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重新评估海洋生物质生产中的主要生物资源利用:一个新的计算框架。

Re-evaluating Primary Biotic Resource Use for Marine Biomass Production: A New Calculation Framework.

机构信息

Department of Sustainable Organic Chemistry and Technology, Research Group EnVOC, Ghent University , Coupure Links 653, Ghent B-9000, Belgium.

Department of Environmental Management, Faculty of Environment, Vietnam National University of Agriculture , Hanoi 10000, Vietnam.

出版信息

Environ Sci Technol. 2015 Oct 6;49(19):11586-93. doi: 10.1021/acs.est.5b02515. Epub 2015 Sep 18.

Abstract

The environmental impacts of biomass harvesting can be quantified through the amount of net primary production required to produce one unit of harvested biomass (SPPR-specific primary production required). This paper presents a new calculation framework that explicitly takes into account full food web complexity and shows that the resulting SPPR for toothed whales in the Icelandic marine ecosystem is 2.8 times higher than the existing approach based on food web simplification. In addition, we show that our new framework can be coupled to food web modeling to examine how uncertainty on ecological data and processes can be accounted for while estimating SPPR. This approach reveals that an increase in the degree of heterotrophy by flagellates from 0% to 100% results in a two-fold increase in SPPR estimates in the Barents Sea. It also shows that the estimated SPPR is between 3.9 (herring) and 5.0 (capelin) times higher than that estimated when adopting food chain theory. SPPR resulting from our new approach is only valid for the given time period for which the food web is modeled and cannot be used to infer changes in SPPR when the food web is altered by changes in human exploitation or environmental changes.

摘要

生物质收获的环境影响可以通过生产单位收获生物质所需的净初级生产力的数量来量化(特定于收获生物质的净初级生产力要求)。本文提出了一个新的计算框架,该框架明确考虑了完整的食物网复杂性,并表明冰岛海洋生态系统中齿鲸的由此产生的 SPPR 比基于食物网简化的现有方法高 2.8 倍。此外,我们表明,我们的新框架可以与食物网建模相结合,以检查在估计 SPPR 时如何考虑生态数据和过程的不确定性。这种方法表明,鞭毛虫的异养程度从 0%增加到 100%会使巴伦支海的 SPPR 估计值增加一倍。它还表明,估计的 SPPR 比采用食物链理论时估计的 SPPR 高 3.9 倍(鲱鱼)到 5.0 倍(毛鳞鱼)。我们新方法得出的 SPPR 仅在建模食物网的给定时间段内有效,并且不能用于推断由于人类开发或环境变化导致食物网改变而导致的 SPPR 变化。

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