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Vapor Recovery Units Market Set to Reach USD 2.1 Billion by 2031, Driven by Environmental Regulations: – Market Research Intellect

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The Vapor Recovery Units (VRU) market is projected to grow from USD 1.4 billion in 2024 to USD 2.1 billion by 2031, at a compound annual growth rate (CAGR) of approximately 5.9%. This growth is fueled by increasing environmental regulations and the need for emission control across oil and gas and industrial sectors. North America and Europe are expected to lead the market due to stringent emissions standards, while Asia-Pacific shows potential for rapid adoption as industrialization continues to rise.

LEWES, Del., Feb. 18, 2025 /PRNewswire/ — The primary driver of growth in the Vapor Recovery Units (VRU) market is the rising focus on environmental regulations aimed at reducing volatile organic compound (VOC) emissions. VRUs are increasingly essential in oil and gas, chemical processing, and transportation sectors, where capturing harmful vapors helps industries meet stringent emission standards. Growing awareness of environmental sustainability, alongside economic benefits from product recovery, is also encouraging VRU adoption. Additionally, advancements in VRU technology have made these systems more efficient and cost-effective, further accelerating their integration across key industries globally.

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202 – Pages

126 – Tables

37 – Figures

Scope Of The Report

REPORT ATTRIBUTES

DETAILS

STUDY PERIOD

2020-2031

BASE YEAR

2023

FORECAST PERIOD

2024-2031

HISTORICAL PERIOD

2020-2023

UNIT

Value (USD Billion)

KEY COMPANIES PROFILED

John Zink Hamworthy, Aereon, Zeeco Inc., Wintek Corporation, PSG Dover, Kappa GI, SKB Engineering, Whirlwind Methane Recovery Systems, Cimarron Energy Inc., and Petrogas Systems.

SEGMENTS COVERED

By Type, By Application And By Geography

CUSTOMIZATION SCOPE

Free report customization (equivalent to up to 4 analyst working days) with purchase. Addition or alteration to country, regional & segment scope

 

Vapor Recovery Units Market Overview

Market Size and Growth:
The global Vapor Recovery Units (VRU) market is expected to grow significantly from 2024 to 2031, reaching a projected value of USD 2.1 billion by the end of the forecast period. With a compound annual growth rate (CAGR) of approximately 5.9%, the market’s expansion is driven by rising regulatory demands for emission controls, especially across industries that deal with volatile organic compounds (VOCs). Growing awareness of air quality concerns, along with economic incentives from the recovery of otherwise lost hydrocarbons, supports market growth. The VRU market benefits from increased environmental and operational standards in sectors like oil and gas, chemicals, and industrial manufacturing. As countries continue to enforce stringent environmental laws, VRUs are becoming integral for companies aiming to meet compliance goals while minimizing their environmental footprint and maximizing operational efficiency.

Environmental Regulations as Key Driver:
Environmental regulations aimed at limiting VOC emissions are a primary growth driver for the VRU market. Governments globally are introducing strict policies to reduce air pollution, with mandates specifically targeting the industrial and oil and gas sectors. For example, the U.S. Environmental Protection Agency (EPA) enforces standards requiring emission control solutions, making VRUs essential for companies to comply. The European Union and other regions have also adopted rigorous policies to curb emissions, promoting VRU adoption. These regulations are not only increasing VRU demand but are also accelerating technological advancements in the field. Companies that install VRUs benefit from meeting these regulations and potentially reducing operational costs by recovering and reusing vaporized products. As regulations become increasingly stringent, the VRU market is likely to see ongoing growth as companies work to avoid penalties and improve their environmental standing.

Technology Advancements:
Advancements in vapor recovery technology are making VRUs more efficient, compact, and cost-effective, driving adoption across industries. Modern VRUs incorporate improved sensors, automation, and control systems, enhancing their accuracy in detecting and capturing VOCs. These technological innovations have made VRUs easier to operate and maintain, which is essential for industries aiming to reduce operational downtime and costs. Automation also allows for better monitoring and regulatory compliance, as VRUs can adjust to changing vapor concentrations in real time. Enhanced control systems allow for remote operation and integration into industrial networks, improving their adaptability to various environments. As VRU technology evolves, it opens opportunities for smaller and medium-sized companies to adopt these systems, expanding the market’s reach beyond large industrial players.

Oil and Gas Sector Demand:
The oil and gas industry is the largest user of vapor recovery units, as VRUs are essential in capturing VOCs during the extraction, storage, and transportation of crude oil and natural gas. VRUs reduce emissions and improve operational efficiency by recovering valuable hydrocarbons that can be repurposed or sold. This dual benefit is a significant driver for VRU adoption in the sector, especially as the industry faces mounting environmental scrutiny. In upstream operations, VRUs are particularly crucial at storage and loading points where vapor loss is highest. In downstream applications, they are used in refineries and fuel distribution facilities to control VOC emissions. Given the rising demand for sustainable solutions within the oil and gas sector, VRU adoption is anticipated to increase, boosting the overall market growth over the forecast period.

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Chemicals and Petrochemicals:
In the chemicals and petrochemicals sector, VRUs are widely used to capture and recover vaporized chemicals, minimizing VOC emissions and reducing material loss. This industry often handles hazardous materials that release vapors, making it a prime area for VRU application. VRUs help facilities comply with stringent emission standards while recovering valuable chemicals, thus enhancing their cost efficiency. As the chemicals and petrochemicals sector grows, driven by increased production demands globally, VRU adoption is expected to rise in parallel. The sector’s ongoing expansion in developing regions, combined with regulatory pressure, is projected to bolster VRU installations. By mitigating emissions and improving operational safety, VRUs are becoming increasingly crucial for sustainability-focused chemical companies.

Regional Analysis:
The North American market is anticipated to dominate the VRU market due to strict emission regulations and the region’s established oil and gas industry. The Environmental Protection Agency (EPA) mandates VOC control measures, spurring VRU adoption in the United States. Europe also holds a substantial market share, driven by similar regulations under the EU Emission Standards and a strong chemical industry. The Asia-Pacific region, however, shows the highest growth potential, as rapid industrialization and urbanization heighten environmental concerns. Countries like China and India are increasingly investing in emission control technologies, including VRUs, to address pollution challenges. Government initiatives to reduce industrial emissions in these regions are likely to accelerate VRU demand, making Asia-Pacific a focal point for future market expansion.

Competitive Landscape:
The VRU market is highly competitive, with key players focusing on innovation and product efficiency to stand out. Major companies such as John Zink Hamworthy, Aereon, and Zeeco Inc. lead in providing VRU solutions across various industrial applications. These companies are investing in R&D to develop advanced, automated VRUs with better performance and lower maintenance requirements. Many players are also expanding their geographic reach and engaging in strategic partnerships to cater to the growing global demand. As environmental regulations intensify worldwide, competitive pressures are expected to drive further technological advancements and service expansions, benefiting end-users with enhanced VRU options tailored to specific industry needs.

Future Outlook:
The VRU market is set for strong growth as environmental priorities and emission regulations continue to drive demand. Increasing adoption in emerging markets, combined with technological advances, will further shape the market. The integration of IoT and smart systems in VRUs offers potential for improved monitoring and compliance, appealing to sustainability-focused companies. As industries globally focus on reducing their carbon footprint, VRUs will play an essential role in achieving these goals. The market’s growth trajectory is reinforced by the broader trend of environmental accountability, which is expected to intensify, pushing more sectors to adopt VRUs. With these factors at play, the VRU market holds strong potential for steady expansion through 2031.

Geographic Dominance:

Geographically, North America holds a dominant position in the Vapor Recovery Units (VRU) market, driven by stringent environmental regulations and a well-established oil and gas industry. The U.S. Environmental Protection Agency (EPA) enforces strict emission control standards, compelling oil and gas operators, as well as chemical manufacturers, to adopt VRUs. This regulatory framework has accelerated the integration of VRUs across numerous industrial facilities, making North America a leading region for market growth. Europe follows closely, with countries adhering to the EU Emission Standards, fostering demand for VRUs in the oil, gas, and chemical sectors. Meanwhile, the Asia-Pacific region, led by China and India, is witnessing rapid growth potential. Rising industrialization, urbanization, and increasing environmental concerns in these nations are prompting investments in VRUs to control emissions. With supportive government policies and heightened focus on air quality, Asia-Pacific is expected to be a major contributor to VRU market expansion over the coming years.

Vapor Recovery Units Market Key Players Shaping the Future

Key players shaping the future of the Vapor Recovery Units Market include John Zink Hamworthy, Aereon, Zeeco Inc., Wintek Corporation, PSG Dover, Kappa GI, SKB Engineering, Whirlwind Methane Recovery Systems, Cimarron Energy Inc., and Petrogas Systems.

Vapor Recovery Units Market Segment Analysis

The Vapor Recovery Units market is segmented based on By Type, By Application and Geography, offering a comprehensive analysis of the industry.

By Type:

Carbon AbsorptionCondensationMembrane SeparationAbsorptionOther Types

By Application:

Oil & GasChemicals & PetrochemicalsFood & BeveragesAutomotivePharmaceuticalsOther Industrial Applications

By Geography:

North America (United States, Canada, Mexico)Europe (Germany, France, UK, Italy, Spain, Rest of Europe)Asia-Pacific (China, Japan, India, South Korea, Australia, Rest of Asia-Pacific)Latin America (Brazil, Argentina, Rest of Latin America)Middle East & Africa (GCC Countries, South Africa, Rest of MEA)

Internet, Communication and Technology:

The Internet, Communication, and Technology (ICT) sector is playing an increasingly significant role in advancing the Vapor Recovery Units (VRU) market. The integration of IoT, data analytics, and remote monitoring technologies has revolutionized VRU operations, allowing for real-time tracking of VOC emissions, automated performance adjustments, and predictive maintenance. By enabling remote control and monitoring, these technologies help companies in oil and gas, chemicals, and other industries optimize VRU efficiency, reduce downtime, and ensure regulatory compliance. ICT solutions not only enhance VRU performance but also support sustainability efforts, as data-driven insights allow industries to track and minimize environmental impact effectively. This convergence of ICT with VRU technology positions the sector for enhanced operational efficiency and environmental accountability, driving its demand and development across various geographies.

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JAMS Launches AI for Enterprise Job Scheduling: JAX and JAMS MCP, on the Model You Choose

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A new AI agent and an open-standard connector let IT teams query, diagnose, and manage automation in plain language, on the model they choose, with operational data staying inside their own network

LONDON, July 24, 2026 /PRNewswire/ — JAMS Software, an orchestration solution for scheduled and event-driven automation, today announced the general availability of two AI capabilities for enterprise job scheduling: JAX, an AI agent built into the JAMS Web Client, and JAMS MCP, a connector built on the open Model Context Protocol standard that brings JAMS into external AI coding tools. Both capabilities ship at no additional cost as part of JAMS Web.

Automation environments grow faster than the teams that run them. Jobs multiply across SQL Server, Azure Data Factory, Airflow, SAP, JDE, and Banner, and when one fails, finding the root cause often means searching several consoles at once, frequently outside business hours. At the same time, IT leaders carry pressure to adopt AI while staying accountable for where operational data goes. JAX and JAMS MCP close both gaps together.

Full details on how JAX and JAMS MCP work, including the control model behind every action, are available at jamsscheduler.com/product/ai.

JAX is an AI agent that runs inside the JAMS Web Client. It finds jobs, troubleshoots failures, and answers how-to questions in plain language, with each response grounded in the JAMS user guide and checked against a built-in glossary. JAX acts only when a user asks it to. Reads flow freely, and every write action pauses for the user’s explicit approval before it runs. JAX does not learn between sessions, and conversations are not retained on the server.

JAMS MCP is a connector, built on the open Model Context Protocol standard, that brings JAMS into the AI tools engineering teams already use, including Cursor, VS Code with Copilot, Claude Code, Claude Desktop, and Codex. Users query jobs, investigate failures, and manage runs in plain language without leaving their tool.

Both capabilities run inside the customer’s own network and act as the signed-in user, with that user’s exact JAMS permissions. There is no elevated AI account: whatever a user cannot do in the JAMS interface, JAX and JAMS MCP cannot do on that user’s behalf. Every JAX and MCP operation is recorded in its own dedicated log, and changes made through the JAMS API land in the JAMS audit trail like any other change. Customers choose their own AI model, whether a commercial provider such as OpenAI or Anthropic or a model running entirely on their own hardware, and JAMS never trains on customer data. In the current release, neither feature edits or deletes a job, folder, schedule, or agent definition. For teams that must keep operational data within a defined boundary, JAX runs on a local model entirely inside the customer’s own network, so nothing leaves at all.

“Adopting AI usually means giving something up, most often visibility into where your data goes,” said Pete Hegland, Chief Executive Officer of JAMS Software. “We built JAX and JAMS MCP so that trade does not have to happen. Every action runs as the signed-in user, every change waits for approval, and the model itself can run entirely inside your own network.”

“IT teams across the United Kingdom and EMEA tell us the same thing: they want the benefit of AI without losing sight of where their data goes,” said Greg McLaughlin, Account Executive for EMEA at JAMS Software. “JAX and JAMS MCP let them keep operational data inside their own network and still get answers in plain language. That combination is what makes this practical for the teams I work with.”

JAX and JAMS MCP are available now to all JAMS Web customers across the United Kingdom and EMEA, with no separate licence, SKU, or additional cost. AI-assisted creation of new jobs and workflows from a plain-language description is on the roadmap for a future release, gated by the same approvals and permissions as every other action.

Learn how JAX and JAMS MCP work at https://jamsscheduler.com/product/ai.

Fast facts

JAX is an AI agent built into the JAMS Web Client for job scheduling and workflow automation.JAMS MCP is a connector built on the open Model Context Protocol standard, for Cursor, VS Code with Copilot, Claude Code, Claude Desktop, and Codex.Both act as the signed-in user, with that user’s exact JAMS permissions, and there is no elevated AI account.Customers choose the AI model, including a local model that runs entirely inside their own network.JAMS never trains on customer data.Both are available now at no additional cost as part of JAMS Web.

About JAMS Software

Founded in 1987, JAMS Software is an orchestration solution that helps IT teams centralize, automate, and manage scheduled and event-driven jobs across complex, hybrid environments. Over 850 customers rely on JAMS to run their automated workloads. JAMS Software, LLC is headquartered at 108 Patriot Drive, Suite A, Middletown, DE 19709.

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Video: CNPC offers green chemical answer

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BEIJING, July 24, 2026 /PRNewswire/ — A news report from chinadaily.com.cn:

Located on the edge of the Taklamakan Desert in Northwest China’s Xinjiang Uygur autonomous region, the Tarim 1.2 MTA Phase II Ethylene Project and its supporting green and low-carbon demonstration facility of PetroChina Dushanzi Petrochemical Company, a subsidiary of China National Petroleum Corporation, are offering a new example of China’s low-carbon industrial transformation.

Watch the video to discover how CNPC is exploring a cleaner and more circular future for the industry.

View original content to download multimedia:https://www.prnewswire.com/apac/news-releases/video-cnpc-offers-green-chemical-answer-302834036.html

SOURCE chinadaily.com.cn

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Shanghai Electric showcases embodied intelligence robot matrix and AI-native smart factory solutions at WAIC 2026

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Featuring humanoid robots with 41 degrees of freedom, pipe‑inspection robots with ±1mm positioning accuracy, and 51 industrial‑grade AI agents

SHANGHAI, July 24, 2026 /PRNewswire/ — Operations in high-end equipment manufacturing often involve confined spaces, complex objects, and fine manipulation tasks that demand sustained and stable precision. At the recent 2026 World Artificial Intelligence Conference and High-Level Meeting on Global AI Governance (WAIC 2026), Shanghai Electric (SEHK: 02727, SSE: 601727) showcased its comprehensive portfolio of embodied intelligence solutions tailored to a range of industrial scenarios.

Themed “AI for All: Smart Squad, Shining Without Limits,” Shanghai Electric highlighted its capabilities across embodied AI robots, robot core components, and AI-native smart factory solutions, demonstrating end-to-end capabilities spanning complete robot systems, critical parts, industrial software, and smart factory architecture.

“The true value of embodied intelligence lies in understanding real industrial tasks: combining the strength, precision, and stability of machines with human experience and judgment to drive a genuine paradigm of ‘machine-assisted, human-machine collaboration,'” said Wang Chunlei, deputy general manager of the Robotics Business Unit at Shanghai Electric Automation Group.

Shanghai Electric’s robotics portfolio covers five key industrial scenarios: connector insertion, electrical operations, flexible sorting, intelligent assembly, and pipe processing. Highlights include:

“SUYUAN” bipedal humanoid robot: With 41 degrees of freedom for enhanced mobility, it is equipped with a multimodal visual sensing system on the head and torso, along with a dual-battery hot-swap system. It is well-suited for inspection, material handling, and assembly tasks.”TUOYUAN” industrial wheeled humanoid robot: Powered by an embodied intelligence foundation model and force-position hybrid control, it is capable of multi-spec connector insertion, material sorting, and loading/unloading of automotive sheet metal parts.”Mermaid” bionic wheeled humanoid robot: Capable of autonomously identifying buttons, knobs, and air switches, it generates real-time operation paths.Autonomous pipe inner-wall chamfering robot: Designed for confined spaces, it can position and process thousands of hole edges with accuracy within 1 millimeter while transmitting data in real time.

Shanghai Electric also showcased its portfolio of core components ranging from power-output to end effectors. Among them, the planetary roller screw offers more than three times the load capacity of traditional ball screws, while the DexHand dexterous hand is designed to meet diverse gripping and manipulation requirements.

Shanghai Electric launched 51 AI models and agents under its “StarCloud Intelligent Manufacturing” series across three domains: R&D and design, production and manufacturing, and operations and maintenance—covering critical equipment processes such as process optimization and wind power facility maintenance.

These industrial agents are embedded in robotic decision-making systems and the operational logic of AI-native smart factories, transforming industrial expertise into digitized, reusable capabilities. They support production-line scheduling, quality inspection, and predictive maintenance, driving the evolution of manufacturing systems from experience-driven to data-driven operations.

Shanghai Electric also released the “AI-Native Smart Factory Technology White Paper,” proposing an active evolution architecture that enables real‑time, closed‑loop optimization of production data, giving the factory self‑perception, self‑decision, and self‑execution capabilities. Built on First Principles, the AI‑native smart factory vertically integrates process flows, industrial software, agents, and smart equipment to dismantle traditional hierarchies while horizontally bridging data silos. The architecture features three core layers: the AI factory brain as the “control center,” industrial agents and embodied robots as the “execution network,” and the physical twin as the “digital mirror.”

Leveraging its deep industrial expertise and comprehensive solution capabilities, Shanghai Electric will continue to drive the implementation of AI in industrial settings, tackle technical challenges facing embodied intelligence in complex scenarios, accelerate the large‑scale deployment of AI‑native smart factories, and deliver replicable solutions across diverse manufacturing environments.

SOURCE Shanghai Electric

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