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Reductive Fixation of Carbonate in Aqueous Solution by Nitrogen Plasma
Corresponding Author(s) : T. Munegumi
Asian Journal of Chemistry,
Vol. 25 No. 9 (2013): Vol 25 Issue 9
Abstract
A jet of nitrogen plasma blown into a sodium carbonate solution produced reductive fixation of carbonate to formate. The reaction is explained by the nitrogen-mediated oxidation-reduction of water.
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- S.L. Miller, Science, 117, 528 (1953).
- W.W. Rubey, Bull. Geol. Soc. Am., 62, 1111 (1951).
- P.H. Abelson, Proc. Nat. Acad. Sci. USA, 55, 1365 (1966).
- A. Anderson-Sellers and A.J. Meadows, Nature, 270, 589 (1977).
- T. Owen, R.D. Cess and V. Ramanathan, Nature, 277, 640 (1979).
- R.A. Kerr, Science, 210, 42 (1980).
- R. Stribling and S. Miller, Origins Life, 17, 261 (1987).
- W. Löb, Z. Elektrochem., 15, 282 (1906).
- W. Groth and H. Suess, Naturwiss, 26, 77 (1938).
- W.M. Garrison, D.C. Morrison, J.G. Hamilton, A.A. Benson and M. Calvin, Science, 114, 416 (1951).
- C.E. Folsome, A. Brittain, A. Smith and S. Chang, Nature, 294, 64 (1981).
- H. Hase, T. Saito and K. Harada, Viva Origino, 29, 63 (2001).
- H. Hase and K. Harada, Viva Origino, 29, 61 (2001).
- M. Takasaki and K. Harada, Chem. Lett., 16, 365 (1987).
- M. Takasaki and K. Harada, Chem. Lett., 16, 437 (1987).
- K. Harada, M. Takasaki, S. Igari, T. Munegumi and A. Shimoyama, Proceedings of 8th International Symposium on Plasma Chemistry, p. 654 (1987).
- T. Munegumi and K. Harada, Viva Origino, 23, 189 (1995).
- I. Yamakawa, Y. Ito, T. Munegumi and K. Harada, Bull. Chem. Soc. (Japan), 83, 1264 (2010).
- B. Schranz and B.M. Rode, Angew. Chem. Ind. Ed., 43, 1886 (2004).
- B.M. Rode, D. Fitz and T. Jakschitz, Chem. Biodiv., 4, 2674 (2007).
- F. Tiang, O.B. Toon, A.A. Pavlov and H. De Sterck, Science, 308, 1014 (2005).
- F. Tiang, O.B. Toon and A.A. Pavlov, Science, 311, 38b (2006).
- C.F. Chyba, Science, 308, 962 (2005).
- D.E. Canfield, A.N. Glazer and P.G. Falkowski, Science, 330, 192 (2010).
References
S.L. Miller, Science, 117, 528 (1953).
W.W. Rubey, Bull. Geol. Soc. Am., 62, 1111 (1951).
P.H. Abelson, Proc. Nat. Acad. Sci. USA, 55, 1365 (1966).
A. Anderson-Sellers and A.J. Meadows, Nature, 270, 589 (1977).
T. Owen, R.D. Cess and V. Ramanathan, Nature, 277, 640 (1979).
R.A. Kerr, Science, 210, 42 (1980).
R. Stribling and S. Miller, Origins Life, 17, 261 (1987).
W. Löb, Z. Elektrochem., 15, 282 (1906).
W. Groth and H. Suess, Naturwiss, 26, 77 (1938).
W.M. Garrison, D.C. Morrison, J.G. Hamilton, A.A. Benson and M. Calvin, Science, 114, 416 (1951).
C.E. Folsome, A. Brittain, A. Smith and S. Chang, Nature, 294, 64 (1981).
H. Hase, T. Saito and K. Harada, Viva Origino, 29, 63 (2001).
H. Hase and K. Harada, Viva Origino, 29, 61 (2001).
M. Takasaki and K. Harada, Chem. Lett., 16, 365 (1987).
M. Takasaki and K. Harada, Chem. Lett., 16, 437 (1987).
K. Harada, M. Takasaki, S. Igari, T. Munegumi and A. Shimoyama, Proceedings of 8th International Symposium on Plasma Chemistry, p. 654 (1987).
T. Munegumi and K. Harada, Viva Origino, 23, 189 (1995).
I. Yamakawa, Y. Ito, T. Munegumi and K. Harada, Bull. Chem. Soc. (Japan), 83, 1264 (2010).
B. Schranz and B.M. Rode, Angew. Chem. Ind. Ed., 43, 1886 (2004).
B.M. Rode, D. Fitz and T. Jakschitz, Chem. Biodiv., 4, 2674 (2007).
F. Tiang, O.B. Toon, A.A. Pavlov and H. De Sterck, Science, 308, 1014 (2005).
F. Tiang, O.B. Toon and A.A. Pavlov, Science, 311, 38b (2006).
C.F. Chyba, Science, 308, 962 (2005).
D.E. Canfield, A.N. Glazer and P.G. Falkowski, Science, 330, 192 (2010).