👉 More insights at #MATSUS24 nanoGe Conferences 🗣️ Joel Ager explored the dynamic landscape of photoelectric hydrogen generation, highlighting the challenges and opportunities presented by large-scale photovoltaic and electrolysis plants. Ager also emphasised the importance of system-level metrics to assess progress and close the gap with these approaches and the critical need for outdoor testing to identify and address durability issues, the current bottleneck in this field. 🔗https://lnkd.in/dbG7-wJN
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A web app of Enginius.org was developed to demonstrate the equivalent circuit parameters from the EIS measurement and the derivation of the SoH is provided in : https://lnkd.in/djPxUVPZ
Ph.D. in hybrid PV Energy Storage Systems. Expert in lithium-ion capacitor degradation and AI-driven EMS. Managed 1.45GW Benban Solar Park. Globally recognized research with a strong interdisciplinary focus.
🚀 Tomorrow.. October 24, 2024, our conference paper "Degradation Analysis of Lithium-ion Capacitors based on Electrochemical Impedance Spectroscopy" will be presented by Muhammad Usman Tahir at the IEEE Energy Conversion Congress & Exposition (ECCE), taking place from , in Phoenix, USA! 🌍 Join us on for our session, where we will present our paper . 📅 Session: Energy Storage II 📍 Location: Room 121A 🕚 Time: Thursday, October 24, 10:40 AM - 12:20 PM This paper, co-authored by Tarek Mahmoud Samy Ibrahim ,Muhammad Usman Tahir , Václav Knap and Daniel Stroe, dives into the degradation behavior of lithium-ion capacitors using Electrochemical Impedance Spectroscopy (EIS), providing key insights for energy storage applications like electric vehicles and state of health (SoH) online monitoring. A web app was developed to demonstrate the equivalent circuit parameters from the EIS measurement and the derivation of the SoH is provided in Enginius.org : https://lnkd.in/djPxUVPZ We look forward to seeing ECCE participants at our session and hope to engage in insightful discussions! hashtag #ECCE_2024 #EnergyStorage #LithiumIonCapacitors #RenewableEnergy #Research #EnergyConversion #IEEE IEEE Energy Conversion Congress & Expo (ECCE)
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An important step in furthering the growth of the hydrogen economy!
ARPA-E announced $18 million for 9 projects to develop large-area hydrogen sensing technologies under the H2SENSE Exploratory Topic, to maximize the climate benefits of hydrogen production. “The ability to detect and quantify hydrogen will enable the safe and economical expansion of the hydrogen economy while mitigating its climate impact,” said ARPA-E Director Dr. Evelyn Wang. “These highly sensitive and selective hydrogen sensors combined with quantitative modeling will enable industry to achieve these goals.” Learn more about these groundbreaking projects here: https://bit.ly/47oqxi0 #ARPAEH2SENSE
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My EUPVSEC contribution to the non-destructive monitoring of water-ingress changes throughout accelerated weathering (DH, UV, DH+UV) and how it is affected by the chosen encapsulant-backsheet combination.
Meet the #EUPVSECauthors 👨🔬👩🔬 Curious about how material combinations impact the longevity of solar modules? Dr. Anton Mordvinkin from Fraunhofer Center for Silicon Photovoltaics CSP will unveil innovative non-destructive methods for evaluating and monitoring barrier properties during accelerated weathering at the #EUPVSEC2024. 🌐 #EUPVSEC #meettheauthors #solarenergy #photovoltaics #conference
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🚚 To help the mobility industry achieve net zero-emissions goals over the next 25 years, Southwest Research Institute is launching a new Joint Industry Project (JIP) focused on advancing hydrogen refueling equipment and infrastructure. 🗓️ Join us December 5, for an informational session to learn about the H2HD REFUEL consortium or the Hydrogen Heavy-Duty Refueling Equipment and Facilities Utilization Evaluation Laboratory. H2HD REFUEL will conduct hands-on experiments, system modeling and theoretical studies on existing and potential hydrogen refueling station (HRS) technology. The initiative will complement work performed by the SwRI-led H2 ICE Consortium that developed a hydrogen-fueled Class 8 demonstration vehicle. With the help of OEMs, H2HD REFUEL will work to eliminate the barriers preventing the widespread adoption of carbon-neutral hydrogen fuel by the heavy-duty mobility sector. For details about the meeting visit: https://ow.ly/Ktls50UcYVm #Hydrogen #Decarbonization #Mobility
H2HD Refuel Information Meeting
swri.org
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Come join the hydrogen industry in furthering hydrogen refueling station technology! Check out the new SwRI JIP below and learn more at our information session on December 5th.
🚚 To help the mobility industry achieve net zero-emissions goals over the next 25 years, Southwest Research Institute is launching a new Joint Industry Project (JIP) focused on advancing hydrogen refueling equipment and infrastructure. 🗓️ Join us December 5, for an informational session to learn about the H2HD REFUEL consortium or the Hydrogen Heavy-Duty Refueling Equipment and Facilities Utilization Evaluation Laboratory. H2HD REFUEL will conduct hands-on experiments, system modeling and theoretical studies on existing and potential hydrogen refueling station (HRS) technology. The initiative will complement work performed by the SwRI-led H2 ICE Consortium that developed a hydrogen-fueled Class 8 demonstration vehicle. With the help of OEMs, H2HD REFUEL will work to eliminate the barriers preventing the widespread adoption of carbon-neutral hydrogen fuel by the heavy-duty mobility sector. For details about the meeting visit: https://ow.ly/Ktls50UcYVm #Hydrogen #Decarbonization #Mobility
H2HD Refuel Information Meeting
swri.org
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I had the great honor of volunteering as a session chair and presenting my research on power system flexibility at the prestigious SPIES2024 conference held at #KhalifaUniversity. 🔋 The paper focuses on activating flexibility elements (e.g., fuel cell stacks and photovoltaic systems) in microgrids to maintain their stability when the grid-forming battery energy storage system (BESS) reaches its maximum or minimum charging limits and stops operation. Microgrids with grid-forming BESS face voltage and frequency stability challenges due to fluctuating loads and intermittent sources. These challenges are particularly evident when the BESS state of charge (SOC) reaches its minimum limit (SOCmin), leading to under-frequency issues if the BESS stops discharging or battery depletion if it continues discharging, which may result in load shedding or damage to the BESS. Conversely, over-frequency and overcharging occur when the SOC reaches its maximum limit (SOCmax) due to excess PV generation. This is often mitigated by curtailing PV output through direct load-following control, which can lead to instability during rapid irradiance changes. This paper proposes two innovative strategies to address these challenges. First, to prevent load shedding at SOCmin, we propose integrating a fuel cell (FC) equipped with a flexible efficiency tracking controller based on a polynomial fitting technique. The controller ensures the fuel cell operates at maximum efficiency (nominal power) when the BESS is within the charging boundaries and at reduced efficiency (maximum power) when the BESS reaches its minimum limit and stops discharging. Second, when the SOC reaches SOCmax, we investigate coordinated flexible operation among multiple PVPPs with varying irradiance conditions and ratings to manage excess generation without inducing stability issues. This work has been under the guidance of the distinguished Professor Dr. Mohamed Shawky El Moursi, IEEE Fellow El Moursi, whose expertise and mentorship have been invaluable. 🙏 A big thank you to #KhalifaUniversity and our esteemed professors for hosting such an exceptional conference! Events like these are an incredible opportunity to share knowledge, connect with experts, and expand our knowledge in the field of power systems. 🌍⚡ #SPIES2024 #PowerSystems #EnergyStorage #Microgrids #RenewableEnergy #KhalifaUniversity #ResearchInnovation #FuelCell #PhotovoltaicSystems
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Did you know that today, October 8, is Hydrogen and Fuel Cell Day, chosen for hydrogen's atomic weight (1.008)? ARPA-E proudly joins scientists and engineers nationwide to celebrate this resource and spotlight our latest hydrogen-focused initiative: H2SENSE. Led by Program Director Dr. Bob Ledoux, H2SENSE is pioneering large-area hydrogen sensing technologies. These advancements are vital for safely and economically expanding the hydrogen economy. Learn more about H2SENSE here: https://lnkd.in/enMdhCty. #ARPAEH2SENSE
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📢 New Publication Alert! 📢 We're thrilled to announce that ERA Chair holder Maciej Sibiński has just published a new article in *Scientific Reports*! 🌟 Titled "Impact of blocking layers based on TiO2 and ZnO prepared via direct current reactive magnetron sputtering on DSSC solar cells," this research delves into innovative methods to enhance the efficiency of dye-sensitized solar cells. Join us in celebrating this incredible achievement and explore the advancements in solar cell technology that could shape our sustainable future! 🎉👏 🔗 Read the full article here: https://t.ly/FuNDY #ScientificReports #ResearchExcellence #Innovation #SolarEnergy #SolarCells #SustainableFuture
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💧 𝗠𝗲𝗮𝘀𝘂𝗿𝗲𝗺𝗲𝗻𝘁 𝘁𝗲𝗰𝗵𝗻𝗼𝗹𝗼𝗴𝘆 𝗶𝗻 𝗶𝘁𝘀 𝗻𝗮𝘁𝘂𝗿𝗮𝗹 𝗲𝗹𝗲𝗺𝗲𝗻𝘁 Hydrogen is one of the decisive factors in the global energy transition. For the hydrogen economy of the future 🧪 safe production 🔋 reliable storage and 🚛 efficient transport will be crucial. Whether in the electrolyser, in the storage tank or in the pipeline: VEGA sensors for level and pressure bring safety and reliability to all hydrogen applications. Because, VEGA measurement technology ensures that the correct quantities and pressures are used in every step of the hydrogen process. All VEGA sensors for hydrogen applications have ✅ the most common worldwide Ex approvals and also meet the high requirements ✅ of functional safety (SIL). They therefore fulfil all expectations when it comes to reliability and precision in connection with hydrogen. ➡ Would you like to know what VEGA solutions look like? Experience our measurement technology solutions at Hydrogen Technology Expo Europe from 23 to 24 October in Hamburg. Visit VEGA at 📍 Hall A1, Stand 3C24. We look forward to seeing you! https://lnkd.in/e7snRMft #measurementtechnology #level #pressure #hydrogen #decarbonisation #hydrogentechnologyexpo #HTE2024
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Thanks to Pamela Largue at Power Engineering International for taking them time to talk with our CTO, Neel Sirosh and Vice President Business Development, Magnus Bach (EMBA) about our nano-engineered solution that enables #hydrogen storage and transportation at low pressure and ambient temperature. Hydrogen will play a key role in the energy system of the future. At H2MOF we are enabling the hydrogen economy with atomic precision by overcoming its biggest challenge: safe and efficient hydrogen storage and transportation. https://lnkd.in/eYV62n_3
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