𝟒. 𝐂𝐚𝐫𝐛𝐨𝐧 𝐂𝐚𝐩𝐭𝐮𝐫𝐞 𝐢𝐧 𝐎𝐢𝐥 𝐏𝐫𝐨𝐝𝐮𝐜𝐭𝐢𝐨𝐧: 𝐀 𝐒𝐮𝐬𝐭𝐚𝐢𝐧𝐚𝐛𝐥𝐞 𝐒𝐭𝐞𝐩 Carbon Capture and Storage (CCS) technology is an effective tool for reducing emissions. By capturing CO2 during production and storing it underground, companies can lower their carbon footprint and align with environmental goals, balancing productivity with responsibility. #كامب_للخدمات_البترولية #Camp_Petroleum_Services
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𝐂𝐚𝐫𝐛𝐨𝐧 𝐂𝐚𝐩𝐭𝐮𝐫𝐞 𝐢𝐧 𝐎𝐢𝐥 𝐏𝐫𝐨𝐝𝐮𝐜𝐭𝐢𝐨𝐧: 𝐀 𝐒𝐮𝐬𝐭𝐚𝐢𝐧𝐚𝐛𝐥𝐞 𝐒𝐭𝐞𝐩 Carbon Capture and Storage (CCS) technology is an effective tool for reducing emissions. By capturing CO2 during production and storing it underground, companies can lower their carbon footprint and align with environmental goals, balancing productivity with responsibility. #كامب_للخدمات_البترولية #Camp_Petroleum_Services
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📦 The search for viable #CarbonCapture technologies has intensified in recent years. Carbon capture and storage facilities aim to prevent CO2 produced from industrial processes and power stations from being released into the atmosphere. But can these solutions really make a significant difference? ♻️ Think someone could learn from this? Repost. #Sustainability #SustainabilityEducation #SDG4 #NetZero
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CCS (Carbon Capture and Storage) and CCUS (Carbon Capture, Utilization, and Storage) are critical technologies in the transition to net-zero emissions. Both processes aim to capture carbon dioxide (CO₂) emissions from industrial sources, power plants, and other facilities, preventing them from entering the atmosphere. Carbon Capture and Storage (CCS) involves capturing CO₂ emissions before they reach the atmosphere and storing them underground in geological formations, ensuring long-term sequestration. This technology can significantly reduce emissions from fossil fuel power plants and heavy industries, such as cement and steel production. Carbon Capture, Utilization, and Storage (CCUS) expands on CCS by not only storing captured CO₂ but also utilizing it in various applications. This includes converting CO₂ into valuable products like chemicals, fuels, or building materials, thus creating a circular carbon economy. By transforming waste CO₂ into useful resources, CCUS can contribute to economic growth while reducing emissions. Together, CCS and CCUS play a pivotal role in achieving net-zero targets, helping industries decarbonize while addressing climate change challenges. Their successful implementation can facilitate the transition to sustainable energy systems and support global climate goals. #esg #Sustainability #CSR #GreenBusiness #ClimateAction #SustainableLiving #EcoFriendly #EthicalBusiness #SocialImpact #ResponsibleInvesting #CleanEnergy #CircularEconomy #SustainableDevelopment #CarbonFootprint #SustainableBusiness #ClimateChange #RenewableEnergy #FairTrade #ImpactInvesting #ZeroWaste #BusinessDevelopment #Entrepreneurship #Startup #SmallBusiness #SalesStrategy #MarketingStrategy #Networking #B2B #GrowthStrategy #MarketExpansion #CustomerAcquisition #LeadGeneration #DigitalMarketing #BusinessGrowth #StrategicPartnerships #SalesFunnel #ScalingUp #BusinessPlanning #Innovation #MarketResearch #businessanalyst #privateequity #venturecapital
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The Eden Energy Process is not another #pyrolysis system, this isn’t a #gasifier or a #digester. This is a reverse engineering of Mother Nature, an improvement of her process, to create #clean-burning, #carbonneutral fuels, #biochar, and #organicfertilizers from waste sources that are often #toxic. This isn’t a pipe dream, this isn’t a conceptual process that hasn’t been proven out, this is a commercially proven, efficient, and viable system that we are bringing to the world in transportable, modular, and scalable equipment. Get ready, the future is here, and we’re going to power it with #waste! #CleanEnergy #RenewablePower #GreenTech #SustainableFuture #EcoFriendly #ClimateAction #SolarEnergy #WindPower #ZeroEmissions #EnergyTransition #CleanTech #ClimateSolutions #FutureOfEnergy #SolarRevolution #WindRevolution #CarbonFootprint #SustainableLiving #CleanPower #ClimateChangeAction #RenewableRevolution #EcoInnovation #GreenEconomy #NetZero #EcoWarrior #ClimateHope
The Eden Energy Process mimics mother nature. And like mother nature nothing goes to waste. Every item that is created as a result of our process has a beneficial use. A true, full, circular technology. #sustainablesolutions #regenerativeenergy #climatechange
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The Eden Energy Process mimics mother nature. And like mother nature nothing goes to waste. Every item that is created as a result of our process has a beneficial use. A true, full, circular technology. #sustainablesolutions #regenerativeenergy #climatechange
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Explore how carbon capture and storage (CCS) technology can help tackle decarbonisation in hard-to-abate sectors: https://bit.ly/3BrioNM #decarbonisation #sustainability #carbonstorage
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Energy savings can reduce carbon emissions, but decarbonization cannot rely solely on energy conservation. 節能可以減碳,但減碳不能只靠節能。 From experience, energy conservation can lead to a 5-25% (even more) reduction in carbon emissions, but it is still insufficient for complete decarbonization. Key technologies such as CO2 capture, synthesis and application, replacing fossil fuels with methane or ammonia, using low-GWP refrigerants, converting green energy into other forms of energy (power to X) for energy storage solutions, adopting low-carbon materials and designs (EU eco-design directive), and recycling are essential for achieving decarbonization. Yes, using AI is the key. 根據經驗節能可以帶來5-25%的減碳效果(或許更多),但仍究無法脫碳。 主要技術諸如CO2捕捉合成及應用、甲烷或氨替代化石燃料、替代低GWP冷媒、綠能轉化為其他能源 (power to X)解決儲能應用、替代低碳材料和設計 (EU eco design directive)、循環再利用等,才有機會‘’脫碳‘’。 是的,應用AI是關鍵。 By employing these technologies and strategies, we can not only minimize our carbon footprint but also pave the way towards sustainable development, balancing environmental needs with economic growth and social welfare. This holistic approach ensures that while we reduce carbon emissions, we also enhance resource efficiency and foster a circular economy, contributing to a greener and more sustainable future. #ai4esg #iso50001 #ai #climatechange #carbonfootprint #energy
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Exciting news in the fight against climate change! Carbon Collect has announced its second-generation MechanicalTree, a significant advancement in direct air capture technology designed to capture carbon dioxide directly from the atmosphere at a lower cost. This new iteration promises to lower the cost of CO2 capture through improvements in materials and regeneration processes, marking a critical step forward in scalable climate solutions. As we push toward a net-zero future, innovations like this are crucial in paving the way toward a more sustainable future. Microsoft Shell bp Amazon Climate Pledge Fund Stripe Delta Air Lines Gold Standard Verra Salesforce Bloomberg Green Carbon Pulse Reuters News Agency GreenBiz .com Energy Monitor Carbon Herald #CarbonCapture #ClimateTech #Sustainability #CleanEnergy #NetZero #Innovation #DirectAirCapture #EnvironmentalImpact #GreenTechnology #ClimateAction #TechForGood #SustainableFuture #CO2Reduction #ClimateChangeSolutions #DAC #Decarbonization #CorporateSustainability https://lnkd.in/eHRf8SSU
Carbon Collect targets lower cost direct air capture with latest technology
gasworld.com
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The different types of Carbon dioxide removal Technologies Carbon dioxide removal (sometimes called carbon removal or CDR) refers to a cluster of technologies, practices and approaches that remove and sequester carbon dioxide from the atmosphere. Despite the common denominator of removing carbon dioxide, these technologies can be very different. #energy #technology #sustainability #environment #netzero #future #impact #strategy
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Current CO2 capture methods are costly and inefficient, often requiring high temperatures for regeneration. ☁️ Charged Materials for CO2 Capture, developed by Dr Alexander Forse at the University of Cambridge, offers a novel approach. This technology uses hydroxide-functionalised activated carbon cloth to rapidly absorb CO2 from ambient air and regenerate it via resistive heating at temperatures below 100°C. • Efficiency: Captures CO2 at rates 7 times faster than traditional amine-based methods. • Low-Temperature Regeneration: Operates at <100°C, significantly lower than the 900°C required for metal hydroxides. • Sustainability: Provides a competitive solution for "hard-to-decarbonise industries", as Dr Jennie Flint, Senior Commercialisation Manager at Cambridge Enterprise, emphasises. To learn more on how this available technology is more accessible and effective in combating climate change: https://vist.ly/3mpfee9 #Sustainability #ClimateChange #Innovation #GreenTech #CambridgeEnterprise
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Industrial Measurement Surveying
1moCO2 is only 0,03% shares in the entire atmosphere! Someone didn't do their homework