Effects of land use on annual runoff and soil loss in Europe and the Mediterranean: A meta-analysis of plot data

被引:152
|
作者
Maetens, W. [1 ]
Vanmaercke, M.
Poesen, J.
Jankauskas, B.
Jankauskiene, G.
Ionita, I. [2 ]
机构
[1] Katholieke Univ Leuven, Div Geog, B-3001 Heverlee, Belgium
[2] Alexandru Ioan Cuza Univ, Iasi, Romania
关键词
annual precipitation; climatic zone; interrill and rill erosion; land use; runoff plot; runoff-soil loss relation; LEY SET-ASIDE; SPARACIA EXPERIMENTAL AREA; PREVENTIVE CROP ROTATIONS; LOAMY SAND SOILS; WATER EROSION; EAST SHROPSHIRE; SEDIMENT YIELD; SURFACE RUNOFF; ORGANIC-MATTER; OLIVE GROVES;
D O I
10.1177/0309133312451303
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
The largest currently compiled database of plot runoff and soil loss data in Europe and the Mediterranean was analysed to investigate effects of land use on annual soil loss (SL), annual runoff (R) and annual runoff coefficient (RC). This database comprises 227 plot-measuring sites in Europe and the Mediterranean, with SL for 1056 plots (PL) representing 7024 plot-years (PY) and R for 804 PL representing 5327 PY. Despite large data variability, continental-wide trends are observed. Construction sites have the highest mean annual RC (57%) and SL (325 Mg.ha(-1).yr(-1)). Bare soil, vineyards and tree crops have high mean annual RC (5-10%) and SL (10-20 Mg.ha(-1).yr(-1)). Cropland and fallow show similar mean annual RC (8.0 and 7.3%), but lower SL (6.5 and 5.8 Mg.ha(-1).yr(-1)). Plots with (semi-)natural vegetation cover show lowest mean annual RC (<5%) and SL (<1 Mg.ha(-1).yr(-1)). Plot length and slope gradient correlations with R and SL depend on land-use type and are not concurrent for R and SL. Most land-use types show positive correlations between annual R and SL. Plots in cold climates have higher annual RC than plots in temperate and pan-Mediterranean climates. Annual SL in the pan-Mediterranean is less than in temperate zones, due to stony or clayey soils having a low erodibility. Annual RC in the pan-Mediterranean was higher than in temperate zones. Annual R increases strongly with increasing annual precipitation (P) above 500 mm.yr(-1), while annual SL was found to stabilize at P > 500 mm.yr(-1). For shrubland, annual SL was found to decrease for P > 250-500 mm.yr(-1), which is attributed to an accompanying increase in vegetation cover. However, no such trend was found for R. The results allow a rapid assessment of the impact of land-use changes on annual R, RC and SL, based on field-measured plot data.
引用
收藏
页码:599 / 653
页数:55
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