REGROUND Colloidal Iron Oxide Nanoparticles for the REclamation of Toxic Metal Contaminated GROUNDwater Aquifers, Drinking Water Wells, and River Bank Filtrations

Country: EU Projects
Start Date:   1/9/2015         Duration: 36 months         Project Type: Demonstration
Contract Number: 641768
Organisation Type:  EC Project
Topics: 
Contaminated land-->Remediation options-->In situ treatment technologies
Project objectives:
The goal of this project is to create a market-ready application to transform the efforts to mitigate the risks posed by toxic metal contaminations to humans 
and ecosystems. Regound will enable immobilization of toxic metal contaminations at sites which are currently left untreated due to technical or economic reasons. To that
end, the communication and dissemination strategy will concentrate on persuading the stakeholders that this project could offer a new opportunity in terms
of sustainability and also have a positive impact on society.
Project Summary:
The main objective of the presented innovation action is the first application and near-market replication of a novel   
water nanogeotechnology for the immobilization of toxic metals in groundwater aquifers, drinking water wells, and river   
bank filtration sites. The basic concept of our technology is the creation of an adsorptive in situ barrier for the   
immobilization of toxic metal contaminations. This barrier is made of iron oxide nanoparticles, which are injected into   
sediments as colloidal suspension, forming stable deposits there. Over the last 6 years, we have developed a novel   
technology for the injection of iron oxide nanoparticles (NPs) into groundwater contaminant plumes. The feasibility of   
this approach has been successfully tested in lab experiments and a scientific field application. Specifically, our   
approach addresses arsenic, barium, cadmium, chromium, copper, lead, mercury, and zinc, all of which are known   
major groundwater contaminants. Now, we want to bring this novel, green and near-market water eco-innovation into   
the European markets, and beyond. The very core of this effort is the performance of two industrial-scale applications   
of our technology at two different types of contaminated sites. This first application of our technological approach under   
field conditions is the major objective of REGROUND. By developing our technology into a market-ready application,   
REGROUND will globally transform the efforts to mitigate the risks posed by toxic metal contaminations to humans and   
ecosystems. The REGROUND technology, due to its low costs and wide applicability, will be made highly available.   
The near-market replication of our technology and subsequent commercialization efforts are an integral part of   
REGROUND. This will enable immobilization of toxic metal contaminations at sites which were left untreated so far due   
to technical or economic reasons. 
            
Achieved Objectives:

            
Product Descriptions:

            
Additional Information:
  
            
Project Resources:
Weblink:
http://reground-project.eu/
Funding Programme(s): 
HORIZON 2020
Link to Organisations:
Submitted by: EUGRIS Team Professor Paul Bardos  Who does what?  26/10/2016 10:45:00
Updated by: EUGRIS Team Professor Paul Bardos  Who does what?  26/10/2016 11:07:00