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亚马逊和大西洋雨林的土地利用变化改变了从陆地输送到沿海水域的有机质和黑碳组成。

Land-use changes in Amazon and Atlantic rainforests modify organic matter and black carbon compositions transported from land to the coastal ocean.

机构信息

Leibniz Institute for Baltic Sea Research Warnemünde, Seestrasse 15, 18119 Rostock, Germany.

Laboratório de Ciências Ambientais, Centro de Biociências e Biotecnologia, Universidade Estadual do Norte Fluminense Darcy Ribeiro, Campos dos Goytacazes RJ, CEP 28013-602, Brazil.

出版信息

Sci Total Environ. 2023 Jun 20;878:162917. doi: 10.1016/j.scitotenv.2023.162917. Epub 2023 Mar 17.

Abstract

This study assessed black carbon (BC) dynamics, concentrations, and the organic matter (OM) isotopic carbon composition in northeastern South America drainage basin coastal sediments. Paraíba do Sul (PSR; Atlantic Rainforest, Brazil) coastal sediments displayed more C-enriched values (-22.6 ± 1.3 ‰ [n = 13]) than Amazon and Sinnamary (Amazon Rainforest in French Guiana and Brazil) sediments (-25.0 ± 3.1 ‰ [n = 14] and - 26.1 ± 1.0 ‰ [n = 6], respectively), indicating that local land-use basin changes have altered the OM composition, i.e., from natural C plant to C plants contributions. BC contents normalized to total organic carbon (TOC) content were 0.32 ± 0.24 (n = 8), 0.73 ± 0.67 (n = 6), and 0.95 ± 0.74 (n = 13) mg g TOC for Amazon, Sinnamary and PSR samples, respectively, with BC sources appearing to differ according to different drainage basin vegetation covers. With increasing distance from the river mouths, BC contents exhibited different trends between the coastal zones, with values increasing for the PSR and decreasing values for the Amazon samples. BC distribution in Sinnamary coastal sediments did not display specific patterns. Regarding the Amazon coastal zone, BC contents decreased while the B6CA:B5CA ratios did not show a pattern, which could indicate that BC in the area originates from river transport (aged BC) and that the hydrophobic component of dissolved BC is removed. The BC content mostly increased in the PSR coastal zone, while the B6CA:B5CA ratios were not altered for the entire gradient, indicating the BC stability and possible atmospheric deposition of soot. Our findings indicate that different sources, transformation processes, and hydrological conditions affect BC contents within coastal zones. Continuous land cover changes in both the Amazon and Atlantic Rainforests may result in large-scale marine carbon cycling impacts.

摘要

本研究评估了南美洲东北部流域沿海沉积物中黑碳 (BC) 的动态、浓度和有机物质 (OM) 碳同位素组成。Paraíba do Sul (PSR; 巴西大西洋雨林) 沿海沉积物的 C 富集值较亚马逊和 Sinnamary (法属圭亚那和巴西的亚马逊雨林) 沉积物更高 (-22.6 ± 1.3‰ [n = 13] 与 -25.0 ± 3.1‰ [n = 14] 和 -26.1 ± 1.0‰ [n = 6]),表明当地土地利用流域的变化改变了 OM 的组成,即从天然 C 植物到 C 植物的贡献。BC 含量相对于总有机碳 (TOC) 含量归一化后分别为 0.32 ± 0.24 (n = 8)、0.73 ± 0.67 (n = 6) 和 0.95 ± 0.74 (n = 13) mg g TOC,亚马逊、Sinnamary 和 PSR 样品的 BC 来源似乎因流域植被覆盖不同而不同。随着与河口距离的增加,BC 含量在不同的沿海地区呈现出不同的趋势,PSR 的含量增加,而亚马逊的含量减少。Sinnamary 沿海沉积物中 BC 的分布没有显示出特定的模式。关于亚马逊沿海地区,BC 含量随着 B6CA:B5CA 比值的增加而减少,这可能表明该地区的 BC 来源于河流运输 (老化的 BC),并且溶解 BC 的疏水性成分被去除。PSR 沿海地区的 BC 含量大多增加,而整个梯度的 B6CA:B5CA 比值没有变化,表明 BC 稳定,可能是大气中烟尘的沉积。我们的研究结果表明,不同的来源、转化过程和水文条件影响着沿海地区的 BC 含量。亚马逊和大西洋雨林的持续土地覆盖变化可能会对大规模的海洋碳循环产生影响。

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