Ibrahim Dincer
Biographic Data
| ID | 6274385 |
|---|---|
| NAME | Ibrahim Dincer |
| GIVEN NAMES | Ibrahim |
| FAMILY NAME | Dincer |
| SIGNATURE | DINCER I |
| AFFILIATIONS | Ontario Tech University |
| ORCID | 0000-0002-7092-2102 |
| VERIFIED | Yes |
| TOTAL WORKS | 24 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 24 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2000 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 0 |
Development and Optimal Sizing of an Integrated Renewable Energy System for Sustainable Cities
This study presents an integrated energy system aimed at promoting and supporting sustainable cities and communities through techno-economic and environmental optimization. The system is modeled using the REopt optimization tool developed by NREL and represents a multi-building campus comprising a large office, warehouse, primary school, supermarket, and a mid-rise residential building. The proposed scenario integrates photovoltaic (PV) systems, …
Design of an innovative hydrogen ecosystem integrating renewable energy options with wastewater management for a sustainable city
This study introduces a newly designed hybrid multigeneration system that integrates anaerobic digestion, solar photovoltaic panels, and bioelectrochemical cells to convert wastewater into electricity, hydrogen and domestic hot water in order to achieve sustainable cities. The system is designed to potentially consider the Ashbridges Bay Wastewater Treatment Plant in Toronto, using both solar and biogas resources for energy production. Key system…
An innovatively designed community-based hybrid energy system to generate its needs of electricity, heat, hot water and hydrogen in a sustainable manner
This study introduces an innovative nuclear-biomass integrated energy and cleaner production multigeneration system incorporating sonohydrogen technology and a desalination unit for the sustainable and efficient production of hydrogen, electricity, hot water and heat. A small modular nuclear reactor acts as the primary energy source, ensuring stable and low-carbon power generation while enhancing hydrogen yield through sonochemical processes. Bio…
A new electro-biomembrane integrated renewable-based system to produce power, fresh water and hydrogen for sustainable communities
A new parabolic trough collector solar system-powered electro-biomembrane integrated energy system is designed. • The community electricity and freshwater demand are simulated. • A thermodynamic assessment is carried out from energy and exergy aspects. • A time-dependent analysis is carried out using the first and second laws of thermodynamics. • The maximum energy and exergy efficiencies of the system are 34.3 and 29.5 %. As the consequences of …
Novel energy management options for charging stations of electric vehicles in buildings without increasing peak demand for sustainable cities
Electric vehicles are recognised as critical step in making transportation sector more environmentally friendly, especially when powered by renewable energy sources. A major hindrance to their widespread adoption is the scarcity of charging stations and the absence of grid access. This study explores and examines four distinct ways for enhancing the energy grid of buildings. The primary goal of these solutions is to generate more capacity without…
A new integrated system for carbon capture and clean hydrogen production for sustainable societal utilization
Both hydrogen production and carbon dioxide removal are considered in this study as two of the critical pieces to achieve the ultimate sustainability target. This study proposes and investigates a new variation of potassium hydroxide thermochemical cycle in order to combine hydrogen production and carbon dioxide removal synergistically. An alkali metal redox thermochemical cycle is developed to utilize the potassium hydroxide uniquely through a n…
Investigation of a new holistic energy system for a sustainable airport with green fuels
The advancement of sustainable solutions through renewable and clean energy sources is considered crucial to mitigate carbon emissions. This study reports a novel system developed for an airport utilizing geothermal, biomass, and PV solar energy sources. The proposed system is capable of producing five useful outputs, including electrical power, hot water, hydrogen, kerosene, and space heating. The system proposed in the study is further consider…
Advancing energy transition with novel biomass-solar based multigeneration energy system using hydrogen and storage options for sustainable cities
An integrated energy system is designed to achieve various products such as hydrogen production, electricity, heating, and cooling. It utilizes various subsystems; solar power system, biomass energy system, steam Rankine cycle, Brayton cycle, absorption system, reverse osmosis, and sonohydrogen production. Energy, exergy, economic and environmental analyses are carried out to evaluate the system's performance and sustainability. The engineering e…
Investigation of a tri-renewable energy system coupled with battery and hydrogen storages for a sustainable city
A novel integrated energy system, where tri-renewable energy sources are coupled with a battery and hydrogen storage system, is proposed. The objective of this work is to investigate and evaluate the overall system thermodynamically. Solar, biomass, and wind energy sources are considered in the system development, and the potential needs of the community including electrical energy, space heating, charging stations, and hot water are fulfilled. A…
Development of an integrated sustainability model for resilient cities featuring energy, environmental, social, governance and pandemic domains
A unique biomass based integrated energy system for cleaner production of multiple energy outputs for sustainable communities
Development and assessment of integrated hydrogen and renewable energy systems for a sustainable city
Sustainable city concept based on green hydrogen energy
Development of an Integrated Waste to Energy Multigeneration System Based on Plastic Wastes for Sustainable Cities
Development of an HTR-Type nuclear and bifacial PV solar based integrated system to meet the needs of energy, food and fuel for sustainable indigenous cities
Development of integrated sustainability performance indicators for better management of smart cities
Analysis of mobility trends during the Covid-19 coronavirus pandemic
Analysis of the electricity demand trends amidst the Covid-19 coronavirus pandemic
Environmental impact assessment of nuclear assisted hydrogen production via Cu–Cl thermochemical cycles
Comparative environmental impact and efficiency assessment of selected hydrogen production methods
Exergy as a potential tool for sustainable drying systems
Development of sustainable energy options for buildings in a sustainable society
Exergy for better environment and sustainability
Renewable energy and sustainable development
No prominent works on this page.
Renewable energy and sustainable development
Exergy for better environment and sustainability
Exergy as a potential tool for sustainable drying systems
Development of sustainable energy options for buildings in a sustainable society
Environmental impact assessment of nuclear assisted hydrogen production via Cu–Cl thermochemical cycles
Comparative environmental impact and efficiency assessment of selected hydrogen production methods
Analysis of mobility trends during the Covid-19 coronavirus pandemic
Analysis of the electricity demand trends amidst the Covid-19 coronavirus pandemic
Development of an HTR-Type nuclear and bifacial PV solar based integrated system to meet the needs of energy, food and fuel for sustainable indigenous cities
Development of integrated sustainability performance indicators for better management of smart cities
Sustainable city concept based on green hydrogen energy
Development of an Integrated Waste to Energy Multigeneration System Based on Plastic Wastes for Sustainable Cities
Development of an integrated sustainability model for resilient cities featuring energy, environmental, social, governance and pandemic domains
A unique biomass based integrated energy system for cleaner production of multiple energy outputs for sustainable communities
Development and assessment of integrated hydrogen and renewable energy systems for a sustainable city
Novel energy management options for charging stations of electric vehicles in buildings without increasing peak demand for sustainable cities
Electric vehicles are recognised as critical step in making transportation sector more environmentally friendly, especially when powered by renewable energy sources. A major hindrance to their widespread adoption is the scarcity of charging stations and the absence of grid access. This study explores and examines four distinct ways for enhancing the energy grid of buildings. The primary goal of these solutions is to generate more capacity without…
A new integrated system for carbon capture and clean hydrogen production for sustainable societal utilization
Both hydrogen production and carbon dioxide removal are considered in this study as two of the critical pieces to achieve the ultimate sustainability target. This study proposes and investigates a new variation of potassium hydroxide thermochemical cycle in order to combine hydrogen production and carbon dioxide removal synergistically. An alkali metal redox thermochemical cycle is developed to utilize the potassium hydroxide uniquely through a n…
Investigation of a new holistic energy system for a sustainable airport with green fuels
The advancement of sustainable solutions through renewable and clean energy sources is considered crucial to mitigate carbon emissions. This study reports a novel system developed for an airport utilizing geothermal, biomass, and PV solar energy sources. The proposed system is capable of producing five useful outputs, including electrical power, hot water, hydrogen, kerosene, and space heating. The system proposed in the study is further consider…
Advancing energy transition with novel biomass-solar based multigeneration energy system using hydrogen and storage options for sustainable cities
An integrated energy system is designed to achieve various products such as hydrogen production, electricity, heating, and cooling. It utilizes various subsystems; solar power system, biomass energy system, steam Rankine cycle, Brayton cycle, absorption system, reverse osmosis, and sonohydrogen production. Energy, exergy, economic and environmental analyses are carried out to evaluate the system's performance and sustainability. The engineering e…
Investigation of a tri-renewable energy system coupled with battery and hydrogen storages for a sustainable city
A novel integrated energy system, where tri-renewable energy sources are coupled with a battery and hydrogen storage system, is proposed. The objective of this work is to investigate and evaluate the overall system thermodynamically. Solar, biomass, and wind energy sources are considered in the system development, and the potential needs of the community including electrical energy, space heating, charging stations, and hot water are fulfilled. A…
An innovatively designed community-based hybrid energy system to generate its needs of electricity, heat, hot water and hydrogen in a sustainable manner
This study introduces an innovative nuclear-biomass integrated energy and cleaner production multigeneration system incorporating sonohydrogen technology and a desalination unit for the sustainable and efficient production of hydrogen, electricity, hot water and heat. A small modular nuclear reactor acts as the primary energy source, ensuring stable and low-carbon power generation while enhancing hydrogen yield through sonochemical processes. Bio…
A new electro-biomembrane integrated renewable-based system to produce power, fresh water and hydrogen for sustainable communities
A new parabolic trough collector solar system-powered electro-biomembrane integrated energy system is designed. • The community electricity and freshwater demand are simulated. • A thermodynamic assessment is carried out from energy and exergy aspects. • A time-dependent analysis is carried out using the first and second laws of thermodynamics. • The maximum energy and exergy efficiencies of the system are 34.3 and 29.5 %. As the consequences of …
Development and Optimal Sizing of an Integrated Renewable Energy System for Sustainable Cities
This study presents an integrated energy system aimed at promoting and supporting sustainable cities and communities through techno-economic and environmental optimization. The system is modeled using the REopt optimization tool developed by NREL and represents a multi-building campus comprising a large office, warehouse, primary school, supermarket, and a mid-rise residential building. The proposed scenario integrates photovoltaic (PV) systems, …
Design of an innovative hydrogen ecosystem integrating renewable energy options with wastewater management for a sustainable city
This study introduces a newly designed hybrid multigeneration system that integrates anaerobic digestion, solar photovoltaic panels, and bioelectrochemical cells to convert wastewater into electricity, hydrogen and domestic hot water in order to achieve sustainable cities. The system is designed to potentially consider the Ashbridges Bay Wastewater Treatment Plant in Toronto, using both solar and biogas resources for energy production. Key system…
Engineering (20 works) · Environmental Science (18 works) · Renewable energy (14 works) · Economics (12 works) · Waste management (12 works) · Hybrid Renewable Energy Systems (11 works) · Environmental Engineering (10 works) · Environmental economics (9 works) · Business (8 works) · Electricity (8 works)