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دانشگاه : ندارد

اروپا/بلژیک، هلند، ایتالیا، آمریکا، استرالیا و .../

رشته : (bio)chemical water treatment, materials science, (eco-)toxicology, and environmental sustainability assessment

سطح : دکتری

تاریخ ورود : انتخاب ماه ورودی

ددلاین : ندارد

مبلغ : ندارد

تکرار شونده(سالانه) : ندارد

وب سایت بورس: https://nanaqua.eu/#!/openpositions

Training Doctoral Researchers in Nanotechnology-Enabled Water Treatment

NANAQUA Project at a Glance

NANAQUA offers top-level training to a new generation of high-potential doctoral candidates (DC) in emerging water treatment techniques. The program provides both transferable and scientific skills essential for thriving careers in this vital and rapidly expanding field.

In this interdisciplinary training through research program, NANAQUA DCs will focus on nano(functionalized) materials that are redefining possibilities for safe, efficient, and sustainable water treatment solutions. NANAQUA aims to create a tangible impact through pioneering doctoral research, intersectoral secondments, international mobility, and cross-disciplinary education. By fostering a dynamic and multifaceted environment, NANAQUA seeks to advance scientific knowledge and cultivate a new generation of innovators dedicated to ensuring sustainable water resources globally.

The Project

NANAQUA establishes the first European doctoral training network specifically dedicated to integrating NMs in water treatment. The project will train 16 creative and entrepreneurially minded professionals crucial for proper implementation in industrial applications through an international, intersectoral, and interdisciplinary research training program.

The unique combination of various training disciplines—(bio)chemical water treatment, materials science, (eco-)toxicology, and environmental sustainability assessment—equips DCs with highly valuable competencies for the job market.

Long-Term Impact

Scientific Goal

Enhance the efficacy of water treatment by developing and integrating NMs in advanced oxidation processes and biological degradation while ensuring environmental safety through comprehensive toxicity assessments and life cycle analysis.

Research Objectives

Advance chemical degradation of CECs by designing and applying innovative nanotechnology-derived photo- and electro-catalysts (WP1)

Augment the degradation efficiency of CECs in biological systems by integrating custom-designed nanomaterials (WP2)

Elevate understanding of NM effects by developing advanced bacterial and genotoxicology models, biosensor technology, and LCA (WP3)

The 16 DCs will achieve project-specific goals through their individual research projects (IRPs), forming the basis of 3 scientific work packages (WPs).

NANAQUA Scientific Work Packages:

Work Package 1: NMs application for AOP degradation of CECs

Objective: To design nano(photo)catalysts that result in the enhanced performance of AOP-treatment methods for degradation of CECs.

Work Package 2: Enhancing biological treatment methods via application of novel NMs

Objective: To enhance biodegradation efficiency and reaction rates using novel conductive NMs.

Work Package 3: Detecting and assessing environmental fate

Objective: To design and create tools that allow a thorough assessment of all environmental aspects related to NMs usage in wastewater treatment, without posing any harm to the environment.

Open Projects (16 PhD positions available in MSCA Doctoral Network NANAQUA):

DC1: High-efficiency heterojunction nano-photocatalysts for visible-light-driven degradation of CECs using machine learning
DC2: Enhanced piezoelectric nano-photocatalysis for concurrent CEC degradation and electricity harvesting in a fuel cell system
DC3: Design and application of hybrid photocatalysis/membrane techniques for the removal of CECs in water bodies
DC4: Nanostructured catalytic materials for disinfection and CECs degradation in wastewater by non-thermal plasma treatment
DC5: Optimization of heterogeneous photo-Fenton processes for enhanced CECs degradation in wastewater treatment
DC6: Electrocatalytic Water Purification Using Two-Dimensional Nanomaterials
DC7: Encapsulation of micro-nutrients in porous nanostructures for enhanced anaerobic micropollutant biodegradation
DC8: AI-optimized nanoparticle systems for advanced anaerobic biodegradation of micropollutants
DC9: Application of conductive nanomaterials for enhanced biodegradation in anaerobic membrane bioreactor (AnMBR)
DC10: Hybrid Biofilm Systems Enhanced with Nanostructured Materials for Micropollutant Biodegradation
DC11: Catalytic Enhancement of Anaerobic Ammonium Oxidation for Nitrogen and Pharmaceutical Removal in Wastewater
DC12: Cytotoxicity and Safety Assessment of Innovative Heterojunction Photocatalytic Nanomaterials
DC13: Comprehensive two-dimensional liquid chromatography mass spectrometry (LCxLC-MS) method for Water Treatment Monitoring
DC14: Impact Assessment of Nanoparticle-Induced Reactive Oxidation Species on Bacterial Viability in Natural Environments
DC15: Sustainability Assessment of Nanomaterial Application in Water Treatment Technologies
DC16: Rapid CEC Detection with Advanced Nanosensor Platforms in Water Treatment Monitoring
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