Erosion and nutrient loss on sloping land under intense cultivation in Southern Vietnam

Nguyen Van De, Ian Douglas, Julia Mcmorrow, Sarah Lindley, Dao Kim Nguyen Thuy Binh, Tran Thi Van, Le Huu Thanh, Nguyen Tho

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Abstract

To help improve the well-being of the local people, a joint Vietnamese-UK team set out to establish a way of estimating soil and nutrient losses under different land management scenarios, using field data extrapolated through remote sensing and GIS, to obtain catchment-wide estimates of the impact of land cover change. Immigration from remote provinces to the Dong Phu District of Binh Phuóc Province, about 120 km north of Ho Chi Minh City, has led to disruption of soil surface stability on easily eroded clayey sandstones, creating rapid nutrient depletion that affects crop yields and siltation in the channel of the Rach Rat river downstream. The poor farmers of the areas see crop yields drop dramatically after two or three years of cultivation due to the fertility decline. Soil loss varies dramatically between wet season and dry season and with ground cover. Erosion bridge measurements showed a mean loss of 85.2 t ha-1 y-1 under cassava saplings with cashew nuts, 43.3 t ha-1 y-1 on uncultivated land and 41.7 t ha-1 y-1 under mature cassava. The rates of erosion were higher than those reported in many other parts of Vietnam, reflecting the high erodibility of the friable sandy soils on the steep side-slopes of the Rach Rat catchment. However, although the actual measurements provide better soil loss data than estimates based on the parameters of soil loss equations, a large number of measurement sites is needed to provide adequate coverage of the crop and slope combinations in this dissected terrain for good prediction using GIS and remote sensing. © 2008 The Authors Journal compilation © 2008 Institute of Australian Geographers.
Original languageEnglish
Pages (from-to)4-16
Number of pages12
JournalGeographical Research
Volume46
Issue number1
DOIs
Publication statusPublished - Mar 2008

Keywords

  • Catchment
  • Erosion bridge
  • GIS
  • Ground cover
  • Remote sensing
  • Soil erosion

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