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      The role of tillage and crops on a soil loss of an arable Stagnic Luvisol

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          Most cited references35

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          Soil erosion and agricultural sustainability.

          Data drawn from a global compilation of studies quantitatively confirm the long-articulated contention that erosion rates from conventionally plowed agricultural fields average 1-2 orders of magnitude greater than rates of soil production, erosion under native vegetation, and long-term geological erosion. The general equivalence of the latter indicates that, considered globally, hillslope soil production and erosion evolve to balance geologic and climate forcing, whereas conventional plow-based agriculture increases erosion rates enough to prove unsustainable. In contrast to how net soil erosion rates in conventionally plowed fields ( approximately 1 mm/yr) can erode through a typical hillslope soil profile over time scales comparable to the longevity of major civilizations, no-till agriculture produces erosion rates much closer to soil production rates and therefore could provide a foundation for sustainable agriculture.
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            Tolerable versus actual soil erosion rates in Europe

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              Estimating the soil erosion cover-management factor at the European scale

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                Author and article information

                Journal
                Archives of Agronomy and Soil Science
                Archives of Agronomy and Soil Science
                Informa UK Limited
                0365-0340
                1476-3567
                February 23 2017
                July 27 2016
                February 23 2017
                : 63
                : 3
                : 403-413
                Affiliations
                [1 ] Faculty of Agriculture, Department of General Agronomy, University of Zagreb, Zagreb, Croatia
                [2 ] Institute of Crop Production Science, Szent Istvan University, Gödöllö, Hungary
                [3 ] Institute of Forestry, Podgorica, Montenegro
                Article
                10.1080/03650340.2016.1213815
                a441d62a-cf06-472e-a5ca-8a5eddff1782
                © 2017
                History

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