As an energy-intensive industry sector, the glass industry is strongly affected by the increasingly stringent climate protection targets. As established combustion-based production systems ensure high process stability and glass quality, an immediate switch to low greenhouse gas emission processes is difficult. To approach these challenges, this work investigates a step-by-step integration of a Power-to-Hydrogen concept into established oxyfuel glass melting processes using a simulation approach. This is complemented by a case study for economic analysis on a selected German glass industry site by simulating the power production of a nearby renewable energy park and subsequent optimization of the power-to-hydrogen plant performance and capa...
The emergence of global warming phenomena that has adversely affected the world today has been large...
Hydrogen is proposed by many to be the fuel of the future as it is the key ingredient in a transitio...
In this work, a novel hydrogen production process (Integrated Chemical Looping Water Splitting “ICLW...
A novel gas-solid suspension ironmaking process is under development at the University of Utah, whic...
In this work, we examine the feasibility and costs of implementing CCU processes into a generic glas...
In a development program, supported by the U.S. Department of Energy and involving close interaction...
In the industrial sector approximately 30 % of the fuels used are consumed by furnaces. On top of th...
Hydrogen has been seen as a decarbonization enabler for the last few decades, and in the last couple...
This study used process simulation to assess the overall economic feasibility of a hydrogen energy s...
The paper starts with a short analysis of the performance of currently applied glass melting process...
The transition to the hydrogen economy has been proposed as a sustainable solution for the simultane...
The glass industry is part of the energy-intensive industry posing a major challenge to fulfill the ...
International audiencePower to Gas (PtG) has appeared in the last years as a potential long-term ene...
Hydrogen gas (H2), that is not produced from fossil oil or natural gas, is expected to become a corn...
Industrial emissions constitute approximately 30% of total greenhouse gas emissions in 2019. Several...
The emergence of global warming phenomena that has adversely affected the world today has been large...
Hydrogen is proposed by many to be the fuel of the future as it is the key ingredient in a transitio...
In this work, a novel hydrogen production process (Integrated Chemical Looping Water Splitting “ICLW...
A novel gas-solid suspension ironmaking process is under development at the University of Utah, whic...
In this work, we examine the feasibility and costs of implementing CCU processes into a generic glas...
In a development program, supported by the U.S. Department of Energy and involving close interaction...
In the industrial sector approximately 30 % of the fuels used are consumed by furnaces. On top of th...
Hydrogen has been seen as a decarbonization enabler for the last few decades, and in the last couple...
This study used process simulation to assess the overall economic feasibility of a hydrogen energy s...
The paper starts with a short analysis of the performance of currently applied glass melting process...
The transition to the hydrogen economy has been proposed as a sustainable solution for the simultane...
The glass industry is part of the energy-intensive industry posing a major challenge to fulfill the ...
International audiencePower to Gas (PtG) has appeared in the last years as a potential long-term ene...
Hydrogen gas (H2), that is not produced from fossil oil or natural gas, is expected to become a corn...
Industrial emissions constitute approximately 30% of total greenhouse gas emissions in 2019. Several...
The emergence of global warming phenomena that has adversely affected the world today has been large...
Hydrogen is proposed by many to be the fuel of the future as it is the key ingredient in a transitio...
In this work, a novel hydrogen production process (Integrated Chemical Looping Water Splitting “ICLW...