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首页> 外文期刊>Geophysical Research Letters >Unexpected consequences of increasing CO2 and ocean acidity on marine production of DMS and CH2ClI: Potential climate impacts
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Unexpected consequences of increasing CO2 and ocean acidity on marine production of DMS and CH2ClI: Potential climate impacts

机译:二氧化碳和海洋酸度增加对DMS和CH2ClI的海洋生产产生意想不到的后果:潜在的气候影响

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摘要

Increasing atmospheric mixing ratios of CO2 have already lowered surface ocean pH by 0.1 units compared to preindustrial values and pH is expected to decrease an additional 0.3 units by the end of this century. Pronounced physiological changes in some phytoplankton have been observed during previous CO2 perturbation experiments. Marine microorganisms are known to consume and produce climate-relevant organic gases. Concentrations of (CH3)(2)S (DMS) and CH2ClI were quantified during the Third Pelagic Ecosystem CO2 Enrichment Study. Positive feedbacks were observed between control mesocosms and those simulating future CO2. Dimethyl sulfide was 26% (+/- 10%) greater than the controls in the 2x ambient CO2 treatments, and 18% (+/- 10%) higher in the 3xCO(2) mesocosms. For CH2ClI the 2xCO(2) treatments were 46% (+/- 4%) greater than the controls and the 3xCO(2) mesocosms were 131% (+/- 11%) higher. These processes may help contribute to the homeostasis of the planet.
机译:与工业化前的值相比,增加大气中二氧化碳的混合比已经使海洋表面的pH值降低了0.1个单位,并且到本世纪末,pH值预计还会再降低0.3个单位。在先前的CO2扰动实验中,已观察到某些浮游植物的明显生理变化。已知海洋微生物会消耗并产生与气候有关的有机气体。在第三次上层生态系统CO2富集研究中,对(CH3)(2)S(DMS)和CH2ClI的浓度进行了定量。在对照中膜和模拟未来CO2的膜之间观察到了积极的反馈。二甲基硫醚比2x环境CO2处理中的对照大26%(+/- 10%),而在3xCO(2)中观中则高18%(+/- 10%)。对于CH2ClI,2xCO(2)处理比对照大46%(+/- 4%),而3xCO(2)介观膜高131%(+/- 11%)。这些过程可能有助于促进地球的稳态。

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