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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Sulfur cycling in wetland peat of the New Jersey Pinelands and its effect on stream water chemistry
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Sulfur cycling in wetland peat of the New Jersey Pinelands and its effect on stream water chemistry

机译:新泽西州松地湿地泥炭中的硫循环及其对溪流水化学的影响

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摘要

The dynamics of sulfur cycling in wetland peat along an elevational transect at high, intermediate, and low locations (MS, NW, and LB sites, respectively) was investigated in the watershed of McDonalds Branch within the New Jersey Pinelands, by utilizing both soil incubation experiments (with (SO42-)-S-35 as a radiotracer) and stable isotope (delta S-34 and delta O-18) analyses of soil, rain, and streamwater. The results indicate that sulfur cycling can vary greatly among different portions of the watershed and this can have large effects on streamwater chemistry and delta S-34 values over distances as short as 1 km. Laboratory incubations of peat samples collected in July 1993 revealed the co-occurrence of dissimilatory sulfate reduction (DSR; rates ranging from 0.2 to 22.1 nmol/wet g/day) and net generation of sulfate (NaH2PO4 extractable) in the porewater. Generation of sulfate, which was most pronounced at the LB site, may involve oxidation of reduced sulfur in the pear and/or hydrolysis of ester sulfates (ES). Seasonal changes in streamwater SO42-/Cl- molar ratios were similar at LB and NW, being low during the summer and high in the winter, probably a result of higher rates of DSR within the peat during the summer. Consistent with this, higher delta S-34 values of sulfate in streamwater at NW during the summer are attributable to kinetic isotope effects associated with DSR. In contrast to NW, delta S-34 values of streamwater sulfate at LB were consistently lower, fluctuated little throughout the year, and were most negative during the summer (as much as 9 parts per thousand lower than streamwater at NW 1 km upstream). In comparison to NW, SO42-/Cl- ratios were lower in streamwater at LB throughout most of the year except for reversals during the summer, which coincided with the lowest delta S-34 values. In addition, there was a marked difference in the relationship of delta O-18 vs. delta S-34 Of sulfate in LB and NW streamwater, further suggesting that sulfur cycling varies greatly over relatively short distances within this watershed. In order to explain some of these site-specific differences in streamwater SO42-/Cl- ratios, delta S-34, and delta O-18 values, we hypothesize that the ES pool at LB may, by means of hydrolysis or isotopic exchange with streamwater sulfate, serve as an additional source of isotopically light sulfate to streamwater throughout most of the year. During the summer, drier conditions lower the water table at LB and enhance oxidation of reduced sulfur which releases a pulse of even isotopically lighter sulfate to the stream. Copyright (C) 2000 Elsevier Science Ltd. [References: 55]
机译:利用两种土壤培养方法,在新泽西州松树地区麦当劳分水岭的高,中和低位置(分别为MS,NW和LB站点)沿高海拔样带的湿地泥炭中硫循环的动力学进行了研究。实验(使用(SO42-)-S-35作为放射性示踪剂)和稳定同位素(δS-34和δO-18)对土壤,雨水和溪流进行了分析。结果表明,在流域的不同部分,硫的循环变化很大,这在短至1 km的距离内对溪流水化学和δS-34值都有很大影响。 1993年7月收集的泥炭样品的实验室温育表明,在孔隙水中同时存在异化硫酸盐还原(DSR;速率范围为0.2至22.1 nmol /湿克/天)和净生成硫酸盐(可提取NaH2PO4)。在LB位点最明显的硫酸盐的产生可能涉及梨中还原的硫的氧化和/或酯硫酸盐(ES)的水解。 LB和NW的溪水中SO42- / Cl-摩尔比的季节性变化相似,夏季较低,冬季较高,这可能是夏季泥炭中DSR发生率较高的结果。与此相一致的是,夏季西北地区河水中的硫酸盐δ-S-34值较高,可归因于与DSR相关的动力学同位素效应。与西北地区相反,LB处的溪水硫酸盐的δS-34值始终较低,全年波动较小,并且在夏季最负(比上游1 km的西北溪水含量低千分之九)。与NW相比,除了夏季的逆转(与最低的S-34值一致)外,全年大部分时间LB的河水中SO42- / Cl-比率均较低。此外,LB和NW废水中硫酸盐的δO-18与δS-34之间的关系存在显着差异,这进一步表明,在该流域内,硫的循环在相对较短的距离内变化很大。为了解释水位SO42- / Cl-比率,δS-34和δO-18值中的某些特定于现场的差异,我们假设LB处的ES池可通过水解或同位素交换与硫酸盐流,在整个一年的大部分时间里都是同位素淡硫酸盐的另外来源。在夏季,较干燥的条件会降低LB处的地下水位,并增强还原硫的氧化,从而向水流释放甚至是同位素更轻的硫酸盐脉冲。版权所有(C)2000 Elsevier Science Ltd. [参考:55]

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