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Evaluation of soil erosion risk and identification of soil cover and management factor (C) for RUSLE in European vineyards with different soil management

机译:不同土壤管理中欧洲葡萄园风险和管理因素(C)土壤侵蚀风险与鉴定的评价

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摘要

Vineyards show some of the largest erosion rates reported in agricultural areas in Europe.Reported rates vary considerably under the same land use,since erosion processes are highly affected by climate,soil,topography and by the adopted soil management practices.Literature also shows differences in the effect of same conservation practices on reducing soil erosion from conventional,bare soil based,management.The Revised Universal Soil Loss Equation(RUSLE)is commonly adopted to estimate rates of water erosion on cropland under different forms of land use and management,but it requires proper value of soil cover and management(C)factors in order to obtain a reliable evaluation of local soil erosion rates.In this study the ORUSCAL(Orchard RUSle CALibration)is used to identify the best calibration strategy against long-term experimental data.Afterwards,ORUSCAL is used in order to apply the RUSLE technology from farm based information across different European wine-growing regions.The results suggest that the best strategy for calibration should incorporate the soil moisture sub-factor(Sm)to provide better soil loss predictions.The C factor,whose average values ranged from 0.012 to 0.597.presented a large spatial variability due to coupling with local climate and specific local management.The comparison across the five wine-growing regions indicates that for the soil protection management,permanent cover crop is the best measure for accomplishing sustainable erosion rates across the studied areas.Alternate and temporary cover crops,that are used in areas of limited water resources to prevent competition with vines,failed to achieve sustainable erosion rates,that still need to be addressed.This raises the need for a careful use of C values developed under different environmental conditions.

著录项

  • 来源
    《国际水土保持研究(英文)》 |2020年第004期|P.337-353|共17页
  • 作者单位

    Institute for Agricultural and Earthmoving Machines(IMAMOTER) National Research Council of Italy(CNR) Torino Italy;

    Institute for Sustainable Agriculture CSIC Cordoba Spain;

    Institute for Agricultural and Earthmoving Machines(IMAMOTER) National Research Council of Italy(CNR) Torino Italy;

    Institute for Land and Water Management Research Federal Agency for Water Management Petzenkirchen Austria;

    Institute for Land and Water Management Research Federal Agency for Water Management Petzenkirchen Austria;

    Institute of Plant Protection and Institute of Integrative Nature Conservation Research University of Natural Resources and Life Sciences Vienna Austria;

    Institute of Zoology University of Natural Resources and Life Sciences Vienna Vienna Austria;

    UniversitéRennes 1 Station Biologique de Paimpont UMR 6553 EcoBio 35380 Paimpont France;

    UniversitéRennes 1 Station Biologique de Paimpont UMR 6553 EcoBio 35380 Paimpont France;

    SC JIDVEI SRI Research Department Jidvei Romania;

    University of Agriculture Science and Veterinary Medicine Cluj Napoca Romania;

    University of Agriculture Science and Veterinary Medicine Cluj Napoca Romania;

    Institute for Agricultural and Earthmoving Machines(IMAMOTER) National Research Council of Italy(CNR) Torino Italy;

    Institute for Sustainable Agriculture CSIC Cordoba Spain;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 土壤学;
  • 关键词

    Vineyard; Erosion; Soil management; RUSLE; Europe;

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