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M. Abouleish

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Open access Aug 2026

Nature based stormwater management for annual retention and water quality in Sharjah, United Arab Emirates: an InVEST assessment

Rapid urbanization and climate change are altering stormwater dynamics in arid cities, where limited rainfall, high evapotranspiration, and water scarcity amplify the challenges of management. Traditional gray infrastructure is costly and often insufficient to address flooding and water quality concerns. Ecosystem-based approaches that emphasize stormwater retention, infiltration, and pollutant reduction offer sustainable alternatives; however, empirical evidence from Gulf cities remains limited. This study applied the InVEST Urban Stormwater Retention model to quantify hydrologic, water quality, and economic services in Sharjah, United Arab Emirates. Using high-resolution Sentinel-2 land use and land cover (LULC) data, gridded precipitation, hydrologic soil groups, and road networks, the model estimated annual stormwater retention, runoff, recharge, avoided pollutant loads, and replacement costs. The results indicate that approximately 80% of annual precipitation is retained within the landscape, while approximately 20% becomes surface runoff. Potential groundwater recharge was estimated separately at approximately 5% of annual precipitation and represents a component of retained precipitation rather than an additional water-balance fraction. An illustrative replacement-cost benchmark indicates that reproducing this retention capacity solely through engineered storage could require substantial capital investment. The findings indicate the disproportionate role of vegetated and agricultural lands in delivering stormwater services, in contrast to impervious urban areas, which contribute little to retention. The results provide evidence for integrating nature-based solutions into Sharjah’s stormwater planning, thereby supporting water security, climate resilience, and sustainable urban development in arid regions. Compared with conventional event-based hydrologic models and gray infrastructure–focused approaches, this ecosystem service–based assessment offers a long-term, spatially explicit, city-scale evaluation of stormwater regulation, water quality protection, and economic benefits. The findings support the integration of nature-based stormwater solutions into urban planning to enhance water security, climate resilience, and sustainable development in arid regions.

Rabin Chakrabortty, Tarig Ali, M. Abouleish et al. · 0 citations
Open access Sep 2026

Effect of biochar and mineral fertilizer integration on growth and nutrient dynamics of rice varieties under dry direct-seeded conditions

The increasing need for food, which results from fast population growth, requires agricultural methods that can produce more crops while protecting soil health. Biochar has become an effective soil enhancer that boosts soil fertility and nutrient retention while increasing crop productivity. The study examined the effects of nutrient management with biochar on the growth performance of direct-seeded rice in the Bagamoyo irrigation project during the cropping period of 2025. The split-plot design was used with three replicates and a split-plot ANOVA and linear mixed effect models to assess the integration of biochar and NPK from maize straw in three rice varieties (TXD 306, TANRICE 1, and KHAODUCKMALL) under multi-season conditions, with a p<0.05 mean separation and a Tukey HSD. The study results demonstrate that biochar application constituted the only element that produced a statistically significant impact on crop height at harvest level measurement (p = 0.0135), while all other factors, including variety and their interactions, showed no significant impact. The two most important factors for sample discrimination were Fe and Zn, while TN and K followed behind. The PCA results showed that PC1 explained most of the variation through its strong links to Fe and Zn and TN, while PC2 showed primary connections to P and K and Mn. The biplot showed three distinct clusters, which scientists identified with 95 confidence with confidence ellipses. The 50% biochar plus 50% NPK treatment outperformed the control and sole fertilizer treatments because it produced taller plants, although the varieties showed minor differences in their plant response. The study results show that biochar combined with mineral fertilizer produced greater tiller manure yields when compared to the control treatment. The results demonstrate that combining biochar with inorganic fertilizers enhances rice growth and productivity in drought-prone direct-seeding conditions while also improving soil fertility management.

H. P. Mbelle, Shilpa Manhas, A. Meya et al. · 0 citations

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