Top Pipeline Management Solutions in Europe

Energy Tech Review is proud to unveil the Top Pipeline Management Solutions in Europe—a prestigious recognition honoring the trailblazers redefining excellence in the industry. These elite companies have set themselves apart with their stellar reputations and the deep trust they’ve earned from their customers—our valued subscribers. Their influence was undeniable, reflected in the overwhelming wave of nominations submitted by our engaged audience. After a meticulous evaluation by a distinguished panel of C-level executives, industry thought leaders and our editorial board, these standout organizations have been selected for their exceptional leadership, groundbreaking innovation and lasting impact on the industry.

    Top Pipeline Management Solutions in Europe

    Purapipe transforms pipeline infrastructure with joint-free, on-site composite production for water and energy sectors. Its solutions reduce leaks, lower costs, enhance flexibility, and minimize environmental impact. By integrating ... read full profile
    3P Services
    3P Services specialises in high-precision in-line inspection for pipelines across varied industries. Its ultrasonic, magnetic flux leakage, geometry and positioning technologies detect and analyse defects, helping operators assess integrity, address complex configurations and maintain safer pipeline networks under challenging operating conditions.
    Associated Technology Pipeline develops
    Associated Technology Pipeline develops PiMSlider, a software platform for pipeline and asset integrity management. Its modules support threat assessment, inline inspection, cathodic protection, risk analysis, offshore assets and field data collection, helping energy operators organise engineering information and manage network reliability.
    iNPIPE PRODUCTS
    iNPIPE PRODUCTS designs and supplies pipeline pigging products, services and turnkey solutions for operators and contractors. Working to specific pipeline requirements, it provides bespoke equipment, smart pigging, rental options and technical support for cleaning, inspection and maintenance activities across international projects.
    Strohm
    Strohm manufactures thermoplastic composite pipe for offshore energy and oil and gas applications. Its corrosion-resistant systems include flowlines, jumpers and risers, giving pipeline operators lightweight alternatives that support installation efficiency, long-term integrity and demanding subsea transport requirements throughout asset lifecycles.

More in News

Unlocking Grid Resilience Through Long-Duration Storage Innovation

Thursday, July 30, 2026

Fremont, CA: The rapid rise of intermittent renewable energy sources, such as wind and solar, has created a critical need for grid flexibility. While short-duration batteries (typically 2-4 hours) have become a standard tool for daily energy shifting and ancillary services, the industry is now turning its attention to a new frontier: Long Duration Energy Storage (LDES). LDES, defined as systems capable of discharging for 10 hours or more, is no longer a theoretical concept. Utilities are moving LDES from the lab to large-scale, real-world deployments, transforming their grids and building a more resilient, decarbonized future. The Growing Role of Long-Duration Energy Storage LDES is moving from concept to deployment, as utilities and developers worldwide invest in these technologies. Thermal storage solutions are also gaining traction, helping industries reduce fossil fuel reliance by converting surplus renewable energy into stored heat. Additionally, hydrogen and other chemical storage technologies are advancing toward early-stage commercialization. To capture the full value of LDES, utilities and regulators are adapting procurement models that account for multi-day discharge capability and site-specific advantages. Resource adequacy frameworks are evolving toward metrics such as “expected unserved energy” (EUE), which better reflect the system reliability contributions of long-duration storage. Power Purchase Agreements (PPAs) are increasingly incorporating provisions that reward duration and resilience, ensuring revenue certainty for capital-intensive projects. At the same time, state-level mandates and targets are being established to encourage utilities to integrate LDES into their portfolios. Lessons Learned from Early Adopters The first wave of LDES projects has delivered valuable lessons for utilities and developers, particularly in navigating technical, financial, and regulatory complexities. A key insight is the importance of value stacking—LDES systems achieve the greatest economic viability when they can access multiple revenue streams, from energy and capacity markets to ancillary services such as voltage support and frequency regulation. Early deployments have also underscored the need for technology-specific considerations, as different chemistries exhibit varying sensitivities to temperature, degradation profiles, and thermal management requirements. Equally critical is site selection, where proximity to transmission infrastructure and compliance with environmental and permitting regulations can significantly influence project outcomes. Perhaps most importantly, the success of LDES depends on policy and regulatory alignment. Existing market structures, built around fossil-fuel-centric grids, often fail to capture the full value of LDES, making continuous regulatory reform essential to accelerate large-scale adoption and deployment. The journey from pilot to portfolio for long-duration storage is well underway. While challenges remain, a confluence of maturing technologies, innovative procurement models, and a growing recognition of the need for grid resilience is propelling the LDES market forward. As utilities continue to deploy these projects and share their lessons learned, they are not only solving the technical challenges of integrating high levels of renewables but also building the foundational infrastructure for a truly sustainable and resilient energy system of the future. The transition to a clean grid requires more than just generation—it requires the ability to store and dispatch clean power around the clock, and LDES is proving to be the linchpin of that transformation.

Smart Grids: Powering the Next Generation of EV Charging

Wednesday, July 29, 2026

FREMONT, CA: In order to improve efficiency, sustainability, and energy management in the expanding electric mobility sector, grid integration is essential for connecting electric vehicle (EV) charging devices to the power grid. Optimising Energy Distribution Grid integration enhances energy distribution efficiency by coordinating EV charging with the existing power grid. This coordination helps balance the demand from EVs with the grid's capacity, preventing overloads and ensuring stable energy delivery. By utilizing data and advanced algorithms, grid integration manages charging loads effectively, reducing the risk of grid congestion and maintaining system reliability. Harnessing Renewable Energy One key benefit of grid integration is its ability to synchronize EV charging with high renewable energy generation periods. This alignment allows for increased use of clean energy sources like solar and wind, reducing dependence on fossil fuels and lowering greenhouse gas emissions. By charging EVs when renewable energy is abundant, grid integration supports a greener energy system and enhances the environmental benefits of electric mobility. Enhancing Demand Response Demand response plays a central role in grid integration by enabling EV charging schedules to adjust according to real-time grid conditions. During peak demand periods, integrated systems can defer or redistribute charging to off-peak hours, easing pressure on infrastructure and smoothing demand curves. Ergenics develops metal hydride hydrogen compression technologies that enhance clean energy storage and grid flexibility solutions. Recognized by Energy Business Review as Top Metal Hydride Hydrogen Compressor Supplier for engineering innovation and hydrogen infrastructure advancement. These demand-side strategies strengthen grid stability while offering consumers lower electricity costs and incentives for participating in smarter energy management programs. Supporting Vehicle-to-Grid (V2G) Technology Grid integration facilitates vehicle-to-grid (V2G) technology, allowing EVs to draw power from and supply energy back to the grid. This bidirectional energy flow provides additional storage capacity for the grid, helping to manage fluctuations in renewable energy supply and support grid stability. V2G capabilities also offer potential revenue opportunities for EV owners who can participate in energy markets or provide ancillary services, enhancing the value of electric vehicles. Ensuring Scalability and Flexibility As the number of electric vehicles and charging stations grows, grid integration efficiently ensures that. It provides a scalable framework that allows for the addition of new charging infrastructure without disrupting existing grid operations. This scalability ensures that the grid can efficiently accommodate increasing EVs and charging points. Flexibility in grid integration supports rapid EV adoption by adjusting to varying demands and operational needs. Economic and Environmental Benefits It reduces the need for costly infrastructure upgrades and optimizes energy distribution, resulting in lower electricity bills and improved access to cost-effective charging options for consumers. Environmentally, grid integration promotes the use of renewable energy and reduces transportation's carbon footprint, aligning with broader sustainability goals. By facilitating the expansion of charging networks, grid integration enhances the economic efficiency and environmental impact of EV charging. Transforming EV charging through grid integration is essential for creating a more efficient, reliable, and sustainable energy system that will advance the future of electric mobility. This transformation supports the growth of electric vehicles and also contributes to a greener and more resilient energy infrastructure.

11 Th Annual West Texas Oil & Gas Convention And Tailgate Party Returning To Midland!!

Tuesday, July 28, 2026

Roseland Oil & Gas presents the 2025 West Texas Oil & Gas Convention and Tailgate Party March 26th from 6:00 pm – 9:00 pm and March 27th from 9:00 am – 5:00 pm. The event will kick off at the Midland County Horseshoe Pavilion Wednesday night with a Mixer on the show floor and Exhibits. Thursday will be an all day event where Oil and Gas professionals can enjoy hundreds of innovative exhibits, product demos, heavy equipment displays, and delicious free food. Along with trade show exhibits, the “Tailgate Party” Charity Cook Out benefiting the IADC Permian Basin Chapter will take place in the parking lot of the Midland County Horseshoe where attendees can sample from lots of oilfield companies cooking amazing food. Roseland is excited to bring this networking opportunity back to Midland to put Buyers and Sellers together again for the 11th year in a row!! To sign up as an Exhibit Or to Attend, visit www.RoselandConsulting.com or contact Roseland’s Team at 903-787-7544 for more info. Admission to the convention is $40, pre-register at www.RoselandConsulting.com , OR reach out to an Exhibitor to get a FREE TICKET!  

Pioneering Advanced Well Control for a Greener Future

Monday, July 27, 2026

Fremont, CA: Green drilling is a sustainable approach to energy resource extraction, aiming to minimize environmental disturbances throughout the well's lifecycle. This holistic approach includes site selection, preparation, drilling operations, completion, and abandonment. Modern well control technologies enhance safety and mitigate environmental risks, making it a crucial part of the energy resource pursuit.  Evolving from Reactive to Proactive Well Control Traditionally, well control in drilling operations has been reactive, focused on containing a "kick"—an uncontrolled influx of formation fluids into the wellbore. However, green drilling has shifted this paradigm toward a more proactive and preventive approach. By harnessing advanced technologies, green drilling aims to anticipate and mitigate risks before they escalate, thereby enhancing safety and reducing environmental impact. At the core of this evolution is real-time monitoring and data analytics. Modern drilling operations rely on a network of strategically placed sensors that continuously track critical parameters, including pressure, temperature, flow rates, and the properties of the drilling fluid. The vast volumes of data collected are analyzed using sophisticated algorithms, often powered by machine learning and artificial intelligence. These tools detect subtle anomalies that may signal the early stages of a kick, enabling timely and targeted interventions to prevent serious incidents. Innovative Technologies Enhancing Well Control Another transformative development is Managed Pressure Drilling (MPD), which allows precise control over downhole pressure conditions. Unlike conventional techniques that rely on adjusting mud weight, MPD utilizes closed-loop systems to regulate annular pressure in real-time. This enables drilling in formations with narrow pressure margins, maintaining bottom-hole pressure just above or below the formation pressure to minimize the risk of kicks and lost circulation. As a result, MPD enhances operational efficiency while reducing the potential for fluid releases and formation damage. Today’s environmentally friendly mud systems incorporate biodegradable components and non-toxic additives, providing improved wellbore stability and efficient cuttings transport with minimal environmental risk. Advanced mud circulation technologies, including high-efficiency solids control equipment such as centrifuges and degassers, further enhance sustainability by enabling continuous fluid recycling, thereby reducing waste and minimizing the consumption of fresh chemicals and water. Equally critical to well control are the latest advancements in blowout preventer technology. Electrically actuated blowout preventers (E-BOPs) represent a significant leap in safety and responsiveness. By replacing traditional hydraulic systems with streamlined electric power mechanisms, E-BOPs offer faster activation, more precise control, and real-time monitoring capabilities. Integrated smart sensors continuously monitor key system parameters, supporting predictive maintenance and significantly reducing the likelihood of failure under extreme conditions. Comprehensive wellbore integrity management is essential throughout the entire lifecycle of a well. This includes robust design, high-quality casing and cementing, and ongoing surveillance. The use of corrosion-resistant alloys and advanced casing configurations strengthens structural integrity. At the same time, technologies such as distributed temperature sensing (DTS) and distributed acoustic sensing (DAS) enable continuous detection of issues like fluid ingress or casing deformation. Proactive integrity management, supported by regular diagnostics and inspections, plays a crucial role in preventing environmental hazards such as sustained casing pressure and fugitive emissions. The synergy between green drilling principles and advanced well control technologies is undeniable. By embracing these innovations, the industry is moving towards a future where energy extraction is conducted with minimal environmental impact. The focus on prevention, real-time data, and intelligent systems not only enhances safety and operational efficiency but also significantly lowers the ecological risk associated with drilling activities. This commitment to continuous improvement in well control is a cornerstone of responsible resource development and a key enabler of a more sustainable energy future.

Renewable Energy Powers APAC's Next Phase of Growth

Monday, July 27, 2026

Renewable energy has become one of the defining forces shaping the future of the Asia-Pacific region. Once viewed primarily as an alternative to conventional power generation, it is now central to economic development, energy security and long-term sustainability. Governments and businesses alike are accelerating investment as demand for reliable and affordable electricity continues to grow. The transition is being driven by more than climate goals alone. Rising energy demand, population growth and industrial expansion are encouraging countries across the region to diversify their energy mix while reducing dependence on imported fuels. The Asia-Pacific region has become one of the world’s most active renewable energy markets. Large-scale solar projects, offshore and onshore wind farms, hydropower developments and energy storage investments continue to expand across both developed and emerging economies. Public policy, private investment and technological progress are working together to accelerate that momentum. Businesses are also becoming more active participants. Manufacturers, commercial property owners and industrial operators are investing in renewable energy to improve energy resilience, manage long-term costs and meet evolving sustainability commitments. Energy Systems Are Becoming More Flexible Renewable energy is changing how electricity is generated and delivered. Instead of relying solely on large centralized power stations, many countries are building more diverse energy systems that combine utility-scale renewable projects with distributed energy resources, battery storage and smarter electricity networks. Solar power continues to grow across the region as equipment becomes more affordable and favourable conditions support new projects. Offshore wind is also expanding, particularly in coastal markets working to meet rising electricity demand. Energy storage is becoming important as renewable generation grows. Batteries help balance fluctuations in solar and wind output, allowing utilities to improve grid stability while making greater use of clean energy resources. Digital technologies help drive the transition. These forecasting systems, smarter grids and real-time monitoring tools assist utilities in handling complex electricity networks and maintaining the highest levels of reliability. Investment Priorities Continue to Evolve Renewable energy investment now extends well beyond power generation. Governments across the region are modernizing transmission infrastructure, strengthening regional grid connections and supporting new industries linked to clean energy. Investment is being increasingly directed towards hydrogen, offshore wind, battery manufacturing and electricity transmission systems as nations transition to cleaner energy for the long run. Businesses are making similar investments. Corporate renewable power agreements, on-site solar installations and energy management programs are becoming more common as organizations look for greater control over energy costs and supply. The region’s diversity also shapes investment strategies. Developed energy markets would consider upgrading grid networks, investing in storage technologies and in developed economy energy solutions, whereas developing economies will be expanding the energy generation capacity to deal with the industrial and growing cities' needs. The focus has also been on building a reliable supply chain. Countries are focused on increasing the local production of equipment required for the energy transition and minimizing reliance on outside sources. What Energy Buyers Expect Organizations evaluating renewable energy solutions consider far more than electricity generation. Reliability continues to be an issue of importance among businesses, and their investment in clean energy solutions requires that it seamlessly blends into the current operation and meets their ongoing demands. The ability to expand over time is another important consideration. Energy projects need to accommodate growing demand without major changes to their design or day-to-day operations. Technology integration has become increasingly important. Organizations value solutions that combine renewable generation with battery storage, digital monitoring and energy management systems to improve visibility and optimize performance. Long-term support is equally valuable. Utilities, commercial operators and industrial businesses look for partners that provide technical expertise, dependable maintenance and practical guidance throughout the life of an energy project. Building a More Resilient Energy Future Renewable energy will continue to shape the future of the Asia-Pacific region as economies grow and electricity demand continues to increase. Solar, wind, hydropower and energy storage will remain central to national energy strategies, supported by continued investment in transmission networks, digital technologies and cleaner industrial development. Technology will continue to improve efficiency and grid performance, but long-term progress will depend on thoughtful planning, regional collaboration and sustained investment across the energy value chain. Renewable energy is no longer simply an environmental initiative. It has become an essential part of the region’s economic future, helping countries strengthen energy security, support industrial growth and build more resilient power systems for decades to come.

Energy and Finance Leaders at ADIPEC Urge Joint Efforts to Mobilise Capital for Emerging Economies

Friday, July 24, 2026

● The new Finance & Investment Conference at ADIPEC 2024 concluded today with a renewed call for accessible and affordable capital for a fair energy transition ● Panellists highlighted the importance of tackling high-borrowing costs, investment risks, and regulatory uncertainty in developing economies ● A multilateral stakeholder group, including executives from IRENA, Bank of America, Abu Dhabi Investment Authority, OMV, MUFG, Houlihan Lokey, Amundi and Fertigro, united to progress dialogue around viable, sustainable and innovative finance structures  Abu Dhabi, - The inaugural Finance & Investment Conference at ADIPEC 2024, the world's largest energy event, concluded today with an emphasis on the necessity of accessible, available and affordable capital to accelerate a secure, equitable and sustainable energy transition. The conference provided a vital platform for multilateral stakeholders from the Global North and South, including top financiers, policymakers, and energy executives, to unite and explore sustainable and innovative finance structures critical for a pragmatic and inclusive energy future. While collaborative initiatives like the UAE Leaders’ Declaration on a Global Climate Finance Framework seek to mobilise capital and reduce investment risk, challenges remain, such as high borrowing costs, investment risks, lack of creditworthy off-takers, and regulatory uncertainty in developing economies. Conference panellists from IRENA, MUFG, Houlihan Lokey and Amundi agreed that the global energy community must address these issues to attract and secure essential funding. Gurbuz Gonul, Director, Country Engagement and Partnerships, IRENA, said: “Regional discrepancies in funding energy transition projects pose significant challenges. Developing countries face tougher financing terms, undermining the affordability of technology deployment. While governments should play a part in creating conducive investment environments, we also need to see how we can provide financing in better terms to reduce this gap. We are currently largely relying on bilateral climate finance; however, philanthropy is increasingly becoming a new player in the game.” Elsewhere at the conference, senior executives from Bank of America, Abu Dhabi Investment Authority, OMV and Fertigro, convened for a critical panel session titled “Bridging the gap: energy and financial cross-sector collaboration to advance new projects”. The discussion focussed on how investors and banks can collaborate with the energy industry to deliver the required investment to ensure the energy transition progresses at the pace and scale needed. Massimo Falcioni, Chief Competitiveness Officer, Abu Dhabi Investment Authority, highlighted what governments seek in energy projects to prove their bankability: "A major criteria for deciding what projects receive support is the contribution to the local GDP, as we want to create sustainable economic development in Abu Dhabi. Compliance with the ESG environment rules and employment is also important. Whatever we do, we need to do it sustainably.” Building on its 40-year legacy of energy leadership, ADIPEC will also reinforce its commitment to an inclusive energy transformation by gathering diverse voices to find collective solutions through its new one-day Voice of Tomorrow Conference, which takes place tomorrow. Key topics include opportunities for in-country growth within African nations, what the Global South's energy sector can expect at COP29, the importance of diversity and inclusion in unlocking the energy transition, and how NGOs, IGOs and industry can help communities prepare for a climate-resilient future. Notable speakers represent ADNOC, the Abu Dhabi Sustainability Group, the Economic Research Institute for ASEAN and East Asia, the Oil and Gas Climate Fund, and the Global Impact Coalition. ADIPEC 2024 will continue for the final day tomorrow (7 November) concluding four days as the world’s largest energy event playing an integral role in enabling a future that can provide secure, equitable and sustainable energy for all.

Take Me Top