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一种用于识别典型场地的方法,以便在异质环境中扩大底栖生物地球化学的靶向实地观测。

An approach for the identification of exemplar sites for scaling up targeted field observations of benthic biogeochemistry in heterogeneous environments.

作者信息

Thompson C E L, Silburn B, Williams M E, Hull T, Sivyer D, Amoudry L O, Widdicombe S, Ingels J, Carnovale G, McNeill C L, Hale R, Marchais C Laguionie, Hicks N, Smith H E K, Klar J K, Hiddink J G, Kowalik J, Kitidis V, Reynolds S, Woodward E M S, Tait K, Homoky W B, Kröger S, Bolam S, Godbold J A, Aldridge J, Mayor D J, Benoist N M A, Bett B J, Morris K J, Parker E R, Ruhl H A, Statham P J, Solan M

机构信息

Ocean and Earth Science, University of Southampton, National Oceanography Centre, Southampton, SO14 3ZH UK.

2Centre for Environment, Fisheries and Aquaculture Science, Pakefield Road, Lowestoft, NR33 0HT UK.

出版信息

Biogeochemistry. 2017;135(1):1-34. doi: 10.1007/s10533-017-0366-1. Epub 2017 Aug 1.

Abstract

Continental shelf sediments are globally important for biogeochemical activity. Quantification of shelf-scale stocks and fluxes of carbon and nutrients requires the extrapolation of observations made at limited points in space and time. The procedure for selecting exemplar sites to form the basis of this up-scaling is discussed in relation to a UK-funded research programme investigating biogeochemistry in shelf seas. A three-step selection process is proposed in which (1) a target area representative of UK shelf sediment heterogeneity is selected, (2) the target area is assessed for spatial heterogeneity in sediment and habitat type, bed and water column structure and hydrodynamic forcing, and (3) study sites are selected within this target area encompassing the range of spatial heterogeneity required to address key scientific questions regarding shelf scale biogeochemistry, and minimise confounding variables. This led to the selection of four sites within the Celtic Sea that are significantly different in terms of their sediment, bed structure, and macrofaunal, meiofaunal and microbial community structures and diversity, but have minimal variations in water depth, tidal and wave magnitudes and directions, temperature and salinity. They form the basis of a research cruise programme of observation, sampling and experimentation encompassing the spring bloom cycle. Typical variation in key biogeochemical, sediment, biological and hydrodynamic parameters over a pre to post bloom period are presented, with a discussion of anthropogenic influences in the region. This methodology ensures the best likelihood of site-specific work being useful for up-scaling activities, increasing our understanding of benthic biogeochemistry at the UK-shelf scale.

摘要

大陆架沉积物对全球生物地球化学活动具有重要意义。对大陆架尺度的碳和营养物质储量及通量进行量化,需要对在有限时空点上进行的观测进行外推。结合一项由英国资助的研究项目,该项目旨在研究陆架海的生物地球化学,讨论了选择示例站点以形成这种尺度扩大基础的程序。提出了一个三步选择过程,其中:(1)选择一个代表英国陆架沉积物异质性的目标区域;(2)评估目标区域在沉积物和栖息地类型、海底和水柱结构以及水动力强迫方面的空间异质性;(3)在该目标区域内选择研究站点,这些站点涵盖了解决有关陆架尺度生物地球化学关键科学问题所需的空间异质性范围,并尽量减少混杂变量。这导致在凯尔特海选择了四个站点,这些站点在沉积物、海底结构、大型底栖动物、小型底栖动物和微生物群落结构及多样性方面有显著差异,但在水深、潮汐和波浪大小及方向、温度和盐度方面变化最小。它们构成了一个包括春季水华周期的观测、采样和实验研究巡航计划的基础。展示了水华前期到后期关键生物地球化学、沉积物、生物和水动力参数的典型变化,并讨论了该地区的人为影响。这种方法确保了特定地点的工作最有可能对尺度扩大活动有用,增进了我们对英国陆架尺度底栖生物地球化学的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15df/6961521/9e3807e0fb1f/10533_2017_366_Fig1_HTML.jpg

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