Menu
Home Explore People Places Arts History Plants & Animals Science Life & Culture Technology
On this page
Petroleum naphtha
Petroleum product

Petroleum naphtha is an intermediate hydrocarbon liquid stream derived from the refining of crude oil with CAS-no 64742-48-9. It is most usually desulfurized and then catalytically reformed, which rearranges or restructures the hydrocarbon molecules in the naphtha as well as breaking some of the molecules into smaller molecules to produce a high-octane component of gasoline (or petrol).

There are hundreds of different petroleum crude oil sources worldwide and each crude oil has its own unique composition or assay. There are also hundreds of petroleum refineries worldwide and each of them is designed to process either a specific crude oil or specific types of crude oils. Naphtha is a general term as each refinery produces its own naphthas with their own unique initial and final boiling points and other physical and compositional characteristics.

Naphthas may also be produced from other material such as coal tar, shale deposits, tar sands, and the destructive distillation of wood.

We don't have any images related to Petroleum naphtha yet.
We don't have any YouTube videos related to Petroleum naphtha yet.
We don't have any PDF documents related to Petroleum naphtha yet.
We don't have any Books related to Petroleum naphtha yet.
We don't have any archived web articles related to Petroleum naphtha yet.

Source

The first unit operation (after being desalinated) in a petroleum refinery is the crude oil distillation unit. The overhead liquid distillate from that unit is called virgin or straight-run naphtha and that distillate is the largest source of naphtha in most petroleum refineries. The naphtha is a mixture of many different hydrocarbon compounds. It has an initial boiling point (IBP) of about 35 °C and a final boiling point (FBP) of about 200 °C, and it contains paraffins, naphthenes (cyclic paraffins) and aromatic hydrocarbons ranging from those containing 4 carbon atoms to those containing about 10 or 11 carbon atoms.

The virgin naphtha is often further distilled into two streams:7

  • a virgin light naphtha with an IBP of about 30 °C and a FBP of about 145 °C containing most (but not all) of the hydrocarbons with six or fewer carbon atoms
  • a virgin heavy naphtha containing most (but not all) of the hydrocarbons with more than six carbon atoms. The heavy naphtha has an IBP of about 140 °C and a FBP of about 205 °C.

The virgin heavy naphtha is usually processed in a catalytic reformer, because the light naphtha has molecules with six or fewer carbon atoms—which, when reformed, tend to crack into butane and lower molecular weight hydrocarbons that are not useful as high-octane gasoline blending components. Also, the molecules with six carbon atoms tend to form aromatics, which is undesirable because the environmental regulations of a number of countries limit the amount of aromatics (most particularly benzene) in gasoline.8910

Types of virgin naphthas

The table below lists some typical virgin heavy naphthas, available for catalytic reforming, derived from various crude oils. It can be seen that they differ significantly in their content of paraffins, naphthenes and aromatics:

Typical heavy naphthas
Crude oil name ⇒ {\displaystyle \Rightarrow } Location ⇒ {\displaystyle \Rightarrow } Barrow IslandAustralia11Mutineer-ExeterAustralia12CPC BlendKazakhstan13DraugenNorth Sea14
Initial boiling point, °C150140149150
Final boiling point, °C200190204180
Paraffins, liquid volume %46625738
Naphthenes, liquid volume %42322745
Aromatics, liquid volume %1261617

Cracked naphthas

Some refinery naphthas also contain some olefinic hydrocarbons, such as naphthas derived from the fluid catalytic cracking, visbreakers and coking processes used in many refineries. Those olefin-containing naphthas are often referred to as cracked naphthas.

In some petroleum refineries, the cracked naphthas are desulfurized and catalytically reformed (as are the virgin naphthas) to produce additional high-octane gasoline components.

Other uses

Some petroleum refineries also produce small amounts of specialty naphthas for use as solvents, cleaning fluids and dry-cleaning agents, paint and varnish diluents, asphalt diluents, rubber industry solvents, recycling products, and cigarette-lighter, portable-camping-stove and lantern fuels. Those specialty naphthas are subjected to various purification processes which adjusts chemical characteristics to suit specific needs.

Specialty naphtha comes in many varieties and each are referred to by separate names such as petroleum ether, petroleum spirits, mineral spirits, paraffin, benzine, hexane, ligroin, white oil or white gas, painters naphtha, refined solvent naphtha and Varnish makers' & painters' naphtha (VM&P). The best way to determine the boiling point and other compositional characteristics of any of the specialty naphtha is to read the Safety Data Sheet (SDS) for the specific naphtha of interest. Safety Data Sheets can be found on a chemical suppliers websites or by contacting the supplier directly.

On a much larger scale, petroleum naphtha is also used in the petrochemicals industry as feedstock to steam reformers and steam crackers for the production of hydrogen (which may be and is converted into ammonia for fertilizers), ethylene, and other olefins. Natural gas is also used as feedstock to steam reformers and steam crackers.

Safety

People can be exposed to petroleum naphtha in the workplace by breathing it, swallowing it, skin contact, and eye contact. The Occupational Safety and Health Administration (OSHA) set the legal limit (permissible exposure limit) for petroleum naphtha exposure in the workplace as 500 ppm (2000 mg/m3) over an 8-hour workday. The National Institute for Occupational Safety and Health (NIOSH) has set a recommended exposure limit (REL) of 350 mg/m3 over an 8-hour workday and 1800 mg/m3 over 15 minutes. At levels of 1100 ppm, 10% of the lower explosive limit, petroleum naphtha is immediately dangerous to life and health.15

This article incorporates material from the Citizendium article "Petroleum naphtha", which is licensed under the Creative Commons Attribution-ShareAlike 3.0 Unported License but not under the GFDL.

References

  1. Gary, James H.; Handwerk, Glenn E. (1993). Petroleum Refining Technology and Economics (Second ed.). Marcel Dekker. ISBN 0-8247-7150-8. 0-8247-7150-8

  2. Leffler, William L. (1985). Petroleum Refining for the Nontechnical Person (Second ed.). PennWell Books. ISBN 0-87814-280-0. 0-87814-280-0

  3. Speight, James G. (2006). The Chemistry and Technology of Petroleum (Fourth ed.). CRC Press. ISBN 0-8493-9067-2. 0-8493-9067-2

  4. "Naphtha (petroleum), hydrotreated heavy". European Chemicals Agency. https://echa.europa.eu/substance-information/-/substanceinfo/100.059.210

  5. Exploiting the Benefits of Fischer-Tropsch Technology Archived 2010-08-16 at the Wayback Machine (Sasol’s integrated business model) http://sasol.investoreports.com/sasol_ar_2006/review/downloads/segmented/sasol_ar_2006_business_model.pdf

  6. Beychok, Milton R. (May 1975). Process and Environmental Technology for Producing SNG and Liquid Fuels (Report). United States Environmental Protection Agency. EPA-660/2-75-011. https://nepis.epa.gov/Exe/ZyNET.exe/91017KXP.TXT?ZyActionD=ZyDocument&Client=EPA&Index=Prior+to+1976&Docs=&Query=&Time=&EndTime=&SearchMethod=1&TocRestrict=n&Toc=&TocEntry=&QField=&QFieldYear=&QFieldMonth=&QFieldDay=&IntQFieldOp=0&ExtQFieldOp=0&XmlQuery=&File=D%3A%5Czyfiles%5CIndex%20Data%5C70thru75%5CTxt%5C00000019%5C91017KXP.txt&User=ANONYMOUS&Password=anonymous&SortMethod=h%7C-&MaximumDocuments=1&FuzzyDegree=0&ImageQuality=r75g8/r75g8/x150y150g16/i425&Display=hpfr&DefSeekPage=x&SearchBack=ZyActionL&Back=ZyActionS&BackDesc=Results%20page&MaximumPages=1&ZyEntry=1&SeekPage=x&ZyPURL#

  7. Fuel Chemistry (scroll down to "What is naphtha") http://www.faqs.org/faqs/sci/chem-faq/part6/section-1.html

  8. Canadian regulations on benzene in gasoline Archived 2004-10-12 at the Wayback Machine http://www.ec.gc.ca/CEPARegistry/regulations/detailReg.cfm?intReg=1

  9. Briefing on Benzene in Petrol Archived 2007-07-30 at the Wayback Machine From website of United Kingdom Petroleum Industry Association (UKPIA) http://www.ukpia.com/Portals/0/Repository/documents/Benzene%20in%20petrol.pdf

  10. Eilperin, Juliet (March 2, 2006). "EPA Seeks Less Benzene in Gasoline". The Washington Post. https://www.washingtonpost.com/wp-dyn/content/article/2006/03/01/AR2006030102113.html

  11. "Barrow Island - Summary of Major Cuts" (PDF). Santos. October 10, 2001. Archived from the original (PDF) on November 30, 2010. https://web.archive.org/web/20101130002914/http://www.santos.com/library/barrow_crude.pdf

  12. "Mutineer-Exeter Crude Oil Production Assay" (PDF). Santos. September 2005. Archived from the original (PDF) on November 29, 2010. https://web.archive.org/web/20101129213355/http://www.santos.com/library/refining_characteristics.pdf

  13. "Tengiz Assay CPC Blend Assay" (PDF). Chevron Crude Marketing. Tengizchevroil. February 1, 2007. Archived from the original on July 22, 2011. https://web.archive.org/web/20110722000149/http://crudemarketing.chevron.com/assay/cpc_summary.pdf

  14. "Crude Oil Assay: Draugen" (PDF). Statoil. January 21, 2003. Archived from the original (PDF) on July 19, 2011. https://web.archive.org/web/20110719234708/http://www.statoil.com/en/OurOperations/TradingProducts/CrudeOil/Crudeoilassays/Downloads/Draugen%202002%2011.pdf

  15. "Petroleum distillates (naptha)". National Institute for Occupational Safety and Health. Retrieved November 27, 2015. https://www.cdc.gov/niosh/npg/npgd0492.html