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Biorefinery Market Size to Reach $314.62 billion by 2029 | MarketsandMarkets™

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DELRAY BEACH, Fla., Sept. 27, 2024 /PRNewswire/ — The global Biorefinery Market is anticipated to grow from estimated USD 212.05 billion in 2024 to USD 314.62 billion by 2029, at a CAGR of 8.2% during the forecast period. The growth in the market will be attributed to the rise of demand for biofuels and biobased chemicals and material across various geographies. Government policies and regulations for the adoption of biofuels across various countries boost the market growth. All the digital technologies, including advanced sensors, data analytics, and automation, have been optimized in the operations of biorefineries. These technologies have led to lowered energy usage, decreased waste generation, and optimum process control-cum-effecting substantial financial savings. Technological advances in biorefineries have dramatically accelerated the market, as it has been instrumental in making things more efficient and less expensive while diversifying their products and making it more sustainable.

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Technology Segmentation

Physico-chemical technology prescribes chemical processes, such as hydrolysis, transesterification, hydrogenation, hydrotreating, oxidation, and pulping, in addition to physical processes such as pressing, pretreatment, milling separation, and distillation. Due to their ability to convert biomass efficiently and at scale as well as their compatibility with existing industrial processes, physico-chemical technologies will expand more rapidly than those using biological or biological conversion mechanisms while also containing multiple high value product deliverables (i.e., biofuels and biochemicals) for various feedstocks, reducing the overall price of the products.

Type Segmentation

The type segment is further bifurcated into 3 types: First generation, second Generation, and third generation. The first generation segment is expected be the largest growing market. First-generation biofuels are derived directly from food crops through conventional agricultural processes and are primarily produced from sugars, starches, and vegetable oils. The most usual types are produced from crops, such as bioethanol, which is derived from corn, sugarcane, wheat, and soybeans; biodiesel, which is manufactured from oil crops like soybeans; and biogas, a product formed from organic wastes. Among all the renewable fuels developed so far, these biofuels are the earliest and the most widely adopted, contributing to a milestone reduction in dependence on fossil fuel and decreased greenhouse gas emissions.

Regional Analysis

North American region contains enormous agricultural resources, which has open large-scale production of corn, soybeans, sugarcane, among many others as key feedstocks for first-generation biorefineries to ethanol and biodiesel. This region also contains a significant amount of agricultural residues for corn stover, forest residues, and waste, which would be of feedstock to second-generation biorefineries. The U.S. government, through the Environmental Protection Agency (EPA), had created renewable fuel standards that compel the blending of biofuels such as ethanol and biodiesel in the fuel supply. This policy has significantly upped the demand for biofuels and also for the Biorefinery Market. These are some of the key factors which boosts the growth of Biorefinery Market in North America.

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Key Players

Some of the major players in the Biorefinery Market are Chevron (US), ADM (US), Valero (US), Neste (Finland), and TotalEnergies (France) among others. The major strategies adopted by these players include new product launches, acquisitions, contracts, agreements, partnerships, joint ventures, collaborations, investments, and expansions.

Chevron :

Chevron is one of the prominent players in the biorefinery market. The company acquired the Renewable Energy Group in 2022 and became the second-largest producer of bio-based diesel in the US. It offers a wide range of products, such as InfiniD, REG Biodiesel Blends, and UltraClean BlenD, among others. The company has nine active biorefineries in the US and Europe. It produced 408 million gallons of biodiesel and renewable diesel in 2023. The company has a significant presence in Europe and North America.

ADM:

ADM is one of the most prominent companies operating in both the human and animal nutrition sector. It is considered one of the World’s largest nutrition companies. The company harnesses the power of nature to transform crops into ingredients and solutions for food, beverages, and supplements for people worldwide. ADM operates through several business segments, namely Ag services and oilseeds, Carbohydrate solutions, nutrition, and others. It offers biorefinery products through two different segments: Ag services and oilseeds and carbohydrate solutions.

Valero:

Valero is one of the World’s largest low-carbon fuels producers, the World’s 2nd largest corn ethanol producer, and the World’s 2nd largest renewable diesel producer. The company is also developing a large-scale sustainable aviation fuel project, which is expected to be completed in the fourth quarter of 2024. Valero is a leading producer of transportation fuels and petrochemical products, such as low-carbon fuels, jet fuel, ethanol, gasoline, and renewable diesel. The company operates its business through three segments, namely, Refining, Renewable Diesel, and Ethanol. It offers its products from two business segments: Renewable Diesel and Ethanol.

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Related Reports:

Sustainable Aviation Fuel Market 

Biofuel Market 

Bioethanol Market

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Hisense Celebrates Earth Day: The Quiet Green Shift Happening Inside Households Through Smarter Appliances

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DUBAI, UAE, April 22, 2026 /PRNewswire/ — There’s something futuristic about a refrigerator that thinks for itself. Not in a science-fiction, take-over-the-world kind of way, but in the everyday miracle of a 620-litre side-by-side unit deciding, on its own, that 3am is the perfect time to run its compressor at minimal power because nobody’s opening the door anyway.

This is the green revolution that nobody talks about at climate summits. While world leaders debate carbon credits and industrial emissions, a quieter transformation is unfolding in kitchens, utility rooms, and living spaces across the UAE and beyond. It happens every time a washing machine calculates the precise amount of water needed for that half-load of towels, or when an air conditioner’s inverter technology throttles down instead of cycling on and off like an energy-guzzling metronome.

Earth Day, falling on 22 April this year, typically conjures images of tree-planting ceremonies and beach clean-ups. Worthy endeavours, certainly. But the environmental impact of what sits in your home, running twenty-four hours a day, seven days a week, fifty-two weeks a year, rarely gets the attention it deserves.

On average, washing machines use 19 gallons of water per load, and the average household runs between 5 and 6 loads per week. Based on those figures, most washers use up to 5,605 gallons of water annually . Swap that for a modern front-load unit with AI wash programs, like Hisense’s models, and that figure can drop by up to 50 percent. Multiply this across the roughly 500,000 households in Dubai alone, and we’re suddenly talking about water savings that would make a desalination plant executive weep with joy.

The same logic applies to electricity consumption, a particularly pressing concern in a region where summer temperatures regularly exceed 45°C and air conditioning is a necessity. The difference between a conventional split AC unit and one equipped with inverter technology isn’t marginal, it’s substantial enough to show up on utility bills within the first month of operation.

Intelligence as an Environmental Strategy

What makes the current generation of home appliances genuinely different isn’t just improved efficiency ratings or eco-labelling. It’s the integration of AI into the very fabric of how these machines operate.

Hisense, a brand that has positioned itself at this intersection of technology and sustainability, describes its approach as a “dual-track strategy of intelligence plus green development.” Its ConnectLife ecosystem, available on select refrigerators, washing machines, dishwashers, and air conditioners, monitors energy consumption in real-time, learns household patterns, and makes AI-driven recommendations that, over time, compound into meaningful resource savings.

A Hisense 14-place setting dishwasher with auto-wash technology, for instance, doesn’t simply run the same cycle regardless of load. It assesses soil levels and adjusts water temperature and duration accordingly. A half-load mode means running appliances at appropriate capacity rather than wasting resources on unnecessary full cycles.

Multi-airflow cooling systems that reduce temperature fluctuation and preserve food longer. No-frost technology that eliminates the energy waste of ice buildup. Inverter compressors that modulate power consumption rather than running at full throttle constantly. These technologies have existed in various forms for years. What’s changed is their integration into accessible price points and mainstream product lines, making efficient living achievable for households beyond the ultra-premium market.

The Gulf region presents a fascinating case study for domestic sustainability. Per capita energy consumption ranks among the highest globally, driven by climate control requirements, water desalination dependencies, and historically subsidised utility costs. Yet the UAE has simultaneously positioned itself as a regional leader in renewable energy investment and sustainability commitments.

This creates a unique environment where smart appliance adoption carries amplified significance. A 1.5-ton inverter split AC running across a typical Abu Dhabi summer doesn’t just save its owner money, it reduces the load on an electrical grid increasingly powered by solar and nuclear generation. The connection between individual choices and collective outcomes becomes tangible in ways that might seem abstract in milder climates.

The rise of connected appliances adds another dimension. Remote diagnostics can extend product lifespans by identifying minor issues before they become terminal failures. Software updates can improve efficiency algorithms years after purchase. Energy monitoring creates accountability loops that encourage conscious consumption patterns.

Steam wash functions on modern washing machines reduce the need for hot-water cycles while improving allergen removal. Anti-bacterial filters in air conditioning units address both health and environmental concerns simultaneously. These convergences suggest that the old tension between convenience and conscience may be resolving itself through engineering rather than requiring consumers to choose sides.

The Household as Climate Actor

There’s something democratic about domestic sustainability. Industrial emissions reductions require policy negotiations, capital investments, and coordination across complex stakeholder ecosystems. Choosing a more efficient refrigerator requires a trip to the appliance store and perhaps a slightly higher upfront cost that will recoup itself over the product’s operational lifetime.

This isn’t to diminish the necessity of systemic change, individual action cannot substitute for structural transformation. But the two approaches complement rather than compete. Households equipped with intelligent appliances consume fewer resources, place less strain on infrastructure, and model consumption patterns that cascade through communities.

The quiet green shift happening inside households won’t make headlines the way renewable energy megaprojects or electric vehicle adoption rates do. But every time that dishwasher calculates optimal water usage, every time that inverter compressor modulates instead of cycles, every time that smart refrigerator adjusts its cooling schedule based on door-opening patterns, something meaningful happens. Millions of these moments, aggregated across millions of households, compound into impact that rivals any single infrastructure project.

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Dreame Nebula NEXT Auto expands academic collaboration to accelerate AI-driven automotive innovation

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UC Berkeley engagement underscores long-term investment in autonomous systems, engineering depth and intelligent vehicle development

BERKELEY, Calif., April 22, 2026 /PRNewswire/ — Dreame Nebula NEXT Auto has deepened its engagement with leading academic institutions, including the University of California, Berkeley, as it accelerates development of AI-defined vehicles and next-generation autonomous systems. The collaboration signals a long-term commitment to advancing core technologies that will shape the future of intelligent automotive motion.

The engagement brought Nebula NEXT engineers and leadership together with Berkeley researchers specialising in autonomous control systems, AI and intelligent transportation. The sessions focused on translating advanced research into real-world vehicle systems, with particular emphasis on safety, control and full-stack AI integration.

Jake Ma, Executive of Dreame Nebula NEXT Auto, said: “We aren’t building a car. We are building a new brain for the physical world. To us, the car is the only physical mothership capable of carrying the extreme compute required by large AI models today.”

The visit forms part of a broader strategy to anchor Nebula NEXT’s development in deep technical collaboration. By working closely with academic experts, the company is strengthening its approach to autonomous driving, vehicle intelligence and system-level engineering.

Nebula NEXT builds on Dreame Technology’s foundation in precision engineering and AI-driven innovation. This heritage underpins a shift from software-defined vehicles to AI-defined vehicles, where intelligence is embedded across the entire system, from perception and decision-making to chassis and powertrain control.

The company’s technical direction centres on integrating AI into the core dynamics of how vehicles operate. This includes continuous learning systems, multi-agent architectures and high-performance computing platforms designed to support real-time decision-making in complex driving environments.

Nebula NEXT first drew global attention at CES 2026 with the debut of the Nebula NEXT 01, a four-door electric hyper-sedan concept. The vehicle delivers 1.8-second acceleration from 0 to 100 km/h, more than 2,000 horsepower and a lightweight structure built from proprietary Blue Carbon Fiber.

Momentum continued with a high-profile appearance during the Super Bowl LVIII broadcast, extending the brand’s reach across North America and reinforcing its position as an emerging force in automotive technology.

Alongside performance, the company continues to prioritise foundational innovation. Its architecture combines AI-native operating systems, zonal electrical design and high-density computing platforms to enable scalable, intelligent vehicle systems.

Nebula NEXT is now entering a phase focused on system execution, engineering depth and scalable technology development. The company will present further advances at an upcoming Silicon Valley event on 27 April 2026, where it will unveil new products and core technologies.

By combining global market momentum, academic collaboration and a focus on engineering fundamentals, Dreame Nebula NEXT is positioning itself at the centre of the transition to AI-defined mobility.

Media contact:
Li Tong, Dreame Nebula Next Auto PR head, litong2@dreame.tech
Website: https://www.dreametech.com

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Sucden Financial Enables Client Trading in Shanghai Nickel Futures

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LONDON, April 22, 2026 /PRNewswire/ — Sucden Financial, the multi-asset execution, clearing and liquidity provider, announces that clients can now trade nickel futures and options on the Shanghai Futures Exchange (SHFE), following today’s opening of the contract to international participants.

Sucden Financial offers access to SHFE through its Overseas Intermediary status and established Chinese banking relationships. Clients can manage exposure across SHFE, the London Metal Exchange (LME) and more than 20 other global commodities markets through a single account.

In addition to SHFE nickel contracts, Sucden Financial’s clients can access the following Chinese exchanges: the Shanghai International Energy Exchange, the Dalian Commodity Exchange and the Zhengzhou Commodity Exchange.

Lucy Wainman, Head of Sales (China) at Sucden Financial, said:

“We are pleased to offer clients the opportunity to trade Shanghai nickel futures and options contracts, further broadening our access to Chinese markets. This milestone reflects the hard work of our team and the long-standing relationships we have built in China. We would like to thank SHFE and Chinese regulators for their support and constructive engagement.”

Marc Bailey, CEO of Sucden Financial, said:

“Expanding our global exchange coverage to include access to onshore mainland Chinese markets supports our organic growth strategy. By adding access to SHFE, we provide clients with an extended global reach through a single account. Continued investment in technology underpins our long-term commitment to our clients, enabling them to respond quickly to changing market dynamics and capture emerging opportunities.”

About Sucden Financial

With a history and heritage in commodity futures and options trading, Sucden Financial has evolved and diversified to become a leading global multi-asset execution, clearing and liquidity provider across FX, fixed income, and commodities.

Sucden Financial has a proven track record of over 50 years in financial markets. Since its foundation in 1973, it has been supported by its parent, Sucden, one of the world’s leading soft commodity trading groups, while remaining fully independent in its day-to-day trading operations.

Sucden Financial Limited is authorised and regulated by the Financial Conduct Authority.

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