Rui C. Martins

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University of Coimbra
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Portugal

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Recent Grants

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H2OforAll - Innovative Integrated Tools and Technologies to Protect and Treat Drinking Water from Disinfection Byproducts (DBPs)

Open Date: 2022-11-01

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Integrated platform for recycling of textile dyeing wastewater using Aqueous Biphasic Systems: A Circular Economy Approach

Open Date: 2022-08-13

Close Date: 2025-08-12

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SAFE - Recuperação de água em adegaS usAndo oxidação FotossEnsitizada

Open Date: 2019-09-01

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“Desenvolvimento de fotocatalisadores ativos para a remoção de contaminantes emergentes da água por ozonização fotocatalítica solar”,

Open Date: 2019-07-01

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Grant: Close

SYMBIOSIS II– Estrategia Transfronteiriza para la Promoción de la Gestión Eficiente de las Expploiationes Agropecuarias mediante su integratión a través del Desarrollo Tecnológico y la Innovación

Open Date: 2019-01-01

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Articles (27)

Continuous Heterogeneous Fenton for Swine Wastewater Treatment: Converting an Industry Waste into a Wastewater Treatment Material

Swine wastewater (SW) was treated using industrial wastes as raw materials in a pre-treatment process (coagulation or adsorption), followed by a continuous heterogeneous Fenton reaction. Before the treatment conducted as a continuous operation, two different batch optimization strategies were evaluated, in which the effects of H2O2 concentration and pH were studied. The results show that using excessive H2O2 results in the same behavior, regardless of whether the pH is 3 or 7.5, while at low H2O2 concentrations, the acidic pH improves the chemical oxygen demand (COD) removal due to a higher solubility of iron. The partial addition of H2O2 after 60 min of the reaction proved to be unbeneficial. Considering other perspectives, a continuous Fenton process using iron filings (IF) as the iron source ([H2O2] = 50 mg/L) was applied after the SW pre-treatment, consisting of adsorption with red mud (RM) or coagulation with poly-diallyldimethylammonium chloride (PDADMAC). The RM adsorption presented higher COD removal and lower toxicity than the PDADMAC coagulation, revealing to be a suitable material for this purpose, but for both pre-treatments, the application of a subsequent continuous Fenton process revealed to be essential to achieve the COD discharge limits imposed by the Portuguese law. In addition, high amounts of dissolved iron were present in the samples (55–58 mg/L) after the Fenton process. However, after the overall treatment, the samples showed no harmful characteristics for Lepidium sativum, being classified as “non-toxic”, contrary to the initial wastewater.

Year:

2024

Collaborators (15)

Marta Gmurek

Associate Professor

Lodz University of Technology

POLAND

Igor Reva

University of Coimbra

PORTUGAL

Artur J. M. Valente

University of Coimbra

PORTUGAL

Margarida Quina

Associate Professor with Habilitation

University of Coimbra

PORTUGAL

Joana L Pereira

-

PORTUGAL

Luis M. Castro

Professor Coordenador

Instituto Politécnico de Coimbra Instituto Superior de Engenharia de Coimbra

PORTUGAL

Ana Miguel Matos

Professor Auxiliar

Universidade de Lisboa Faculdade de Farmácia

PORTUGAL

Luisa Durães

Associate Professor

University of Coimbra

PORTUGAL

Paula Vasconcelos Morais

University of Coimbra

PORTUGAL

João Gomes

University of Coimbra

PORTUGAL

Andreia Santos

Professor Assistente Convidado

Instituto Politécnico de Coimbra Instituto Superior de Engenharia de Coimbra

PORTUGAL

Adriana Zaleska-Medynska

University of Gdańsk

POLAND

Sara Badenes

Head of the Innovation Center

A4F-Algafuel (Portugal)

PORTUGAL

Eva Domingues

University of Coimbra

PORTUGAL

Helena Pinheiro

Associate Professor

Universidade de Lisboa Instituto Superior Técnico

PORTUGAL
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