Chemical environments of submarine hydrothermal systems.
about
On the origin of biochemistry at an alkaline hydrothermal ventThe production of methane, hydrogen, and organic compounds in ultramafic-hosted hydrothermal vents of the Mid-Atlantic RidgeThe drive to life on wet and icy worldsThe inevitable journey to beingMineral surfaces, geochemical complexities, and the origins of lifeAn RNA-making reactor for the origin of lifePrebiological evolution and the metabolic origins of life.Genetics first or metabolism first? The formamide clue.Characterization and quantitation of a tertiary mixture of salts by Raman spectroscopy in simulated hydrothermal vent fluid.The energetics of organic synthesis inside and outside the cell.The origin and emergence of life under impact bombardment.Origin of homochirality in biosystemsA thermodynamic assessment of the potential synthesis of condensed hydrocarbons during cooling and dilution of volcanic gases.Hydrothermal hydration of Martian crust: illustration via geochemical model calculations.Reduction of nitrogen compounds in oceanic basement and its implications for HCN formation and abiotic organic synthesis.Characterisation of dissolved organic compounds in hydrothermal fluids by stir bar sorptive extraction - gas chomatography - mass spectrometry. Case study: the Rainbow field (36°N, Mid-Atlantic Ridge).Methane: Fuel or Exhaust at the Emergence of Life?Thermodynamics, Disequilibrium, Evolution: Far-From-Equilibrium Geological and Chemical Considerations for Origin-Of-Life Research.Peptide and RNA contributions to iron-sulphur chemical gardens as life's first inorganic compartments, catalysts, capacitors and condensers.The Coevolution of Life and Environment on Mars: An Ecosystem Perspective on the Robotic Exploration of Biosignatures.Primordial ocean chemistry and its compatibility with the RNA world.Thermodynamics of Strecker synthesis in hydrothermal systems.Geochemical constraints on chemolithoautotrophic reactions in hydrothermal systems.Modeling free energy availability from Hadean hydrothermal systems to the first metabolism.The role of carbohydrates at the origin of homochirality in biosystems.Methane on Mars and Habitability: Challenges and Responses
P2860
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P2860
Chemical environments of submarine hydrothermal systems.
description
1992 nî lūn-bûn
@nan
1992 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
1992 թվականի հունվարին հրատարակված գիտական հոդված
@hy
1992年の論文
@ja
1992年論文
@yue
1992年論文
@zh-hant
1992年論文
@zh-hk
1992年論文
@zh-mo
1992年論文
@zh-tw
1992年论文
@wuu
name
Chemical environments of submarine hydrothermal systems.
@ast
Chemical environments of submarine hydrothermal systems.
@en
Chemical environments of submarine hydrothermal systems.
@nl
type
label
Chemical environments of submarine hydrothermal systems.
@ast
Chemical environments of submarine hydrothermal systems.
@en
Chemical environments of submarine hydrothermal systems.
@nl
prefLabel
Chemical environments of submarine hydrothermal systems.
@ast
Chemical environments of submarine hydrothermal systems.
@en
Chemical environments of submarine hydrothermal systems.
@nl
P356
P1476
Chemical environments of submarine hydrothermal systems.
@en
P2093
P2888
P304
67-107, 191-242
P356
10.1007/BF01808019
P577
1992-01-01T00:00:00Z
P6179
1017467437