Nitrogen and carbon biogeochemistry in forest sites along an indirect urban-rural gradient in Southeastern Michigan

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Abstract

To evaluate the impacts of urbanization on soil and vegetation in protected forest areas, 12 forest sites in Southeastern Michigan USA were studied in an indirect urban-rural gradient. Field study plots were established in forest edge zones of each protected area. Significant findings were that in these edge zones of protected areas: (a) soil nitrogen tended to be greater where surrounding housing density was greater; (b) overstory woody biomass and basal area were greater where surrounding housing density was greater; and (c) the study region overall exhibited low soil carbon content (mean 2.71%) and relatively high soil nitrogen content (mean 0.20%), yielding a surprisingly low surface soil C/N ratio (mean 13.4). Overall, 24 woody plant genera were encountered, with the three genera Acer, Carya and Quercus accounting for 83.7% of total biomass and 74.1% of total basal area. No significant relationships were observed between housing density and soil C/N ratio or between housing density and foliar N. Results indicate that a halo of urban-ecological impacts exists in the landscape of Southeastern Michigan, similar to previously studied linear urban-rural gradients in other regions. © 2014 by the authors.

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Kahan, A. Y., Currie, W. S., & Brown, D. G. (2014). Nitrogen and carbon biogeochemistry in forest sites along an indirect urban-rural gradient in Southeastern Michigan. Forests, 5(4), 643–665. https://doi.org/10.3390/f5040643

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