We are pleased to unveil our cutting-edge mobile laboratory, now available for SALE and RENTAL, designed for both short and long-term sampling of various pollutants. Our laboratory-van meets the highest standards, including: EN 1948-1:2006 for short-term PCDDs/PCDFs and PCBs sampling; CEN/TS 1948-5 for long-term PCDD/PCDFs and PCBs sampling; EN 13284-1:2017 for low-range dust mass concentration determination; EN 14385:2004(MAIN) for total emissions of metals like As, Cd, Cr, and more from stationary sources; ISO 13833:2013 for radiocarbon sampling to distinguish between biomass and fossil-derived CO2; PFAS. ... and much more! Our advanced technology ensures compliance with existing methods, enabling extended sampling periods of up to one month for in-depth analysis of atmospheric emissions. #MobileLaboratory #AirQualitySampling #PollutantMonitoring #EmissionsAnalysis #ExtendedSampling #ComplianceMonitoring #PCDDs #PCDFs #PCBs #Dust #Metals #PFAS #RadiocarbonAnalysis #AtmosphericEmissions #TCRTecora
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🤔 Are #PFAS too useful to ban entirely? And should we strike a balance by acknowledging that these chemicals play “a critical role” in clean tech? A new report by the World Economic Forum has highlighted that pollution is one of risk experts’ top concerns today and in the next decade. However, PFAS are important in the development of clean tech needed for the net-zero transition, such as lithium-ion batteries, wind turbines and heat pumps. Find out more: https://okt.to/6AJLld ****** 💡 LGC Standards supplies more than 300 PFAS #ReferenceMaterials & #ResearchChemicals: https://okt.to/1BURDM and a #ProficiencyTesting sample to support PFOS and PFOA analysis in water: https://okt.to/7k6a5P
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🤔 Are #PFAS too useful to ban entirely? And should we strike a balance by acknowledging that these chemicals play “a critical role” in clean tech? A new report by the World Economic Forum has highlighted that pollution is one of risk experts’ top concerns today and in the next decade. However, PFAS are important in the development of clean tech needed for the net-zero transition, such as lithium-ion batteries, wind turbines and heat pumps. Find out more: https://okt.to/C2Ypwg ****** 💡 LGC Standards supplies more than 300 PFAS #ReferenceMaterials & #ResearchChemicals: https://okt.to/W47DHT and a #ProficiencyTesting sample to support PFOS and PFOA analysis in water: https://okt.to/XR0KYu
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🤔 Are #PFAS too useful to ban entirely? And should we strike a balance by acknowledging that these chemicals play “a critical role” in clean tech? A new report by the World Economic Forum has highlighted that pollution is one of risk experts’ top concerns today and in the next decade. However, PFAS are important in the development of clean tech needed for the net-zero transition, such as lithium-ion batteries, wind turbines and heat pumps. Find out more: https://okt.to/NVXtWn ****** 💡 LGC Standards supplies more than 300 PFAS #ReferenceMaterials & #ResearchChemicals: https://okt.to/gol5TJ and a #ProficiencyTesting sample to support PFOS and PFOA analysis in water: https://okt.to/3hExXQ
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🤔 Are #PFAS too useful to ban entirely? And should we strike a balance by acknowledging that these chemicals play “a critical role” in clean tech? A new report by the World Economic Forum has highlighted that pollution is one of risk experts’ top concerns today and in the next decade. However, PFAS are important in the development of clean tech needed for the net-zero transition, such as lithium-ion batteries, wind turbines and heat pumps. Find out more: https://okt.to/raWGlv ****** 💡 LGC Standards supplies more than 300 PFAS #ReferenceMaterials & #ResearchChemicals: https://okt.to/rWc0AP and a #ProficiencyTesting sample to support PFOS and PFOA analysis in water: https://okt.to/biyZEM
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PFAS treatment technologies are typically divided into three broad groupings: concentration, separation, and destruction technologies. The EPA has identified three approved approaches to #PFAS reduction. Concentration technologies, such as #reverseosmosis (RO), #ionexchange (IX), and #granularactivatedcarbon (GAC). #drinkingwater https://lnkd.in/ekP2zsVr
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New article on the effects of humidification in cracked ammonia swirling flames in terms of exhaust and chemiluminescence emissions. Extensive chemical analysis was undertaken to identify the main reactions under these conditions. This work was led by our PhD student, Jordan Davies with collaboration from Kyoto University and Sapienza Università di Roma. This work was undertaken at Cardiff University School of Engineering's Thermofluids Lab (W/0.17) with invaluable technical support from Mr. Malcolm Seaborn. This work was supported by the Amburn project with funding from the Department for Energy Security and Net Zero (DESNZ) (Grant Number: IFS2–06-FLO), the EPSRC Centre for Doctoral Training in Resilient Decarbonised Fuel Energy Systems (Grant Number: EP/S022996/1) and Reaction Engines Ltd. The article has received open-access and can be accessed from here: https://lnkd.in/eCC7BcrV Jordan Davies, Daisuke Sato, Luca Mazzotta, Daniel Pugh, Agustin Valera Medina #ammonia #nox #hydrogen #greenfuels #humidifications #combustion #globalwarming
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Cardiff University / Prifysgol Caerdydd has helped published a new report on the effects of humidification in cracked ammonia swirling flames, focusing on exhaust and chemiluminescence emissions. This work was supported by the Amburn project and the Department for Energy Security and Net Zero. Amburn partners include: Cardiff University / Prifysgol Caerdydd, Flogas Britain, ERM, Department for Energy Security and Net Zero #Ammonia, #NOx, #Hydrogen, #GreenFuels, #Combustion, #GlobalWarming Visit the original LinkedIn post below for more details:
New article on the effects of humidification in cracked ammonia swirling flames in terms of exhaust and chemiluminescence emissions. Extensive chemical analysis was undertaken to identify the main reactions under these conditions. This work was led by our PhD student, Jordan Davies with collaboration from Kyoto University and Sapienza Università di Roma. This work was undertaken at Cardiff University School of Engineering's Thermofluids Lab (W/0.17) with invaluable technical support from Mr. Malcolm Seaborn. This work was supported by the Amburn project with funding from the Department for Energy Security and Net Zero (DESNZ) (Grant Number: IFS2–06-FLO), the EPSRC Centre for Doctoral Training in Resilient Decarbonised Fuel Energy Systems (Grant Number: EP/S022996/1) and Reaction Engines Ltd. The article has received open-access and can be accessed from here: https://lnkd.in/eCC7BcrV Jordan Davies, Daisuke Sato, Luca Mazzotta, Daniel Pugh, Agustin Valera Medina #ammonia #nox #hydrogen #greenfuels #humidifications #combustion #globalwarming
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A world made from air instead of oil, with the help of a shiny black leaf: https://lnkd.in/egJTNFhR #electrochemistry #CO2electrolysis #electrolyzers #electrochemicals #echemicals #efuels #industrialphotosynthesis #CO2electroreduction #chemistry #cleanchemicals #sustainablefuels #SAF #sustainableaviationfuel #powertoliquid #powertox #CDR #carbonremoval #carbontransformation #energytransition #sustainablematerials #sustainablechemicals #CO2Made #industrialtransformation #carbonremoval #CDR #emissions #fitfor55 #chemicalproduction
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⭐️ It’s amazing to see these industries grow and change! ⭐️ Ammonia is starting to look like “The Little Molecule That Could” in helping reduce carbon footprint. But to do so, CCUS will play an important role. Learn more about how ammonia can be used for the power generation and maritime shipping industries. https://hubs.li/Q02HDkN60 #Power #CarbonCapture #CCUS #OilandGads #Chemicals
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Researchers developed BC-SIPN #hydrogel particles to enhance #thallium removal from #wastewater. These particles use electro-induction for targeted oxidation, achieving over 98% removal efficiency and overcoming concentration-dependent limitations. Their stability and selectivity offer a sustainable solution for trace #metalrecovery. https://lnkd.in/gchQbCTH
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