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A THEORETICAL APPROACH TO P_(co_2) EVOLUTION IN THE ATMOSPHERE BASED ON ASSOCIATIONS OF SEDIMENTARY MINERALS
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作者 陈福 朱笑青 《Science China Chemistry》 SCIE EI CAS 1989年第12期1509-1519,共11页
Based on the theory of pH evolution of sea water and the balance between the seawater and the atmosphere the authors discussed the problems about (i) the method ofcalculating P_(CO_2) in the ancient atmosphere with th... Based on the theory of pH evolution of sea water and the balance between the seawater and the atmosphere the authors discussed the problems about (i) the method ofcalculating P_(CO_2) in the ancient atmosphere with the associations of sedimentary miner-als; (ii) the evolution of P_(CO_2) values in the geologic history; (iii) the relations of thepH evolution of sea water with carbonate precipitations; and (iv) calculation of the pHlimit for some associations of sedimentary minerals and its corresponding P_(CO_2) valuesin the atmosphere. The authors pointed out that though carbonates had deposited little in the Archaean,the content of CO_2 gas in the Archaean atmosphere was very high and was gradually go-ing up to form a thick CO_2 atmosphere. Up to 2600 Ma ago, the P_(CO_2) had reached a gradeof 10- 50 atm. There was a general trend of evolution that from the early Proterozoicera to the present the depositional horizon of carbonate layers was gradually risingand finally surpassed the horizons of clay minerals and sulfides. The corresponding P_(CO_2)in the atmosphere was lowering from the thick CO_2 atmosphere to the present 0.03%atm. On the basis of the calculated P_(CO_2) sizes and its fluctuation characteristics thehistory of P_(CO_2) evolution can be divided into three major stages. 展开更多
关键词 changes of sedimentary minerals ph conditions of carbonate precipitation evolution of P_(co_2) in the atmosphere
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海水、大气化学演化对动物起源和进化方向的制约 被引量:2
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作者 陈福 《地质地球化学》 CSCD 北大核心 2000年第2期67-75,共9页
动物的起源主要依赖于氨基酸等有机小分子在海水中能否进行脱水缩合反应而生成生物高分子,后者则依赖于海水pH值升高和大气CO2浓度降低的历史演化进程。有机小分子只有在海水pH值演化到近中性,即寒或纪时彼此才能发生脱水缩合反应而... 动物的起源主要依赖于氨基酸等有机小分子在海水中能否进行脱水缩合反应而生成生物高分子,后者则依赖于海水pH值升高和大气CO2浓度降低的历史演化进程。有机小分子只有在海水pH值演化到近中性,即寒或纪时彼此才能发生脱水缩合反应而合成生物高分子。只有大气CO2分压降到1000Pa以下,即泥盆纪以后,陆地上才能出现稳定的土壤层和植物,动物也才能从海洋扩展到陆地。随后大气CO2浓度继续降低导致了气温下降和植物生长率的衰减,促使动物进一步演化。 展开更多
关键词 大气 海水 化学演化 动物起源 动物进化方向
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