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Ocean Urea Fertilization for Carbon Credits Poses High Ecological Risks

机译:碳信用额的海洋尿素施肥构成高生态风险

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摘要

The proposed plan for enrichment of the Sulu Sea, Philippines, a region of rich marine biodiversity, with thousands of tonnes of urea in order to stimulate algal blooms and sequester carbon is flawed for multiple reasons. Urea is preferentially used as a nitrogen source by some cyanobacteria and dinoflagellates, many of which are neutrally or positively buoyant. Biological pumps to the deep sea are classically leaky, and the inefficient burial of new biomass makes the estimation of a net loss of carbon from the atmosphere questionable at best. The potential for growth of toxic dinoflagellates is also high, as many grow well on urea and some even increase their toxicity when grown on urea. Many toxic dinoflagellates form cysts which can settle to the sediment and germinate in subsequent years, forming new blooms even without further fertilization. If large-scale blooms do occur, it is likely that they will contribute to hypoxia in the bottom waters upon decomposition. Lastly, urea production requires fossil fuel usage, further limiting the potential for net carbon sequestration. The environmental and economic impacts are potentially great and need to be rigorously assessed.
机译:为丰富藻类生物多样性地区菲律宾苏禄海而提议的旨在增加藻类繁殖和固碳的数千吨尿素的富集计划是有缺陷的,其原因有很多。尿素优先被某些蓝细菌和鞭毛藻用作氮源,其中许多是中性或正浮力的。传统上,通往深海的生物泵是泄漏的,而新生物质的低效率掩埋使充斥大气中的碳净损失的估算充其量是令人质疑的。有毒的鞭毛藻的生长潜力也很高,因为许多在尿素上生长良好,有些甚至在尿素上生长时会增加毒性。许多有毒的鞭毛藻会形成囊肿,这些囊肿会沉淀到沉积物上,并在随后的几年中发芽,即使不进一步施肥也能形成新的花朵。如果确实发生大规模水华,它们很可能在分解时导致底部水域缺氧。最后,尿素生产需要使用化石燃料,进一步限制了净碳固存的潜力。对环境和经济的影响可能很大,需要进行严格评估。

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