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Books on the topic 'Carbon Capture Processes'

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1

Ksenofontov, Boris. Development and use of low-carbon technological schemes for wastewater treatment. INFRA-M Academic Publishing LLC., 2025. https://doi.org/10.12737/2180377.

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For the first time in the world literature, the monograph shows the possibilities of using biotechnologies and wastewater treatment plants in the form of low-carbon technological schemes for the capture and utilization of greenhouse gases, including carbon dioxide and methane. The options for the application of physico-chemical, including flotation, wastewater treatment technologies for the capture and utilization of carbon dioxide and methane, as well as the cultivation of microalgae, for which carbon dioxide is a substrate, are analyzed. Examples of the use of carbon dioxide utilization in t
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2

​​​​​​​Federal'noe, gosudarstvennoe, and Aleksandr Lukanin. Greenhouse gases: utilization using biotechnological plants. INFRA-M Academic Publishing LLC., 2023. http://dx.doi.org/10.12737/1915812.

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The monograph shows the possibilities of using biotechnologies and wastewater treatment plants for the capture and disposal of carbon dioxide and methane. The variants of the application of physico-chemical, including flotation, wastewater treatment technologies for the capture and utilization of carbon dioxide and methane, as well as the processes of growing microalgae, for which carbon dioxide is a substrate, are analyzed. Examples are given of the use of carbon dioxide utilization in the cultivation of microalgae and methane in various areas of its application, including for the production
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3

Desideri, Umberto, Giampaolo Manfrida, and Enrico Sciubba, eds. ECOS 2012. Firenze University Press, 2012. http://dx.doi.org/10.36253/978-88-6655-322-9.

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The 8-volume set contains the Proceedings of the 25th ECOS 2012 International Conference, Perugia, Italy, June 26th to June 29th, 2012. ECOS is an acronym for Efficiency, Cost, Optimization and Simulation (of energy conversion systems and processes), summarizing the topics covered in ECOS: Thermodynamics, Heat and Mass Transfer, Exergy and Second Law Analysis, Process Integration and Heat Exchanger Networks, Fluid Dynamics and Power Plant Components, Fuel Cells, Simulation of Energy Conversion Systems, Renewable Energies, Thermo-Economic Analysis and Optimisation, Combustion, Chemical Reactors
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4

Materials and Processes for CO2 Capture, Conversion, and Sequestration. Wiley-American Ceramic Society, 2018.

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5

Li, Lan, Kevin Huang, Winnie Wong-Ng, and Lawrence P. Cook. Materials and Processes for CO2 Capture, Conversion, and Sequestration. Wiley & Sons, Limited, John, 2018.

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6

Sánchez, Jonathan Albo. Carbon Dioxide Capture: Processes, Technology and Environmental Implications. Nova Science Publishers, Incorporated, 2016.

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7

Li, Lan, Kevin Huang, Winnie Wong-Ng, and Lawrence P. Cook. Materials and Processes for CO2 Capture, Conversion, and Sequestration. Wiley & Sons, Incorporated, John, 2018.

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8

Li, Lan, Kevin Huang, Winnie Wong-Ng, and Lawrence P. Cook. Materials and Processes for CO2 Capture, Conversion, and Sequestration. Wiley & Sons, Incorporated, John, 2018.

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9

Nguyen, Van Huy, Sonil Nanda, and Dai-Viet N. Vo. Carbon Dioxide Capture and Conversion: Advanced Materials and Processes. Elsevier, 2022.

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10

Nguyen, Van Huy, Sonil Nanda, and Dai-Viet N. Vo. Carbon Dioxide Capture and Conversion: Advanced Materials and Processes. Elsevier, 2022.

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11

Steane, Andrew. The Tree. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198824589.003.0009.

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The life of an ordinary tree is described, in terms of the main physical and chemical processes: carbon capture by photosynthesis; entropy and energy; moisture. The information expressed in the tree comes partly from the DNA and partly from the sunlight. The tree does not push upwards from the ground, but solidifies the air.
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12

Manton, Michael-Geoffrey, Evaldas Makrickas, Piotr Banaszuk, et al. Assessment and spatial planning for peatland conservation and restoration: Europe’s trans-border Neman river basin as a case study. Vytautas Magnus University, 2021. http://dx.doi.org/10.7220/20.500.12259/260209.

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Peatlands are the “kidneys” of river basins. However, intensification of agriculture and forestry in Europe has resulted in the degradation of peatlands and their biodiversity (i.e., species, habitats and processes in ecosystems), thus impairing water retention, nutrient filtration, and carbon capture. Restoration of peatlands requires assessment of patterns and processes, and spatial planning. To support strategic planning of protection, management, and restoration of peatlands, we assessed the conservation status of three peatland types within the trans-border Neman River basin. First, we co
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13

Ahmad, Imran, and Norhayati Abdullah, eds. Nature-Based Technologies for Wastewater Treatment and Bioenergy Production. IWA Publishing, 2025. https://doi.org/10.2166/9781789064100.

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With 80% of wastewater globally discharged untreated and non-renewable energy resources rapidly depleting, the call for sustainable solutions has never been louder. Nature-Based Technologies for Wastewater Treatment and Bioenergy Production explores the groundbreaking integration of natural systems and advanced technologies to address critical global challenges in wastewater management and renewable energy. This book delves into nature-based technological approaches such as constructed wetlands, bio-aided filtration systems, and photobioreactors for microalgae cultivation, showcasing their pot
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14

Siffert, Nelson, and Katia Rocha. Texto para Discussão 3082. Instituto de Pesquisa Econômica Aplicada (Ipea), 2025. https://doi.org/10.38116/td3082-port.

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O objetivo deste trabalho é avaliar, à luz da experiência internacional, qual cenário, em termos de volume de produção de hidrogênio de baixo carbono (LHC), o Brasil poderá alcançar em 2030. Agentes públicos e privados balizam suas expectativas, reduzem as incertezas e direcionam suas ações, tomando como referência marcos de médio e longo prazos, que expressam expectativas de crescimento do mercado. São apresentadas políticas públicas de suporte ao surgimento e à expansão do mercado do hidrogênio de baixo carbono, tendo como referência estudos da Agência Internacional de Energia (International
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15

Trieloff, Mario. Noble Gases. Oxford University Press, 2017. http://dx.doi.org/10.1093/acrefore/9780190647926.013.30.

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This is an advance summary of a forthcoming article in the Oxford Encyclopedia of Planetary Science. Please check back later for the full article.Although the second most abundant element in the cosmos is helium, noble gases are also called rare gases. The reason is that they are not abundant on terrestrial planets like our Earth, which is characterized by orders of magnitude depletion of—particularly light—noble gases when compared to the cosmic element abundance pattern. Indeed, such geochemical depletion and enrichment processes make noble gases so versatile concerning planetary formation a
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16

Ortega Contreras, Judith Yamile, Dorance Becerra Moreno, and Wilhelm Hernando Camargo Jauregui. Acotamiento del componente ecosistémico de rondas hídricas en sistemas lóticos en Norte de Santander, Colombia. Universidad Francisco de Paula Santander, 2021. http://dx.doi.org/10.22463/9789585031388.

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Actualmente, la vegetación natural, en especial la que concierne con el bosque en todas las zonas de vida desde las regiones cálidas hasta el bosque altoandino, se ha ido transformando o eliminando para dar paso a la agricultura y a los potreros para ganado, así como a las obras de infraestructura y lugares de habitación de la gente. Las franjas de bosques con especies arbóreas propias de estos ecosistemas están mayormente presentes en las franjas dejadas sobre las márgenes de quebradas y ríos o canales naturales de agua lluvia, lo que corresponde a las rondas hídricas. Este libro aparece en e
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