Top Tweets for #Beccs
Norway issued its first biogas BECCS carbon removal credits under https://t.co/QTZa2DwIRA. Durable CDR is moving from pilots to commercial issuance. What it signals for buyers and developers.
https://t.co/MkiIMAmcuK
#CarbonRemoval #BECCS
Nuada and @Idexgroupe partner to deploy a pioneering industrial carbon capture project at the Kogeban biomass cogeneration plant in the Hauts-de-France region of France.
#ccus #beccs #carboncapture #carbonmanagement

Holz kann mehr als nur CO₂ speichern: Eine neue Studie zeigt, dass die Kombination aus nachhaltiger Forstwirtschaft, Kaskadennutzung und BECCS erhebliche Klimavorteile bringen kann, bis hin zu dauerhaftem Kohlenstoffentzug. https://t.co/1eQ9m8Dl3j #Klima #BECCS #Forstwirtschaft

Up to 40% of tropical bioenergy crop production could be pushed beyond historically safe climate conditions by 2060, raising new concerns over the long-term viability of #BECCS as a CDR strategy.
The study finds that warming temperatures may significantly reduce the carbon sequestration potential of key crops such as oil palm, sugarcane, and soybean, with oil palm storage capacity potentially declining by as much as 67%.
Researchers also warn that expanding bioenergy cultivation into tropical ecosystems could drive substantial biodiversity and ecosystem carbon losses that outweigh the climate benefits of biofuel-based mitigation.
https://t.co/wMIAsilqbr

Study finds #BECCS using existing forest wood is unlikely to deliver near-term negative emissions and may worsen emissions initially.
Modeling shows it can emit more than natural gas for decades, fail to achieve net removal within 150 years, and raise electricity costs ~3.5×. Most emissions occur upstream and can’t be captured, questioning current policy support.
https://t.co/l1eFt1OJyW

📣 ANNOUNCEMENT / / In partnership with Meadow Lake Tribal Council (MLTC), we have agreed to sell @Microsoft 626,000 Tonnes of Carbon Removal Credits from our BECCS project, North Star, in Meadow Lake, Saskatchewan, Canada. https://t.co/QKa90yr00T #cdr #carboncapture #beccs
A new study finds that carbon capture and storage (CCS) and bioenergy with CCS (#BECCS) could see significant cost reductions in China through technological learning and efficiency gains.
Using an advanced learning curve approach, the analysis estimates electricity costs could fall by $23–$56/MWh, with overall benefits improving by over 50%.
Capital and fuel costs drive most reductions, highlighting strong long-term potential for coal-dependent economies transitioning to low-carbon systems.
https://t.co/2g49RX3zRX

#Bioenergy with carbon capture and storage (BECCS) is an important option for reaching #netzero because it can remove carbon dioxide from the atmosphere. However, many climate studies overlook how #BECCS interacts with forest carbon dynamics, cascading wood use, or the gradual rollout of carbon capture and storage technologies.
A recent study in Communications Earth & Environment, led by the @uniofgalway with the IEA Bioenergy BECCUS project, addresses this gap using dynamic life cycle assessment over more than 200 years. It shows that BECCS can deliver consistent long term global cooling, as long as #biomass is sourced without causing net losses of forest carbon.
Using wood in a cascading way, prioritising material uses before energy, provides stronger climate benefits in the short term and allows carbon to be stored and later permanently captured through BECCS. While leaving forests unharvested can deliver greater short term cooling, this effect declines over time and is more vulnerable to disturbances.
Key takeaway: combining sustainable forest management, cascading wood use, and BECCS can create a more durable and resilient carbon removal pathway.
Policy implications:
- Support cascading wood use across sectors
- Update carbon accounting frameworks
- Scale BECCS with near term investment
- Better reflect these systems in climate models and land use policies
Learn more 🔗 https://t.co/0Zu7BVSAwS

A new study finds carbon removal targets could significantly reshape Finland’s energy system by 2050.
Modeling shows #DACCS drives most CDR growth, while #BECCS and biochar remain limited by biomass constraints, and enhanced weathering is fully utilized. Binding CDR targets ease net-zero goals, but large-scale deployment is still needed, with impacts extending across interconnected energy sectors.
https://t.co/MDbcDGap7v

A recent thesis examines how Bioenergy with Carbon Capture and Storage (#BECCS) is framed in Sweden’s climate strategy.
Based on interviews with key actors, it finds BECCS is supported by a dominant narrative linking technology, markets, and social consensus. This framing helps legitimize the technology while sidelining alternative approaches to forest use and climate mitigation.
https://t.co/iQFIonqFax
A new study evaluates a #BECCS system using palm kernel shell gasification for carbon removal. Results show gasification temperature strongly influences performance, while equivalence ratio has minimal impact.
Optimal conditions (800 °C, ER 0.5) achieve ~70% CO₂ capture and −3560 kg CO₂/MWh emissions. Higher MEA concentration lowers energy demand but reduces capture efficiency, highlighting key trade-offs in system design.
https://t.co/f97hIkd7Fz

A new study evaluates a large-scale #BECCS system using palm kernel shell via gasification and carbon capture. Results show gasification temperature strongly influences energy output, while equivalence ratio has minimal effect.
Optimal conditions (800 °C, ER 0.5) achieve ~70% CO₂ capture and −3560 kg CO₂/MWh emissions. Higher MEA concentration improves efficiency but increases energy trade-offs, highlighting BECCS potential for negative emissions.
https://t.co/f97hIkd7Fz

Bioenergy with carbon capture (#BECCS) can deliver long-term global cooling, a new study finds, even in fully decarbonised systems, if forest carbon stocks are sustained.
Using wood in cascading products first boosts near-term climate benefits, while BECCS ensures durable carbon storage later.
Without cascading use, standing forests can outperform bioenergy initially, but risks and declining sink strength limit long-term gains.
https://t.co/wjxFdyO4Oy

A new study examines corrosion risks in CO₂ injection wells used in bioenergy with carbon capture and storage (#BECCS).
Laboratory tests compared carbon steel L80, martensitic stainless steel 13CrS, and superduplex steel 25Cr under simulated injection conditions.
The results highlight the importance of corrosion-resistant materials, protective systems, and monitoring to ensure long-term well integrity and safe carbon storage operations.
https://t.co/ORVJGZ5d0P

A new study questions climate policies promoting bioenergy with carbon capture and storage (#BECCS) using wood from existing forests.
Modeling carbon flows from forest to power generation, researchers find such BECCS systems are unlikely to deliver net negative emissions for up to 150 years and could emit more CO₂ for decades than natural gas without capture.
The approach could also raise electricity costs about 3.5 times, suggesting forest-based BECCS may undermine climate goals.
https://t.co/V1wHTl3mkI

ANNOUNCEMENT / / We've acquired Calgary-based project developer, Carbon Alpha. Read the news here: https://t.co/4qjANSRX2I
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#ccus #beccs #cdr #climatenews

Our article for the weekend.
Climate neutrality by 2050?
The EU certification system for carbon removal is a fake.
Accounting sleight of hand, subsidies & forests that are legally classified as waste to be burnt…
#holzofengate #woodgate #BECCS #DACCS
👇🏽
https://t.co/2PhAPNrbGy

Unser Artikel für‘s Wochenende.
Klimaneutralität bis 2050?
Das EU-Zertifizierungssystem für Kohlenstoffentfernung ist ein Fake!
Buchhaltungstricks, Subventionen & Wald, der rechtlich zu Abfall für die Verbrennung wird.
#holzofengate #BECCS #DACCS
👇🏽
https://t.co/wMUtGwjcAW

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