#OpenAccess #Article 📑Title: Highly Efficient Conversion of Methane to Methanol on Fe-Cu/ZSM-5 Under Mild Conditions: Effective Utilization of Free Radicals by Favorable Valence Ratios Authors: Huajie Zhang et al. This research provides a detailed understanding of how to design bimetallic catalysts for selective methane oxidation. The use of abundant base metals (Fe and Cu) and the relatively mild conditions present a more energy-efficient and potentially greener pathway for converting natural gas into a valuable liquid fuel or chemical feedstock. 📌https://lnkd.in/e3EFG4kr #MethaneConversion #Methanol #Catalysis #Zeolite #ZSM5 #H2O2 #FreeRadicals #GreenChemistry #EnergyTransition
Methane to Methanol Conversion on Fe-Cu/ZSM-5 Catalysts
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A new publication takes a different route to direct seawater electrolysis, a pH-asymmetric bipolar membrane (BPM) design: · Acidified seawater at the cathode → no Mg²⁺/Ca²⁺ scaling · BPM rejects Cl⁻ → no chlorine evolution at the anode · Alkaline anode → no PGM needed. NiFe on Ni foam, and it beat the Ir benchmark here · 500 h at 100 mA cm⁻², voltage rise 1.76 mV/h · Isotope labeling proves the cell consumes seawater, not freshwater The elegant move is to stop fighting seawater's chemistry. Give each electrode the pH it actually wants. The catch is scale. 1 cm² cell, 40 °C ceiling, current density is below industrial. And the catholyte concentrates as seawater is consumed → brine management is the unsolved half. Degradation was electrode-driven here, not membrane-driven. Does that hold at industrial current density, or does the membrane become limiting again? https://lnkd.in/eM8tPvQF #BipolarMembrane #GreenHydrogen #Electrochemistry #SeawaterElectrolysis #MembraneTechnology #Electrolysis
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Power plants rely on careful water chemistry management to keep operations running smoothly, and phosphate monitoring is one area that can make a big difference. In this short video, you'll see why monitoring phosphate matters and learn the key measurement points that can help reduce maintenance while improving reliability and performance. 🎥 Watch the video 📖 Learn more about optimizing power plant water analysis https://lnkd.in/dZvgxSxH #PowerGeneration #WaterChemistry #IndustrialAutomation #MeasurementAnalytics #ABB #Phosphate
Phosphate monitoring in a power plant: key areas to monitor to minimize maintenance and maximize operational performance
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Power plants rely on careful water chemistry management to keep operations running smoothly, and phosphate monitoring is one area that can make a big difference. In this short video, you'll see why monitoring phosphate matters and learn the key measurement points that can help reduce maintenance while improving reliability and performance. 🎥 Watch the video 📖 Learn more about optimizing power plant water analysis https://lnkd.in/eB2ZWeBh #PowerGeneration #WaterChemistry #IndustrialAutomation #MeasurementAnalytics #ABB #Phosphate
Phosphate monitoring in a power plant: key areas to monitor to minimize maintenance and maximize operational performance
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Power plants rely on careful water chemistry management to keep operations running smoothly, and phosphate monitoring is one area that can make a big difference. In this short video, you'll see why monitoring phosphate matters and learn the key measurement points that can help reduce maintenance while improving reliability and performance. 🎥 Watch the video 📖 Learn more about optimizing power plant water analysis https://lnkd.in/gf3zbead #PowerGeneration #WaterChemistry #IndustrialAutomation #MeasurementAnalytics #ABB #Phosphate
Phosphate monitoring in a power plant: key areas to monitor to minimize maintenance and maximize operational performance
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Power plants rely on careful water chemistry management to keep operations running smoothly, and phosphate monitoring is one area that can make a big difference. In this short video, you'll see why monitoring phosphate matters and learn the key measurement points that can help reduce maintenance while improving reliability and performance. 🎥 Watch the video 📖 Learn more about optimizing power plant water analysis https://lnkd.in/e8ZfGpEF #PowerGeneration #WaterChemistry #IndustrialAutomation #MeasurementAnalytics #ABB #Phosphate
Phosphate monitoring in a power plant: key areas to monitor to minimize maintenance and maximize operational performance
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Power plants rely on careful water chemistry management to keep operations running smoothly, and phosphate monitoring is one area that can make a big difference. In this short video, you'll see why monitoring phosphate matters and learn the key measurement points that can help reduce maintenance while improving reliability and performance. 🎥 Watch the video 📖 Learn more about optimizing power plant water analysis https://lnkd.in/eatsqpS8 #PowerGeneration #WaterChemistry #IndustrialAutomation #MeasurementAnalytics #ABB #Phosphate
Phosphate monitoring in a power plant: key areas to monitor to minimize maintenance and maximize operational performance
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Power plants rely on careful water chemistry management to keep operations running smoothly, and phosphate monitoring is one area that can make a big difference. In this short video, you'll see why monitoring phosphate matters and learn the key measurement points that can help reduce maintenance while improving reliability and performance. 🎥 Watch the video 📖 Learn more about optimizing power plant water analysis https://lnkd.in/eatsqpS8 #PowerGeneration #WaterChemistry #IndustrialAutomation #MeasurementAnalytics #ABB #Phosphate
Phosphate monitoring in a power plant: key areas to monitor to minimize maintenance and maximize operational performance
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Power plants rely on careful water chemistry management to keep operations running smoothly, and phosphate monitoring is one area that can make a big difference. In this short video, you'll see why monitoring phosphate matters and learn the key measurement points that can help reduce maintenance while improving reliability and performance. 🎥 Watch the video 📖 Learn more about optimizing power plant water analysis https://lnkd.in/dTZqVrwX #PowerGeneration #WaterChemistry #IndustrialAutomation #MeasurementAnalytics #ABB #Phosphate
Phosphate monitoring in a power plant: key areas to monitor to minimize maintenance and maximize operational performance
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Using waste salt for sodium ion batteries (SIBs), from the development of renewable sub-surface batteries such as CAES. Precursor Supply: The primary raw chemical precursors for cathodes are quickly developing Prussian Blue and iron salts, largely are inexpensive, non-toxic, and widely produced for dye and industrial applications already. With iron supply chains already established and growing battery metals projects (including partnering projects such as copper cobalt Conduit Metals, and LFP materials, iron and rare earths at Bathurst Rare Metals under the Solterra umbrella) in North America, establishing the greater supply of SIBs and to utilize spent lithium batteries for recycling into SIBs provides a more robust solution to energy security. SAILIS is introducing a secure earth battery while potentially supplying a need for more industrial sized batteries with a safer and sustainable solution and exploring the greater supply chain, partnerships and opportunities within this space. #salt #energy #CAES #SIB #battery #energy #energystorage #criticalminerals #metals #copper #cobalt #rareearths #phosphate #lithium #iron
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Power plants rely on careful water chemistry management to keep operations running smoothly, and phosphate monitoring is one area that can make a big difference. In this short video, you'll see why monitoring phosphate matters and learn the key measurement points that can help reduce maintenance while improving reliability and performance. 🎥 Watch the video 📖 Learn more about optimizing power plant water analysis https://lnkd.in/ecnitzMU #PowerGeneration #WaterChemistry #IndustrialAutomation #MeasurementAnalytics #ABB #Phosphate
Phosphate monitoring in a power plant: key areas to monitor to minimize maintenance and maximize operational performance
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