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Organic and inorganic carbon and their stable isotopes in surface sediments of the Yellow River Estuary

机译:黄河口表层沉积物中有机碳和无机碳及其稳定同位素

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摘要

Studying the carbon dynamics of estuarine sediment is crucial to understanding of carbon cycle in the coastal ocean. This study is to evaluate the mechanisms regulating the dynamics of organic (TOC) and inorganic carbon (TIC) in surface sediment of the Yellow River Estuary (YRE). Based on data of 15 surface sediment cores, we found that TIC (6.3–20.1 g kg−1) was much higher than TOC (0.2–4.4 g kg−1). Both TOC and TIC were generally higher to the north than to the south, primarily due to the differences in kinetic energy level (i.e., higher to the south). Our analysis suggested that TOC was mainly from marine sources in the YER, except in the southern shallow bay where approximately 75% of TOC was terrigenous. The overall low levels of TOC were due to profound resuspension that could cause enhanced decomposition. On the other hand, high levels of TIC resulted partly from higher rates of biological production, and partly from decomposition of TOC associated with sediment resuspension. The isotopic signiture in TIC seems to imply that the latter is dominant in forming more TIC in the YRE, and there may be transfer of OC to IC in the water column.
机译:研究河口沉积物的碳动力学对于了解沿海海洋的碳循环至关重要。这项研究旨在评估调节黄河口(YRE)表层沉积物中有机(TOC)和无机碳(TIC)动力学的机制。根据15个表层沉积物核的数据,我们发现TIC(6.3–20.1 g kg -1 )远高于TOC(0.2–4.4 g kg -1 ) 。通常,TOC和TIC都比北部高,比南部高,这主要是由于动能水平的不同(即,比南部高)。我们的分析表明,TOC主要来自于YER的海洋资源,除了南部浅海湾中,TOC的大约75%是陆生的。总体TOC含量较低的原因是深深的重悬浮,可能导致分解作用增强。另一方面,高TIC含量部分是由于较高的生物产量,部分是由于与沉积物再悬浮有关的TOC分解。 TIC中的同位素特征似乎暗示后者在YRE中形成更多TIC方面占主导地位,并且水柱中OC可能转移到IC。

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