Matches in SemOpenAlex for { <https://semopenalex.org/work/W2761193604> ?p ?o ?g. }
- W2761193604 endingPage "37" @default.
- W2761193604 startingPage "37" @default.
- W2761193604 abstract "Although studies about the origin of life are a frontier in science and a number of effective approaches have been developed, drawbacks still exist. Examples include: (1) simulation of chemical evolution experiments (which were demonstrated for the first time by Stanley Miller); (2) approaches tracing back the most primitive life-like systems (on the basis of investigations of present organisms); and (3) constructive approaches for making life-like systems (on the basis of molecular biology), such as in vitro construction of the RNA world. Naturally, simulation experiments of chemical evolution under plausible ancient Earth environments have been recognized as a potentially fruitful approach. Nevertheless, simulation experiments seem not to be sufficient for identifying the scenario from molecules to life. This is because primitive Earth environments are still not clearly defined and a number of possibilities should be taken into account. In addition, such environments frequently comprise extreme conditions when compared to the environments of present organisms. Therefore, we need to realize the importance of accurate and convenient experimental approaches that use practical research tools, which are resistant to high temperature and pressure, to facilitate chemical evolution studies. This review summarizes improvements made in such experimental approaches over the last two decades, focusing primarily on our hydrothermal microflow reactor technology. Microflow reactor systems are a powerful tool for performing simulation experiments in diverse simulated hydrothermal Earth conditions in order to measure the kinetics of formation and degradation and the interactions of biopolymers." @default.
- W2761193604 created "2017-10-20" @default.
- W2761193604 creator A5008069389 @default.
- W2761193604 date "2017-10-02" @default.
- W2761193604 modified "2023-09-26" @default.
- W2761193604 title "Hydrothermal Microflow Technology as a Research Tool for Origin-of-Life Studies in Extreme Earth Environments" @default.
- W2761193604 cites W137427283 @default.
- W2761193604 cites W1490923740 @default.
- W2761193604 cites W1559168336 @default.
- W2761193604 cites W1629360817 @default.
- W2761193604 cites W1806207119 @default.
- W2761193604 cites W1849171504 @default.
- W2761193604 cites W1964696746 @default.
- W2761193604 cites W1966773843 @default.
- W2761193604 cites W1968747158 @default.
- W2761193604 cites W1971496446 @default.
- W2761193604 cites W1976613032 @default.
- W2761193604 cites W1977772490 @default.
- W2761193604 cites W1978524762 @default.
- W2761193604 cites W1982863100 @default.
- W2761193604 cites W1985570695 @default.
- W2761193604 cites W1986047580 @default.
- W2761193604 cites W1988503846 @default.
- W2761193604 cites W1999636169 @default.
- W2761193604 cites W2001363398 @default.
- W2761193604 cites W2004567474 @default.
- W2761193604 cites W2005283181 @default.
- W2761193604 cites W2005540684 @default.
- W2761193604 cites W2008362578 @default.
- W2761193604 cites W2011520761 @default.
- W2761193604 cites W2012162678 @default.
- W2761193604 cites W2014228605 @default.
- W2761193604 cites W2017175357 @default.
- W2761193604 cites W2017457582 @default.
- W2761193604 cites W2019627386 @default.
- W2761193604 cites W2019662242 @default.
- W2761193604 cites W2020454825 @default.
- W2761193604 cites W2021890647 @default.
- W2761193604 cites W2024046595 @default.
- W2761193604 cites W2025011346 @default.
- W2761193604 cites W2025717115 @default.
- W2761193604 cites W2026829672 @default.
- W2761193604 cites W2032993337 @default.
- W2761193604 cites W2033280610 @default.
- W2761193604 cites W2035938536 @default.
- W2761193604 cites W2035972791 @default.
- W2761193604 cites W2040807550 @default.
- W2761193604 cites W2046708988 @default.
- W2761193604 cites W2048896968 @default.
- W2761193604 cites W2050110866 @default.
- W2761193604 cites W2054249920 @default.
- W2761193604 cites W2055760720 @default.
- W2761193604 cites W2055786061 @default.
- W2761193604 cites W2055805335 @default.
- W2761193604 cites W2056077919 @default.
- W2761193604 cites W2058652191 @default.
- W2761193604 cites W2059896189 @default.
- W2761193604 cites W2061670676 @default.
- W2761193604 cites W2065910435 @default.
- W2761193604 cites W2066088682 @default.
- W2761193604 cites W2069138427 @default.
- W2761193604 cites W2069409503 @default.
- W2761193604 cites W2072862249 @default.
- W2761193604 cites W2073158252 @default.
- W2761193604 cites W2074083884 @default.
- W2761193604 cites W2078931088 @default.
- W2761193604 cites W2079321730 @default.
- W2761193604 cites W2079800805 @default.
- W2761193604 cites W2080571207 @default.
- W2761193604 cites W2080723705 @default.
- W2761193604 cites W2081421232 @default.
- W2761193604 cites W2082856886 @default.
- W2761193604 cites W2084694036 @default.
- W2761193604 cites W2087520649 @default.
- W2761193604 cites W2087895317 @default.
- W2761193604 cites W2090232842 @default.
- W2761193604 cites W2091245495 @default.
- W2761193604 cites W2091866541 @default.
- W2761193604 cites W2092682227 @default.
- W2761193604 cites W2093335630 @default.
- W2761193604 cites W2104525153 @default.
- W2761193604 cites W2115057869 @default.
- W2761193604 cites W2130182503 @default.
- W2761193604 cites W2134672977 @default.
- W2761193604 cites W2135087371 @default.
- W2761193604 cites W2143272036 @default.
- W2761193604 cites W2144911610 @default.
- W2761193604 cites W2147366546 @default.
- W2761193604 cites W2149005864 @default.
- W2761193604 cites W2152423430 @default.
- W2761193604 cites W2165870555 @default.
- W2761193604 cites W2166068250 @default.
- W2761193604 cites W2208870936 @default.
- W2761193604 cites W2243574777 @default.
- W2761193604 cites W2318108904 @default.
- W2761193604 cites W2479110118 @default.
- W2761193604 cites W2520037315 @default.
- W2761193604 cites W2606589702 @default.