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Dynamics of sediment carbon stocks across intertidal wetland habitats of Moreton Bay, Australia

机译:澳大利亚Moreton Bay跨境湿地栖息地泥沙碳股的动态

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Coastal wetlands are known for high carbon storage within their sediments, but our understanding of the variation in carbon storage among intertidal habitats, particularly over geomorphological settings and along elevation gradients, is limited. Here, we collected 352 cores from 18 sites across Moreton Bay, Australia. We assessed variation in sediment organic carbon (OC) stocks among different geomorphological settings (wetlands within riverine settings along with those with reduced riverine influence located on tide-dominated sand islands), across elevation gradients, with distance from shore and among habitat and vegetation types. We used mid-infrared (MIR) spectroscopy combined with analytical data and partial least squares regression to quantify the carbon content of similar to 2500 sediment samples and provide fine-scale spatial coverage of sediment OC stocks to 150 cm depth. We found sites in river deltas had larger OC stocks (175-504 Mg/ha) than those in nonriverine settings (44-271 Mg/ha). Variation in OC stocks among nonriverine sites was high in comparison with riverine and mixed geomorphic settings, with sites closer to riverine outflow from the east and south of Moreton Bay having higher stocks than those located on the sand islands in the northwest of the bay. Sediment OC stocks increased with elevation within nonriverine settings, but not in riverine geomorphic settings. Sediment OC stocks did not differ between mangrove and saltmarsh habitats. OC stocks did, however, differ between dominant species across the research area and within geomorphic settings. At the landscape scale, the coastal wetlands of the South East Queensland catchments (17,792 ha) are comprised of approximately 4,100,000-5,200,000 Mg of sediment OC. Comparatively high variation in OC storage between riverine and nonriverine geomorphic settings indicates that the availability of mineral sediments and terrestrial derived OC may exert a strong influence over OC storage potential across intertidal wetland systems.
机译:沿海湿地以其沉积物内的高碳储存而闻名,但我们对界面栖息地的碳储存变化的理解,特别是在地貌环境和沿着海拔梯度上受到限制。在这里,我们从澳大利亚Moreton Bay的18个站点收集了352个核心。我们评估了沉积物有机碳(OC)股在不同地貌环境中的变化(河流环境中的湿地以及河流影响的湿地,河流影响降低,遍布潜在的沙岛),跨海拔梯度,距离岸边和栖息地和植被类型。我们使用中红外线(MIR)光谱与分析数据和部分最小二乘回归相结合,以量化与2500沉积物样品类似的碳含量,并为150cm深度提供沉积物OC股的微量空间覆盖率。我们发现河达滩的遗址比非犯罪线(44-271毫克/公顷)有更大的OC股(175-504毫克/公顷)。与河流和混合的地貌环境相比,非犯罪植物中的OC股的变异高,网站与莫尔顿湾东部和莫尔顿湾河流流出的网站比位于海湾西北部的沙岛上的股票。沉积物OC股随着非riverine设置内的高度而增加,但不在河滨地貌环境中。红树林和盐沼栖息地之间的沉积物OC股没有差异。然而,OC股确实不同于研究区域的主导物种和地貌设置。在景观量表,东南昆士兰集水区(17,792公顷)的沿海湿地包括约4,100,000-5,200,000毫克沉积物OC。河流和非犯罪线几何环境之间的OC储存的相对高的变化表明矿物沉积物和陆地衍生OC的可用性可能在跨境湿地系统上对OC储存潜力产生强烈影响。

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