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تأثير إستخدام المياه المالحة المحلاة على الخصائص الفيزيائية و الكيميائية للتربة المالحة الثقيلة
A mathematical model to predict the components' generation of solid waste and residents' concerns towards solid waste management facilities in Nablus and Jenin districts
Feasibility of Protection Zones for Water Resources in Arid Areas: Case Study; Duyuk Nueimah Shosa Springs, Jericho, Palestine
Geosciences and Earth Sciences
Hammad,Mahmoud
Enhancing of socio economical environmental impact of the wastewater flow on communal level
Social Services
Ahmad,Wasim
An innovative bioreactor for denitrification of nitrate-rich brackish groundwater using whey
Conference paperThe increasing water shortage in Palestine drives policy decision makers, industrial sector and the public to install both small and medium size desalination systems with high capital and increased annual running cots. Farmers are urged to use brackish groundwater and partially treated wastewater for agricultural irrigation. Soil salinization and groundwater pollution with nitrate and decreased soil fertility are just to name as side effects. Local innovative design and low-cost bioremediation technologies utilizing the biological denitrification process are specially needed in developing countries like Palestine. The aim of this research study is to design and operate a lab-scale denitrification system, a slurry bioreactor, to remove nitrate-using whey as a low-cost external carbon source for the heterotrophic denitrifiers.
The effectiveness of the slurry bioreactors in batch and continuous flow modus will be investigated under variable organic and inorganic volumetric loads. The results obtained will assist water utilities and decision makers in opting for environmentally sound and low-cost treatment technologies to remediate nitrate- rich groundwater. Improving both volume and quality of water resources in Palestine will enhance economic development and improve living standards, especially in Gaza strip