Investigação, Desenvolvimento e Inovação · Em Execução

Promovendo a saúde do solo através de biorremediação sustentável usando microrganismos eletrogeradores

REQUIMTE - REDE DE QUIMICA E DE TECNOLOGIA - ASSOCIAÇÃO

Fundo aprovado
210 993,12 €
Fundo executado
4 612,44 €
Fundo pago
13 314,67 €

Esta ficha organiza os campos que o Portugal 2030 publica sobre a operação: financiamento aprovado, execução administrativa, enquadramento e território. O mérito da candidatura e os resultados no terreno não constam desta fonte.

COMPETE2030-FEDER-00711900

O QUE FOI APRESENTADO

Finalidade da operação

This proposal aims at the protection of the environment and natural resources. The main objective is to develop a bioelectrochemical degradation process as a tool for bioremediation of contaminated soil. The focus will be the contamination by phenolic compounds and PFAS due to the high concern posed by their widespread contamination and negative impacts in soil health and safety. Nowadays, electrochemical technologies are considered pivotal for the elimination of recalcitrant contaminants in the environment, while producing clean energy as a byproduct. Particularly electrochemical devices using biological material, known as biofuel-cells, have shown to provide bioenergy based on the controlled breakdown of suited organic compounds. However, there are crucial variables that influence the…

Ler a descrição publicada na íntegra

This proposal aims at the protection of the environment and natural resources. The main objective is to develop a bioelectrochemical degradation process as a tool for bioremediation of contaminated soil. The focus will be the contamination by phenolic compounds and PFAS due to the high concern posed by their widespread contamination and negative impacts in soil health and safety. Nowadays, electrochemical technologies are considered pivotal for the elimination of recalcitrant contaminants in the environment, while producing clean energy as a byproduct. Particularly electrochemical devices using biological material, known as biofuel-cells, have shown to provide bioenergy based on the controlled breakdown of suited organic compounds. However, there are crucial variables that influence the feasibility and performance of the solution. In this project, we will address these variables by optimizing each component in the device. Our first focus will be on the special development of the bioanode and biocathode as the key components of bioelectrochemical devices. The process will entail the comparative evaluation and meticulous selection of optimal electrode materials exhibiting favorable redox characteristics, alongside the cultivation and enrichment of electroactive bacterial consortia tailored for implementation in both the bioanode and biocathode configurations. Concerning the anode, the objective is to obtain an electrode surface coated with a biofilm containing active bacteria responsible for transferring electrons extracted during the oxidation of the phenolic and PFAS compounds to the cathode, the latter enriched with electroactive bacteria capable of accepting electrons. The western and southern coastal regions of Portugal, characterized by high anthropogenic activities, where five distinct types of soils can be identified. These soils range from medium/fine textured organic-rich humic cambisols to clay-rich luvisols, all of which will be addressed in this project. Another specific objective is to overcome the low electrical conductivity observed in various types of soils, harnessing the ability of microorganisms to engage in long-distance interspecies electron transfer through the incorporation of conductive biochar. This approach will be complemented by the objective of efficiently immobilizing specific bacteria from the UCP bacterial collection with proven capacity to degrade the target recalcitrant compounds within the biochar matrix as biocatalysts, as well as establish the conditions for the stability, viability, and activity of the immobilized biocatalyst. The soil bioaugmentation with these bacteria will be a plus to increasing the efficiency of bioremediation, coupling the pollutant oxidation capacity of electroactive bacteria with the ability of specialized degrading strains for the complete biodegradation of the target pollutants. This comprehensive approach aims to enhance the remediation efficiency by leveraging the amendment properties of biochar in both functioning as a microorganism carrier in bioaugmentation and to increase soil conductivity to potentiate electrochemical processes. Finally, we aim to construct and operate a bioelectrochemical device for soil remediation. We will combine all the developed and optimized components to achieve the goal of complete biodegradation of phenolic compounds and PFAS in soil microcosms. This will promote bioremediation while generating green electricity.

PROGRAMA E OBJETIVOS

Como a operação está enquadrada

Programa
Programa Inovação e Transição Digital
Fundo
Fundo Europeu de Desenvolvimento Regional
Objetivo estratégico
+ Inteligente
Objetivo específico
Reforçar a investigação, inovação e adoção de tecnologias avançadas.
Área temática
Investigação, Desenvolvimento e Inovação
Atividade económica
Investigação e desenvolvimento em biotecnologia
Modalidade
Subvenção
Taxa de cofinanciamento
85%

ONDE

Distribuição territorial publicada

PortoÁrea Metropolitana do Porto · Norte
100% da localização

Localização observada no ficheiro de 31 de agosto de 2026.

QUANDO

Calendário publicado

Início previsto
15 de setembro de 2025
Início efetivo
9 de janeiro de 2026
Conclusão prevista
13 de setembro de 2028
Conclusão efetiva
Não indicada

PROVENIÊNCIA

Fonte oficial e datas de corte

Operação e valores: 31 de agosto de 2026. Localização: 31 de agosto de 2026.

Consultar o portal oficial Portugal 2030 ↗Capturas validadas por SHA-256; fonte verificada em 21 de setembro de 2026.
Promovendo a saúde do solo através de biorremediação sustentável usando microrganismos eletrogeradores | Impacto Público