Sampling event

EDP Baixo Sabor: Phytoplankton - Ecological Monitoring Program [2016]

最新バージョン EDP - Energias de Portugal によって公開 2019/02/05 EDP - Energias de Portugal
公開日:
2019/02/05
ライセンス:
CC-BY 4.0

DwC-A形式のリソース データまたは EML / RTF 形式のリソース メタデータの最新バージョンをダウンロード:

DwC ファイルとしてのデータ ダウンロード 6 レコード English で (104 KB) - 更新頻度: unknown
EML ファイルとしてのメタデータ ダウンロード English で (47 KB)
RTF ファイルとしてのメタデータ ダウンロード English で (17 KB)

説明

The dataset contains Phytoplankton records of samples collected at Baixo Sabor reservoir during the first year of the Ecology Monitoring Program (PME) of Baixo Sabor Hydroelectric Scheme, promoted by EDP – Energias de Portugal, S.A. Samples were collected in the deeper zone of the reservoir, at a fixed station 1300 m upstream of the dam, in 6 campaigns carried out between March and October of 2016. The targeted taxa were phytoplankton species, included as biological quality element for ecological quality in the framework of the EU’s Water Directive.

データ レコード

この sampling event リソース内のデータは、1 つまたは複数のデータ テーブルとして生物多様性データを共有するための標準化された形式であるダーウィン コア アーカイブ (DwC-A) として公開されています。 コア データ テーブルには、6 レコードが含まれています。

拡張データ テーブルは1 件存在しています。拡張レコードは、コアのレコードについての追加情報を提供するものです。 各拡張データ テーブル内のレコード数を以下に示します。

Event (コア)
6
Occurrence 
2394

この IPT はデータをアーカイブし、データ リポジトリとして機能します。データとリソースのメタデータは、 ダウンロード セクションからダウンロードできます。 バージョン テーブルから公開可能な他のバージョンを閲覧でき、リソースに加えられた変更を知ることができます。

バージョン

次の表は、公にアクセス可能な公開バージョンのリソースのみ表示しています。

引用方法

研究者はこの研究内容を以下のように引用する必要があります。:

Marin C, Viegas V, Gonçalves, S Múrias T (2018): EDP Baixo Sabor: Fitoplanton - Ecological Monitoring Program [2016]. v1. EDP - Energias de Portugal. Dataset/Samplingevent. http://ipt.gbif.pt/ipt/resource?r=fitoplanton_sabor_pme_2016&v=1.0

権利

研究者は権利に関する下記ステートメントを尊重する必要があります。:

パブリッシャーとライセンス保持者権利者は EDP - Energias de Portugal。 This work is licensed under a Creative Commons Attribution (CC-BY 4.0) License.

GBIF登録

このリソースをはGBIF と登録されており GBIF UUID: 1b20ed8a-453f-4496-a713-066a8973ab04が割り当てられています。   GBIF Portugal によって承認されたデータ パブリッシャーとして GBIF に登録されているEDP - Energias de Portugal が、このリソースをパブリッシュしました。

キーワード

Occurrence; Observation; Phytoplankton; Baixo Sabor reservoir; ecological monitoring; Observation; Phytoplankton; Baixo Sabor reservoir; ecological monitoring

連絡先

Cristina Marin
  • 最初のデータ採集者
Coordinator
Labelec - Estudos, Desenvolvimento e Actividades Laboratoriais, S.A. - Área de Ambiente
Rua Cidade de Goa, 4
2685-038 Sacavém Sacavém
PT
Vera Viegas
  • 最初のデータ採集者
Technician
Labelec - Estudos, Desenvolvimento e Actividades Laboratoriais, S.A. - Área de Ambiente
Rua Cidade de Goa, 4
2685-038 Sacavém Sacavém
PT
Sónia Gonçalves
  • 最初のデータ採集者
Technician
Labelec - Estudos, Desenvolvimento e Actividades Laboratoriais, S.A. - Área de Ambiente
2685-038 Sacavém
2685-038 Sacavém Sacavém
PT
Tiago Múrias
  • メタデータ提供者
Researcher
CIBIO-InBIO, Centro de Investigação em Biodiversidade e Recursos Genéticos, Universidade do Porto
Campus Agrário de Vairão
4485-661 Vairão Vairão
PT
João Madeira
  • 連絡先
Manager
EDP - Energias de Portugal
Av. 24 de Julho, 12, Torre Nascente, Piso 4
1249-300 Lisboa Lisbon
PT

地理的範囲

The data were collected in a single point in the Baixo Sabor reservoir, at a fixed station 1300 m upstream of the dam in the deeper zone of the reservoir.

座標(緯度経度) 南 西 [41.23, -6.945], 北 東 [41.319, -6.827]

生物分類学的範囲

The taxonomic coverage of this dataset includes 6 kingdoms, 15 phylum, 17 classes, 48 orders, 77 families, 144 genus and 305 species of the list of the EU’s Water Directive framework. The actual observations encompass 5 kingdoms, 9 phylum, 10 classes, 18 orders, 23 families, 30 genus and 31 species. The identification was made, whenever possible, to species level; otherwise, the phylum, class, order, family or genus were specified.

Kingdom Animalia, Bacteria, Chromista, Eubacteria, Plantae, Protozoa
Phylum Cnidaria, Cyanobacteria, Eubacteria, Bacillariophyta, Chrysophyta, Cryptophyta, Haptophyta, Myzozoa, Ochrophyta, Charophyta, Chlorophyta, Chromophyta, Choanozoa, Euglenophyta, Euglenozoa
Class Hydrozoa, Cyanophyceae, Bacillariophyceae, Cryptophyceae, Prymnesiophyceae, Dinophyceae, Bacillariophyceae, Chrysophyceae, Xanthophyceae, Klebsormidiophyceae, Zygnematophyceae, Chlorophyceae, Pedinophyceae, Prasinophyceae, Trebouxiophyceae, Bacillariophyceae, Choanoflagellatea, Euglenoidea
Order Anthoathecata, Chroococcales, Nostocales, Chroococcales, Bacillariales, Cryptomonadales, Pyrenomonadales, Prymnesiales, Gonyaulacales, Gymnodiniales, Peridiniales, Suessiales, Achnanthales, Aulacoseirales, Bacillariales, Coscinodiscales, Cymbellales, Eunotiales, Fragilariales, Mastogloiales, Melosirales, Naviculales, Rhizosoleniales, Rhopalodiales, Surirellales, Tabellariales, Thalassiophysales, Thalassiosirales, Chromulinales, Ochromonadales, Synurales, Mischococcales, Oscillatoriales, Synechococcales, Klebsormidiales, Zygnematales, Chlamydomonadales, Sphaeropleales, Tetrasporales, Volvocales, Pedinomonadales, Chlorodendrales, Pyramimonadales, Chlorellales, Oocystales, Trebouxiophyceae ordo incertae sedis, Pennales, Craspedida, Euglenida, Cladonematidae
Family Chroococcaceae, Synechococcaceae, Nostocaceae, Oscillatoriaceae, Rivulariaceae, Chroococcales, Bacillariaceae, Cryptomonadaceae, Chroomonadaceae, Pyrenomonadaceae, Chrysochromulinaceae, Ceratiaceae, Kareniaceae, Phytodiniaceae, Glenodiniaceae, Peridiniaceae, Borghiellaceae, Achnanthaceae, Achnanthidiaceae, Cocconeidaceae, Aulacoseiraceae, Bacillariaceae, Hemidiscaceae, Cymbellaceae, Gomphonemataceae, Eunotiaceae, Peroniaceae, Fragilariaceae, Mastogloiaceae, Melosiraceae, Diploneidaceae, Naviculaceae, Neidiaceae, Pinnulariaceae, Pleurosigmataceae, Stauroneidaceae, Rhizosoleniaceae, Rhopalodiaceae, Surirellaceae, Tabellariaceae, Catenulaceae, Skeletonemataceae, Stephanodiscaceae, Thalassiosiraceae, Dinobryaceae, Chromulinaceae, Mallomonadaceae, Pleurochloridaceae, Ammatoideaceae, Oscillatoriaceae, Synechococcaceae, Elakatotrichaceae, Closteriaceae, Desmidiaceae, Zygnemataceae, Golenkiniaceae, Micractiniaceae, Sphaeropleaceae, Treubariaceae, Volvocaceae, Characiaceae, Hydrodictyaceae, Radiococcaceae, Scenedesmaceae, Schroederiaceae, Selenastraceae, Sphaeropleales incertae sedis, Sphaerocystidaceae, Chlamydomonadaceae, Goniaceae, Pedinomonadaceae, Chlorodendraceae, Pyramimonadaceae, Chlorellaceae, Oocystaceae, Trebouxiophyceae incertae sedis, Salpingoecaceae, Euglenaceae

時間的範囲

開始日 / 終了日 2016-03-11 / 2016-11-22

プロジェクトデータ

The dataset contains Phytoplankton records of samples collected at Baixo Sabor reservoir during the first year of the Ecology Monitoring Program (PME) of Baixo Sabor Hydroelectric Scheme, promoted by EDP – Energias de Portugal, S.A. Samples were collected in the deeper zone of the reservoir, at a fixed station 1300 m upstream of the dam, in 6 campaigns carried out between March and October of 2016. The targeted taxa were phytoplankton species, included as biological quality element for ecological quality in the framework of the EU’s Water Directive. A total of 1849 taxa records were obtained corresponding to 31 species and 11 genera. The most abundant species (>100 records) were Fragilaris crotonensis (phylum Ochropyta, class Bacillariophyceae, order Fragilariales) (198 records), Chroomonas acuta (Cryptophyta, Cryptophyceae, Pyrenomonadales) (167), Woronichinia naegeliana (Cyanobacteria, Cyanophyceae, Chroococcales) (142) and Eudorina unicocca (Chlorophyta, Chlorophyceae, Volvocales) (119), and the genera Anabaena (Cyanobacteria, Cyanophyceae, Nostocales) (122) and Cryptomonas (Cryptophyta, Cryptophyceae, Cryptomonadales) (121).

タイトル EDP Baixo Sabor: Fitopanton - Ecological Monitoring Program [2016]
識別子 EDP Biodiversity Data
ファンデイング The work was funded by EDP - Energias de Portugal, S.A.
Study Area Description The study was conducted in one sampling station, 1300 m upstream of the dam, in the deepest zone of the Baixo Sabor reservoir.
研究の意図、目的、背景など(デザイン) The reported data is part of a limnological study aiming to provide information on specific water quality parameters for physicochemical and biological elements, as defined in the EU’s Water Framework Directive and collected within the scope of the Ecology Monitoring Program (PME) of the Baixo Sabor Hydroelectric Scheme (AHBS)

プロジェクトに携わる要員:

Cristina Marin
  • 論文著者
Vera Viegas
  • 論文著者
Sara Gonçalves
  • 論文著者
Tiago Múrias
  • メタデータ提供者

収集方法

Sampling followed the procedures defined by the Portuguese National Water Authority in the protocol for sampling and analysis of phytoplankton quality element under the Water Framework Directive. In each sampling campaign, a two-step procedure was adopted. First (a) a water column profile for temperature and dissolved oxygen was perform using a multiparametric probe (b) the water transparency was measure using a Secchi disk (Secchi depth), and (c) the depth of the euphotic zone was estimated (2.5 x the Secchi Depth). Second, (a) water samples were collected, using an integrated water sampling device (hydrobios), from the surface to euphotic zone maximum depth; (b) samples were preserved in loco with Alkaline Lugol’s solution and transported in 48 hours to the laboratory. The samples were stored in a dark and cold place (1º to 4ºC) for a maximum period of 6 months. They were periodically examined and recompleted with Alkaline Lugol’s solution, whenever needed. In the lab, the analysis for identification (to the lower possible taxonomic level), quantification (cells/mL) and biovolume (mm3/m3) were carried out using sedimentation chambers and an inverted microscope (Utermöhl technique), as described in EN 15204:2006 (Water quality - Guidance standard on the enumeration of phytoplankton using inverted microscopy (Utermöhl technique)) and EN 16695:2015 (Water quality - Guidance on the estimation of phytoplankton biovolume).

Study Extent The study was carried out in one sampling station, 1300 m upstream of the dam, in the deepest zone of the Baixo Sabor reservoir. Six sampling campaigns took place between 3 March and 22 November 2016, covering winter, spring, summer (3 samples) and autumn.
Quality Control Sampling method and laboratory identification, quantification and biovolume estimation are accredited (accreditation certificate and technical annex L0216) by Instituto Português de Acreditação (IPAC), as demanded by ISO/IEC 17025:2017 (General requirements for the competence of testing and calibration laboratories). All individuals were identified by experts with a deep knowledge of Phytoplankton taxonomy.

Method step description:

  1. To be completed

追加のメタデータ

代替識別子 1b20ed8a-453f-4496-a713-066a8973ab04
http://ipt.gbif.pt/ipt/resource?r=fitoplanton_sabor_pme_2016