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首页> 外文期刊>ICES Journal of Marine Science >A bioenergetic model to address carbon sequestration potential of shellfish farming: example from Ruditapes philippinarum in the Venice lagoon
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A bioenergetic model to address carbon sequestration potential of shellfish farming: example from Ruditapes philippinarum in the Venice lagoon

机译:一种能力模型解决贝类农业碳封存潜力:威尼斯泻湖菲律宾菲律宾的示例

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摘要

Shellfish are increasingly been looked at as sustainable food sources that provide additional ecosystem services. However, their role as CO2 sinks or sources is still debated. To quantify it, shell accretion dynamics should be accounted for. However, the shell component is usually calculated with allometric scaling, in most bivalve models. With this study, shell accretion was added to a bioenergetic model of the Manilla clam (Ruditapes philippinarum), and a parameter linking assimilated energy towards shell growth (K-SH) was calibrated for four sites, where clams from the same cohort were monitored during a transplant experiment. The model was then used to calculate CO2 fluxes resulting from respiration and shell calcification, taking into account CaCO3 stocked in the shell and CO2 emission. The findings show that K-SH varied slightly among sites and that clams played a role as a moderate sink of CO2 over a whole year. CO2 fluxes were characterized by a seasonal variability: clams were net sources in wintertime and sinks in summer time, suggesting the need of accounting for seasonality and growth should shellfish farming be included in carbon markets.
机译:贝类越来越多地被视为可持续的食物来源,提供额外的生态系统服务。但是,他们作为CO2汇总或来源的角色仍然讨论。为了量化它,应考虑shell增量动态。然而,壳体组件通常以同性计缩放计算,在大多数双向模型中。通过该研究,将壳含量加入Manilla Clam(Ruditapes Philippinarum)的生物能量模型中,并将其与壳生长(K-SH)的参数连接到四个地点,其中监测来自同一群组的蛤蜊移植实验。然后使用该模型来计算由呼吸和壳钙化引起的CO 2助熔剂,考虑到壳牌和CO2排放中的Caco3。这些研究结果表明,K-SH在网站之间略有不同,而蛤蜊在全年中作为CO2的中等汇在一起发挥作用。 CO 2助焊剂的特点是季节性变异性:蛤蜊是冬季冬季的净来源,夏季时间下沉,表明贝类农业应包括在碳市场中的季节性和增长的需要。

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