At NCON Turbines, we believe in making high-efficiency steam turbines accessible to all industries. Our low-cost options provide the same reliability and energy-saving benefits as high-end models, but at a fraction of the cost. Make the smart investment with NCON! ☎️ Call us: +91 80231 51486 🌐 Visit us: https://lnkd.in/g3CnZfM #SteamTurbine #SteamTurbinesManufacturers #PowerTurbineManufacturers #SingleStageSteamTurbines #MultiStageSteamTurbines #LowPressureSteamTurbine #BackPressureTurbine #ElectricityGeneration #TurbineManufacturersIndia #SteamTurbineSuppliersIndia #TurbineManufacturingCompanies #IndustrialSteamTurbine #SmallSteamTurbines #Nconturbines #Bangalore
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Here is a question for all you Net Zero Heroes. If all electricity is now be to settled every half an hour with MHHS, is now the time that carbon is settled on the same frequency? Surely the annual balancing of REGOs cannot not truly reflect you being supplied by 100% renewable energy? To get your Clean Energy Score and find out how much your renewable energy is truly matched to your consumption, just ask us here ENTRNCE International #247cfe #HalfHourlyMatching #CleanEnergyScore
Energy regulator Ofgem is introducing a big change to the way we are billed for electricity. Suppliers will be obliged to switch all their customers – domestic and business – to half-hourly meters by 2026. But can we take the same principles and apply them to REGOs? Can we use the existing technology to make that connection at a half-hourly level of granularity? We think: Yes. Dive into this topic in our latest article #REGO #MHHS #Ofgem #ElectricityConsumption #SmartMeters #TheMatcher
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Demand for #RareEarth elements is escalating, expected to grow 400-600% over the next few decades (The White House), primarily fuelled by the role of RE permanent magnets in green energy transition and advancements in high-tech industries, notably in EVs and wind turbines The market is forecasted to shift from a surplus to a supply deficit for key elements like neodymium-praseodymium oxide in 2024, highlighting the tight supply-demand dynamics (Reuters)
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Maximize your backup generators' potential. Avoid energy volatility, generate revenue AND support the AB grid. Whether existing assets or new investments, they’re your key to turning market flux into financial advantage. Connect with us to discuss how. #EnergyResilience #BackupGenerators #RevenueStream #ABgrid #OperatingReserve
"THE" Alberta Demand Response Connector | Helping C & I businesses hit their goals via helping our Grid ⚡| Earn Revenue 💰/ Gain Energy Visibility 👀 + Lower your Carbon Footprint🍃 .... I'll show you how!
Yesterday's grid supply/demand issue is a fantastic example of the volatility that can arise. This problem is going to be around for a while, and for large electricity end-users, such as Oil and Gas, Manufacturing, and Pulp and Paper, there's a great way to prosper from this volatility. By being in the Operating Reserves market with Voltus, you can bring in a NEW revenue source💰and look like a winner🥇for bringing this to your team. Ping me to qualify ✅ ... Let's Go! #electricity #volatility #operatingreserves #revenuesource #gridfacilitation #demandresponse #voltus #operations #oilandgas
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Yesterday's grid supply/demand issue is a fantastic example of the volatility that can arise. This problem is going to be around for a while, and for large electricity end-users, such as Oil and Gas, Manufacturing, and Pulp and Paper, there's a great way to prosper from this volatility. By being in the Operating Reserves market with Voltus, you can bring in a NEW revenue source💰and look like a winner🥇for bringing this to your team. Ping me to qualify ✅ ... Let's Go! #electricity #volatility #operatingreserves #revenuesource #gridfacilitation #demandresponse #voltus #operations #oilandgas
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Addressing #Transformer and Reactor Failures: Insights from #CEAReport We are RUGGED MONITORING! Transformers and reactors are the backbone of power utilities, ensuring seamless energy distribution. However, occasional failures pose significant challenges. The recent report from the Central Electricity Authority (CEA) sheds light on critical aspects in this domain. 📑 The CEA report underscores crucial findings regarding transformer and reactor failures between April 2019 and December 2021. Twenty-four (24) transformer failure cases from April 2019 to December 2021 have been reported by eight (8) utilities to CEA. It is alarming that more than 50% of the reported failed transformers were in operation/service for #lessthan10years. It is further highlighted that a large number of transformer failure cases remain unreported as many power utilities in the country have not reported failures, including State Transmission Utilities, Private Utilities/Licensees, Central Transmission Utilities, and Public Sector Power Utilities. In the face of these challenges, embracing innovative solutions is imperative. #Onlineconditionmonitoring emerges as a game-changer in averting catastrophic failures and optimizing asset performance. By leveraging #realtime data and analytics, utilities can proactively detect anomalies, #predict potential failures, and implement timely interventions. Join the conversation and share your insights! #TransformerFailures #ReactorFailures #OnlineMonitoring #CEAReport #PowerUtilities #Innovation
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🔍 Exploring Hydrogen Production Technologies 🔍 Ever wondered how hydrogen, a crucial element in various industries, is produced? Let's dive into three key technologies: ATR, SMR, and GHR. 🛠 Autothermal Reforming (ATR): Combines partial oxidation and steam reforming in one reactor, ideal for large-scale production without external heat. Great for industries needing high volumes of hydrogen. ⚙️ Steam Methane Reforming (SMR): Widely used, it uses steam to convert methane, but requires significant external heat and produces CO₂. Perfect for smaller to medium-scale applications like refineries and fuel cells. 🔥 Gas Heated Reforming (GHR): Maximizes thermal efficiency by using hot gases from external sources, suitable for combined heat and power plants. Complex integration but efficient when coupled with other processes. Each method offers unique advantages and applications, shaping the future of hydrogen production. Understanding these technologies is key to navigating the evolving energy landscape. #HydrogenProduction #RenewableEnergy #IndustrialTechnology #Sustainability 🌱💡
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🔍 FutureGrid Closure Report: National Gas 🔹 FutureGrid Phase 1 shows safe hydrogen transport using repurposed gas assets. No major blockers found. Some modifications needed. Positive results overall. 🚀 Testing included natural gas, 2%, 5%, 20%, and 100% hydrogen. Assets like valves, regulators, and meters performed well. Some flow devices incompatible with 100% hydrogen. 🔧 Hydrogen Deblending and Compression projects launched in Phase 2. Aim to build robust evidence for hydrogen use in transport and broader applications. 🌍 FutureGrid critical for decarbonizing UK's National Transmission System (NTS). Supports net zero goals by 2050 with hydrogen as a key component. 🛡️ Safety and reliability maintained with hydrogen blends. Risk assessments and safety protocols updated for hydrogen integration. 🌐 For more details, check the full report: https://lnkd.in/dx5avNfX #EnergyTransition #HydrogenEconomy #Decarbonization #NetZero #SustainableFuture
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Clean Power Hydrogen (CPH2) PLC (AIM:CPH2) shares soared more than 45% in Thursday’s deals after announcing the successful Factory Acceptance Test (FAT) for its MFE110 electrolyser – a milestone that moves it closer to a commercial rollout. "The successful FAT of our MFE110 electrolyser marks the most significant milestone in CPH2's history to date,” chief executive Jon Duffy said in a statement. The company noted that the test was witnessed by Lagan MEICA, the principal contractor, and Arup, representatives of Northern Ireland Water. It confirmed the system’s operational performance, with the system successfully producing hydrogen and oxygen at the pre-determined commercial specifications, CPH2 highlighted that the test validates the firm’s membrane-free technology as a competitive alternative to existing electrolyser systems. Next steps will see the deployment of the MFE110 to Northern Ireland Water for installation and... More at #Proactive #ProactiveInvestors http://ow.ly/NUjP105JWF4
Clean Power Hydrogen soars as its new electrolyser tech takes big step toward commercial roll-out
proactiveinvestors.co.uk
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𝐇𝐲𝐝𝐫𝐨𝐠𝐞𝐧 𝐄𝐧𝐞𝐫𝐠𝐲 𝐒𝐭𝐨𝐫𝐚𝐠𝐞 𝐚𝐧𝐝 𝐇𝐨𝐰 𝐝𝐨𝐞𝐬 𝐢𝐭 𝐖𝐨𝐫𝐤𝐬? Hydrogen can be stored either as a gas or as a liquid. Hydrogen gas storage typically requires the use of high-pressure tanks (350-700 bar or 5000-10,000 psi), while liquid hydrogen storage requires cryogenic temperatures to prevent it from boiling back into a gas (which occurs at −252.8°C). Hydrogen can also be stored on the surface (adsorption) or within solid materials (absorption). 𝐇𝐨𝐰 𝐃𝐨𝐞𝐬 𝐢𝐭 𝐖𝐨𝐫𝐤 / 𝐢𝐬 𝐢𝐭 𝐒𝐭𝐨𝐫𝐞𝐝? Hydrogen can be stored in three different ways: 1)As a gas under high pressures 2)In liquid form under cryogenic temperatures 3)On the surface of or within solid and liquid materials 𝐖𝐡𝐲 𝐇𝐲𝐝𝐫𝐨𝐠𝐞𝐧 𝐒𝐭𝐨𝐫𝐚𝐠𝐞 𝐢𝐬 𝐈𝐦𝐩𝐨𝐫𝐭𝐚𝐧𝐭 Hydrogen storage is important if it is to form part of the future renewable energy mix. With international efforts to reduce emissions and the use of carbon-based fuels, hydrogen fuel cells could help create a greener solution to our power generation needs, including powering anything from small electronic devices to vehicles, aircraft, and even whole buildings. #hydrogen #hydrogeneconomy #hydrogenproduction #hydrogenfuel #hydrogentechnology #P2X #renewableenergy #hybridsystem #solarpower #windpower #innovation #transitionacceleration #electrolysis #electrolyzers #decarbonization #morocco #iea #irena
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🔆 Innovative thermochemical reactor for green hydrogen. 🔑 #GreenHydrogen #SolarEnergy #Innovation #Sustainability #Technology. 🌞 A new solar-powered thermochemical reactor has been proposed for the production of green hydrogen using helical flow channels. This reactor seeks to address the problem of uneven heating caused by solar collectors, which significantly affects hydrogen production efficiency. The energy flux density is highest in the center and decreases radially, resulting in uneven heat distribution. 💡 To address this, the reactor flow channel is designed in a helical configuration, allowing the reaction gas to enter from the edge and flow inward, exiting at the central position. Simulation studies have shown that this structure facilitates continuous temperature rise of the reaction gas, achieving a methane conversion rate of 94.76 %, a hydrogen yield of 1.54 mol/mol and an overall energy conversion efficiency of 32.52 %. What do you think about this innovation, and could this design be the key to improving green hydrogen production? Leave us your comments! More info: https://bit.ly/3YFR5bK .
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