AQUAROAD: Advancing Groundwater Quality in the Global South: Geochemical Processes, Remediation, Optimisation & Co-Designed Decision-Making Frameworks
Lead Research Organisation:
UNIVERSITY OF MANCHESTER
Department Name: Earth Atmospheric and Env Sciences
Abstract
Access to safe drinking water is centrally linked to public health, well-being and economic prosperity. Although water quality is strongly linked to many of the UN Sustainable Development Goals (SDG 6: Clean Water & Sanitation, 3: Good Health & Well-Being, 5: Gender Equality, and 2: Zero Hunger), there is still a long way to go to achieve equitable access to safe drinking water, particularly in the Global South. To accelerate progress, we need new interdisciplinary approaches to tackle complex water quality challenges, especially with increasing stressors like rapid urbanisation and climate change impacting groundwater resources widely used for drinking.
The aim of my FLF is to create a roadmap towards improved groundwater quality management in the context of the Global South by bringing together systematic approaches to improve the understanding of dominant groundwater processes and to support evidence-based decision-making for effective groundwater remediation. We will develop and demonstrate this approach in relation to two selected contrasting locations in South Asia (e.g. Bihar, India) and East Africa (e.g. Uganda) and for selected priority groundwater contaminants relevant to those locations. The roadmap approach developed here could then be applied to different scenarios in the future.
We will bring together expertise in groundwater pollution (e.g. chemical, microbial, emerging contaminants, antimicrobial resistance), (bio)geochemical processes, remediation technologies, machine learning, decision science (e.g. agent based modelling, multi-criteria decision analysis) and social science to address local water quality and remediation challenges in these two areas. We will co-design decision tools, iteratively integrating scientific data with modelled predictions, to enable informed, locally-relevant decision-making for effective groundwater remediation.
We will address an integrated set of key objectives and hypothesis (see objectives) through a series of Workpackages (WP) implemented as: (i) WP 1: Field-based Investigations comprising of WP 1.1 Multipollutant & Process Investigation and WP 1.2 Community Science; (ii) WP 2: Lab-based Investigations comprising of WP 2.1: Water & Sediment Characterisation and WP 2.2 Remediation Evaluation; (iii) WP 3: Predictive Modelling comprising of WP 3.1 Machine Learning; WP 3.2 Agent Based Modelling; and WP 3.3 Multi-Criteria Decision Analysis; and (iv) WP 4: Synthesis & Communication comprising of WP 4.1 Stakeholder Engagement and WP 4.2 Open Resource Bank Development.
Our project team brings together highly complementary expertise and skillsets. I am an environmental engineer with expertise in groundwater pollution and remediation, with substantial experience managing and implementing complex, multi-partner research projects in South/Southeast Asia, Africa and South America. I am joined by Co-Investigators from The University of Manchester, British Geological Survey, University of Birmingham and University of Bath, along with international Project Partners from University of Melbourne (Australia), KTH Royal Institute of Technology (Sweden), Mahavir Cancer Sansthan (India), University of Heidelberg (Germany), Mbarara University of Science and Technology (Uganda) and independent affiliates from India and Malaysia. Collectively we bring together decades of interdisciplinary expertise in water science, remediation, water management, water and health, biotechnology, decision science, social science, participatory science, stakeholder engagement and extensive local knowledge in India and East Africa.
The results and tools generated will improve the understanding of the complex natural and anthropogenic processes impacting groundwater quality in the selected locations and will better enable evidence-based decision making for effective groundwater remediation, with the roadmap generated able to be applied to other scenarios in the future.
The aim of my FLF is to create a roadmap towards improved groundwater quality management in the context of the Global South by bringing together systematic approaches to improve the understanding of dominant groundwater processes and to support evidence-based decision-making for effective groundwater remediation. We will develop and demonstrate this approach in relation to two selected contrasting locations in South Asia (e.g. Bihar, India) and East Africa (e.g. Uganda) and for selected priority groundwater contaminants relevant to those locations. The roadmap approach developed here could then be applied to different scenarios in the future.
We will bring together expertise in groundwater pollution (e.g. chemical, microbial, emerging contaminants, antimicrobial resistance), (bio)geochemical processes, remediation technologies, machine learning, decision science (e.g. agent based modelling, multi-criteria decision analysis) and social science to address local water quality and remediation challenges in these two areas. We will co-design decision tools, iteratively integrating scientific data with modelled predictions, to enable informed, locally-relevant decision-making for effective groundwater remediation.
We will address an integrated set of key objectives and hypothesis (see objectives) through a series of Workpackages (WP) implemented as: (i) WP 1: Field-based Investigations comprising of WP 1.1 Multipollutant & Process Investigation and WP 1.2 Community Science; (ii) WP 2: Lab-based Investigations comprising of WP 2.1: Water & Sediment Characterisation and WP 2.2 Remediation Evaluation; (iii) WP 3: Predictive Modelling comprising of WP 3.1 Machine Learning; WP 3.2 Agent Based Modelling; and WP 3.3 Multi-Criteria Decision Analysis; and (iv) WP 4: Synthesis & Communication comprising of WP 4.1 Stakeholder Engagement and WP 4.2 Open Resource Bank Development.
Our project team brings together highly complementary expertise and skillsets. I am an environmental engineer with expertise in groundwater pollution and remediation, with substantial experience managing and implementing complex, multi-partner research projects in South/Southeast Asia, Africa and South America. I am joined by Co-Investigators from The University of Manchester, British Geological Survey, University of Birmingham and University of Bath, along with international Project Partners from University of Melbourne (Australia), KTH Royal Institute of Technology (Sweden), Mahavir Cancer Sansthan (India), University of Heidelberg (Germany), Mbarara University of Science and Technology (Uganda) and independent affiliates from India and Malaysia. Collectively we bring together decades of interdisciplinary expertise in water science, remediation, water management, water and health, biotechnology, decision science, social science, participatory science, stakeholder engagement and extensive local knowledge in India and East Africa.
The results and tools generated will improve the understanding of the complex natural and anthropogenic processes impacting groundwater quality in the selected locations and will better enable evidence-based decision making for effective groundwater remediation, with the roadmap generated able to be applied to other scenarios in the future.
Organisations
- UNIVERSITY OF MANCHESTER (Lead Research Organisation)
- University of Melbourne (Collaboration)
- Mahavir Cancer Sansthan & Research Centre (Collaboration)
- Texas A&M University (Collaboration)
- Royal Institute of Technology (Collaboration)
- Royal Institute of Technology KTH Sweden (Project Partner)
- Mbarara University of Science and Technology (Project Partner)
- Independent (Project Partner)
- Mahavir Cancer Sansthan (Project Partner)
- Heidelberg University (Project Partner)
- University of Melbourne (Project Partner)
- INDEPENDENT (Project Partner)
Publications
Roshan A
(2024)
Comparison of the distribution of groundwater remediation units and contaminant (arsenic, iron, fluoride) distribution in Bihar, India for improved water security and management.
in Journal of environmental management
Wilson G
(2025)
Monsoonal rainfall initiates autochthonous alteration of dissolved organic matter composition in Indian groundwaters
in Applied Geochemistry
Moran D
(2025)
Moving from evidence to prioritised action on AMR.
in Lancet (London, England)
Roshan A
(2026)
Performance of field-installed groundwater arsenic remediation systems in Bihar, India: Role of source water chemistry, technology type and other factors
in Groundwater for Sustainable Development
Muloogi D
(2026)
Spatial variations in groundwater chemistry in Uganda: Geogenic origins and geochemical controls across diverse hydrogeological settings
in Applied Geochemistry
| Description | AQUAROAD is in the early stages and key overall findings will be updated in due time. Key findings of individual publications/subprojects are found in the conclusions of each attributed manuscript. |
| Exploitation Route | AQUAROAD Is in the early stages and outcomes will be updated in due time. |
| Sectors | Chemicals Digital/Communication/Information Technologies (including Software) Education Environment Pharmaceuticals and Medical Biotechnology |
| Description | Impact is emerging and this section will be updated as it evolves, noting the project is in early stages and much of the work is still in progress. During field campaigns to date, the research team interacted with 100s of non-academic stakeholders ranging from end-users to remediation system operators to non-governmental organizations and governmental members. We expect that this engagement, which also builds upon previous engagement with a range of stakeholders, will contribute to impact in the longer term. |
| Description | University of Manchester (UK) - KTH Royal Institute of Technology (Sweden) |
| Organisation | Royal Institute of Technology |
| Country | Sweden |
| Sector | Academic/University |
| PI Contribution | Collaborations on remediation systems, groundwater quality and emerging contaminants (UoM team driving sampling design) |
| Collaborator Contribution | Knowledge and expertise related to remediation systems, groundwater quality and emerging contaminants |
| Impact | Outputs to date include: Wilson et al 2024a (https://doi.org/10.1016/j.envpol.2024.124205) and Wilson et al 2024b (https://doi.org/10.1016/j.scitotenv.2024.177118). |
| Start Year | 2022 |
| Description | University of Manchester (UK) - Mahavir Cancer Sansthan (India) |
| Organisation | Mahavir Cancer Sansthan & Research Centre |
| Country | India |
| Sector | Private |
| PI Contribution | Joint field campaigns, discussion and co-design of selected sampling/project objectives |
| Collaborator Contribution | Joint field campaigns, discussion and co-design of selected sampling/project objectives, hosted lab and institutional visits in India |
| Impact | Project-specific outputs for GeoCERT are currently ongoing and currently include: Roshan et al 2024 (https://doi.org/10.1016/j.jenvman.2024.123157). Others will be added as they arise. Multiple joint publications arising from previous projects (e.g. FAR-GANGA) include: Wilson et al 2023 (https://doi.org/10.1016/j.scitotenv.2023.166208), Richards et al 2023 (https://doi.org/10.1016/j.envpol.2023.121626), Richards et al 2022a (https://doi.org/10.1016/j.jconhyd.2022.104043), Richards et al 2022b (https://doi.org/10.1016/j.scitotenv.2022.154580), Richards et al 2022c (https://doi.org/10.1016/j.watres.2022.118054), Richards et al 2021 (https://doi.org/10.1016/j.envpol.2020.115765), and Richards et al 2020 (https://doi.org/10.3390/ijerph17072500). |
| Start Year | 2018 |
| Description | University of Manchester (UK) - Texas A&M (USA) |
| Organisation | Texas A&M University |
| Country | United States |
| Sector | Academic/University |
| PI Contribution | Joint field campaigns, discussion and co-design of selected sampling/project objectives |
| Collaborator Contribution | Joint field campaigns, discussion and co-design of selected sampling/project objectives |
| Impact | Joint fieldwork in India implemented, leading to submission of joint conference abstract (Goldschmidt); collaboration at nascent stage |
| Start Year | 2025 |
| Description | University of Manchester (UK) - University of Melbourne (Australia) |
| Organisation | University of Melbourne |
| Country | Australia |
| Sector | Academic/University |
| PI Contribution | Jointly supervised PhD students on arsenic and fluoride remediation in India |
| Collaborator Contribution | Jointly supervised PhD students on arsenic and fluoride remediation in India |
| Impact | Outputs ongoing (details to be updated when available). Collaborative peer-reviewed journal outputs to date include: Roshan et al 2024 (https://doi.org/10.1016/j.jenvman.2024.123157). |
| Start Year | 2021 |
| Description | Emerging Antimicrobial Resistance in India |
| Form Of Engagement Activity | A talk or presentation |
| Part Of Official Scheme? | No |
| Geographic Reach | International |
| Primary Audience | Postgraduate students |
| Results and Impact | Around 80-90 undergraduates, postgraduate researchers and research staff from Dibrugarh Department of Applied Geology and the Department of Petroleum Engineering attended the talk, which sparked discussion afterwards. Local media outlets reported on the talk: The Assam Tribune: Dibrugarh University highlights groundwater AMR threat. 22 Aug 2025 Edu News Network: Antibiotic Resistance Found in India's Groundwater | Dibrugarh University Expert Talk https://www.youtube.com/watch?v=TuuSJBR7OpY 23 Aug 2025 The Sentinel: Dibrugarh University hosts talk on antimicrobial resistance in groundwater. https://www.sentinelassam.com/north-east-india-news/assam-news/assam-dibrugarh-university-hosts-talk-on-antimicrobial-resistance-in-groundwater 22 Aug 2025 Dainik Janambhumi: Lecture on 'Antimicrobial Resistance' by Dr. George Wilson. 21 Aug 2025 A local health camp in Bamuni Kuria Village also referenced the talk |
| Year(s) Of Engagement Activity | 2025 |
| URL | https://www.sentinelassam.com/north-east-india-news/assam-news/assam-dibrugarh-university-hosts-talk... |
| Description | United Nations Commission on the Status of Women 69 (UNSCW69) |
| Form Of Engagement Activity | A formal working group, expert panel or dialogue |
| Part Of Official Scheme? | No |
| Geographic Reach | International |
| Primary Audience | Supporters |
| Results and Impact | Panel talk at UNCSW69, in an NGO-led session on "Women and Economy" on 13 March 2025. Laura Richards' contribution was entitled "Women and Economy: Perspectives from Water, Health & Education". |
| Year(s) Of Engagement Activity | 2025 |
