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Geochemical evidence for cryptic sulfur cycling in salt marsh sediments

机译:盐沼沉积物中隐含硫循环的地球化学证据

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Cryptic sulfur cycling is an enigmatic process in which sulfate is reduced to some lower-valence state sulfur species and subsequently quantitatively reoxidized; the rate and microbial energetics of this process and how prevalent it may be in the environment remain controversial. Here we investigate sulfur cycling in salt marsh sediments from Norfolk, England where we observe high ferrous iron concentrations with no depletion of sulfate or change in the sulfur isotope ratio of that sulfate, but a 5%(0) increase in the oxygen isotope ratio in sulfate, indicating that sulfate has been through a reductive cycle replacing its oxygen atoms. This cryptic sulfur cycle was replicated in laboratory incubations using O-18-enriched water, demonstrating that the field results do not solely result from mixing processes in the natural environment. Numerical modeling of the laboratory incubations scaled to represent the salt marsh sediments suggests that the uptake rate of sulfate during this cryptic sulfur cycling is similar to the uptake rate of sulfate during the fastest microbial sulfate reduction that has been measured in the natural environment. The difference is that during cryptic sulfur cycling, all of the sulfur is subsequently reoxidized to sulfate. We discuss mechanisms for this pathway of sulfur cycling including the possible link to the subsurface iron cycle. (C) 2016 Elsevier B.V. All rights reserved.
机译:隐性硫循环是一个神秘的过程,其中硫酸盐被还原成一些低价态的硫物质,然后被定量地再氧化。该过程的速率和微生物能量学及其在环境中的流行程度仍存在争议。在这里,我们研究了英格兰诺福克盐沼沉积物中的硫循环,在那里我们观察到高铁离子浓度,没有硫酸盐的消耗或该硫酸盐的硫同位素比率的变化,但该物质的氧同位素比率增加了5%(0)。硫酸盐,表明硫酸盐已经通过还原循环替换了其氧原子。这个秘密的硫循环是在实验室培养中使用富含O-18的水重复进行的,这表明田间试验结果并非仅来自自然环境中的混合过程。缩放比例以代表盐沼沉积物的实验室培养的数值模型表明,在这种隐性硫循环中,硫酸盐的吸收速率与自然环境中最快的微生物硫酸盐还原过程中的硫酸盐吸收速率相似。不同之处在于,在秘密的硫循环期间,所有硫随后都被重新氧化为硫酸盐。我们讨论了硫循环这一途径的机制,包括与地下铁循环的可能联系。 (C)2016 Elsevier B.V.保留所有权利。

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