Elizabeth Fulhame Explained

Elizabeth Fulhame
Fields:chemistry
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Known For:The concept of catalysis and discovering photoreduction
Awards:Honorary member of the Philadelphia Chemical Society
Spouse:Thomas Fulhame
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Elizabeth Fulhame (fl. 1794) was an early British chemist who invented the concept of catalysis and discovered photoreduction. She was described as 'the first solo woman researcher of modern chemistry'.

Although she only published one text, she describes catalysis as a process at length in her 1794 book An Essay On Combustion with a View to a New Art of Dying and Painting, wherein the Phlogistic and Antiphlogistic Hypotheses are Proved Erroneous. The book relates in painstaking detail her experiments with oxidation-reduction reactions, and the conclusions she draws regarding phlogiston theory, in which she disagrees with both the Phlogistians and Antiphlogistians.[1]

In 1798, the book was translated into German by Augustin Gottfried Ludwig Lentin as Versuche über die Wiederherstellung der Metalle durch Wasserstoffgas. In 1810, it was published in the United States, to much critical acclaim.[2] That same year, Fulhame was made an honorary member of the Philadelphia Chemical Society.[3] [4] Thomas P. Smith applauded her work, stating that "Mrs. Fulhame has now laid such bold claims to chemistry that we can no longer deny the sex the privilege of participating in this science also."

Personal life

Elizabeth Fulhame published under her married name, as Mrs. Fulhame. She was married to Thomas Fulhame, an Irish-born physician who had attended the University of Edinburgh and studied puerperal fever as a student of Andrew Duncan (1744–1828).[5] [6] Dr Thomas Fulhame was listed in Edinburgh directories between 1784–1800 (Bristo Square in 1784, Bristo Street in 1794, at 9 Society 1799, in Brown's Square 1800).[7] [8] [9] [10] [11] Sir Benjamin Thompson, Count Rumford, referred to her as "the ingenious and lively Mrs. Fulhame", however this opinion may reflect the style of her book.[12]

Work

Mrs. Fulhame's work began with her interest in finding a way of staining cloth with heavy metals under the influence of light. She originally considered calling her work An Essay on the Art of making Cloths of Gold, Silver, and other Metals, by chymical processes, but considering the "imperfect state of the art", decided to select a title reflecting the broader implications of her experiments.

She was apparently encouraged to publish an account of her 14 years of research as a result of meeting Joseph Priestley in 1793. Fulhame studied the experimental reduction of metallic salts in a variety of states (aqueous solution, dry state, and sometimes an ether or alcohol solution) by exposing them to the action of various reducing agents.[13] The metal salts she examined included gold, silver, platinum, mercury, copper, and tin. As reducing agents, she experimented with hydrogen gas, phosphorus, potassium sulfide, hydrogen sulfide, phosphine, charcoal, and light. She discovered a number of chemical reactions by which metal salts could be reduced to pure metals. Rayner-Canham considers her most important contribution to chemistry to be the discovery that metals could be processed through aqueous chemical reduction at room temperature, as an alternative to smelting at high temperatures.

Her theoretical work on catalysis was "a major step in the history of chemistry",[14] predating both Jöns Jakob Berzelius and Eduard Buchner. She proposed, and demonstrated through experiment, that many oxidation reactions occur only in the presence of water, that they directly involve water, and that water is regenerated and is detectable at the end of the reaction. Further, she proposed "recognisably modern mechanisms"[14] for those reactions, and may have been the first scientist to do so. The role of oxygen, as she describes it, differs significantly from other theories of the time. Based on her experiments, she disagreed with some of the conclusions of Antoine Lavoisier as well as with the phlogiston theorists that he critiqued.[15] [16] Her research could be seen as a precursor to the work of Jöns Jakob Berzelius, however Fulhame focused specifically on water rather than heavy metals.

Further, Eder,[17] in 1905, and Schaaf consider her work on silver chemistry[18] to be a landmark in the birth and early history of photography.[19] [20] Fulhame's work on the role of light sensitive chemicals (silver salts) on fabric, predates Thomas Wedgwood's more famous photogram trials of 1801. Fulhame did not, however, attempt to make "images" or representational shadow prints in the way Wedgwood did, but she did engage in photoreduction using light.[21]

Reception

In addition to her book being republished in Germany and America, Fulhame's experiments were reviewed in a French journal,[22] and several British magazines, and were positively commented on by Sir Benjamin Thompson, Count Rumford, and Sir John Herschel.[23]

According to the introduction of her book by her American editor in 1810, her work was lesser known than it could or should have been, adding that "the pride of science, revolted at the idea of being taught by a female".[24] [2] [25]

Fulhame says as much in her own preface to the work: Such a reaction, she says, was particularly acute amongst some who held esteemed positions, whom she described as having a 'dictatorship in science'. [26]

Fulhame published her experiments on reductions using water with metals in a book in the first place in order not to be "plagiarized." She also describes her book as possibly serving as "a beacon to future mariners" (e.g. women) taking up scientific inquiries. Antoine Lavoisier was executed six months before the publication of her book and thus could not respond to her theory. Irish chemist William Higgins complained that she had ignored his work on the involvement of water in the rusting of iron, but magnanimously concluded "I read her book with great pleasure, and heartily wish that her laudible example may be followed by the rest of her sex."[15] [2]

Fulhame's work was largely forgotten by the end of the 19th century, but it was rediscovered by J. W. Mellor.[27] In the 20th century, she was noted in Physics Today, as being the first to 'systematically' vary 'her reaction conditions' and to 'generalise a whole class of reactions.... the reduction of metals' and first to suggest an explanation for the situations where 'water dissociated into its ionic form, facilitated the intermediate reaction steps, and was regenerated by the end of the metal reduction.'

See also

Notes and References

  1. Book: Burwick. Frederick. Goslee. Nancy Moore. Hoeveler. Diane Long. The encyclopedia of Romantic literature. 2012. Wiley-Blackwell. Chichester, West Sussex [England]. 9781405188104. 2 March 2016. https://web.archive.org/web/20160307203109/http://www.blackwellreference.com/public/tocnode?id=g9781405188104_chunk_g97814051881049_ss1-7. 7 March 2016. dead.
  2. Book: Ogilvie, Marilyn Bailey. Women in Science: Antiquity through the Nineteenth Century. 1986. MIT Press. Cambridge, Mass.. 978-0-262-65038-0. 28–31. 4th print..
  3. Web site: Celebrating Scottish women of science. National Library of Scotland. 20 June 2017. 15 July 2017. https://web.archive.org/web/20170715211901/https://www.nls.uk/news/press/2013/02/display-on-women-scientists-. dead.
  4. Web site: Elizabeth Fulhame . The Human Touch of Chemistry . 2 March 2016 . dead . https://web.archive.org/web/20160303165515/http://humantouchofchemistry.com/elizabeth-fulhame.htm . 3 March 2016 .
  5. Book: Cornish-Bowden. Athel. Fundamentals of enzyme kinetics. 2012. Wiley-VCH. Weinheim. 2 March 2016. 9783527665495.
  6. Fulhame, T. (1784). Dissertatio de febre puerperarum. Academiæ Edinburgenæ, facultatis medicæ; pro gradu doctoris. Thomas Fulhame, M.A. hibernus. Ad diem 13. Septemb. Edinburgi: Apud Balfour et Smellie, academiae typographos. University of Edinburgh, Centre for Research Collections.
  7. Web site: (456) – Towns > Edinburgh > 1773–1776, 1784–1785 – Williamson's directory for the City of Edinburgh, Canongate, Leith and suburbs > 1784–85 – Scottish Directories – National Library of Scotland. digital.nls.uk. 2020-02-10.
  8. Web site: (88) – Towns > Edinburgh > 1794–1795 – Directory for Edinburgh Leith Mussleburgh and Dalkeith – Scottish Directories – National Library of Scotland. digital.nls.uk. 2020-02-10.
  9. Web site: (146) – Towns > Edinburgh > 1799–1800 – Edinburgh and Leith directory, to July 1800 – Scottish Directories – National Library of Scotland. digital.nls.uk. 2020-02-10.
  10. Web site: (109) – Towns > Edinburgh > 1800–01 – Edinburgh and Leith directory to July 1801 – Scottish Directories – National Library of Scotland. digital.nls.uk. 2020-02-10.
  11. Book: Ewan. Elizabeth L.. The biographical dictionary of Scottish women : from the earliest times to 2004. 2006. Edinburgh Univ. Press. Edinburgh. 9780748617135. 130. 2 March 2016.
  12. Book: Rumford. Benjamin, Graf von. The complete works of Count Rumford. 1875. American Academy of Arts and Sciences. Boston. 4. 84. 2 March 2016.
  13. Davenport. Derek. Ireland. Kathleen. The Ingenious, Lively and Celebrated Mrs. Fulhame and the Dyer's Hand. Bulletin for the History of Chemistry. 1989. 5. 37–42. 2 March 2016.
  14. Book: Laidler. Keith J.. "Elizabeth Fulhame and the discovery of catalysis: 100 years before Buchner. Cornish-Bowden. Athel. Cornish-Bowden. Athel. New beer in an old bottle : Eduard Buchner and the growth of biochemical knowledge. 1997. Universitat de Valencia. Valencia. 9788437033280. 123–126. http://bip.cnrs-mrs.fr/bip10/newbeer/Fulhame.pdf. 2 March 2016. 23 January 2015. https://web.archive.org/web/20150123224920/http://bip.cnrs-mrs.fr/bip10/newbeer/Fulhame.pdf. dead.
  15. Book: Rayner-Canham. Marelene. Rayner-Canham. Geoffrey. Women in chemistry : their changing roles from alchemical times to the mid-twentieth century. 2001. Chemical Heritage Foundation. Philadelphia. 978-0941901277. 28–31. 2 March 2016.
  16. Book: Datta. N. C.. The story of chemistry. 2005. Universities Press. Hyderabad. 9788173715303. 247–250. 2 March 2016.
  17. Book: Eder, Josef Maria . Geschichte der Photographie . Wilhelm Knapp . 1905 . 3rd . Halle . de . 494529056.
  18. Book: Laidler. Keith J.. To Light such a Candle. 1993. Oxford University Press. 68–69.
  19. Book: Schaaf, Larry J. . The first fifty years of British photography, 1794–1844. Pritchard. Michael. Technology and art: the birth and early years of photography: the proceedings of the Royal Photographic Historical Group conference 1–3 September 1989. 1990. RPS Historical Group. Bath. 9780951532201. 9–18.
  20. Book: Schaaf. Larry J.. Out of the shadows: Herschel, Talbot, & the invention of photography. 1992. Yale University Press. New Haven. 9780300057058. 23–25.
  21. Web site: The Woman Behind Photography. Sotheby's Institute of Art. March 8, 2016.
  22. Web site: 31 January 2023 . The mysterious case of Elizabeth Fulhame, a chemist and true pioneer of science . 2023-02-06 . The National . en.
  23. Book: Batchen. Geoffrey. Burning with desire : the conception of photography. 1997. MIT Press. Cambridge, Mass.. 9780262024273. 28. First MIT Press paperback.
  24. Book: Fulhame. Elizabeth. An essay on combustion, with a view to a new art of dying and painting : wherein the phlogistic and antiphlogistic hypotheses are proved erroneous. 1810. Printed and sold by James Humphreys, Corner of Second and Walnut-streets. Philadelphia. iv. 20 June 2017.
  25. Linker. Jessica C.. The Pride of Science: Women and the politics of inclusion in 19th century Philadelphia. Pennsylvania Legacies. April 2015. 15. 1. 6–11. 10.5215/pennlega.15.1.0006. 2 March 2016.
  26. Book: Fulhame. Elizabeth. An essay on combustion, with a view to a new art of dying and painting. Wherein the phlogistic and antiphlogistic hypotheses are proven erroneous. 1794. Printed for the author, by J. Cooper. London. 2 March 2016. |
  27. History of the water problem (Mrs Fulhame's theory of catalysis) . Mellor . J. W. . Journal of Physical Chemistry . 7 . 8 . 557–567 . 10.1021/j150053a001 . 1903 . free .