Modelling plant water relations and net primary productivity as affected by reclamation cover depth in reclaimed forestlands of northern Alberta

Author:

Welegedara N. P. Y.ORCID,Grant R. F.,Quideau Sylvie A.,Landhäusser Simon M.,Merlin Morgane,Lloret E.

Funder

Natural Sciences and Engineering Research Council of Canada Collaborative Research and Training Experience (CREATE) Program

Canadian Oil Sands Network for Research and Development

Land Reclamation International Graduate School

Publisher

Springer Science and Business Media LLC

Subject

Plant Science,Soil Science

Reference83 articles.

1. Alberta Environment (2007) Specified gas emitters regulation – Quantification protocol for afforestation projects. Environmental monitoring and evaluation, Alberta Environment. Edmonton, Alberta

2. Angstmann JL, Ewers BE, Barber J, Kwon H (2013) Testing transpiration controls by quantifying spatial variability along a boreal black spruce forest drainage gradient. Ecohydrol 6:783–793

3. Bleby TM, Burgess SSO, Adams MA (2004) A validation, comparison and error analysis of two heat-pulse methods for measuring sap flow in Eucalyptus marginata saplings. Funct Plant Biol 31:645–658

4. Bockstette SW, Pinno BD, Dyck MF, Landhäusser SM (2017) Root competition, not soil compaction, restricts access to soil resources for aspen on a reclaimed mine soil. Botany 95:685–695

5. Boese CD (2003) The design and installation of a field instrumentation program for the evaluation of soil-atmosphere water fluxes in a vegetated cover over saline/sodic shale overburden. M.Sc. Thesis. University of Saskatchewan, Saskatoon, SK

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