Chloralkali process (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Chloralkali process" in English language version.

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amazon.com (Global: 105th place; English: 79th place)

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britannica.com (Global: 40th place; English: 58th place)

doi.org (Global: 2nd place; English: 2nd place)

  • Fengmin Du; David M Warsinger; Tamanna I Urmi; et al. (2018). "Sodium hydroxide production from seawater desalination brine: process design and energy efficiency". Environmental Science & Technology. 52 (10): 5949–5958. Bibcode:2018EnST...52.5949D. doi:10.1021/acs.est.8b01195. hdl:1721.1/123096. PMID 29669210.
  • Greenwood, Norman N.; Earnshaw, Alan (1997). Chemistry of the Elements (2nd ed.). Butterworth-Heinemann. doi:10.1016/C2009-0-30414-6. ISBN 978-0-08-037941-8.
  • Crook, Jedidiah; Mousavi, Aliyar (2016-07-02). "The chlor-alkali process: A review of history and pollution". Environmental Forensics. 17 (3): 211–217. Bibcode:2016EnvFo..17..211C. doi:10.1080/15275922.2016.1177755. ISSN 1527-5922. S2CID 99354861.
  • O'Brien, Thomas F.; Bommaraju, Tilak V.; Hine, Fumio, eds. (2005). "History of the Chlor-Alkali Industry". Handbook of Chlor-Alkali Technology. Boston, MA: Springer. pp. 17–36. doi:10.1007/0-306-48624-5_2. ISBN 978-0-306-48624-1. Retrieved 2020-10-05.
  • Landolt, D.; Ibl, N. (1972). "Anodic chlorate formation on platinized titanium". Journal of Applied Electrochemistry. 2 (3). Chapman and Hall Ltd.: 201–210. doi:10.1007/BF02354977. S2CID 95515683.
  • Munichandraiah, N.; Sathyanarayana, S. (1988). "Insoluble anode of α-lead dioxide coated on titanium for electrosynthesis of sodium perchlorate". Journal of Applied Electrochemistry. 18 (2). Chapman and Hall Ltd.: 314–316. doi:10.1007/BF01009281. S2CID 96759724.
  • Denso, P. (1902). "Untersuchungen über die Widerstandsfähigkeit von Platiniridium-Anoden bei der Alkalichlorid-Elektrolyse". Zeitschrift für Elektrochemie. 8 (10): 149–150. doi:10.1002/bbpc.19020081004.

gutenberg.org (Global: 489th place; English: 377th place)

handle.net (Global: 102nd place; English: 76th place)

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  • Fengmin Du; David M Warsinger; Tamanna I Urmi; et al. (2018). "Sodium hydroxide production from seawater desalination brine: process design and energy efficiency". Environmental Science & Technology. 52 (10): 5949–5958. Bibcode:2018EnST...52.5949D. doi:10.1021/acs.est.8b01195. hdl:1721.1/123096. PMID 29669210.
  • Dinan, Charles (1927-10-15). The Corrosion of Durion Anodes (BSc). Massachusetts Institute of Technology. p. 4. hdl:1721.1/87815. Retrieved 2019-09-25.

harvard.edu (Global: 18th place; English: 17th place)

ui.adsabs.harvard.edu

  • Fengmin Du; David M Warsinger; Tamanna I Urmi; et al. (2018). "Sodium hydroxide production from seawater desalination brine: process design and energy efficiency". Environmental Science & Technology. 52 (10): 5949–5958. Bibcode:2018EnST...52.5949D. doi:10.1021/acs.est.8b01195. hdl:1721.1/123096. PMID 29669210.
  • Crook, Jedidiah; Mousavi, Aliyar (2016-07-02). "The chlor-alkali process: A review of history and pollution". Environmental Forensics. 17 (3): 211–217. Bibcode:2016EnvFo..17..211C. doi:10.1080/15275922.2016.1177755. ISSN 1527-5922. S2CID 99354861.
  • Tilley, R.J.D. (2004). Understanding solids: the science of materials. John Wiley and Sons. pp. 281–. Bibcode:2004usts.book.....T. ISBN 978-0-470-85276-7. Retrieved 22 October 2011.

mit.edu (Global: 415th place; English: 327th place)

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  • Fengmin Du; David M Warsinger; Tamanna I Urmi; et al. (2018). "Sodium hydroxide production from seawater desalination brine: process design and energy efficiency". Environmental Science & Technology. 52 (10): 5949–5958. Bibcode:2018EnST...52.5949D. doi:10.1021/acs.est.8b01195. hdl:1721.1/123096. PMID 29669210.

researchgate.net (Global: 120th place; English: 125th place)

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zenodo.org (Global: 621st place; English: 380th place)