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Dr Ramon Ganigue
Dr

Ramon Ganigue

Email: 
Phone: 
+61 7 336 56195

Overview

Background

Biography

Senior Lecturer Dr Ramon Ganigué leads a research program on microbial biotechnologies for sustainable manufacturing, addressing critical challenges such as climate change and circular resource management for the benefit of people and planet.

He obtained his PhD in Environmental Engineering from the University of Girona, Spain. Prior to joining The University of Queensland (UQ), Ramon held academic and research positions across Europe and Australia, including Assistant Professor (2017–2022) and Associate Professor (2022–2026) in the Department of Biotechnology at Ghent University, Belgium, alongside postdoctoral appointments at Ghent University, the University of Girona, and UQ.

He has published over 100 peer‑reviewed articles and established extensive international collaborations spanning Europe, Australia, China, and North America. Ramon has led multiple large-scale, multi-partner research projects and, over the past five years, has secured approximately AUD 10 million in competitive European funding to support his team’s activities. In 2024, he was appointed Associate Editor of Frontiers in Bioprocess Engineering.

Research

Vision: To harness the diversity and functionality of microbial systems to enable sustainable, circular manufacturing processes that decouple production from fossil resources and support the transition to a net-zero bioeconomy.

Mission: To engineer robust, scalable microbial bioprocesses that convert complex, non-refined feedstocks into high-value products for the benefit of people and planet. His team integrates microbial physiology, community engineering, and process design to unlock the potential of non-model microorganisms and microbiomes, while developing intensified and industrially relevant bioprocess platforms.

Dr Ramon Ganigué’s research lies at the intersection of microbial biotechnology, chemical engineering, and sustainability, with a focus on engineering microbial bioprocesses for sustainable production systems. His team applies an integrated toolbox spanning microbial physiology, community engineering, metabolic and process modelling, and bioprocess intensification to develop next-generation biotechnologies.

Central to this approach is a deep understanding of microbial physiology and metabolism. The research places particular emphasis on non-model microorganisms, including anaerobes, extremophiles, and complex microbiomes, which offer unique and underexploited capabilities for sustainable bioproduction. These systems are leveraged to convert non-refined and complex feedstocks into value-added products, such as biochemicals, biofuels, bioplastics, and alternative proteins.

A key focus of the program is addressing the operational and engineering challenges that limit industrial deployment. This includes the development of continuous, intensified, and non-axenic bioprocesses, as well as innovative reactor configurations designed to enhance robustness, efficiency, and scalability. Through this integrated approach, the research aims to bridge the gap between fundamental microbiology and industrial application, enabling practical and scalable solutions for sustainable manufacturing.

While sustainable biomanufacturing remains a core focus, the group actively explores the application of its microbial biotechnology toolbox to other systems and challenges aligned with sustainability goals for people and planet.

Teaching & learning contributions

Ramon is an experienced educator contributing across undergraduate and postgraduate programs. He currently lectures in key courses including Principles of Biomedical and Bioprocess Engineering (BIOE1001), Environmental Systems (ENVE2501), and the capstone Process Engineering Design Project (CHEE4001). He is also co-editor of the 2024 IWA Scientific Book Resource Recovery from Water: Principles and Application, and has contributed to MOOCs on resource recovery from wastewater and carbon capture and utilisation technologies.

Availability

Dr Ramon Ganigue is:
Available for supervision

Qualifications

  • Bachelor of Environmental Sciences, Universitat de Girona
  • Masters (Research) of Environmental Biotechnology, Universitat de Girona
  • Doctor of Philosophy, Universitat de Girona

Works

Search Professor Ramon Ganigue’s works on UQ eSpace

109 works between 2007 and 2026

101 - 109 of 109 works

2010

Journal Article

Combining partial nitritation and heterotrophic denitritation for the treatment of landfill leachate previous to an anammox reactor

Ganigué, R., Gabarró, J., López, H., Ruscalleda, M., Balaguer, M. D. and Colprim, J. (2010). Combining partial nitritation and heterotrophic denitritation for the treatment of landfill leachate previous to an anammox reactor. Water Science and Technology, 61 (8), 1949-1955. doi: 10.2166/wst.2010.968

Combining partial nitritation and heterotrophic denitritation for the treatment of landfill leachate previous to an anammox reactor

2010

Journal Article

Systematic model development for partial nitrification of landfill leachate in a SBR

Ganigué, R., Volcke, E. I.P., Puig, S., Balaguer, M. D., Colprim, J. and Sin, G. (2010). Systematic model development for partial nitrification of landfill leachate in a SBR. Water Science and Technology, 61 (9), 2199-2210. doi: 10.2166/wst.2010.979

Systematic model development for partial nitrification of landfill leachate in a SBR

2010

Journal Article

The effect of urban landfill leachate characteristics on the coexistence of anammox bacteria and heterotrophic denitrifiers

Ruscalleda, M., Puig, S., Mora, X., Lopez, H., Ganigue, R., Balaguer, M. D. and Colprim, J. (2010). The effect of urban landfill leachate characteristics on the coexistence of anammox bacteria and heterotrophic denitrifiers. Water Science and Technology, 61 (4), 1065-1071. doi: 10.2166/wst.2010.610

The effect of urban landfill leachate characteristics on the coexistence of anammox bacteria and heterotrophic denitrifiers

2010

Conference Publication

Temperature effects on partial nitritation treating extremely high ammonium levels of landfill leachate

Gabarró, J., Ganigué, R., Ruscalleda, M., Balaguer, M. D. and Colprim, J. (2010). Temperature effects on partial nitritation treating extremely high ammonium levels of landfill leachate. Enzymology and ecology of the nitrogen cycle, Birmingham, United Kingdom, 15 – 17 September 2010. Portland, United States: Biochemical Society.

Temperature effects on partial nitritation treating extremely high ammonium levels of landfill leachate

2009

Journal Article

Long-term operation of a partial nitritation pilot plant treating leachate with extremely high ammonium concentration prior to an anammox process

Ganigué, Ramon, Gabarró, Jordi, Sànchez-Melsió, Alexandre, Ruscalleda, Maël, López, Helio, Vila, Xavier, Colprim, Jesús and Balaguer, M. Dolors (2009). Long-term operation of a partial nitritation pilot plant treating leachate with extremely high ammonium concentration prior to an anammox process. Bioresource Technology, 100 (23), 5624-5632. doi: 10.1016/j.biortech.2009.06.023

Long-term operation of a partial nitritation pilot plant treating leachate with extremely high ammonium concentration prior to an anammox process

2008

Journal Article

Heterotrophic denitrification on granular anammox SBR treating urban landfill leachate

Ruscalleda, M., López, H., Ganigué, R., Puig, S., Balaguer, M. D. and Colprim, J. (2008). Heterotrophic denitrification on granular anammox SBR treating urban landfill leachate. Water Science and Technology, 58 (9), 1749-1755. doi: 10.2166/wst.2008.544

Heterotrophic denitrification on granular anammox SBR treating urban landfill leachate

2008

Journal Article

Operational strategy for a partial nitritation-sequencing batch reactor treating urban landfill leachate to achieve a stable influent for an anammox reactor

Ganigué, Ramon, López, Helio, Ruscalleda, Maël, Balaguer, M. Dolors and Colprim, Jesús (2008). Operational strategy for a partial nitritation-sequencing batch reactor treating urban landfill leachate to achieve a stable influent for an anammox reactor. Journal of Chemical Technology and Biotechnology, 83 (3), 365-371. doi: 10.1002/jctb.1822

Operational strategy for a partial nitritation-sequencing batch reactor treating urban landfill leachate to achieve a stable influent for an anammox reactor

2008

Journal Article

Start-up and enrichment of a granular anammox SBR to treat high nitrogen load wastewaters

López, Helio, Puig, Sebastià, Ganigué, Ramon, Ruscalleda, Maël, Balaguer, Maria D. and Colprim, Jesús (2008). Start-up and enrichment of a granular anammox SBR to treat high nitrogen load wastewaters. Journal of Chemical Technology and Biotechnology, 83 (3), 233-241. doi: 10.1002/jctb.1796

Start-up and enrichment of a granular anammox SBR to treat high nitrogen load wastewaters

2007

Journal Article

Partial ammonium oxidation to nitrite of high ammonium content urban landfill leachates

Ganigué, R., López, H., Balaguer, M. D. and Colprim, J. (2007). Partial ammonium oxidation to nitrite of high ammonium content urban landfill leachates. Water Research, 41 (15), 3317-3326. doi: 10.1016/j.watres.2007.04.027

Partial ammonium oxidation to nitrite of high ammonium content urban landfill leachates

Funding

Past funding

  • 2012
    Understanding biological transformations in sewer sediments
    UQ Early Career Researcher
    Open grant
  • 2010 - 2011
    Impact of oxygen on methane production in sewer systems
    UQ New Staff Research Start-Up Fund
    Open grant

Supervision

Availability

Dr Ramon Ganigue is:
Available for supervision

Looking for a supervisor? Read our advice on how to choose a supervisor.

Available projects

  • Engineering scalable single cell oil production for sustainable manufacturing of oleochemicals

    Single cell oils (SCO) production provides a powerful route to generate sustainable oils and oleochemicals from renewable and non-refined feedstocks, decoupling lipid supply from conventional agriculture.

    Harnessing the metabolic capacity of oleaginous microorganisms, SCO systems convert diverse carbon sources into energy-dense triacylglycerols, offering high productivity and flexibility compared to traditional oil crops.

    However, maximising lipid yields while maintaining process efficiency and scalability remains a central challenge, requiring an integrated understanding of microbial metabolism and bioprocess operation.

    This PhD project will address these challenges by developing advanced SCO production strategies that optimise carbon partitioning, process performance, and industrial feasibility.

  • Engineering scalable microbial protein production from sustainable feedstocks

    Microbial protein (MP) production offers a promising route to decouple protein supply from conventional agriculture, enabling sustainable, high-efficiency conversion of renewable feedstocks into nutritious biomass.

    Leveraging the metabolic versatility of microorganisms, MP systems can valorise low-value and non-refined resources into high-quality protein, contributing to circular and low-carbon manufacturing.

    However, achieving both high productivity and desirable protein quality remains a key challenge, requiring an integrated approach that combines microbial physiology, process engineering, and bioprocess intensification.

    This PhD project will address these challenges by developing next-generation MP production strategies that balance growth performance, product quality, and process scalability for industrial deployment.

Media

Enquiries

For media enquiries about Dr Ramon Ganigue's areas of expertise, story ideas and help finding experts, contact our Media team:

communications@uq.edu.au