Probabilistic Analysis of Low-Emission Hydrogen Production from a Photovoltaic Carport DOI Creative Commons
Arkadiusz Małek, Agnieszka Dudziak, Jacek Caban

et al.

Applied Sciences, Journal Year: 2024, Volume and Issue: 14(20), P. 9531 - 9531

Published: Oct. 18, 2024

This article presents a 3D model of yellow hydrogen generation system that uses the electricity produced by photovoltaic carport. The models all key components were collected, and their characteristics described. Based on design carport, amount energy monthly was determined. These quantities then applied to determine production low-emission hydrogen. In order increase produced, usage stationary storage facility proposed. Metalog family probability distributions adopted develop strategic for production. economy company small amounts can be based such model. modeling calculations show it is possible compact using rapid prototyping tools, including carport with an electrolyzer placed in container facility. effective solution climate transition companies low demand. analytical part, distribution employed 6.3 kWp systems located two European countries: Poland Italy. Calculating producing specific countries answer frequently asked question: which will from most profitable? As result calculations, analyzed year 2023 Italy, answers obtained regarding Many Italy are taking part competition create banks. Only those offer at lowest prices receive EU funding.

Language: Английский

Renewable Energy Generation Technologies for Decarbonizing Urban Vertical Buildings: A Path towards Net Zero DOI Open Access
Raphael Souza de Oliveira, Meire Jane Lima de Oliveira, Erick Giovani Sperandio Nascimento

et al.

Sustainability, Journal Year: 2023, Volume and Issue: 15(17), P. 13030 - 13030

Published: Aug. 29, 2023

Greenhouse gas (GHG) emissions, especially CO2, represent a global concern. Among those responsible for CO2 buildings stand out due to the consumption of energy from fossil fuels. In this sense, initiatives decarbonization and construction tends contribute achievement target defined in Paris Agreement limiting increase temperature 1.5 degrees Celsius above pre-industrial levels, as well achieving Sustainable Development Goals (SDG) Triple Bottom Line (TBL). This article aimed identify renewable generation technologies that can be applied urban vertical constructions, contributing reduction carbon emissions atmosphere. To end, following methodology was adopted: survey Conferences Parties on climate change; identification European Union Legislative Directives buildings; literature review research deals with adopted buildings. The results indicated there seems correlation between growth number articles deal topic decarbonizing world concerns about warming. A hybrid microgrid proposal, combining different sources such solar photovoltaic, wind, biomass, micro-hydroelectric, others more than five floors, is presented viable achieve zero these buildings, future research, carry quantitative analyses feasibility studies, experiments applications existing projects new constructions.

Language: Английский

Citations

15

A comprehensive review of post-combustion CO2 capture technologies for applications in the maritime sector: A focus on adsorbent materials DOI Creative Commons

Esther Pancione,

Alessandro Erto, Francesco Di Natale

et al.

Journal of CO2 Utilization, Journal Year: 2024, Volume and Issue: 89, P. 102955 - 102955

Published: Oct. 13, 2024

Language: Английский

Citations

6

Strategic Model for Yellow Hydrogen Production Using the Metalog Family of Probability Distributions DOI Creative Commons
Arkadiusz Małek, Agnieszka Dudziak, Jacek Caban

et al.

Energies, Journal Year: 2024, Volume and Issue: 17(10), P. 2398 - 2398

Published: May 16, 2024

Storing energy in hydrogen has been recognized by scientists as one of the most effective ways storing for many reasons. The first these reasons is availability technology producing from water using electrolytic methods. Another aspect relatively cheap renewable sources. Moreover, you can count on large amounts this energy. aim article to support decision-making processes related production yellow a strategic model which exploits metalog family probability distributions. This allows us calculate, with accuracy regarding distribution, amount produced photovoltaic systems specific peak power. Using question, it possible calculate expected electricity daily system and corresponding produced. Such may be appropriate developers who build intended specifically green hydrogen. Based our model, they estimate size needed produce assumed volume. also adopted producers Due precise calculations, up providing required part mix.

Language: Английский

Citations

5

Flammability Limits of Ammonia in Air from 298 to 423 K at Elevated Pressures DOI
Wen Fu, Yulong Zhou, Jiangtao Wu

et al.

Energy & Fuels, Journal Year: 2024, Volume and Issue: 38(11), P. 10168 - 10182

Published: May 22, 2024

The flammability limit (FL) data of ammonia at elevated temperatures and pressures are useful for fire prevention control the storage, transportation, bunkering process a large amount ammonia, as well detailed study reaction kinetics ammonia-containing alternative fuels. In this work, FLs were measured in temperature range from 298 to 423 K pressure 0.05 0.5 MPa based on ASTM E918 EN 1839 standards, concentrations characterized using mole fraction volume fraction, respectively. varied linearly with logarithmically pressure. combined effect expanded increased likelihood an explosion. By correlating correlated results varying obtained. mean absolute deviation between fitted values experimental lower (LFLs) was 0.22%, while upper (UFLs) it 0.37%. influence explained by combustion. presence OH radicals crucial LFLs ammonia/air mixture, followed NH2 radicals. UFLs mixture highly dependent change formation primarily relied elementary NH3 + OH⇔NH2 H2O FLs. peak value free radical gradually decreased increasing increase resulted significant rate ROP, slight decrease change.

Language: Английский

Citations

5

Probabilistic Analysis of Low-Emission Hydrogen Production from a Photovoltaic Carport DOI Creative Commons
Arkadiusz Małek, Agnieszka Dudziak, Jacek Caban

et al.

Applied Sciences, Journal Year: 2024, Volume and Issue: 14(20), P. 9531 - 9531

Published: Oct. 18, 2024

This article presents a 3D model of yellow hydrogen generation system that uses the electricity produced by photovoltaic carport. The models all key components were collected, and their characteristics described. Based on design carport, amount energy monthly was determined. These quantities then applied to determine production low-emission hydrogen. In order increase produced, usage stationary storage facility proposed. Metalog family probability distributions adopted develop strategic for production. economy company small amounts can be based such model. modeling calculations show it is possible compact using rapid prototyping tools, including carport with an electrolyzer placed in container facility. effective solution climate transition companies low demand. analytical part, distribution employed 6.3 kWp systems located two European countries: Poland Italy. Calculating producing specific countries answer frequently asked question: which will from most profitable? As result calculations, analyzed year 2023 Italy, answers obtained regarding Many Italy are taking part competition create banks. Only those offer at lowest prices receive EU funding.

Language: Английский

Citations

5