References
Barrett, L.R. 2001. A strand plain soil development sequence in
northern Michigan, USA. CATENA 44: 163–186.
Barrett, L.R., and R.J. Schaetzl. 1992. An examination of podzolization
near Lake Michigan using chronofunctions. Canadian Journal of
Soil Science 72: 527–541.
Berg, R.C. 1980. Use of stepwise discriminant analysis to assess soil
genesis in a youthful sandy environment. Soil Science 129: 353–
365.
Bockheim, J.G., and S.A. Schliemann. 2014. Soil richness and
endemism across an environmental transition zone in Wisconsin,
USA. CATENA 113: 86–94.
Franzmeier, D.P., and E.P. Whiteside. 1963a. A chronosquence of
Podzols in northern Michigan. I. Ecology and description of pedons.
Michigan State University Agricultural Experiment Station, Quarterly Bulletin 46: 2–20.
Franzmeier, D.P., and E.P. Whiteside. 1963b. A chronosquence of
Podzols in northern Michigan. II. Physical and chemical properties.
Michigan State University Agricultural Experiment Station, Quarterly Bulletin 46: 21–36.
Hole, F.D. 1976. Soils of Wisconsin. Madison: Univ. of Wisconsin
Press.
Howard, J.L., C.R. Clawson, and W.L. Daniels. 2012. A comparison of
mineralogical techniques and potassium adsorption isotherm analysis for relative dating and correlation of late Quaternary soil
chronosequences. Geoderma 179–180: 81–95.
Lichter, J. 1998. Rates of weathering and chemical depletion in soils
across a chronosequence of Lake Michigan sand dunes. Geoderma
85: 255–282.
Olson, J.S. 1958. Rates of succession and soil changes on southern
Lake Michigan sand dunes. Botanical Gazette 119: 125–170.
VandenBygaart, A.J., and R. Protz. 1995. Soil genesis on a chronosequence, Pinery Provincial Park, Ontario. Canadian Journal of Soil
Science 75: 63–72.
Fig. 4.18 Evolution of soils by parent material and drainage regime in the US Great Lakes Coastal Zone
58
4 Soil Taxonomic Structure and Factors …
Barrett, L.R. 2001. A strand plain soil development sequence in
northern Michigan, USA. CATENA 44: 163–186.
Barrett, L.R., and R.J. Schaetzl. 1992. An examination of podzolization
near Lake Michigan using chronofunctions. Canadian Journal of
Soil Science 72: 527–541.
Berg, R.C. 1980. Use of stepwise discriminant analysis to assess soil
genesis in a youthful sandy environment. Soil Science 129: 353–
365.
Bockheim, J.G., and S.A. Schliemann. 2014. Soil richness and
endemism across an environmental transition zone in Wisconsin,
USA. CATENA 113: 86–94.
Franzmeier, D.P., and E.P. Whiteside. 1963a. A chronosquence of
Podzols in northern Michigan. I. Ecology and description of pedons.
Michigan State University Agricultural Experiment Station, Quarterly Bulletin 46: 2–20.
Franzmeier, D.P., and E.P. Whiteside. 1963b. A chronosquence of
Podzols in northern Michigan. II. Physical and chemical properties.
Michigan State University Agricultural Experiment Station, Quarterly Bulletin 46: 21–36.
Hole, F.D. 1976. Soils of Wisconsin. Madison: Univ. of Wisconsin
Press.
Howard, J.L., C.R. Clawson, and W.L. Daniels. 2012. A comparison of
mineralogical techniques and potassium adsorption isotherm analysis for relative dating and correlation of late Quaternary soil
chronosequences. Geoderma 179–180: 81–95.
Lichter, J. 1998. Rates of weathering and chemical depletion in soils
across a chronosequence of Lake Michigan sand dunes. Geoderma
85: 255–282.
Olson, J.S. 1958. Rates of succession and soil changes on southern
Lake Michigan sand dunes. Botanical Gazette 119: 125–170.
VandenBygaart, A.J., and R. Protz. 1995. Soil genesis on a chronosequence, Pinery Provincial Park, Ontario. Canadian Journal of Soil
Science 75: 63–72.
Fig. 4.18 Evolution of soils by parent material and drainage regime in the US Great Lakes Coastal Zone
58
4 Soil Taxonomic Structure and Factors …
