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Climate Change Impacts on Subsistence Paddy Farming on the Indian East Coast

A Geospatial and Community Perception Assessment

Datos Bibliográficos

ID22332158
AutoresAnirban Kundu (0000-0003-3612-6134, Asutosh College), Sayani Mukhopadhyay (0000-0001-7506-0639, Asutosh College), Parthiba Basu (0000-0002-8942-0161, University of Calcutta)
Año2023
Volumen15
Número3
Páginas571-586
Fecha de publicación2023-07-01
Peer ReviewedSí
Open AccessNo
TipoARTICLE
RevistaWeather, Climate, and Society (JOURNAL)
Identificadores de la revistaISSN: 1948-8327 • E-ISSN: 1948-8335
EditorialAmerican Meteorological Society (PUBLISHER • US)
DOI10.1175/wcas-d-21-0175.1
OpenAlexW4366413054
IdiomaEN
Referencias citadas13

The impact of climate change on subsistence agriculture is a major concern in the developing world. The vulnerability of the coastal regions to climate change has been highlighted, in particular. The present study assessed the impact of climate change on subsistence rice farming on the eastern Indian coast using an integrated approach of statistical trend analysis by the Mann–Kendall test and Sen’s slope estimation of climate data and remote sensing–based land-cover analyses using the normalized difference vegetation index (NDVI), normalized difference water index (NDWI), and land surface temperature (LST) complemented by a questionnaire-based perception survey among the farming community. There has been a noticeable change in both ambient temperature and LST in the region. The delayed arrival of the monsoon critically impacts the cropping calendar. The crop harvest season has shifted farther into a time of the year that is prone to weather extremes. Analyses of NDVI and NDWI also indicate a shift in the cropping calendar. Over the years, there was an increasing degree of negative correlation between LST and NDVI in November, which indicates increasing water stress for crops in that time juncture. This may further cause crop sterility and yield loss. The study also reveals large-scale conversion of paddy-growing agricultural land into prawn aquaculture ponds. Farmers attributed such land-use change to cultivation stress caused by the delayed monsoon and consequent crop loss from weather extremes and changes in crop agronomic conditions. Farmers also report increased pest attacks and attribute that to an increasing temperature regime

Agriculture · Climate change · Cropping · Geography · Normalized Difference Vegetation Index · Physical geography · Subsistence agriculture · Environmental Science · Pacific and Southeast Asian Studies · Ecology

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