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Sodium thiosulfate

Sodium thiosulfate

Sodium thiosulfate

Industrial production and laboratory synthesis

On an industrial scale, sodium thiosulfate is produced chiefly from liquid waste products of sodium sulfide or sulfur dye manufacture. In the laboratory, this salt can be prepared by heating an aqueous solution of sodium sulfite with sulfur.

Principal reactions and applications

Sodium thiosulfate

Thiosulfate anion characteristically reacts with dilute acids to produce sulfur, sulfur dioxide and water:

Na2S2O3 + 2HCl 2NaCl + S + SO2 + H2O

This reaction is known as a clock reaction, because when the sulfur reaches a certain concentration the solution turns from colourless to a pale yellow. This reaction has been employed to generate colloidal sulfur. When the protonation is conducted at low temperatures, H2S2O3 (thiosulfuric acid) can be obtained. It is a strong acid pKa = 0.6, 1.7.

Iodometry

In analytical chemistry, the most important use comes from the fact that the thiosulfate anion reacts stoichiometrically with iodine, reducing it to iodide as it is oxidized to tetrathionate:

2 S2O32(aq) + I2(aq) S4O62(aq) + 2 I(aq)

Due to the quantitative nature of this reaction, as well as the fact that Na2S2O35H2O has an excellent shelf-life, it is used as a titrant in iodometry. Na2S2O35H2O is also a component of iodine clock experiments.

This particular use can be set up to measure the oxygen content of water through a long series of reactions. It is also used in estimating volumetrically, the concentrations of certain compounds in solution (hydrogen peroxide, for instance), and in estimating the chlorine content in commercial bleaching powder and water.

Photographic processing

The terminal sulfur atom in S2O32 binds to soft metals with high affinity. Thus, silver halides, e.g. AgBr, typical components of photographic emulsions, dissolve upon treatment with aqueous thiosulfate:

2 S2O32 + AgBr [Ag(S2O3)2]3 + Br-

In this application to photographic processing, discovered by John Herschel and used for both film and photographic paper processing, the sodium thiosulfate is known as a photographic fixer, and is often referred to as hypo, from the original chemical name, hyposulphite of soda.

Gold extraction

Sodium thiosulfate is one component of an alternative lixiviant to cyanide for extraction of gold. It forms a strong complex with gold(I) ions, [Au(S2O3)2]3-. The advantage of this approach is that thiosulfate is essentially non-toxic and that ore types that are refractory to gold cyanidation (e.g. carbonaceous or Carlin type ores) can be leached by thiosulfate. Some problems with this alternative process include the high consumption of thiosulfate, and the lack of a suitable recovery technique, since [Au(S2O3)2]3- does not adsorb to activated carbon, which is the standard technique used in gold cyanidation to separate the gold complex from the ore slurry.

Analytical chemistry

Sodium thiosulfate is also used in analytical chemistry. It can, when heated with a sample containing aluminum cation, produce a white precipitation:

2Al3+ + 3S2O32- + 3H2O 3SO2 + 3S + 2Al(OH)3

Medical

It is used as an antidote to cyanide poisoning. Thiosulfate acts as a sulfur donor for the conversion for cyanide to thiocyanate (which can then be safely excreted in the urine), catalyzed by the enzyme rhodanase.

It has also been used as treatment of calciphylaxis in hemodialysis patients with end-stage renal disease.

in foot baths for prophylaxis of ringworm, and as a topical antifungal agent for tinea versicolor.

in measuring the volume of extracellular body fluid and the renal glomerular filtration rate.

Other uses

Sodium thiosulfate is also used:

As a component in hand warmers and other chemical heating pads that produce heat by exothermic crystallization of a supercooled solution.

In Bleach

In pH testing of bleach substances. The universal indicator and any other liquid pH indicator are destroyed by bleach, rendering them useless for testing the pH. If one first adds sodium thiosulfate to such solutions, it will neutralize the color-removing effects of bleach and allow one to test the pH of bleach solutions with liquid indicators. The relevant reaction is akin to the iodine reaction: thiosulfate reduces the hypochlorite (active ingredient in bleach) and in so doing becomes oxidized to sulfate. The complete reaction is:

4 NaClO + Na2S2O3 + 2 NaOH 4 NaCl + 2 Na2SO4 + H2O

To dechlorinate tap water for aquariums or treat effluent from waste water treatments prior to release into rivers. The reduction reaction is analogous to the iodine reduction reaction. Treatment of tap water requires between 0.1 grams and 0.3 grams of pentahydrated (crystalline) sodium thiosulfate per 10 liters of water.

To lower chlorine levels in swimming pools and spas following super chlorination.

To remove iodine stains, e.g. after the explosion of nitrogen triiodide.

In bacteriological water assessment.

In the tanning of leather.

To demonstrate the concept of reaction rate in chemistry classes. The thiosulfate ion can decompose into the sulfite ion and a colloidal suspension of sulfur, which is opaque. The equation for this acid-catalysed reaction is as follows:

S2O32(aq) SO32(aq) + S(s)

To demonstrate the concept of supercooling in physics classes. Melted sodium thiosulfate is very easy to overcool to room temperature and when crystallization is forced, the sudden temperature jump to 48.3C can be experienced by touch.

As part of patina recipes for copper alloys.

Often used in pharmaceutical preparations as an anionic surfactant to aid in dispersion.

It can also be used as a very interesting solute in supersaturation experiments.

References

^ a b Holleman, A. F.; Wiberg, E. "Inorganic Chemistry" Academic Press: San Diego, 2001. ISBN 0-12-352651-5

^ Charles Robert Gibson (1908). The Romance of Modern Photography, Its Discovery & Its Achievements. Seeley & Co. p.37. http://books.google.com/books?id=whYaAAAAMAAJ&pg=PA37&dq=hyposulphite-of-soda+herschel+fixer+hypo&lr=&as_brr=1&as_pt=ALLTYPES&ei=czVdSaipAYWekwSc_vW5Dg.

^ Aylmore, M. G.; Muir, D. M. "Thiosulfate Leaching of Gold - a Review", Minerals Engineering, 2001, 14, 135-174

^ "Toxicity, Cyanide: Overview - eMedicine". http://emedicine.medscape.com/article/814287-overview. Retrieved 2009-01-01.

^ Hall AH, Dart R, Bogdan G (June 2007). "Sodium thiosulfate or hydroxocobalamin for the empiric treatment of cyanide poisoning?". Ann Emerg Med 49 (6): 80613. doi:10.1016/j.annemergmed.2006.09.021. PMID 17098327.

^ Cicone JS, Petronis JB, Embert CD, Spector DA (June 2004). "Successful treatment of calciphylaxis with intravenous sodium thiosulfate". Am. J. Kidney Dis. 43 (6): 11048. doi:10.1053/j.ajkd.2004.03.018. PMID 15168392.

^ Sodium thiosulfate at Dorland's Medical Dictionary

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Sodium compounds

NaAlO2 NaBH3(CN) NaBH4 NaBr NaBrO4 NaCH3COO NaCN NaC6H5CO2 NaC6H4(OH)CO2 NaCl NaClO NaClO2 NaClO3 NaClO4 NaF NaH NaHCO3 NaHSO3 NaHSO4 NaI NaIO3 NaIO4 NaMnO4 NaNH2 NaNO2 NaNO3 NaN3 NaOH NaO2 NaPO2H2 NaReO4 NaSCN NaSH NaTcO4 NaVO3 Na2CO3 Na2C2O4 Na2CrO4 Na2Cr2O7 Na2MnO4 Na2MoO4 Na2O Na2O2 Na2O(UO3)2 Na2S Na2SO3 Na2SO4 Na2S2O3 Na2S2O4 Na2S2O5 Na2S2O6 Na2S2O7 Na2S2O8 Na2SeO3 Na2SeO4 Na2SiO3 Na2Te Na2TeO3 Na2Ti3O7 Na2U2O7 NaWO4 Na2Zn(OH)4 Na3N Na3P Na3VO4 Na4Fe(CN)6 Na5P3O10

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Antifungals (D01 and J02)

Wall/

membrane

Ergosterol

inhibitors

Azoles

(lanosterol 14

alpha-demethylase inhibitors)

Imidazoles

topical: Bifonazole, Clomidazole, Clotrimazole#, Croconazole, Econazole, Fenticonazole, Ketoconazole, Isoconazole, Miconazole#, Neticonazole, Oxiconazole, Sertaconazole, Sulconazole, Tioconazole

Triazoles

topical: (Fluconazole#, Fosfluconazole)

systemic: (Fluconazole, Itraconazole, Posaconazole, Voriconazole)

Benzimidazoles

topical: Thiabendazole

Polyene antimycotics

(ergosterol binding)

topical: (Natamycin, Nystatin#)

systemic: (Amphotericin B#)

Allylamines

(squalene monooxygenase

inhibitors)

topical: (Amorolfine, Butenafine, Naftifine, Terbinafine)

systemic: (Terbinafine)

-glucan synthase

inhibitors

echinocandins (Anidulafungin, Caspofungin, Micafungin)

Intracellular

Pyrimidine analogues/

Thymidylate synthase inhibitors

Flucytosine#

Mitotic inhibitors

Griseofulvin#

Others

Bromochlorosalicylanilide Methylrosaniline Tribromometacresol Undecylenic acid Polynoxylin Chlorophetanol Chlorphenesin Ticlatone Sulbentine Ethyl hydroxybenzoate Haloprogin Salicylic acid Selenium sulfide# Ciclopirox Amorolfine Dimazole Tolnaftate Tolciclate Sodium thiosulfate# Whitfield's ointment# Potassium iodide#

Tea tree oil citronella oil lemon grass orange oil patchouli lemon myrtle

PCP: Pentamidine Dapsone Atovaquone

#WHO-EM. Withdrawn from market. CLINICAL TRIALS: hase III. Never to phase III

see also diseases

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Antidotes (V03AB)

Nervous system

Nerve agent / Organophosphate poisoning

Atropine# Biperiden Diazepam# Oximes (Pralidoxime, Obidoxime) see also Cholinesterase

Opioid overdose

Diprenorphine Doxapram Nalorphine Naloxone# Naltrexone Nalmefene

Barbiturate overdose

Bemegride Ethamivan

Benzodiazepine overdose

Cyprodenate Flumazenil

GHB overdose

Physostigmine SCH-50911

Reversal of neuromuscular blockade

Sugammadex

Cardiovascular

Heparin

Protamine#

Digoxin toxicity

Digoxin Immune Fab

Beta blocker

Glucagon

Other

Methanol / Ethylene glycol poisoning

Ethanol Fomepizole

Paracetamol toxicity (Acetaminophen)

Acetylcysteine# Glutathione Methionine#

Arsenic poisoning

Dimercaprol# Succimer

Cyanide poisoning

nitrite (Amyl nitrite, Sodium nitrite#) Sodium thiosulfate# 4-Dimethylaminophenol Hydroxocobalamin

Toxic metals (cadmium, mercury, lead, thallium)

Edetates Dimercaprol# Prussian blue

Hydrofluoric acid

Calcium gluconate#

Other

Prednisolone and promethazine oxidizing agent (potassium permanganate) iodine-131 (Potassium iodide) Methylthioninium chloride#


Emetic

Ipecacuanha (Syrup of ipecac) Copper sulfate

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Categories: Thiosulfates | Sodium compounds | Photographic chemicals | Antidotes | World Health Organization essential medicinesHidden categories: Chemboxes which contain changes to watched fields
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