Mercedes Maroto-Valer

Mercedes Maroto-Valer

Heriot-Watt University

H-index: 58

Europe-United Kingdom

About Mercedes Maroto-Valer

Mercedes Maroto-Valer, With an exceptional h-index of 58 and a recent h-index of 42 (since 2020), a distinguished researcher at Heriot-Watt University, specializes in the field of Energy systems, CCUS, Hydrogen, Low-Carbon fuels.

His recent articles reflect a diverse array of research interests and contributions to the field:

In-situ multicore fibre-based pH mapping through obstacles in integrated microfluidic devices

From brew to clean fuel: harnessing distillery wastewater for electrolysis H 2 generation using nano scale nickle selenide water oxidation catalysts

Underground hydrogen storage: A UK perspective

Applicable models for upscaling of smart local energy systems: An overview

Core–shell nanostructured Cu-based bi-metallic electrocatalysts for co-production of ethylene and acetate

Photoelectrocatalytic Surfactant Pollutant Degradation and Simultaneous Green Hydrogen Generation

3D direct ink printed materials for chemical conversion and environmental remediation applications: a review

Solar light-driven simultaneous pharmaceutical pollutant degradation and green hydrogen production using a mesoporous nanoscale WO3/BiVO4 heterostructure photoanode

Mercedes Maroto-Valer Information

University

Position

___

Citations(all)

16254

Citations(since 2020)

9333

Cited By

10699

hIndex(all)

58

hIndex(since 2020)

42

i10Index(all)

185

i10Index(since 2020)

144

Email

University Profile Page

Heriot-Watt University

Google Scholar

View Google Scholar Profile

Mercedes Maroto-Valer Skills & Research Interests

Energy systems

CCUS

Hydrogen

Low-Carbon fuels

Top articles of Mercedes Maroto-Valer

Title

Journal

Author(s)

Publication Date

In-situ multicore fibre-based pH mapping through obstacles in integrated microfluidic devices

Scientific Reports

Harikumar K Chandrasekharan

Krystian L Wlodarczyk

William N MacPherson

M Mercedes Maroto-Valer

2024/2/3

From brew to clean fuel: harnessing distillery wastewater for electrolysis H 2 generation using nano scale nickle selenide water oxidation catalysts

Sustainable Energy & Fuels

Michael Walsh

Jeannie ZY Tan

Sanjay Nagarajan

Kenneth Macgregor

John M Andresen

...

2024

Underground hydrogen storage: A UK perspective

Amir Jahanbakhsh

Alexander Louis Potapov-Crighton

Abdolali Mosallanezhad

Nina Tohidi Kaloorazi

M Mercedes Maroto-Valer

2024/1/1

Applicable models for upscaling of smart local energy systems: An overview

Chukwumaobi K Oluah

Sandy Kerr

M Mercedes Maroto-Valer

2024/2/28

Core–shell nanostructured Cu-based bi-metallic electrocatalysts for co-production of ethylene and acetate

Faraday Discussions

Jeannie ZY Tan

Ashween Kaur Virdee

John M Andresen

M Mercedes Maroto-Valer

2023

Photoelectrocatalytic Surfactant Pollutant Degradation and Simultaneous Green Hydrogen Generation

Industrial & Engineering Chemistry Research

Katherine Rebecca Davies

Michael G Allan

Sanjay Nagarajan

Rachel Townsend

Vijayshankar Asokan

...

2023/6/2

3D direct ink printed materials for chemical conversion and environmental remediation applications: a review

Jeannie ZY Tan

Manuel Alejandro Ávila-López

Amir Jahanbakhsh

Xuesong Lu

José Bonilla-Cruz

...

2023

Solar light-driven simultaneous pharmaceutical pollutant degradation and green hydrogen production using a mesoporous nanoscale WO3/BiVO4 heterostructure photoanode

Journal of Environmental Chemical Engineering

Katherine Rebecca Davies

Michael G Allan

Sanjay Nagarajan

Rachel Townsend

Tom Dunlop

...

2023/6/1

Highly selective CO 2 photoreduction to CO on MOF-derived TiO 2

Rsc Sustainability

Matthew Garvin

Warren A Thompson

Jeannie ZY Tan

Stavroula Kampouri

Christopher P Ireland

...

2023

Carbon resilience calibration as a carbon management technology

Frontiers in Energy Research

Seyedeh Hosna Talebian

Amir Jahanbakhsh

M Mercedes Maroto-Valer

2023/4/6

Experimental Study on Mineral Dissolution and Carbonation Efficiency Applied to pH-Swing Mineral Carbonation for Improved CO2 Sequestration

Energies

Natália R Galina

Gretta LAF Arce

Mercedes Maroto-Valer

Ivonete Ávila

2023/3/4

Liquid Natural Gas Cold Energy Recovery for Integration of Sustainable District Cooling Systems: A Thermal Performance Analysis

Inventions

Yang Luo

Xuesong Lu

Yi Chen

John Andresen

Mercedes Maroto-Valer

2023/9/25

Highly selective CO₂ photoreduction to CO on MOF-derived TiO₂

RSC Sustainability

Matthew Garvin

Warren A Thompson

Jeannie ZY Tan

Stavroula Kampouri

Christopher P Ireland

...

2023/2/17

Investigation of process parameters for solar fuel production using earth-abundant materials

Journal of CO2 Utilization

Ashween Kaur Virdee

Irene Martin

Jeannie ZY Tan

Giulia Forghieri

M Mercedes Maroto-Valer

...

2023/9/1

Electrosynthesis of Ethylene from CO2-derived Syngas Using Nanostructure Cu-based Catalysts

Proceedings of the 16th Greenhouse Gas Control Technologies Conference (GHGT-16)

Jeannie ZY Tan

Joh Andresen

Mercedes Maroto-Valer

2022/10/6

Understanding Multiphase Flow Mechanisms of Hydrogen Storage in Sandstones

Proceedings of the 16th Greenhouse Gas Control Technologies Conference (GHGT-16)

Omid Shahrokhi

Amir Jahanbakhsh

Puyan Bakhshi

John Andresen

M Mercedes Maroto-Valer

2022/10/31

CCUS: Paving the way from COP26 to net zero

John R Ferrier

Anna Pultar

Mercedes Maroto‐Valer

2022/6

Core–shell TiO 2− x-Cu y O microspheres for photogeneration of cyclic carbonates under simulated sunlight

Nanoscale

Jeannie ZY Tan

Stelios Gavrielides

M Mercedes Maroto-Valer

2022

Guest Editorial: Innovation in the Manufacturing Sector: The Catalyst for a Decarbonised Future

Johnson Matthey Technology Review

M Maroto-Valer

2022/10/3

TiO2 Based Photocatalysts for CO2 Photoreduction

Proceedings of the 16th Greenhouse Gas Control Technologies Conference (GHGT-16)

Matthew Garvin

Warren A Thompson

Stavroula Kampouri

Christopher Ireland

Berend Smit

...

2022/10/30

See List of Professors in Mercedes Maroto-Valer University(Heriot-Watt University)