DIN EN 16772-2016 Water quality - Guidance on methods for sampling invertebrates in the hyporheic zone of rivers German version EN 16772 2016《水质 在河流潜流带采样无脊椎动物的方法指南 德文版本EN 16772-201.pdf
《DIN EN 16772-2016 Water quality - Guidance on methods for sampling invertebrates in the hyporheic zone of rivers German version EN 16772 2016《水质 在河流潜流带采样无脊椎动物的方法指南 德文版本EN 16772-201.pdf》由会员分享,可在线阅读,更多相关《DIN EN 16772-2016 Water quality - Guidance on methods for sampling invertebrates in the hyporheic zone of rivers German version EN 16772 2016《水质 在河流潜流带采样无脊椎动物的方法指南 德文版本EN 16772-201.pdf(28页珍藏版)》请在麦多课文档分享上搜索。
1、November 2016 English price group 14No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 13.060.70!%uq“2588278www.din.de
2、DIN EN 16772Water quality Guidance on methods for sampling invertebrates in the hyporheic zone of rivers;English version EN 16772:2016,English translation of DIN EN 16772:2016-11Wasserbeschaffenheit Anleitung fr Verfahren zur Probenahme von Invertebraten in der hyporheischen Zone von Flssen;Englisch
3、e Fassung EN 16772:2016,Englische bersetzung von DIN EN 16772:2016-11Qualit de leau Lignes directrices relatives aux mthodes dchantillonnage des invertbrs dans la zone hyporhique de rivires;Version anglaise EN 16772:2016,Traduction anglaise de DIN EN 16772:2016-11www.beuth.deDocument comprises 28 pa
4、gesDTranslation by DIN-Sprachendienst.In case of doubt, the German-language original shall be considered authoritative.11.16 DIN EN 16772:2016-11 2 A comma is used as the decimal marker. National foreword This document (EN 16772:2016) has been prepared by Technical Committee CEN/TC 230 “Water analys
5、is” (Secretariat: DIN, Germany). The responsible German body involved in its preparation was DIN-Normenausschuss Wasserwesen (DIN Standards Committee Water Practice), Working Group NA 119-01-03-05-06 AK Biologisch-kologische Gewsseruntersuchung of NA 119-01-03 AA Wasseruntersuchung. Designation of t
6、he method: Guidance on methods for sampling invertebrates in the hyporheic zone of rivers: Method DIN EN 16772 M 72 This standard has been published to implement the Water Framework Directive (WFD), Directive 2000/60/EC of the European Parliament and of the Council of 23 October 2000 establishing a
7、framework for Community action in the field of water policy*). *)Registered in the DITR database of DIN Software GmbH, obtainable from: Beuth Verlag GmbH, 10772 Berlin. DIN EN 16772:2016-11 3 Expert assistance and specialized laboratories will be required to perform the analyses described in this st
8、andard. Existing safety requirements are to be observed. Depending on the objective of the analysis, a check shall be made on a case-by-case basis as to whether and to what extent additional conditions will have to be specified. This standard has been prepared by DIN-Normenausschuss Wasserwesen (DIN
9、 Standards Committee Water Practice) in collaboration with the Wasserchemische Gesellschaft - Fachgruppe in der Gesellschaft Deutscher Chemiker (Water Chemistry Society - Division of the German Chemical Society). It is part of the series Deutsche Einheitsverfahren zur Wasser-, Abwasser- und Schlammu
10、ntersuchung (German standard methods for the examination of water, waste water and sludge): Guidance on methods for sampling invertebrates in the hyporheic zone of rivers (M 72). Standard methods published as DIN Standards are obtainable from Beuth Verlag GmbH, either individually or grouped in volu
11、mes. The standard methods included in the loose-leaf publication entitled Deutsche Einheitsverfahren zur Wasser-, Abwasser- und Schlammuntersuchung will continue to be published by Beuth Verlag GmbH and Wiley-VCH Verlag GmbH the nature and rate of biogeochemical processes resulting from upwelling of
12、 interstitial water or downwelling of surface water; the ecotonal nature of the hyporheic zone which provides important habitat for benthic taxa, specialist hyporheic organisms and groundwater fauna, including macroinvertebrates, meiofauna and microorganisms. Meiofauna includes microcrustaceans, rot
13、ifers and nematodes as well early instars of many aquatic insects. In this standard the hyporheic zone is defined as the spatio-temporally dynamic ecotone between the surficial benthic substrate and the underlying aquifer. Within the hyporheic zone, water, solutes and biota are exchanged with the st
14、ream above, the groundwater below and the saturated sediments lateral to the channel. The term “hyporheic zone” is applied to the physical habitat while the term “hyporheos” coined by Williams and Hynes in 1974 3 is used to describe the faunal community inhabiting it. Over the past few decades, the
15、importance of the hyporheic zone has been increasingly recognized, with the vertical dimension added to spatial concepts of lateral and longitudinal connectivity. Together with the temporal dimension this has created a four-dimensional understanding of river ecosystems 4, 5, 6. As the hyporheic zone
16、 is an ecotone between surface water and groundwater, abiotic conditions may reflect a transition between the two. Table 1 provides a general comparison of the physical characteristics of each environment. Table 1 Physical characteristics of typical groundwater and hyporheic environments compared wi
17、th surface waters Physical characteristic Groundwater Hyporheic Light Constant darkness Constant darkness Current velocity Much lower Lower Annual and daily temperature range Much smaller Smaller Substrate stability Much higher Higher Approaches to river conservation and management recognize the nee
18、d for a better understanding of the interactions between surface water and groundwater when undertaking investigations in the field. As the ecotone between the two, the hyporheic zone plays a vital part in ecosystem functioning in many rivers, including a critical role in the flow of energy, cycling
19、 of nutrients and organic compounds, as well as pollution attenuation. The hyporheic zone contributes to overall river biodiversity. It also provides a nursery for young life-stages of some fish and invertebrates and a potential refuge for benthos during adverse environmental conditions, such as flo
20、oding, low flows, chemical pollution, stream-bed drying or freezing. The hyporheic zone may therefore enhance the recovery of the benthic community following disturbance. EN 16772:2016 (E) DIN EN 16772:2016-11 5 An increased interest in the hyporheic zone has resulted, in part, from international le
21、gislation, such as EC directives: the Habitats Directive 7, the Water Framework Directive 8, the Groundwater Directive 9 and the Nitrates Directive 10. Although investigations into the hyporheic zone are not explicit within these directives, they do require national regulatory authorities to adopt a
22、 more integrated approach to the management of river catchments as a whole. Consequently, an understanding of the hyporheic zone, including its functions and the potential threats to these, is vital in order to comply fully with the requirements of these directives. Investigations of the hyporheic z
23、one may also be needed more generally for catchment management, river restoration, site-based investigations or for research. Consequently, the purpose of any study should be carefully considered when selecting the most appropriate method for sampling the hyporheos, especially if the collection of w
24、ater quality and associated sediment data is also required. In addition, the methods described in this standard may require modification to reflect local conditions. EN 16772:2016 (E) DIN EN 16772:2016-11 6 1 Scope This European Standard provides guidance on methods for sampling invertebrates in the
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