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Deposition and cycling of carbon and nitrogen in carbonate mud of the lagoons of Arlington and Sudbury Reefs, Great Barrier Reef

机译:大堡礁阿灵顿礁和萨德伯里礁礁湖碳酸盐泥中碳氮的沉积和循环

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The dynamics of carbon and nitrogen in carbonate mud were examined in the lagoons of Arlington and Sudbury Reefs, Great Barrier Reef. Most (89–93%) of the organic carbon and total nitrogen depositing to the carbonate mud zones was mineralized over a sediment depth of 1 m, with ∼50% of CO2 produced during microbial decomposition involved in carbonate precipitation/dissolution reactions. There was proportionally little burial of organic carbon (10–11%) or nitrogen (7–10%). Nitrogen budgets suggest rapid turnover of porewater inorganic N pools on the order of hours to a few days. Incubation experiments indicate carbonate dissolution in surface deposits (≤20 cm depth) and carbonate precipitation in deeper sediments. Depth-integrated reaction rates indicate net carbonate precipitation of 7–10 mol CaCO3 m2 year−1 over a depth of 1 m. Budget calculations at the whole-reef scale imply that deposition of CaCO3 in the mud zones of both lagoons may equate to 50–90% of total reef carbonate production, with organic carbon fluxes equating to nearly all net primary production on each reef. These biogeochemical estimates point to the functional importance of carbonate mud zones in the lagoons of the shelf reefs of the Great Barrier Reef.
机译:在大堡礁阿灵顿礁和萨德伯里礁的泻湖中检查了碳酸盐泥中碳和氮的动力学。沉积到碳酸盐泥浆区的大部分有机碳和总氮(89-93%)在1 m的沉积深度上被矿化,微生物分解过程中产生的约50%CO2 与碳酸盐的沉淀/溶解有关。反应。成比例的埋葬有机碳(10-11%)或氮(7-10%)很少。氮预算表明,孔隙水无机氮池的快速周转量约为数小时至数天。温育实验表明碳酸盐溶解在表层沉积物中(≤20 cm深度),碳酸盐沉淀在较深的沉积物中。深度综合反应速率表明,在1 m的深度中,碳酸盐净降水量为7-10 mol CaCO3 year-1 。在整个礁石规模上的预算计算表明,CaCO3 在两个泻湖的泥浆区中的沉积可能相当于礁石碳酸盐总产量的50-90%,而有机碳通量几乎等于每个礁石上的净初级产量。礁。这些生物地球化学估计值指出了大堡礁架子礁泻湖中碳酸盐泥带的功能重要性。

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