LCSAT

Low Carbon Solutions and Technologies

February 04, 2026 | Holiday Inn - Cheraga Tower

Welcome to the first energy event in Algeria focused on low-carbon technology solutions in the oil and gas Industry

Carbon emissions are soaring every day, requiring many institutions to work hard to limit them, not only for environmental reasons but also for economic ones, as carbon derivatives are extensively used in many industries, and the demand for their composite materials is hugely expanding in several applications. 

CO₂ is also used in oil and gas extraction as a driver to push resources to the surface, especially in mature fields, where a new era of CO₂ capture, transportation, and utilization is taking shape, leading to significant development. New technologies are largely used in reducing carbon emissions and in generating revenue from captured carbon rather than merely storing it.

Join industry leaders and visionaries at the Ranadrill Low Carbon Solutions and Technologies event to connect, learn, and elevate your experience in low-carbon solutions.You will get in touch with experts—decision-makers and technologists with a deep understanding of this promising business.

Ranadrill’s Low Carbon Emissions training will allow you to gain insights and know-how from our skilled experts to understand related carbon taxes and credit implications, and most importantly to use new technologies to monetize emissions and generate revenue. Be part of the future, and attend the first event dedicated to low-carbon solutions and technologies for the oil and gas industry in Algeria.

Lcsat Conference Panels ​

February 04, 2026 | Holiday Inn - Cheraga Tower

Panel Discussion 1:


A comprehensive strategic framework for optimizing natural gas utilization through renewable integration and investment in petrochemical and conversion technologies involves a multi-faceted approach that simultaneously enhances economic value. At its core, the strategy emphasizes the substitution of natural gas in low-value applications, such as electricity generation, with renewable energy sources including solar and wind, thereby freeing up gas for higher-value industrial uses and exports.

Large-scale deployment of renewables should be coupled with grid readiness, energy storage solutions, and smart management systems to ensure reliability and flexibility in supply, while excess renewable capacity can also support the production of green hydrogen or ammonia for industrial use and export markets.

Concurrently, investment in petrochemical infrastructure and gas conversion technologies is critical to capture the maximum economic potential of natural gas. This includes developing advanced petrochemical clusters focused on producing ethylene, propylene, polyethylene, polypropylene, methanol, ammonia, and fertilizers, as well as implementing gas-to-liquids (GTL) and gas-to-chemicals (GTC) facilities to produce synthetic fuels, lubricants, and other high-value products.

By integrating renewables, fostering industrial diversification, and leveraging advanced conversion technologies, this strategic framework enables the country to maximize the economic and environmental value of their natural gas resources, reduce reliance on fossil-fuel-based power generation, create high-skilled jobs, and position themselves competitively in global energy and chemical markets.

Panel 1 Description :

A comprehensive strategic framework for optimizing natural gas utilization through renewable integration and investment in petrochemical and conversion technologies involves a multi-faceted approach that simultaneously enhances economic value, At its core, the strategy emphasizes the substitution of natural gas in low-value applications, such as electricity generation, with renewable energy sources including solar, wind, thereby freeing up gas for higher-value industrial uses and exports. 

Large-scale deployment of renewables should be coupled with grid readiness , energy storage solutions, and smart management systems to ensure reliability and flexibility in supply, while excess renewable capacity can also support the production of green hydrogen or ammonia for industrial use and export markets.

Concurrently, investment in petrochemical infrastructure and gas conversion technologies is critical to capture the maximum economic potential of natural gas. This includes developing advanced petrochemical clusters focused on producing ethylene, propylene, polyethylene, polypropylene, methanol, ammonia, and fertilizers, as well as implementing gas-to-liquids (GTL) and gas-to-chemicals (GTC) facilities to produce synthetic fuels, lubricants, and other high-value products.. 

By integrating renewables, fostering industrial diversification, and leveraging advanced conversion technologies, this strategic framework enables the country to maximize the economic and environmental value of their natural gas resources, reduce reliance on fossil-fuel-based power generation, create high-skilled jobs, and position themselves competitively in global energy and chemical markets.

Panel 2 Description :

The oil and gas sector still playing a crucial role in the global economy as decarbonization becomes a central driver of competitiveness and value creation. By adopting innovative, low-carbon technologies and business models, companies can transform traditional operations while generating new revenue streams throughout the value chain. Digital subsurface tools, autonomous operations, methane-leak detection, and electrified assets reduce emissions and operating costs.

Enabling producers to market lower-carbon hydrocarbons at a premium. In midstream, intelligent pipeline monitoring, energy-efficient compression, and renewable-powered logistics reduce transportation footprints and open opportunities for carbon-neutral transport services. In refining and petrochemicals, advanced process optimization, waste-heat recovery, hydrogen switching, and integrated CCUS enable the production of low-carbon fuels, sustainable feedstocks, and certified green products. Downstream, innovations such as EV charging integration, biofuels, e-fuels, and digital customer platforms create new consumer markets and brand differentiation.

In this panel will shed light on : operational efficiencies, decarbonization itself becomes a revenue engine through carbon credits, carbon capture-as-a-service models, certified low-carbon products, and partnerships in renewable power, hydrogen, and circular-economy value chains. Companies that embrace this shift can enhance asset value by attracting  capital, and secure a competitive advantage in a rapidly decarbonizing global energy landscape

Panel Discussion 2:


The oil and gas sector still plays a crucial role in the global economy as decarbonization becomes a central driver of competitiveness and value creation. By adopting innovative, low-carbon technologies and business models, companies can transform traditional operations while generating new revenue streams throughout the value chain. Digital subsurface tools, autonomous operations, methane-leak detection, and electrified assets reduce emissions and operating costs.

Enabling producers to market lower-carbon hydrocarbons at a premium. In midstream, intelligent pipeline monitoring, energy-efficient compression, and renewable-powered logistics reduce transportation footprints and open opportunities for carbon-neutral transport services. In refining and petrochemicals, advanced process optimization, waste-heat recovery, hydrogen switching, and integrated CCUS enable the production of low-carbon fuels, sustainable feedstocks, and certified green products. Downstream, innovations such as EV charging integration, biofuels, e-fuels, and digital customer platforms create new consumer markets and brand differentiation.

This panel will shed light on operational efficiencies, decarbonization itself becomes a revenue engine through carbon credits, carbon capture-as-a-service models, certified low-carbon products, and partnerships in renewable power, hydrogen, and circular-economy value chains. Companies that embrace this shift can enhance asset value by attracting capital, and secure a competitive advantage in a rapidly decarbonizing global energy landscape.

Panel Discussion 3:


Integrating innovative drilling and well integrity solutions enable oil and gas operators to achieve safer, faster, more cost-efficient, and reliable production across the life cycle of a well. Modern drilling technologies such as rotary steerable systems, automated drilling controls, real-time downhole sensing, and advanced drilling fluids improve drilling precision, reduce non-productive time, and minimize formation damage. These innovations help operators reach target reservoirs more efficiently while lowering operational risks and overall drilling costs.

Well integrity solutions play a critical role in ensuring long-term production reliability. Technologies like smart completion systems, durable cementing materials, continuous annular pressure monitoring, and digital well surveillance tools help maintain barrier integrity, prevent leaks, and optimize reservoir management. Predictive analytics and remote monitoring further enhance safety by identifying potential well failures before they escalate.

By integrating these advanced drilling and integrity tools, operators can extend well life, reduce maintenance costs, increase recovery rates, and improve overall field profitability. These innovations also support safer operations, lower environmental impact, and more sustainable resource development.

Panel 3 Description :

Integrating Innovative drilling and well integrity solutions enable oil and gas operators to achieve safer, faster, and more cost-efficient and reliable production across the life cycle of a well. Modern drilling technologies such as rotary steerable systems, automated drilling controls, real-time downhole sensing, and advanced drilling fluids improve drilling precision, reduce non-productive time, and minimize formation damage. These innovations help operators reach target reservoirs more efficiently while lowering operational risks and overall drilling costs.

Well integrity solutions play a critical role in ensuring long-term production reliability. Technologies like smart completion systems, durable cementing materials, continuous annular pressure monitoring, and digital well surveillance tools help maintain barrier integrity, prevent leaks, and optimize reservoir management. Predictive analytics and remote monitoring further enhance safety by identifying potential well failures before they escalate.

By integrating these advanced drilling and integrity tools, operators can extend well life, reduce maintenance costs, increase recovery rates, and improve overall field profitability. These innovations also support safer operations, lower environmental impact, and more sustainable resource development.

Panel 4 Description :

Scaling up green hydrogen involves overcoming a complex mix of engineering, economic, logistical, and regulatory challenges. These challenges are interconnected, meaning that solving one often depends on progress in others, which is why large-scale deployment requires a coordinated approach across technology developers, governments, energy companies, and industry users. 

Scaling up green hydrogen requires addressing a tightly interconnected set of engineering, economic, logistical, and regulatory challenges, each of which influences the others. Engineering hurdles such as improving electrolyzer efficiency, durability, and integration with renewable energy affect production costs, which in turn shape the economic viability of large-scale projects.

 Economic factors like high upfront capital requirements and uncertain long-term demand depend on reliable infrastructure for transporting and storing hydrogen, as well as clear market signals. Logistical barriers, including limited pipeline networks, storage capacity, and supply-chain constraints, cannot be resolved without supportive regulatory frameworks that streamline permitting, harmonize standards, and provide long-term policy stability. 

Because progress in any one area often relies on advances in several others, large-scale deployment of green hydrogen can only succeed through coordinated action among technology developers, governments, energy companies, and industrial users.

Panel Discussion 4:


Scaling up green hydrogen involves overcoming a complex mix of engineering, economic, logistical, and regulatory challenges. These challenges are interconnected, meaning that solving one often depends on progress in others, which is why large-scale deployment requires a coordinated approach across technology developers, governments, energy companies, and industry users.

Scaling up green hydrogen requires addressing a tightly interconnected set of engineering, economic, logistical, and regulatory challenges, each of which influences the others. Engineering hurdles such as improving electrolyzer efficiency, durability, and integration with renewable energy affect production costs, which in turn shape the economic viability of large-scale projects.

Economic factors like high upfront capital requirements and uncertain long-term demand depend on reliable infrastructure for transporting and storing hydrogen, as well as clear market signals. Logistical barriers, including limited pipeline networks, storage capacity, and supply-chain constraints, cannot be resolved without supportive regulatory frameworks that streamline permitting, harmonize standards, and provide long-term policy stability.

Because progress in any one area often relies on advances in several others, large-scale deployment of green hydrogen can only succeed through coordinated action among technology developers, governments, energy companies, and industrial users.

Lcsat Coneference Access​

After registering Below you will receive an email with details which will guide you on how to proceed with the final registration 

Delegate

28.000 DA (220$)
Early Bird Rate
Access to panel discussions
Attend high-level sessions
High-level networking sessions
interaction with industry leaders
1 free attendee passes
Branding across the event digital platforms
Logo placement on panel backdrops
Brand visibility with PRIME logo placement at the event entrance and throughout the main event room
1 speaker slot in a panel discussion

Exclusive

Register
LCSAT
Access to panel discussions
Attend high-level sessions
High-level networking sessions
interaction with industry leaders
2 free attendee passes
Branding across the event digital platforms
Logo placement on panel backdrops
Brand visibility with PRIME logo placement at the event entrance and throughout the main event room
1 speaker slot in a panel discussion

PREMIUM

Register
LCSAT
Access to panel discussions
Attend high-level sessions
High-level networking sessions
interaction with industry leaders
3 free attendee passes
Branding across the event digital platforms
Logo placement on panel backdrops
Brand visibility with PRIME logo placement at the event entrance and throughout the main event room
1 speaker slot in a panel discussion

VIP

Register
LCSAT
Access to panel discussions
Attend high-level sessions
High-level networking sessions
interaction with industry leaders
4 free attendee passes
Branding across the event digital platforms
Logo placement on panel backdrops
Brand visibility with PRIME logo placement at the event entrance and throughout the main event room
2 speaker slot in a panel discussion

Special guest

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ROUNDTABLES

February 03, 2026 | Holiday Inn - Cheraga Tower ​

1.Turning CO₂ into revenue through innovative solutions CCS-CCUS-EOR-Carbon Utilization for manufacturing

Turning CO₂ into revenue involves capturing carbon emissions from industrial processes and power plants and converting them into valuable products or services through a combination of CCS, CCUS, EOR, and carbon utilization strategies. This workshop explores how carbon dioxide, traditionally viewed as an environmental liability, can be transformed into a strategic economic asset.

Participants will learn how Carbon Capture and Storage (CCS) safely sequesters CO₂ while generating carbon credits and tax incentives, and how Carbon Capture, Utilization, and Storage (CCUS) leverages captured CO₂ as a raw material for producing synthetic fuels, polymers, and construction materials. The session will also cover Enhanced Oil Recovery (EOR), where CO₂ injection boosts oil extraction and provides dual benefits of revenue and sequestration, as well as carbon utilization in manufacturing, including the production of concrete additives, plastics, chemicals, and advanced carbon materials.

Through practical examples and case studies, the workshop demonstrates how these technologies create multiple revenue streams, reduce emissions, and enable industries to turn CO₂ into profitable, sustainable solutions.

2.The role of natural gas in Europe’s and Asia’s energy future amid the variability of renewable energy.

This roundtable will examine how natural gas can serve as a flexible, reliable bridge in the transition toward low-carbon energy systems in Europe and Asia. With the growing share of variable renewable energy sources like solar and wind, participants will discuss the role of natural gas in balancing grids, ensuring energy security, and supporting economic growth, while also addressing challenges related to emissions, infrastructure, and regional policy frameworks. Experts will explore strategies for integrating natural gas with renewables, optimizing supply chains, and leveraging technology innovations to achieve a sustainable and resilient energy future.

As Europe and Asia accelerate the adoption of renewable energy, the variability of solar, wind, and other intermittent sources presents significant challenges for energy security, grid stability, and economic resilience. This roundtable will explore the critical role natural gas can play as a flexible and reliable energy source to complement renewables, acting as a bridge during the energy transition. Participants will discuss how natural gas can provide rapid load balancing, back-up generation, and peak demand support, while also examining emerging technologies like hydrogen blending, carbon capture, and smart gas infrastructure that can reduce its carbon footprint. 

The discussion will cover regional differences in energy demand, policy frameworks, and market dynamics, highlighting how Europe and Asia can leverage natural gas strategically to achieve a low-carbon yet reliable energy future. Experts will also address long-term considerations, including investment in infrastructure, decarbonization pathways, and the evolving role of LNG trade in supporting energy security across diverse markets.

3.Unlocking innovative solutions for more efficient oil and gas exploration

In this Roundtable; will explore the right methods which help to discover oil and gas relying on technology. as Exploration is a key element in the oil and gas industry ; it’s the backbone of any discovery. Unlocking innovative solutions for more efficient oil and gas exploration is reshaping the way the energy industry identifies and develops hydrocarbon resources.

By combining advanced technologies such as artificial intelligence, machine learning, and big data analytics with traditional geological expertise, companies can better interpret subsurface data, predict reservoir potential, and make smarter drilling decisions. Cutting-edge exploration techniques, including 3D and 4D seismic imaging, automated drilling systems, and remote sensing, allow for faster and more precise detection of oil and gas deposits, reducing the number of unnecessary wells and minimizing environmental impact. 

Additionally, real-time monitoring of operations and predictive maintenance systems improve safety and reliability while lowering costs. Together, these innovations drive a more sustainable and economically efficient approach to energy exploration, enabling the industry to meet growing global demand while addressing environmental and operational challenges.

4.Deep understanding of the carbon market and CBAM regulations

By Jan 2026; CBAM  will apply in its definitive regime . The carbon market, particularly under systems like the EU Emissions Trading System (EU ETS), works as a cap-and-trade mechanism. Governments set a cap on total allowable emissions for covered sectors. Companies receive or purchase emission allowances and must surrender enough allowances to cover their actual emissions. If a company emits less than its allocation, it can sell surplus allowances to others, creating a financial incentive to adopt cleaner technologies. This market-driven approach ensures emissions reductions occur where they are most cost-effective.

The Carbon Border Adjustment Mechanism (CBAM) extends this logic internationally. It addresses the risk that carbon-intensive production might relocate to countries with looser regulations—a problem called carbon leakage. Under CBAM, importers of certain goods into the EU must purchase certificates proportional to the embedded emissions in those products, effectively imposing a carbon price equivalent to what EU producers pay under the ETS. The calculation considers the type of good, production emissions, and the carbon cost already paid abroad (to avoid double charging). CBAM initially covers sectors like cement, steel, aluminum, fertilizers, and electricity, but the scope will expand over time.

In this roundtable, professionals from Algeria and Europe will meet to discuss how these regulations impact imports and how to comply with the new rules.

Roundtable registration

Please use the link below to book your place and reserve your seat for the roundtable. Participants may register for two sessions. Thank you.”

Email:   Event@ranadrill.com
Phone & whatsapp : 00213 782 708 622


    Please select one or two Roundtable (Round 01, Round 02, or both)

    SUBMIT YOUR TECHNICAL ABSTRACT AND SHOWCASE YOUR LOW CARBON SOLUTIONS

    Deadline january 15, 2026

    All You Need to Know

    Get quick answers to the most common questions about the event — from topics covered to networking opportunities.

    Who should attend this event?

    This event is ideal for professionals across the energy sector — including engineers, researchers, entrepreneurs, policymakers, investors, and sustainability advocates. Whether you are focused on technologies to reduce carbon footprint and de-carbonization solutions, or seeking a deep understanding of the latest carbon credit and tax frameworks and regulations, this is the place to be.

    The event will address a wide range of critical energy topics, such as renewable energy (solar, wind, hydro), clean fuels like hydrogen, energy storage, smart grids, digitalization, climate resilience, financing the energy transition, and evolving policy frameworks. Sessions will include keynote speeches, expert panels, case studies, and technical workshops.

    Absolutely! Networking is at the heart of this event. Participants will have access to structured B2B matchmaking, informal meetups, exhibition walkthroughs, and dedicated networking sessions. Social events in the evenings will also offer a more relaxed environment to build lasting professional relationships.

    Your Must-Attend Energy Event

    • Meet top industry experts, policymakers, researchers, and innovators who are shaping the future of energy.
    • Attend keynote talks, panels, and hands-on workshops covering the latest in energy transition, renewables, hydrogen, storage, efficiency, and more.
    • Build meaningful connections with professionals, investors, startups, and organizations from across the energy ecosystem.
    • Discover breakthrough technologies, products, and solutions showcased by leading companies and emerging players.
    • Take part in pitch sessions, B2B meetings, and expert-led sessions to drive your ideas forward and find the right partners.
    • Explore real-world case studies and success stories that highlight scalable solutions.

    Alger, Holiday Inn, Cheraga Tower | February 04, 2026

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