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#Water purification technology
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As an environmental problem researcher:especially about water issues (1/2)
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(Note: The etymology of "Mamoru"(衛) is "a soldier who patrols to protect the one in the middle." Sanitary Engineering” =”衛生工学”)
Don't look lightly sanitary engineering! : Water quality purification goods welcomed by amateurs
I am an expert in sanitary engineering. Especially in the field of water, I have been doing research that does not fall behind. I also worked on various water-related technologies. Here, a blog covered some kind of water purification technology. Looking at what kind of thing it is, somehow from the lapilli, "Since the components that rejuvenate the microorganisms flow out, this will rejuvenate the microorganisms, expect water purification, and give back to the earth." That's right? ... I'm scared because this is what amateurs think. If we can purify water with such a small item, we don't need water treatment technology, and you don't need sanitary engineering. The sanitary engineering is explained as follows.
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A discipline that applies engineering principles to the prevention of environmental pollution and the conservation of the living environment with the aim of protecting and promoting public health. Since the causes that threaten people's lives and health change with the development of civilization and society, the objects of purpose-oriented sanitary engineering are also purification of air and water from urban water and sewage, noise vibration control, industrial waste control. , Final waste management, radioactive emission management, air conditioning heating and cooling of buildings, control of working environment in factories, planning of local material metabolism facilities, planning and management of air, water and soil environment, location planning, etc. .. The academic fields necessary for this are also (1) physiology, public hygiene, animal and plant ecology, flow science, meteorology, statistics, etc. to set improvement or conservation goals, and (2) civil engineering to take improvement measures. Engineering, chemical engineering, microbial engineering, fluid engineering, thermal engineering, system engineering, etc. (3) Planning mathematics, regional planning, urban planning, economics, etc. for making plans. After World War II, the Department of Sanitary Engineering was established at Hokkaido University and Kyoto University, the Department of Urban Engineering at the University of Tokyo, and the Department of Environmental Engineering at Osaka University. Other universities have related courses in the Faculty of Engineering.
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Well, when I chose sanitary engineering as my career path, I didn't really understand the content, but I was depressed at that time and was told that it was a "dirty place" dealing with "shit, pee". While I was depressed, I decided to go to a dirty place and went on to throw it away. In the above explanation, it is said that there are a wide range of applications, but at the time of my time, the main problem was water, and research was concentrated on waterworks, sewers, rivers and lakes.
Regarding sewage treatment, it is difficult to treat sewage by participating in a project (by students) to check the performance of Jun Ui's "oxidation ditch", which is an evolution of the traditional "activated sludge method".  As a premise, sewage treatment is said to be "accepting any wastewater, purifying the water quality properly, and is evaluated for the first time". The maintenance of a plant (facility) is a place where water treatment engineers play a serious role. At sewage treatment plants, activated sludge, a group of microorganisms derived from soil, actively "eats" organic matter in sewage and plays a role in water purification, but that alone is enough to purify water. Is on the way. In addition to organic substances, there are substances that require more advanced removal techniques, such as nitrogen (N) and phosphorus (P). If you try to process it, it will cost a lot.
This is the current state of sewage treatment. What can we say when we look at the goods from that perspective?
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What is XXXXX? (Author's note: Hidden words)
A microbial activator made mainly from lapilli.
XXXXX will use the microorganisms on the spot as the source, and Mr. microorganisms that have become the source will decompose the dirt.
Just place XXXXX on the flush tank of the toilet, and the flowing water will rejuvenate the Mr. microorganisms.Every time you flush the water in the toilet, the flow of water from the sewage to the river and the sea becomes beautiful.
You can give back to Mr. Earth just by putting it in your toilet!
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(From a certain blog. I have something to think about, so I'll keep it anonymous.)
It's ridiculous and not talkative. The pollutants washed away in the toilet are pee, poop, organic matter, nitrogen and phosphorus lumps. Is it possible to expect some water purification effect from lapilli? Also, it is unclear what kind of microorganisms the person who wrote this blog refers to and says that the water purification effect can be expected. There is a section that somehow thinks that microorganisms = water purification. The nerve that can clearly state such an amateur idea on a blog makes the earth cry.
A word of the day: In the first place, thinking about environmental issues on the premise of using a flush toilet is a . Human humiliation. In the first place, we should think about the waste of energy of diluting the solid substance "Unko :shit" and treating it with water to make the activated sludge solid again. You've never heard of a composting toilet that can compost "shit" and "pee", because this person is an amateur. (Apart from that, I don't have a grudge against this blogger, but I was inspired by so much error that I wrote this blog.)
Currently, there is no "sanitary engineering" or "sanitary course" in the Department of Urban Engineering, Faculty of Engineering, University of Tokyo. It seems that it calls itself an "environmental science course". Somehow, it is a name that feels "beauty". I think the original "hygiene" = "protecting life" is a more direct and better name. Well, I think that the people involved in the name change should have thought that it would be better to be neat, and I think that there are many University of Tokyo students who are attracted to the "superficial" coolness. When I was there, most of the students shy away from being dirty because they deal with "shit" and "pee".
Reference HP (actual compost / toilet)
https://www9.plala.or.jp/Jussih/puusee/kpt-vessa.htm
(It seems that you can not connect well from here. You can find it by copying this URL and doing a separate Google search.)
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The Ultimate Guide to Shower Filters to Remove Toxic Chemicals
Discover the secrets to healthier showers with our comprehensive guide on shower filters! Learn how to remove toxic chemicals, combat hard water, and improve hair and skin health. Dive in for expert advice and make every shower a rejuvenating experience.
Water purification systems When it comes to maintaining a healthy lifestyle, water plays a crucial role. We use water not only for drinking but also for various household activities such as cooking, cleaning, and bathing. However, what most people are not aware of is that the water coming into our homes may contain harmful chemicals and impurities that can have negative effects on our health.…
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ipnrendura · 7 months
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Ceramic Membrane Filtration: A Breakthrough in Water Treatment
Discover the power of ceramic membrane filtration in purifying water. Explore its applications in wastewater treatment, industrial processes, and more. Learn how ceramic membranes provide sustainable and efficient solutions with IPNR Endura.
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gauricmi · 1 month
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Optimizing Water Treatment: Harnessing Hollow Fiber Filtration
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Hollow Fiber Filtration is a sophisticated water treatment technology that offers numerous advantages in purifying water for various applications. Understanding its mechanisms and benefits is crucial for optimizing water treatment processes.
Understanding Hollow Fiber Filtration: Hollow Fiber Filtration is a membrane-based water treatment method that utilizes semi-permeable hollow fibers to remove impurities from water. These fibers have microscopic pores that selectively allow water molecules to pass through while blocking contaminants such as bacteria, viruses, and suspended solids.
Efficient Contaminant Removal: One of the key advantages of Hollow Fiber Filtration is its ability to efficiently remove a wide range of contaminants from water. The small pore size of the hollow fibers ensures thorough filtration, resulting in clean and safe water suitable for various purposes, including drinking, irrigation, and industrial processes.
Compact Design and Space Efficiency: Hollow Fiber Filtration systems are known for their compact design and space efficiency. The hollow fibers are densely packed within the filtration module, allowing for high filtration surface area within a relatively small footprint. This makes them ideal for installations in locations where space is limited.
Low Energy Consumption: Hollow Fiber Filtration systems are energy-efficient compared to traditional water treatment methods. The filtration process relies on gravity or low-pressure pumping, requiring minimal energy input. This results in lower operating costs and reduced environmental impact, making it a sustainable choice for water treatment.
Get More Insights On This Topic: Hollow Fiber Filtration
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unitreat · 1 month
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From the day of inception, we have been honest in our services. It helps us to raise ourselves as the best water treatment company in Trivandrum.
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dewpureengineering · 2 months
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techninja · 2 months
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Examining the Competitive Landscape of RO Membrane Industry
Introduction to Wastewater Reverse Osmosis Membrane Market
Wastewater treatment has become a critical concern globally due to rapid urbanization, industrialization, and environmental degradation. Reverse osmosis (RO) technology has emerged as a pivotal solution for treating wastewater efficiently. It involves the use of semi-permeable membranes to remove impurities, contaminants, and pollutants from water, making it suitable for various applications.
Market Trends and Growth Factors
The wastewater reverse osmosis membrane market is witnessing significant growth, driven by several factors. The increasing scarcity of freshwater resources, coupled with growing concerns about water pollution, has propelled the demand for advanced wastewater treatment solutions. Moreover, stringent regulations mandating the discharge of treated wastewater into the environment have further fueled market growth.
Technological advancements in membrane technology, such as the development of high-performance materials and improved membrane designs, have enhanced the efficiency and reliability of reverse osmosis systems. These innovations have enabled the treatment of a wide range of wastewater sources, including municipal sewage, industrial effluents, and brackish water.
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Key Players in the Market
Several prominent companies dominate the wastewater reverse osmosis membrane market, offering a diverse range of products and services. Companies such as Dow Water & Process Solutions, SUEZ Water Technologies & Solutions, and Hydranautics (A Nitto Group Company) are among the key players in the industry. These companies invest heavily in research and development to introduce innovative membrane technologies and expand their market presence.
Types of Reverse Osmosis Membranes
Reverse osmosis membranes are available in various types, each suited for specific applications. Thin Film Composite (TFC) membranes, Cellulose Acetate (CA) membranes, and Polyamide (PA) membranes are some of the commonly used membrane materials. TFC membranes are preferred for their high rejection rates and durability, making them suitable for treating challenging wastewater streams.
Applications of Wastewater Reverse Osmosis Membranes
The applications of wastewater reverse osmosis membranes are diverse and widespread. These membranes are utilized in municipal wastewater treatment plants to produce potable water from sewage. In the industrial sector, reverse osmosis technology is employed for treating process water, cooling tower blowdown, and wastewater generated from manufacturing processes. Additionally, reverse osmosis membranes play a crucial role in desalination projects, converting seawater into freshwater for various purposes.
Regional Analysis
The wastewater reverse osmosis membrane market exhibits regional variations in terms of demand, adoption, and regulatory framework. North America and Europe are mature markets with established infrastructure for wastewater treatment and stringent environmental regulations. In contrast, the Asia Pacific region is witnessing rapid industrialization and urbanization, driving the demand for advanced water treatment solutions. Similarly, Latin America, the Middle East & Africa are emerging markets with significant growth potential due to increasing investments in infrastructure development.
Challenges and Restraints
Despite the growing demand for wastewater reverse osmosis membranes, several challenges hinder market growth. High initial capital investment required for setting up RO systems, along with operational costs, pose a significant barrier to adoption, particularly in developing economies. Moreover, energy consumption associated with membrane filtration processes and the risk of membrane fouling remain key challenges for stakeholders in the industry.
Future Outlook and Opportunities
The future outlook for the wastewater reverse osmosis membrane market is promising, driven by evolving regulatory standards, technological innovations, and increasing awareness about water conservation. Emerging markets, such as India, China, and Brazil, offer lucrative opportunities for market players to expand their operations and tap into new customer segments. Furthermore, ongoing research and development initiatives aimed at improving membrane performance and reducing operational costs are expected to drive market growth in the coming years.
Sustainability Initiatives
Sustainability has become a focal point in the wastewater treatment industry, with an emphasis on resource conservation and environmental protection. Recycling and reuse of treated wastewater are gaining traction as viable strategies to address water scarcity and minimize environmental impact. Reverse osmosis membranes play a vital role in enabling water reuse and recycling initiatives, thereby contributing to sustainable water management practices.
Regulatory Landscape
The wastewater treatment industry is subject to stringent regulatory oversight aimed at safeguarding public health and the environment. Regulatory bodies impose standards and guidelines governing the discharge of treated wastewater into water bodies, ensuring compliance with quality parameters and pollutant limits. The regulatory landscape varies across regions, with authorities implementing measures to promote water conservation, pollution prevention, and sustainable development.
Competitive Analysis
Competition in the wastewater reverse osmosis membrane market is intense, with key players vying for market share through product innovation, strategic partnerships, and mergers and acquisitions. Companies focus on developing advanced membrane technologies that offer superior performance, energy efficiency, and cost-effectiveness. Additionally, market players invest in expanding their global footprint and strengthening their distribution networks to reach new customers and markets.
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Investment and Funding
The wastewater treatment sector attracts significant investment from various sources, including venture capital firms, private equity investors, and government agencies. Venture capital funding supports startups and innovative enterprises developing novel membrane technologies and water treatment solutions. Government initiatives and funding programs aim to accelerate the adoption of sustainable water management practices
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puroxipurewater · 5 months
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As you know we do not carry any products we cannot stand behind. Our reputation is more important than making the sale. Puroxi has recently learnt allot about UV-C Led technologies. AquiSense is the world’s largest supplier of UV-C Led. AquiSense also have the best products on the market today.
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market-insider · 5 months
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Water and Wastewater Treatment Equipment Market, Analyzing Market Forces, Technological Advancements, and Environmental Impacts
The global water and wastewater treatment equipment market size is anticipated to reach USD 90.0 billion by 2030, registering a CAGR of 4.6% over the forecast period, according to a new report by Grand View Research, Inc. The market is driven by increasing demand for clean and safe water in both developed and emerging economies. This is due to growing concerns over water pollution and scarcity, and the need for effective wastewater management.
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Water And Wastewater Treatment Equipment Market Report Highlights
Asia Pacific accounted for the largest revenue share of the global market in 2023, accounting for 35.1%, and is expected to maintain its dominance throughout the forecast period. This can be attributed to the presence of a strong consumer base that has led to significant demand for water and wastewater treatment equipment
By application, the municipal segment dominated the market with a revenue share of 66.0% in 2023. The increasing initiatives undertaken by governments, strict environmental regulations, and increasing awareness regarding water treatment are some of the factors contributing to the growth of the municipal segment over the forecast period
By process, the tertiary treatment segment dominated the market with a revenue share of 44.2% in 2023. Some of the drivers for the increasing demand for tertiary wastewater treatment are environmental protection, water scarcity, and the increasing demand for clean water. As these issues continue to be major concerns across the world, the demand for tertiary wastewater treatment is expected to grow over the forecast period
Major key players frequently engage in mergers & acquisitions and new product launches to maintain their market shares. For instance, in March 2022, Pentair plc, announced the definitive agreement to acquire Manitowoc Ice. The move was taken by the company to enhance its commercial water solutions platform and cater to the demand from the food service industry
For More Details or Sample Copy please visit link @: Water And Wastewater Treatment Equipment Market Report
Furthermore, the demand for decentralized wastewater treatment systems is expected to increase over the projected period, as these systems offer several advantages such as low operating costs, high treatment efficiency, and easy maintenance. Several companies are focusing on developing innovative decentralized wastewater treatment systems that can be easily installed in residential and commercial buildings.
Population growth, urbanization, increasing industrialization, and the need for clean water for various purposes such as drinking, agriculture, and industrial processes all drive demand for water and wastewater treatment equipment. Government regulations aimed at protecting the environment and ensuring public health also have an impact on the demand for water and wastewater treatment equipment.
The market players are constantly undertaking strategic initiatives such as mergers, acquisitions, partnerships, and new product launches to gain a competitive advantage. For instance, Ceco Environmental, a provider of air pollution control solutions, announced the acquisition of Compass Water Solutions, a provider of water and wastewater treatment equipment. The acquisition will enable Ceco Environmental to integrate Compass Water Solutions’ critical engineered solutions with its industrial water capabilities.
WaterAndWastewaterTreatmentEquipmentMarket #WaterAndWastewaterTreatmentEquipment #WaterTreatment #WastewaterManagement #EnvironmentalEngineering #SustainableTechnology #CleanWaterSolutions #IndustrialWaterTreatment #WaterPurification #GreenInfrastructure #InnovationInWaterManagement #WaterQualityControl #WastewaterRecycling #MarketTrends #EnvironmentalCompliance #SmartWaterTechnologies #RegulatoryFrameworks #EcoFriendlySolutions #EmergingTechnologies #ResourceRecovery
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automotiveera · 8 months
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Harnessing Nature: Insights into the Organic Coagulant Market
The organic coagulant market is projected to reach at USD 3,811.5 million in 2030 with a CAGR of 9% in the years to come. The major reasons for this development of the industry are the scarcity of drinking and fresh water in residential and industrial areas along with the rising population, and urbanization.
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And the rising demand for facilities like sewage treatment, industrial water treatment, fertilizer production, food & beverage industry, and paper manufacturing helps the demand for the chemical to grow.
And another major reason for the increasing demand is the growing population, which is creating an enormous demand for clean water and for which a need for advanced purification methods and also with the expansion of infrastructure for water treatment by government to meet the demand are all contributing the growth of eco-friendly water purification.
The oil & gas category will grow at a highest CAGR of 10% over the years, which is driven by the increasing use of organic chemicals with water at a required concentration for drilling and petroleum extraction purposes.
While, onshore and offshore operations both require different filtration processes as in onshore normal water is available, whereas offshore require advanced system to filter seawater. In addition, research and development activities are also contributing to the demand for organic coagulants, with eco-friendly solutions being explored for wastewater treatment.
Moreover, the increasing government focus to implement policies for water quality monitoring because of the increasing population all over the world. Strict regulations to prevent the direct release of harmful chemicals from industries and untreated sewage into water bodies.
APAC will grow the fastest in the organic coagulant market at a CAGR of 9.5% in the years to come due to the rapid urbanization and industrialization with rising population along with the rising investments in water treatment plant development and strict regulations on sewage disposal. Countries like India, China, South Korea, and Japan are expanding their contribution for the water treatment.
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theplumbingnerds · 9 months
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From Filtration to Purification: A Comparative Look at Water Treatment Technologies Including Reverse Osmosis in Vaughan
From Filtration to Purification: A Comparative Look at Water Treatment Technologies Including Reverse Osmosis in Vaughan
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nichemsolutions · 10 months
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At Nichem, we passionately combine science, understanding and creativity to re-imagine, re-think and re-engineer what is vital to make everyday lives better. With our world-class expertise, collaborative approach and future-focused technologies, from polymer additives to best agrochemicals, from chemical treatment for water purification to rodent repellents, we solve for what’s vital to you and our end customers.
Website URL : https://nichem.solutions/
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I don't know whether this is accurate, but if so, it's a wonderful advance.
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unitreat · 3 months
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Waste Water treatment company in Trivandrum
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georgegraphys · 4 months
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2024 team sponsors recap!
this is completely irrelevant to F1 but i study and do these stuffs for a living sooo 😩😩 2023 sponsors are based on the sponsors that are there at the beginning of the season (new sponsors that join in the middle of the season will be classified as 2024's)
Mercedes AMG Petronas F1 Team:
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New sponsors: Whatsapp, Luminar (American tech company), SAP (German software company), nuvei (Canadian credit card services), Sherwin Williams (American painting company) 2024 data last update: 2024/02/14
Old sponsors that left: Monster Energy, Pure Storage (American technology company), fastly (American cloud computing services), Axalta (American painting company), Eight sleep (American mattresses company) 2023 data last update: 2023/01/07
Oracle Red Bull Racing F1 Team:
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New sponsors: Yeti (American cooler manufacturer, joined later in 2023), APL (American footwear/athletic apparel manufacturer, joined later in 2023), CDW (American IT company, joined later in 2023), Sui (American tech app by Mysten Labs, joined later in 2023), Patron Tequila (Mexican alcoholic beverages company, joined later in 2023) 2024 data last update: 2024/02/15
Old sponsors that left: CashApp, Walmart, Therabody (American wellness technology company), Ocean Bottle (Norwegian reusable bottle manufacturer), PokerStars (Costa Rican gambling site), Alpha Tauri (? no info if they're official partners or not but Austrian clothing company made by Red Bull), BMC (Switzerland bicycle/cycling manufacturer), Esso (American fuel company, subsidiary of ExxonMobil), Hewlett Packard Enterprise (American technology company) 2023 data last update: 2023/03/07
More: Esso is a subsidiary of Mobil so there's possibility they merged or something
Scuderia Ferrari:
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New sponsors: VGW Play (Australian tech game company, joined later in 2023), DXC Technology (American IT company, joined later in 2023), Peroni (Italian brewing company), Z Capital Group/ZCG (American private asset management/merchant bank company), Celsius (Swedish energy drink manufacturer) 2024 data last update: 2024/02/15
Old sponsors that left: Mission Winnow (American content lab by Phillip Morris International aka Marlboro), Estrella Garcia (Spanish alcoholic beverages manufacturer), Frecciarossa (Italian high speed train company) 2023 data last update: 2023/02/16
More: Mission Winnow is a part of Phillip Morris International. They are no longer listed as team sponsor but PMI is listed instead.
(starting here, 2023 data last update is 2023/02/23 and 2024 data last update is 2024/02/15)
McLaren F1 Team: (Only McLaren RACING's data is available idk if some of these are XE/FE team partners but anw..)
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New sponsors: Monster Energy, Salesforce (American cloud based software company, joined later in 2023), Estrella Garcia (Spanish alcoholic beverages manufacturer), Dropbox (American file hosting company), Workday (American system software company, joined later in 2023), Ecolab (American water purification/hygiene company), Airwallex (Australian financial tech company), Optimum Nutrition (American nutritional supplement manufacturer), Halo ITSM (American software company, joined later in 2023), Udemy (American educational tech company, joined later in 2023), New Era (American cap manufacturer, joined in 2023), K-Swiss (American shoes manufacturer, joined later in 2023), Alpinestars (Italian motorsports safety equipment manufacturer)
Old sponsors that left: DP World (Emirati logistics company), EasyPost (American shipping API company), Immersive Labs (UK cybersecurity training company?), Logitech, Mind (UK mental health charity), PartyCasino (UK? online casino site), PartyPoker (American? gambling site), Sparco (Italian auto part & accessory manufacturer), Tezos (Switzerland crypto company)
Aston Martin Aramco F1 Team:
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New sponsors: Valvoline (American retail automotives service company, joined later in 2023), NexGen (Canadian sustainable? fuel company), Banco Master (Brazilian digital banking platform, joined later in 2023), ServiceNow (American software company, joined later in 2023), Regent Seven Seas Cruise, Wolfgang Puck (Austrian-American chef and restaurant owner, joined later in 2023), Financial Times (British business newspaper), OMP (Italian racing safety equipment manufacturer), stichd (Netherlands fashion & apparel manufacturer)
Old sponsors that left: Alpinestars (Italian motorsports safety equipment manufacturer), crypto.com (Singaporean cryptocurrency company), ebb3 (UK? software company), Pelmark (UK fashion and apparel manufacturer), Peroni (Italian brewing company), Porto Seguro (Brazilian insurance company), Socios (Malta's blockchain-based platform), XP (Brazilian investment company)
Stake F1 Team (prev. Alfa Romeo):
???? Can't found their website (might be geoblocked in my country???)
BWT Alpine F1 Team:
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New sponsors: MNTN (American software company), H. Moser & Cie (Switzerland watch manufacturer), Amazon Music
Old sponsors that left: Bell & Ross (French watch company), Ecowatt (??? afaik French less-energy smthn smthn company), Elysium (French? American? Software company), KX (UK software company), Plug (American electrical equipment manufacturing company)
Visa CashApp RB F1 Team (prev. Scuderia Alpha Tauri):
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New Sponsors: Visa, CashApp, Hugo Boss, Tudor, Neft Vodka (Austrian alcoholic beverages company), Piquadro (Italian luxury bag manufacturer)
Old sponsors that left: Buzz (?), Carl Friedrik (UK travel goods manufacturer), Flex Box (Hongkong? shipping containers manufacturer), GMG (Emirati global wellbeing company), RapidAPI (American API company)
Haas F1 Team:
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New sponsors: New Era (American cap manufacturer, joined later in 2023)
Old sponsors that left: Hantec Markets (Hongkong capital markets company), OpenSea (American NFT/Crypto company)
Williams Racing:
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New sponsors: Komatsu, MyProtein (British bodybuilding supplement), Kraken (American crypto company, joined later in 2023), VAST Data (American tech company), Ingenuity Commerce (UK e-commerce platform), Puma (joined later in 2023)
Old sponsors that left: Acronis (Swiss software company), Bremont (British watch manufacturer), Dtex Systems (American? cybersecurity company), Financial Times (British business newspaper), Jumeirah Hotels & Resorts, KX (UK software company), OMP (Italian racing safety equipment manufacturer), PPG (American painting manufacturer), Umbro (English sports equipment manufacturer), Zeiss (German opticals/optometrics manufacturing company)
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