A Chronosequence of Scale-Dependent Vegetation and Soil Properties on a Surface Coal Mine over 40 Years of Reclamation

Surface coal mining has taken place in North Dakota for many decades. Upon the mining process, the mined lands need to be reclaimed to a better state than pre-mining. The reclamation process is a timely and costly procedure. Currently, most reclamation strategies focus only on above ground biomass....

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Main Author: Bohrer, Stefanie
Format: Others
Published: North Dakota State University 2018
Online Access:https://hdl.handle.net/10365/28283
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spelling ndltd-ndsu.edu-oai-library.ndsu.edu-10365-282832021-09-28T17:11:02Z A Chronosequence of Scale-Dependent Vegetation and Soil Properties on a Surface Coal Mine over 40 Years of Reclamation Bohrer, Stefanie Surface coal mining has taken place in North Dakota for many decades. Upon the mining process, the mined lands need to be reclaimed to a better state than pre-mining. The reclamation process is a timely and costly procedure. Currently, most reclamation strategies focus only on above ground biomass. Our research entailed two different studies, the first looking into vegetative species composition and canopy cover of reclaimed mine lands, and the second focuses on belowground properties affected by soil compaction over a 40 year reclamation gradient. Species composition and canopy cover did not increase over 40 years (p> 0.05). Soil compaction did not decrease, and rooting depths and soil water content range did not increase over the reclamation gradient (p> 0.05). Relative plant community patch size and soil health on reclaimed lands over four decades indicate the landscape-level success of the current ecosystem-based reclamation strategy. BNI Coal 2018-06-18T17:44:41Z 2018-06-18T17:44:41Z 2016 text/thesis https://hdl.handle.net/10365/28283 NDSU policy 190.6.2 https://www.ndsu.edu/fileadmin/policy/190.pdf application/pdf North Dakota State University
collection NDLTD
format Others
sources NDLTD
description Surface coal mining has taken place in North Dakota for many decades. Upon the mining process, the mined lands need to be reclaimed to a better state than pre-mining. The reclamation process is a timely and costly procedure. Currently, most reclamation strategies focus only on above ground biomass. Our research entailed two different studies, the first looking into vegetative species composition and canopy cover of reclaimed mine lands, and the second focuses on belowground properties affected by soil compaction over a 40 year reclamation gradient. Species composition and canopy cover did not increase over 40 years (p> 0.05). Soil compaction did not decrease, and rooting depths and soil water content range did not increase over the reclamation gradient (p> 0.05). Relative plant community patch size and soil health on reclaimed lands over four decades indicate the landscape-level success of the current ecosystem-based reclamation strategy. === BNI Coal
author Bohrer, Stefanie
spellingShingle Bohrer, Stefanie
A Chronosequence of Scale-Dependent Vegetation and Soil Properties on a Surface Coal Mine over 40 Years of Reclamation
author_facet Bohrer, Stefanie
author_sort Bohrer, Stefanie
title A Chronosequence of Scale-Dependent Vegetation and Soil Properties on a Surface Coal Mine over 40 Years of Reclamation
title_short A Chronosequence of Scale-Dependent Vegetation and Soil Properties on a Surface Coal Mine over 40 Years of Reclamation
title_full A Chronosequence of Scale-Dependent Vegetation and Soil Properties on a Surface Coal Mine over 40 Years of Reclamation
title_fullStr A Chronosequence of Scale-Dependent Vegetation and Soil Properties on a Surface Coal Mine over 40 Years of Reclamation
title_full_unstemmed A Chronosequence of Scale-Dependent Vegetation and Soil Properties on a Surface Coal Mine over 40 Years of Reclamation
title_sort chronosequence of scale-dependent vegetation and soil properties on a surface coal mine over 40 years of reclamation
publisher North Dakota State University
publishDate 2018
url https://hdl.handle.net/10365/28283
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