Literature DB >> 32355660

Mapping Land Use Land Cover Change in the Lower Mekong Basin from 1997 to 2010.

Joseph Spruce1, John Bolten2, Ibrahim N Mohammed3, Raghavan Srinivasan4, Venkat Lakshmi5.   

Abstract

The Lower Mekong Basin (LMB) is biologically diverse, economically important, and home to about 65 million people. The region has undergone extensive environmental changes since the 1990s due to such factors as agricultural expansion and intensification, deforestation, more river damming, increased urbanization, growing human populations, expansion of industrial forest plantations, plus frequent natural disasters from flooding and drought. The Mekong river is also heavily used for human transportation, fishing, drinking water, and irrigation. This paper discusses use of pre-existing LULC maps from 1997 and 2010 to derive a LMB regional LULC change map for 9 classes per date using GIS overlay techniques. The change map was derived to aid SWAT hydrologic modeling applications in the LMB, given the 2010 map is currently used in multiple LMB SWAT models, whereas the 1997 map was previously used. The 2010 LULC map was constructed from Landsat and MODIS satellite data, while the 1997 map was from before the MODIS era and therefore based on available Landsat data. The 1997-2010 LULC change map showed multiple trends. Permanent agriculture had expanded in certain sub-basins into previously forested areas. Some agricultural areas were converted to industrial forest plantations. Extensive forest changes also occurred in some locations, such as areas changed to shifting cultivation or permanent crops. Also, the 1997 map under classified some urban areas, whereas the 2010 LULC map showed improved identification of such areas. LULC map accuracy were assessed for 213 randomly sampled locations. The 1997 and 2010 LULC maps showed high overall agreements with reference data exceeding 87%. The LULC change map yielded a moderately high level of overall agreement (78%) that improved to ~83% once LULC classification scheme specificity was reduced (forests and agriculture were each mapped as singular classes). The change map regionally showed a 4% decrease in agriculture and a 4 % increase in deciduous and evergreen forests combined, though deforestation hot spot areas also were evident. The project yielded LULC map data sets that are now available for aiding additional studies that assess LMB LULC change and the impacts such change may pose to water, agriculture, forestry, and disaster management efforts. More work is needed to map, quantify and assess LULC change since 2010 and to further update the 2010 LULC map currently used in the LMB SWAT models.

Entities:  

Keywords:  Lower Mekong Basin; SWAT hydrologic model; agricultural monitoring; deforestation; land use land cover change

Year:  2020        PMID: 32355660      PMCID: PMC7192009          DOI: 10.3389/fenvs.2020.00021

Source DB:  PubMed          Journal:  Front Environ Sci        ISSN: 2296-665X


  10 in total

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Authors:  Petrina Rowcroft
Journal:  Ambio       Date:  2008-05       Impact factor: 5.129

2.  The relation between land use and subsidence in the Vietnamese Mekong delta.

Authors:  P S J Minderhoud; L Coumou; L E Erban; H Middelkoop; E Stouthamer; E A Addink
Journal:  Sci Total Environ       Date:  2018-04-09       Impact factor: 7.963

3.  Web-based decision support system tools: The Soil and Water Assessment Tool Online visualization and analyses (SWATOnline) and NASA earth observation data downloading and reformatting tool (NASAaccess).

Authors:  Spencer McDonald; Ibrahim Nourein Mohammed; John D Bolten; Sarva Pulla; Chinaporn Meechaiya; Amanda Markert; E James Nelson; Raghavan Srinivasan; Venkat Lakshmi
Journal:  Environ Model Softw       Date:  2019-10       Impact factor: 5.471

4.  Satellite observations and modeling to understand the Lower Mekong River basin streamflow variability.

Authors:  Ibrahim Nourein Mohammed; John D Bolten; Raghavan Srinivasan; Venkat Lakshmi
Journal:  J Hydrol (Amst)       Date:  2018-07-24       Impact factor: 6.708

5.  Ground and satellite based observation datasets for the Lower Mekong River Basin.

Authors:  Ibrahim Nourein Mohammed; John D Bolten; Raghavan Srinivasan; Chinaporn Meechaiya; Joseph P Spruce; Venkat Lakshmi
Journal:  Data Brief       Date:  2018-11-14

6.  Potential Disruption of Flood Dynamics in the Lower Mekong River Basin Due to Upstream Flow Regulation.

Authors:  Yadu Pokhrel; Sanghoon Shin; Zihan Lin; Dai Yamazaki; Jiaguo Qi
Journal:  Sci Rep       Date:  2018-12-10       Impact factor: 4.379

7.  The future of Southeast Asia's forests.

Authors:  Ronald C Estoque; Makoto Ooba; Valerio Avitabile; Yasuaki Hijioka; Rajarshi DasGupta; Takuya Togawa; Yuji Murayama
Journal:  Nat Commun       Date:  2019-04-23       Impact factor: 14.919

8.  HYSOGs250m, global gridded hydrologic soil groups for curve-number-based runoff modeling.

Authors:  C Wade Ross; Lara Prihodko; Julius Anchang; Sanath Kumar; Wenjie Ji; Niall P Hanan
Journal:  Sci Data       Date:  2018-05-15       Impact factor: 6.444

9.  Factors affecting forest area change in Southeast Asia during 1980-2010.

Authors:  Nobuo Imai; Takuya Furukawa; Riyou Tsujino; Shumpei Kitamura; Takakazu Yumoto
Journal:  PLoS One       Date:  2018-05-15       Impact factor: 3.240

10.  Improved Hydrological Decision Support System for the Lower Mekong River Basin Using Satellite-Based Earth Observations.

Authors:  Ibrahim Nourein Mohammed; John D Bolten; Raghavan Srinivasan; Venkat Lakshmi
Journal:  Remote Sens (Basel)       Date:  2018-06-06       Impact factor: 4.848

  10 in total

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