863&dopt=Abstract] [http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=11738513&dopt=Abstract] and neurotoxicity [http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=15681127] and its suspected carcinogenic potential. Additional concerns address unexploded DU munitions leeching into groundwater over time. [http://dx.doi.org/10.1016/j.jenvrad.2004.05.015] .
Several sources have attributed the increase in the rate of birth defects in the children of
Gulf War veterans and in Iraqis to depleted uranium inhalation exposure, [http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=11738513&dopt=Abstract] [http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&list_uids=2366813&dopt=Abstract] A 2001 study of 15,000 February 1991 U.S. Gulf War combat veterans and 15,000 control veterans found that the Gulf War veterans were 1.8 (fathers) to 2.8 (mothers) times more likely to have children with birth defects. [http://www.annalsofepidemiology.org/article/PIIS1047279701002459/abstract] In a study of UK troops, "Overall, the risk of any malformation among pregnancies reported by men was 50% higher in Gulf War Veterans (GWV) compared with Non-GWVs". The conclusion of the study stated " We found no evidence for a link between paternal deployment to the Gulf war and increased risk of stillbirth, chromosomal malformations, or congenital syndromes. Associations were found between fathers' service in the Gulf war and increased risk of miscarriage and less well-defined malformations, but these findings need to be interpreted with caution as such outcomes are susceptible to recall bias. The finding of a possible relationship with renal anomalies requires further investigation. There was no evidence of an association between risk of miscarriage and mothers' service in the gulf." [http://ije.oupjournals.org/cgi/content/full/33/1/74]However, as yet, all evidence surrounding DU and birth defects by credible scientific sources has been deemed circumstantial. There is as yet no concrete evidence to suggest that direct exposure to DU is unsafe unless inhaled or ingested.
Animals
It has been reported that uranium has caused
reproductive effects, and other health problems inrodents ,frog s and other animals.Uranium was shown to have cytotoxic, genotoxic and carcinogenic effects in animal studies (PMID 7694141, PMID 16283518). It has been shown in
rodent s andfrog s that water soluble forms of uranium areteratogenic (PMID 16124873, PMID 11738513, PMID 12539863)Bacterial biochemistry
It has been shown in some recent work at
Manchester thatbacteria can reduce and fix uranium insoil s. [http://www.medscape.com/medline/abstract/16124300?prt=true] These bacterium change soluble U(VI) into the highly insoluble complex forming U(IV) ion, hence stoppingchemical leaching .ee also
*
Uranium
*Uranium mining
*List of uranium mines References
* Radioactivity, Ionizing Radiation and Nuclear Energy, by J. Hala and J.D. Navratil.ç
* Martín-Gil J., Martín-Gil F.J, José-Yacamán M., Carapia-Morales L. and Falcón-Bárcenas T. Microwave-assisted Synthesis of Hydrated Sodium Uranyl Oxonium Silicate. "Polish Journal of Chemistry". 2005. 79, 1399-1403
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