Extraterrestrial organic compounds in meteorites

被引:321
作者
Botta, O [1 ]
Bada, JL [1 ]
机构
[1] Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA
关键词
amino acid; astrobiology; interstellar medium; isotope; meteorites; organic chemistry; solar system;
D O I
10.1023/A:1020139302770
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Many organic compounds or their precursors found in meteorites originated in the interstellar or circumstellar medium and were later incorporated into planetesimals during the formation of the solar system. There they either survived intact or underwent further processing to synthesize secondary products on the meteorite parent body. The most distinct feature of CI and CM carbonaceous chondrites, two types of stony meteorites, is their high carbon content (up to 3% of weight), either in the form of carbonates or of organic compounds. The bulk of the organic carbon consists of an insoluble macromolecular material with a complex structure. Also present is a soluble organic fraction, which has been analyzed by several separation and analytical procedures. Low detection limits can be achieved by derivatization of the organic molecules with reagents that allow for analysis by gas chromatography/mass spectroscopy and high performance liquid chromatography. The CM meteorite Murchison has been found to contain more than 70 extraterrestrial amino acids and several other classes of compounds including carboxylic acids, hydroxy carboxylic acids, sulphonic and phosphonic acids, aliphatic, aromatic and polar hydrocarbons, fullerenes, heterocycles as well as carbonyl compounds, alcohols, amines and amides. The organic matter was found to be enriched in deuterium, and distinct organic compounds show isotopic enrichments of carbon and nitrogen relative to terrestrial matter.
引用
收藏
页码:411 / 467
页数:57
相关论文
共 213 条
[1]   The origin of chondritic macromolecular organic matter: A carbon and nitrogen isotope study [J].
Alexander, CMO ;
Russell, SS ;
Arden, JW ;
Ash, RD ;
Grady, MM ;
Pillinger, CT .
METEORITICS & PLANETARY SCIENCE, 1998, 33 (04) :603-622
[2]   INTERSTELLAR POLYCYCLIC AROMATIC-HYDROCARBONS - THE INFRARED-EMISSION BANDS, THE EXCITATION EMISSION MECHANISM, AND THE ASTROPHYSICAL IMPLICATIONS [J].
ALLAMANDOLA, LJ ;
TIELENS, AGGM ;
BARKER, JR .
ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES, 1989, 71 (04) :733-775
[3]   Evolution of interstellar ices [J].
Allamandola, LJ ;
Bernstein, MP ;
Sandford, SA ;
Walker, RL .
SPACE SCIENCE REVIEWS, 1999, 90 (1-2) :219-232
[4]   INTERSTELLAR GRAINS IN METEORITES .1. ISOLATION OF SIC, GRAPHITE, AND DIAMOND - SIZE DISTRIBUTIONS OF SIC AND GRAPHITE [J].
AMARI, S ;
LEWIS, RS ;
ANDERS, E .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1994, 58 (01) :459-470
[5]   PRE-BIOTIC ORGANIC-MATTER FROM COMETS AND ASTEROIDS [J].
ANDERS, E .
NATURE, 1989, 342 (6247) :255-257
[6]   CONTAMINATED METEORITE [J].
ANDERS, E ;
DUFRESNE, A ;
FITCH, FW ;
CAVAILLE, A ;
DUFRESNE, ER ;
HAYATSU, R .
SCIENCE, 1964, 146 (364) :1157-&
[8]   A search for endogenous amino acids in martian meteorite ALH84001 [J].
Bada, JL ;
Glavin, DP ;
McDonald, GD ;
Becker, L .
SCIENCE, 1998, 279 (5349) :362-365
[9]   Circular polarization in star-formation regions:: Implications for biomolecular homochirality [J].
Bailey, J ;
Chrysostomou, A ;
Hough, JH ;
Gledhill, TM ;
McCall, A ;
Clark, S ;
Ménard, F ;
Tamura, M .
SCIENCE, 1998, 281 (5377) :672-674
[10]  
Basile B. P., 1984, ORG GEOCHEM, V5, P211, DOI DOI 10.1016/0146-6380(84)90008-1