Showing 1 - 19 results of 19 for search '"Carbon capture and storage"', query time: 0.06s Refine Results
  1. 1

    Expert projections on the development and application of bioenergy with carbon capture and storage technologies by Tobias Heimann, Lara-Sophie Wähling, Tomke Honkomp, Ruth Delzeit, Alessandra Pirrone, Franziska Schier, Holger Weimar

    Published 2025-01-01
    “…Bioenergy with carbon capture and storage (BECCS) is a crucial element in most modelling studies on emission pathways of the Intergovernmental Panel on Climate Change to limit global warming. …”
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    Tackling impurities in CCS pipelines: An optimization-based approach by Mohamed Mazhar Laljee, Ahmed AlHajaj

    Published 2025-06-01
    Subjects: “…Carbon capture and storage (CCS)…”
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    Progress in Carbon Dioxide Capture and Storage (CCS) and Conversion Utilization Research by Ye Junteng

    Published 2025-01-01
    “…This paper reviews the current major technologies for CO2 treatment, including carbon capture and storage (CCS) and CO2 utilization. CCS technology effectively reduces atmospheric CO2 concentrations by injecting captured CO2 underground for long-term storage, thereby mitigating climate change. …”
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    Ecological and economic bases for development and implementation of carbon sequestration related climate projects in Russia by Yulia L. Zakirova, Anastasia V. Lazareva

    Published 2024-12-01
    “…The Russian Federation, which has committed itself to taking measures to mitigate climate change, has set a goal of achieving carbon neutrality by 2060 in two possible ways: through direct emissions reduction and carbon capture (sequestration), storage (deposition). The national carbon trading system being actively created in Russia allows the state to fulfill its international climate obligations, but at the same time act as an independent regulator in this area and proactively protect domestic producers from possible unfair competition and arbitrariness on the part of participants in the global carbon market.…”
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    Energy and climate policy implications on the deployment of low-carbon ammonia technologies by Chi Kong Chyong, Eduardo Italiani, Nikolaos Kazantzis

    Published 2025-01-01
    “…Abstract The economic feasibility of low-carbon ammonia production pathways, such as steam methane reforming with carbon capture and storage, biomass gasification, and electrolysis, is assessed under various policy frameworks, including subsidies, carbon pricing, and renewable hydrogen regulations. …”
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    Evaluating Reservoir Risks and Their Influencing Factors during CO2 Injection into Multilayered Reservoirs by Lu Shi, Bing Bai, Haiqing Wu, Xiaochun Li

    Published 2017-01-01
    “…Wellbore and site safety must be ensured during CO2 injection into multiple reservoirs during carbon capture and storage projects. This study focuses on multireservoir injection and investigates the characteristics of the flow-rate distribution and reservoir-risk evaluation as well as their unique influences on multireservoir injection. …”
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    Applying equity principles leads to higher carbon removal obligations in Canada by Kasra Motlaghzadeh, Neil Craik, Juan Moreno-Cruz, Vanessa Schweizer, Jay Fuhrman, Keith W. Hipel

    Published 2025-02-01
    “…By 2100, a CDR portfolio, including bioenergy with carbon capture and storage, direct air capture, and enhanced weathering could contribute up to ~500 MtCO2/year of removals. …”
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    The Role of the Sustainable Development Concept in Shaping Energy Policy Transformations in the Caspian Region Countries by R. A. Aliev

    Published 2023-07-01
    “…The research endeavor seeks to determine the main directions for transforming the energy policies of oil and gas producing countries in the Caspian region in response to imperatives of sustainable development.At present, the most relevant aspects of energy policy in the Caspian countries involve the further development of oil and gas projects, strict adherence to environmental standards and regulations, ensuring energy efficiency across the entire production chain, and the implementation of "operational decarbonization" measures and carbon capture and storage technologies to reduce the carbon footprint of the fuel and energy complex. …”
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    Carbon Credits Through Wood Use: Revisiting the Maximum Potential and Sensitivity to Key Assumptions by Jari Niemi, Sampo Soimakallio, Elias Hurmekoski, Tanja Myllyviita, Janni Kunttu, Federico Lingua, Tord Snäll

    Published 2025-02-01
    “…TCCs of wood use can be increased by directing wood into uses that substitute fossil‐intensive materials and have a long lifetime, such as construction materials, and increasing energy recovery and avoiding emitting carbon at the end of life of harvested wood products by carbon capture and storage. However, they were very likely to be considerably lower than forest carbon debits resulting from harvesting additional wood for substitution under all considered circumstances and under a wide but reasonable range of stochastic parameter values. …”
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    Long-duration energy storage in transmission-constrained variable renewable energy systems by Andrew K. Chu, Ejeong Baik, Sally M. Benson

    Published 2025-01-01
    “…Science for society: If emissions-free power from controllable sources such as nuclear energy or fossil fuels with carbon capture and storage is not accessible, long-duration energy storage (LDES) is essential for decarbonizing the electricity grid, as it helps balance supply and demand of electricity over extended periods when solar and wind power are unavailable. …”
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    Low‐carbon economic schedule of the H2DRI‐EAF steel plant integrated with a power‐to‐hydrogen system driven by blue hydrogen and green hydrogen by Bokang Zou, Yuanshi Zhang, Qirui Chen, Qinran Hu, Xiaoyan Hu, Jing Shi, Zesen Li, Qi Wang

    Published 2024-12-01
    “…An illustrating method is utilised for modelling the entire steel production process and power to hydrogen (PtH2) process in detail for the H2DRI‐EAF steel plant, which includes natural gas, photovoltaic, wind power self‐provided power plants, and carbon capture and storage (CCS) systems. A mixed integer linear programming (MILP) model is developed for the comprehensive scheduling of the steel mill. …”
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    Bridging the gap between defossilization and decarbonization to achieve net-zero industry by Steven Griffiths, Benjamin Sovacool, Marfuga Iskandarova, Hans Jakob Walnum

    Published 2025-01-01
    “…The US emphasizes a portfolio approach integrating multiple technologies, the UAE focuses on leveraging existing fossil fuel infrastructure for CCE efforts, and Norway capitalizes on its abundant renewable resources while investing in carbon capture and storage and hydrogen projects utilizing its extensive O&G sector expertise and resources. …”
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    Potential and costs required for methane removal to compete with BECCS as a mitigation option by Yann Gaucher, Katsumasa Tanaka, Daniel J A Johansson, Olivier Boucher, Philippe Ciais

    Published 2025-01-01
    “…To address this question, we use an intertemporal optimization climate-GHG-energy model to evaluate the MR cost and removal potential thresholds that would allow us to meet a given climate target with the same or a lower abatement cost and allowing for equal or higher gross CO _2 emissions than if CDR through bioenergy with carbon capture and storage were an option. We also compare the effects of MR and CDR on the cost-effective mitigation pathways achieving four different climate targets. …”
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    CO2 geological storage in sedimentary basins: An update on the potential and suitability evaluation and a field test by Yujie Diao, Xin Ma, Chenglong Zhang, Xiaolin Jin, Xufeng Li, Chao Zhang

    Published 2025-03-01
    “…China has pledged to peak carbon dioxide (CO2) emissions by 2030 and achieve carbon neutrality by 2060. Carbon capture and storage (CCS) will play a key role in these efforts. …”
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    Differential diversity and structure of autotrophs in agricultural soils of Qinghai Province by Lianyu Zhou, Xuelan Ma, Qiaoyu Luo, Feng Qiao, Huichun Xie, Longrui Wang, Wenjuan Sun, Yu Liu, Yun Ma

    Published 2025-02-01
    “…Some soil properties had significant relationships with the autotrophic bacterial community composition.IMPORTANCEAgricultural soil plays important roles in carbon fixation during carbon capture and storage. Autotrophic bacteria that utilize inorganic compounds as electron donors for growth fix CO2 photosynthetically or chemo-autotrophically in diverse ecosystems and affect soil organic carbon sequestration. …”
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