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Exponential increase of plastic burial in mangrove sediments as a major plastic sink

机译:红树林沉积物中塑料埋藏的指数增加作为一个主要塑料水槽

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Sequestration of plastics in sediments is considered the ultimate sink of marine plastic pollution that would justify unexpectedly low loads found in surface waters. Here, we demonstrate that mangroves, generally supporting high sediment accretion rates, efficiently sequester plastics in their sediments. To this end, we extracted microplastics from dated sediment cores of the Red Sea and Arabian Gulf mangrove ( Avicennia marina ) forests along the Saudi Arabian coast. We found that microplastics 0.5 mm dominated in mangrove sediments, helping explain their scarcity, in surface waters. We estimate that 50 ± 30 and 110 ± 80 metric tons of plastic may have been buried since the 1930s in mangrove sediments across the Red Sea and the Arabian Gulf, respectively. We observed an exponential increase in the plastic burial rate (8.5 ± 1.2% yearsup?1/sup) since the 1950s in line with the global plastic production increase, confirming mangrove sediments as long-term sinks for plastics.
机译:沉积物中塑料的封存被认为是海洋塑料污染的最终汇,这将为地表水域发现出乎意料的低载荷。在这里,我们证明了一种通常支持高沉积物增率的红树林,有效地在其沉积物中螯合塑料。为此,我们从沙特阿拉伯海岸的红海和阿拉伯海湾红树林(Avicennia Marina)森林的日期沉积物核心中提取微型塑料。我们发现微型塑料<0.5毫米处于红树林沉积物中,有助于解释其稀缺性,在地表水域中。我们估计自20世纪30年代分别以红海和阿拉伯海湾的西红柿沉积物以来,50±30和110±80公吨塑料可能已经埋葬。我们观察到塑料埋管速率的指数增加(8.5±1.2% 1 ),自20世纪50年代符合全球塑料生产增加,确认红树林沉积物作为塑料的长期汇。

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