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0019.848448
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008171207t20192019qucbdo #ob   f000 0 eng d
020 |a9780660241586
040 |aCaOODSP|beng|erda|cCaOODSP
043 |an-cn-bc
0861 |aEn84-147/2017E-PDF
1001 |aPappas, S., |eauthor.
24510|aBaseline surface water quality in the Petitot River basin and surrounding watersheds : |bexamining potential impacts of shale gas development in the Horn River basin, British Columbia / |cS. Pappas, D.P. Shaw, L. Shrimpton, S. Strachan, K. Trainor, and A. Yeow.
24610|aExamining potential impacts of shale gas development in the Horn River basin, British Columbia
264 1|aGatineau, QC : |bEnvironment and Climate Change Canada = Environnement et changement climatique Canada, |c[2019]
264 4|c©2019
300 |a1 online resource (xii, 92 pages) : |bmaps, graphs, photographs
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
500 |aIssued also in French under title: Qualité de référence des eaux de surface dans le bassin de la rivière Petitot et les bassins hydrographiques environnants : examen des impacts potentiels de l'exploitation du gaz de schiste dans le bassin de la rivière Horn en Colombie-Britannique.
504 |aIncludes bibliographical references.
5050 |aPart A - Routine freshwater quality monitoring -- Part B - Synoptic water quality monitoring -- Part C - Biological water quality monitoring.
520 |a"The report is divided into three sections: Part A, Routine Water Quality Monitoring study objectives were to gain a better understanding of water quality conditions in the Petitot River Basin by collecting baseline data using a standard suite of physical-chemical variables and establishing a representative long-term site. Part B, Synoptic Water Quality Monitoring study objectives were to establish patterns of spatial and temporal water chemistry through synoptic water sampling at high and low flow periods and examine potential relationships between unconventional oil and gas (UOG) activity and surface water quality. Part C, Biological Monitoring study objectives were to establish baseline reference conditions based on benthic macroinvertebrate communities and habitat characteristics, and develop a predictive bioassessment model to assess the ecosystem health of streams in the Liard, Fort Nelson, and Petitot River basins exposed to UOG activity"--Executive summary, page v-vi.
69207|2gccst|aWater quality
69207|2gccst|aGas industry
69207|2gccst|aWatersheds
7001 |aShaw, D. P., |eauthor.
7001 |aShrimpton, L., |eauthor.
7001 |aStrachan, S., |eauthor.
7001 |aTrainor, K., |eauthor.
7001 |aYeow, A., |eauthor.
7101 |aCanada. |bEnvironment and Climate Change Canada.
74002|aRoutine freshwater quality monitoring.
74002|aSynoptic water quality monitoring.
74002|aBiological water quality monitoring.
77508|tQualité de référence des eaux de surface dans le bassin de la rivière Petitot et les bassins hydrographiques environnants : |w(CaOODSP)9.848449
85640|qPDF|s2.90 MB|uhttps://publications.gc.ca/collections/collection_2019/eccc/En84-147-2017-eng.pdf