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        <dc:title>Building climate resilience in degraded agricultural landscapes through water management: A case study of Bundelkhand region, Central India</dc:title>
        <dc:creator>Garg, K K</dc:creator>
        <dc:creator>Singh, R</dc:creator>
        <dc:creator>Anantha, K H</dc:creator>
        <dc:creator>Singh, A K</dc:creator>
        <dc:creator>Akuraju, V R</dc:creator>
        <dc:creator>Barron, J</dc:creator>
        <dc:creator>Dev, I</dc:creator>
        <dc:creator>Tewari, R K</dc:creator>
        <dc:creator>Wani, S P</dc:creator>
        <dc:creator>Dhyani, S K</dc:creator>
        <dc:creator>Dixit, S</dc:creator>
        <dc:subject>Livelihoods</dc:subject>
        <dc:subject>Semi-Arid Tropics</dc:subject>
        <dc:subject>Water Resources</dc:subject>
        <dc:description>Rainfall variability and water scarcity continue to hamper the food and income security of smallholder farming&#13;
systems in poverty-affected regions. Innovations in soil and water management, especially in the drylands, are&#13;
critical for meeting food security and water productivity targets of Agenda 2030. This study analyzes how&#13;
rainfed agriculture can be intensified with marginal impact on the landscape water balance. The impact of&#13;
rainwater harvesting structures on landscape hydrology and associated agricultural services was analyzed in the&#13;
semi-arid Jhansi district of Bundelkhand region in central India. The Parasai-Sindh pilot watershed was subjected&#13;
to a 5-year (2012–2016) monitoring of rainfed system improvements in water availability and crop intensification&#13;
due to surface water storage (haveli system), check dams, and field infiltration structures.&#13;
Hydrological processes were monitored intensively to analyze the landscape’s water balance components.&#13;
Rainwater harvesting (RWH) structures altered the landscape’s hydrology, limiting average surface runoff from&#13;
250 mm/year to 150 mm/year over the study period. Groundwater levels increased by 2–5 m (m), alleviating&#13;
water scarcity issues of the communities in recurring dry years. Nearly 20% of fallow lands were brought under&#13;
cultivation. Crop yields increased by 10–70% and average household income increased from US$ 960/year to US&#13;
$ 2700/year compared to that in the non-intervention landscape. The combined soil–water–vegetation efforts&#13;
strengthened water resilience and environmental systems in agricultural landscape.</dc:description>
        <dc:publisher>ELSEVIER , RADARWEG 29, AMSTERDAM, NETHERLANDS, 1043 NX</dc:publisher>
        <dc:date>2020-09</dc:date>
        <dc:type>Article</dc:type>
        <dc:type>PeerReviewed</dc:type>
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        <dc:language>en</dc:language>
        <dc:identifier>http://oar.icrisat.org/11634/1/2020_Parasai-Sindh%20watershed-Jhansi.pdf</dc:identifier>
        <dc:identifier>  Garg, K K and Singh, R and Anantha, K H and Singh, A K and Akuraju, V R and Barron, J and Dev, I and Tewari, R K and Wani, S P and Dhyani, S K and Dixit, S  (2020) Building climate resilience in degraded agricultural landscapes through water management: A case study of Bundelkhand region, Central India.  Journal of Hydrology (TSI), 591.  pp. 1-12.  ISSN 0022-1694     </dc:identifier>
        <dc:relation>https://doi.org/10.1016/j.jhydrol.2020.125592</dc:relation>
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