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From the Cover: Large sulfur-isotope anomaly in nonvolcanic sulfate aerosol and its implications for the Archean atmosphere

机译:从封面开始:非火山硫酸盐气溶胶中的大型硫同位素异常及其对太古代大气的影响

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摘要

Sulfur-isotopic anomalies have been used to trace the evolution of oxygen in the Precambrian atmosphere and to document past volcanic eruptions. High-precision sulfur quadruple isotope measurements of sulfate aerosols extracted from a snow pit at the South Pole (1984–2001) showed the highest S-isotopic anomalies (Δ33S = +1.66‰ and Δ36S = +2‰) in a nonvolcanic (1998–1999) period, similar in magnitude to Pinatubo and Agung, the largest volcanic eruptions of the 20th century. The highest isotopic anomaly may be produced from a combination of different stratospheric sources (sulfur dioxide and carbonyl sulfide) via SOx photochemistry, including photoexcitation and photodissociation. The source of anomaly is linked to super El Niño Southern Oscillation (ENSO) (1997–1998)-induced changes in troposphere–stratosphere chemistry and dynamics. The data possess recurring negative S-isotope anomalies (Δ36S = −0.6 ± 0.2‰) in nonvolcanic and non-ENSO years, thus requiring a second source that may be tropospheric. The generation of nonvolcanic S-isotopic anomalies in an oxidizing atmosphere has implications for interpreting Archean sulfur deposits used to determine the redox state of the paleoatmosphere.
机译:硫同位素异常已被用来追踪前寒武纪大气中氧气的演变并记录过去的火山喷发。从南极雪坑(1984-2001)提取的硫酸盐气溶胶的高精度硫四重同位素测量显示,S同位素异常最高(Δ 33 S = + 1.66‰和Δ 36 S = + 2‰)在非火山期(1998-1999年),其大小与20世纪最大的火山爆发Pinatubo和Agung相似。最高的同位素异常可能是由不同的平流层源(二氧化硫和羰基硫)通过SOx光化学作用(包括光激发和光离解)产生的。异常的原因与超级厄尔尼诺南方涛动(ENSO)(1997-1998)引起的对流层-平流层化学和动力学变化有关。在非火山和非ENSO年,这些数据具有反复出现的负S同位素异常(Δ 36 S = -0.6±0.2‰),因此需要第二个对流层源。在氧化性气氛中非火山S同位素异常的产生对于解释用于确定古大气氧化还原状态的太古代硫沉积有重要意义。

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