#infrastructure-solutions
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Comprehensive Infrastructure Solutions for Seamless Connectivity
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Our assessment found that for every USD 1 invested in NBI, between USD 1.52 and 1.46 could be returned in benefits for the environment, society, and the economy. This includes avoided crop losses through drought mitigation, increased crop production, new revenue streams from agroforestry, job creation and carbon sequestration.
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Nah, one more lane will fix it.
#infrastructure#green energy#green#green infrastructure#climate activism#climate solutions#climate science#climate action#climate justice#climate crisis#climate change#climate catastrophe#trains#traffic#leftist memes#left is best#leftist#leftism#left wing#green party#environment#enviromentalism#environmetalists#meme#funny memes#funny pics#funny post#funny image#funny shit#ha ha funny
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Clinging to good news like it's gonna run away.
NYC out there living the dream!
#Though I do feel the need to say that NYC had the infrastructure that encouraged this outcome!#Ranked voting was actually brought up (briefly) in the 2024 election and Kamala was behind it#Which likely would have actually made third party candidates a viable solution in future elections and been a big blow to the 2 party syste#that we've been cursed with#Unrelated but the election interference news is slowly gaining traction#Which means we might be stupid but not *this stupid* and wouldn't that be lovely news?
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I hate when people more knowledgeable about history than me are somehow less politically informed
#Errr or idk how to put it like I wouldn't call myself all that politically informed either#But like idk I was talking to this girl who was like we need more traffic cops. It is bad there r less cops on the road coz of#Increased awareness of black people being killed in routine traffic stops + other shit that changed during onset of covid#Because now ppl r driving less safely. But we can't just bring back the cops. So we should abolish the police via#Creating more departments for specific things so traffic enforcement should exist independently of what we now consider policing#N she was saying other stuff abt the creation of these departments and I was like. I really don't care for reform unless it#Exists as intermediary to dissolution of entire systems and overhauling of infrastructure.#Like I'm not excited to endorse what you're talking about even on the level of Solving Traffic because the solution should be radically#transforming the infrastructure to be less car-centric and develop better public transportation#N her response was 'well we should do what we can now with what we got' or something n idr#how I responded to that but idk if the thing that makes you uncomfortable and inspired towards change is#more dangerous traffic as opposed to like. The brutalization and fear of that comes w cops.#Then idk I don't really care about your priorities or addressing your concerns. I just cannot bring myself to care.#Because 1. You obviously don't have my concerns as a racialized person who relies on public transportations in mind as urgent#(Which is to me like I don't trust once you get your reforms you'd not just#shrug your shoulders and call it unfortunate whatever issues remain that other people suffer)#2. It is plainly ignorant to think any enforcement of Law Order Safety etc in a white supremist settler colony wouldn't reproduce violence#She was like they should just have tasers not guns and it's like. K people have been killed with tasers.#People have been killed with batons even. Like. Completely wrong focus ig because You're scared of guns?? Idk.#But anyway before that conversation I kinda felt like an idiot compared to her coz when we'd go to the library I'd only want to read comics#& she was only reading non-fiction books like history and politics etc#So it's like her opinions are technically more Well-Informed than mine n it's kinda hard for me to argue coz I just have like. Principles.#~
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Why taking apart buildings piece by piece is a climate solution
There's a growing movement, in the construction industry, that wants to reuse building materials & keep such 'waste' out of landfills.
Deconstruction has already created a small circular economy that actually shrinks an area's carbon footprint!
Sadly, many communities just don't have the necessary infrastructure - yet...
These places need sorting facilities & resale stores just to keep up with all of the new demands for recycled materials.
Specialist contractors handle both, the deconstruction & the recycling operations.
Basically, disassembling buildings for parts.
Wiring, siding, nails, lumber, joists, pipe fittings & more - everything's sorted & stored in local warehouses.
The reason behind all this is climate change.
Construction & destruction of buildings accounts for 40% of greenhouse gasses & half of that comes from throwing away these materials!
For a long time, experts focused on building operations - the climate impact of heating, cooling & electrifying spaces.
But, in the last few years, they've come to understand the processes involved.
The creation & destruction of buildings create significant amounts of pollution - actually enlarging the carbon footprint involved.
Reusing already manufactured materials helps reduce embodied carbon stores.
Contractors don't have to waste materials.
But, the higher cost of deconstruction is what makes the concept a hard sell.
Homeowners & developers need financial incentives - as the process costs 35 to 40% more than just throwing the material away!!
Yet, in Boulder, Colorado alone - some 140+ million pounds of building materials has been recycled - since 2020!
There, all buildings must be deconstructed & 75% of the material must be reused.
But, Boulder has actually overshot that goal!
For the last 5 years, a full 83% of building materials have been kept out of landfills!!
Next up?
A plan for disassembling a building - before it's even built!
That way, everyone involved knows how to take the building apart, what recyclable materials to use & what is truly waste...
End.
#NPR#climate solution#4 living in a hotter planet#Boulder#Colorado#Portland#Oregon#Aurora#Palo Alto#California#Fort Myers#Florida#unbuild &#reuse building materials#infrastructure 2 sort & sell#specialist contractors jobs#40% greenhouse gasses#problem: higher costs =s#hard sell#solution:#economic incentives 4 all#Boulder overshot its plan!!#we should follow its lead...
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Road Construction Equipment Company
- deshanengineer

Welcome to Deshan Engineer
Your Trusted Partner for Asphalt Plant & Paver Spare Parts
At Deshan Engineer, we specialize in providing high-quality Hot Mix Plant and Asphalt Plant spare parts, ensuring efficient and uninterrupted operations for road construction projects. With a deep understanding of the industry’s demands, we offer premium-grade spare parts for Vogele Pavers, asphalt plants, and road construction machinery, helping you maintain peak performance and durability.
#Hot mix plant#Asphalt plant spare parts#Vogele paver spare parts#Road construction equipment#Highway infrastructure solutions#Rural road development#Bitumen road construction#Road resurfacing services
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Find out what's new in civil engineering solutions, from 3D printing and smart materials to BIM and robotics. These technologies are revolutionizing infrastructure, making it more efficient, sustainable, and affordable. Take a look!
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Smart Ecosystems, Smarter Apps: MeshTek’s IoT Innovation Engine

Experience the future of connected infrastructure with MeshTek’s cutting-edge IoT app development solutions. From smart cities to automated industries, our platform turns real-time data into actionable intelligence. Designed to scale, optimized for control, and built for performance—MeshTek ( IOT APP DEVELOPMENT COMPANY )empowers seamless connectivity across environments through robust, user-centric mobile applications.
#MeshTek#IoT App Development Company#Smart Infrastructure#IoT Solutions#Bluetooth Mesh#Smart City Technology#Industrial IoT#IoT App Development#Connected Devices#Mesh Networking#Smart Automation#Mobile IoT Apps#IoT Innovation#Scalable IoT#Edge Computing#Smart Lighting#MeshTek Technology#IoT Connectivity#AI Enabled IoT#Smart Industries
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Optimizing Public Facility Maintenance with McGuire Plumbing Supplies | Plumbing Facility Maintenance

Maintaining efficient plumbing systems in public facilities is essential for health, safety, and operational continuity. From schools to municipal buildings, these spaces endure high daily usage, placing a constant demand on plumbing infrastructure. Preventive maintenance, paired with quality components, is the key to minimizing disruptions and costly repairs.
One of the most effective ways to ensure long-term reliability is by using trusted materials—and that’s where McGuire plumbing supplies make a difference. Known for their durability and compliance with industry standards, McGuire products, such as traps, stops, and ADA-compliant solutions, are designed specifically for heavy-use environments. Their ICV Defender™ integral check valve and ProWrap™ ADA covers exemplify performance and safety.
By incorporating McGuire plumbing supplies into routine maintenance plans, facility managers can significantly reduce the risk of system failures and maintain regulatory compliance. These products not only extend the life of plumbing systems but also enhance user safety and comfort in public spaces.
Ready to upgrade your facility’s plumbing system? Choose McGuire plumbing supplies for reliability, performance, and peace of mind. Visit PlumbingFacilityMaintenance.com to explore solutions tailored to your public facility needs.
🔗 Explore: mcguiremfg.com/products 📧 [email protected] | 📞 (203) 699-1801
To know more visit us :- https://plumbingfacilitymaintenance.com/
#McGuire Plumbing Supplies#Plumbing Maintenance#Public Facility Maintenance#Commercial Plumbing#Facility Management#Preventive Maintenance#ADA Compliance#Plumbing Solutions#Infrastructure Support#Sustainable Facilities#Plumbing Inspection#Backflow Prevention#Safe Water Systems#Building Operations#Proactive Maintenance
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Comprehensive Infrastructure Solutions for Seamless Connectivity
Vivency Technology LLC offers cutting-edge infrastructure solutions designed to enhance connectivity and performance across various sectors. From structured cabling and fiber optics to networking and IT systems, we provide end-to-end solutions that ensure reliability and scalability. Our expert team designs, installs, and maintains state-of-the-art infrastructure, tailored to meet your organization's specific needs. Trust Vivency to deliver robust and future-proof infrastructure solutions that drive operational efficiency and growth.
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The Hydrogen Tanks Market: A Game-Changer for Green Energy and Sustainability

Introduction: The Surge in Hydrogen Tank Adoption
The global hydrogen tanks market is experiencing transformative growth, driven by the accelerating demand for hydrogen as a clean, versatile energy source across a variety of industries. Valued at approximately USD 1.48 billion in 2024, this market is expected to grow at an impressive compound annual growth rate (CAGR) of 9.6% from 2025 to 2032. This growth is underpinned by the global shift towards decarbonization, the increasing adoption of hydrogen fuel cell technology, and robust government initiatives aimed at fostering hydrogen infrastructure and fueling sustainable energy transitions.
As hydrogen emerges as a key pillar in reducing carbon emissions and combating climate change, the development of advanced hydrogen storage solutions is becoming increasingly critical. Innovations in materials, storage techniques, and tank designs are enhancing safety, efficiency, and storage capacity. These advancements are positioning hydrogen as a viable alternative to traditional fuels, opening up substantial growth prospects for the hydrogen tanks market.
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Market Dynamics: Drivers, Challenges, and Opportunities
Key Drivers of Hydrogen Tanks Market Growth
Decarbonization Efforts and Clean Energy Push The global demand for clean energy is pushing industries to adopt sustainable solutions. Hydrogen, particularly in its green form produced through renewable energy sources, is gaining traction as a clean alternative for transportation, industrial applications, and power generation. The hydrogen tanks market, integral to this energy transition, benefits directly from these efforts.
Technological Advancements in Storage Solutions Hydrogen storage technologies have undergone significant improvements in recent years. High-pressure composite tanks, cryogenic storage methods, and advancements in metal hydride storage are enhancing the safety, durability, and efficiency of hydrogen storage. These innovations have made hydrogen more practical and scalable for widespread adoption, especially in applications requiring large-scale hydrogen storage like fuel cell vehicles (FCEVs), industrial hydrogen storage, and hydrogen refueling stations.
Rising Investment in Hydrogen Infrastructure With governments and private sector players increasingly investing in hydrogen infrastructure, including production, storage, and distribution networks, the market for hydrogen tanks is witnessing robust growth. These investments are complemented by international policy support, such as subsidies and incentives, designed to accelerate the transition to clean energy solutions.
Strategic Industry Collaborations Cross-sector collaborations, such as those between automotive manufacturers, energy companies, and research institutions, are fostering innovations in hydrogen storage. These collaborations not only drive technological advancements but also help reduce the cost of hydrogen storage solutions, making them more accessible to a broader range of industries.
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Hydrogen Tanks Market Challenges
High Production Costs Despite the progress in storage technologies, the production of hydrogen tanks, particularly high-pressure composite tanks, remains costly. The materials required for these tanks, such as carbon fiber and advanced composites, are expensive, which can hinder the affordability of hydrogen storage solutions.
Regulatory and Infrastructure Challenges The adoption of hydrogen technologies is often delayed by complex regulatory landscapes, varying standards across regions, and the lack of robust refueling infrastructure. Addressing these issues requires extensive coordination between governments, industries, and regulatory bodies to create harmonized standards and promote infrastructure development.
Supply Chain Constraints The global supply chain for raw materials used in hydrogen tanks—particularly carbon fiber and advanced composites—faces logistical challenges. Ensuring the availability of these materials in the required quantities and at the right time is a critical concern for manufacturers.
Key Hydrogen Tanks Market Opportunities
Expansion of Hydrogen-Powered Transportation The growing adoption of hydrogen-powered vehicles, including fuel cell vehicles (FCEVs), buses, trucks, and trains, is expected to drive significant demand for hydrogen storage tanks. As more countries adopt stricter emissions regulations, the shift to hydrogen-powered transportation will accelerate, creating a sustainable market for high-capacity hydrogen tanks.
Aerospace and Industrial Applications Hydrogen is emerging as a potential energy source for the aerospace industry, especially for hydrogen-powered aircraft. Similarly, hydrogen tanks are being explored for industrial applications, including energy storage, process optimization, and manufacturing. As these industries evolve, the demand for hydrogen storage solutions will expand.
Renewable Energy Storage and Grid Stabilization Hydrogen storage is increasingly being integrated with renewable energy sources to help stabilize power grids. Large-scale hydrogen storage systems are critical for balancing the intermittency of renewable energy sources like solar and wind. This trend is expected to expand the role of hydrogen tanks in the energy sector.
Hydrogen Tanks Market Segmentation: Comprehensive Breakdown
By Tank Type
The hydrogen tanks market is segmented based on tank type, each catering to different storage needs:
Type 1 Tanks (All-Metal): These tanks, made entirely of metal, are durable and affordable but have a lower storage capacity compared to composite tanks. They are most commonly used in industrial applications.
Type 2 Tanks (Metal Liner with Composite Reinforcement): Offering a balance of weight reduction and strength, these tanks are suitable for medium-pressure applications.
Type 3 Tanks (Composite Liner): These tanks use a composite liner for high-pressure storage and are commonly used in automotive applications, especially for fuel cell vehicles.
Type 4 Tanks (Full Composite): Dominating the market due to their lightweight, high-strength design, Type 4 tanks are widely adopted in hydrogen-powered vehicles and heavy-duty applications.
Type 5 Tanks (All-Composite): The newest tank type, featuring advanced composite materials, Type 5 tanks are expected to see significant adoption in high-pressure and heavy-duty hydrogen storage applications.
By Material
Carbon Fiber: Leading the market with over 40% share, carbon fiber composite tanks are lightweight, strong, and cost-effective for high-pressure storage applications.
Glass Fiber: Known for a balanced strength-to-weight ratio, glass fiber tanks are growing in popularity for medium-pressure applications.
Metal Alloys: Used in Type 1 tanks, metal alloys remain a staple for low-pressure applications due to their affordability and durability.
HDPE (High-Density Polyethylene): Primarily used as a liner material in Type 4 and Type 5 tanks, HDPE is gaining market share due to its cost-effectiveness and efficiency in high-pressure storage.
By Capacity
Less than 50L: Typically used in portable fuel cells, drones, and small-scale industrial applications.
50L - 500L: Dominating the market with a large share, these tanks are used in fuel cell vehicles, buses, and industrial storage.
More than 500L: Large-capacity tanks are increasingly demanded for heavy-duty transport, maritime applications, and hydrogen refueling infrastructure.
By Storage Method
Compressed Hydrogen Storage (Gaseous): The most common storage method, used in most fuel cell vehicles and refueling stations, offering a reliable and efficient solution for hydrogen storage.
Cryogenic Hydrogen Storage (Liquid): Gaining traction in aerospace and heavy transport applications due to its higher energy density at low temperatures.
Metal Hydride and Chemical Hydrogen Storage: Although still niche, these methods offer long-term storage solutions with advanced energy density and safety features.
Regional Analysis: Hydrogen Tanks Market by Region
North America
North America is expected to hold a substantial share of the global hydrogen tanks market, driven by government policies supporting clean energy adoption, particularly in the U.S. and Canada. The increasing investment in hydrogen infrastructure and fuel cell technologies in this region positions North America as a key player in hydrogen tank innovations.
Asia-Pacific
The Asia-Pacific region is witnessing rapid growth in the hydrogen tanks market, led by countries such as Japan, South Korea, and China. These nations are pioneers in hydrogen fuel cell technology and infrastructure, with substantial investments in the commercialization of hydrogen-powered vehicles and renewable energy integration.
Europe
Europe is another key region, with several countries (including Germany, the U.K., and France) committed to achieving carbon neutrality by 2050. This commitment is driving the expansion of hydrogen infrastructure, renewable energy projects, and hydrogen-powered transportation, all of which contribute to the growth of the hydrogen tanks market.
Latin America and Middle East & Africa
While the hydrogen tanks market is still emerging in Latin America and the Middle East & Africa, these regions are starting to explore hydrogen energy solutions. Brazil, for example, is investing in hydrogen as part of its renewable energy strategy.
Competitive Landscape: Major Players and Market Developments
Key Hydrogen Tanks Market Players
Hexagon Composites A leader in advanced composite materials, Hexagon is expanding its hydrogen storage solutions for a variety of applications, including transportation and industrial storage.
Worthington Industries This company specializes in the manufacturing of high-quality composite pressure vessels and tanks used for hydrogen storage and distribution.
NPROXX A key player in the hydrogen tanks market, NPROXX focuses on developing high-performance composite tanks for hydrogen storage, with a particular emphasis on transportation applications.
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Recent Developments
Toyota's Hydrogen Vehicle Innovation In 2024, Toyota unveiled a liquid hydrogen system designed to improve engine efficiency in fuel cell vehicles. This innovation further strengthens Toyota’s position in the hydrogen vehicle sector.
NPROXX Expansion NPROXX expanded its portfolio in 2024 to include refueling hubs and innovative solutions for hydrogen-powered vehicles, enhancing the infrastructure needed for widespread hydrogen adoption.
Hexagon Purus Manufacturing Facility In January 2024, Hexagon Purus opened a new manufacturing facility in Maryland dedicated to producing hydrogen composite cylinders, underscoring the growing demand for hydrogen storage solutions.
Conclusion: A Bright Future for the Hydrogen Tanks Market
The global hydrogen tanks market is poised for significant expansion, driven by the increasing adoption of hydrogen across multiple industries and applications. As the world transitions to cleaner energy,
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#Hydrogen Tanks Market#Hydrogen Storage Solutions#Hydrogen Fuel Tanks#Hydrogen Energy Storage#Hydrogen Tank Market Trends#Hydrogen Tank Industry#Hydrogen Infrastructure#Green Hydrogen#Hydrogen Storage Systems#Hydrogen Tanks for Vehicles#Hydrogen Fuel Cells#Hydrogen Tank Manufacturers#Hydrogen Tanks Market Growth#Hydrogen Tanks for Transportation#Hydrogen Storage Technologies#Hydrogen Tank Applications#Renewable Energy Storage#Hydrogen Tank Innovations#Global Hydrogen Tanks Market#Hydrogen Economy#Hydrogen Tanks Market Forecast#Hydrogen Tanks Market Analysis
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Actions have consequences
#earth month#environment#ecology#ecosystems#wetlands#wetland restoration#overdevelopment#climate solutions#climate science#climate activism#climate action#climate justice#climate crisis#climate change#climate catastrophe#earth#deforestation#humanity#leftist#leftism#leftist memes#green infrastructure#green party#green#green energy#coastal#coastline#sea level rise#the lorax#i speak for the trees
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Exploring the Growing $21.3 Billion Data Center Liquid Cooling Market: Trends and Opportunities
In an era marked by rapid digital expansion, data centers have become essential infrastructures supporting the growing demands for data processing and storage. However, these facilities face a significant challenge: maintaining optimal operating temperatures for their equipment. Traditional air-cooling methods are becoming increasingly inadequate as server densities rise and heat generation intensifies. Liquid cooling is emerging as a transformative solution that addresses these challenges and is set to redefine the cooling landscape for data centers.
What is Liquid Cooling?
Liquid cooling systems utilize liquids to transfer heat away from critical components within data centers. Unlike conventional air cooling, which relies on air to dissipate heat, liquid cooling is much more efficient. By circulating a cooling fluid—commonly water or specialized refrigerants—through heat exchangers and directly to the heat sources, data centers can maintain lower temperatures, improving overall performance.
Market Growth and Trends
The data centre liquid cooling market is on an impressive growth trajectory. According to industry analysis, this market is projected to grow USD 21.3 billion by 2030, achieving a remarkable compound annual growth rate (CAGR) of 27.6%. This upward trend is fueled by several key factors, including the increasing demand for high-performance computing (HPC), advancements in artificial intelligence (AI), and a growing emphasis on energy-efficient operations.
Key Factors Driving Adoption
1. Rising Heat Density
The trend toward higher power density in server configurations poses a significant challenge for cooling systems. With modern servers generating more heat than ever, traditional air cooling methods are struggling to keep pace. Liquid cooling effectively addresses this issue, enabling higher density server deployments without sacrificing efficiency.
2. Energy Efficiency Improvements
A standout advantage of liquid cooling systems is their energy efficiency. Studies indicate that these systems can reduce energy consumption by up to 50% compared to air cooling. This not only lowers operational costs for data center operators but also supports sustainability initiatives aimed at reducing energy consumption and carbon emissions.
3. Space Efficiency
Data center operators often grapple with limited space, making it crucial to optimize cooling solutions. Liquid cooling systems typically require less physical space than air-cooled alternatives. This efficiency allows operators to enhance server capacity and performance without the need for additional physical expansion.
4. Technological Innovations
The development of advanced cooling technologies, such as direct-to-chip cooling and immersion cooling, is further propelling the effectiveness of liquid cooling solutions. Direct-to-chip cooling channels coolant directly to the components generating heat, while immersion cooling involves submerging entire server racks in non-conductive liquids, both of which push thermal management to new heights.
Overcoming Challenges
While the benefits of liquid cooling are compelling, the transition to this technology presents certain challenges. Initial installation costs can be significant, and some operators may be hesitant due to concerns regarding complexity and ongoing maintenance. However, as liquid cooling technology advances and adoption rates increase, it is expected that costs will decrease, making it a more accessible option for a wider range of data center operators.
The Competitive Landscape
The data center liquid cooling market is home to several key players, including established companies like Schneider Electric, Vertiv, and Asetek, as well as innovative startups committed to developing cutting-edge thermal management solutions. These organizations are actively investing in research and development to refine the performance and reliability of liquid cooling systems, ensuring they meet the evolving needs of data center operators.
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The outlook for the data center liquid cooling market is promising. As organizations prioritize energy efficiency and sustainability in their operations, liquid cooling is likely to become a standard practice. The integration of AI and machine learning into cooling systems will further enhance performance, enabling dynamic adjustments based on real-time thermal demands.
The evolution of liquid cooling in data centers represents a crucial shift toward more efficient, sustainable, and high-performing computing environments. As the demand for advanced cooling solutions rises in response to technological advancements, liquid cooling is not merely an option—it is an essential element of the future data center landscape. By embracing this innovative approach, organizations can gain a significant competitive advantage in an increasingly digital world.
#Data Center#Liquid Cooling#Energy Efficiency#High-Performance Computing#Sustainability#Thermal Management#AI#Market Growth#Technology Innovation#Server Cooling#Data Center Infrastructure#Immersion Cooling#Direct-to-Chip Cooling#IT Solutions#Digital Transformation
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Future Electronics and Renesas to Host Webinar on AI-Enhanced IMUs
This event is set for Tuesday, September 17th, 2024, from 10:00 to 11:00 CET, and will feature a comprehensive overview of Renesas' diverse product offerings, presented by representatives from Future Electronics and Renesas.
#Future Electronics#globally integrated#IT infrastructure#Capacitors#Film Capacitors#Analog#development tools#electromechanical#interconnect#lighting solutions#Switches#Amplifiers#Microcontrollers#Memory
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Carbon Capture for ships - current state
Some people think carbon capture onboard is going to be important in meeting emissions goals for ships. There is some entrepreneurship, and some interest by large oil producers and purveyors. However, many problems remain to be solved. There is essentially no ‘supply chain’ to handle the liquefied carbon product the ships produce onboard from running the carbon capture equipment. Liquid CO2 has…
#Carbon capture entrepreneurship in shipping#Carbon capture in maritime industry#Carbon capture onboard ships Carbon capture technology for shipping#Carbon capture storage costs#Carbon capture supply chain for ships#Carbon capture technology for shipping#carbon-capture#climate change#CO2 storage for ships#DNV carbon capture report#energy#environment#Liquid CO2 shipping infrastructure#Logistics#Maritime carbon capture challenges#ocean shipping#Ship emissions reduction technology#Shipping emissions goals#sustainability#Sustainable shipping solutions
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