Academic literature on the topic 'Benefits of Bioenergy'

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Journal articles on the topic "Benefits of Bioenergy"

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Jensen, Torben. "The economic impacts of woodchip storage optimization: Reducing material and energy loss during transportation and storage." Forestry Chronicle 97, no. 3 (2021): 263–65. http://dx.doi.org/10.5558/tfc2021-028.

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The use of woody biomass for domestic bioenergy provides many benefits and opportunities, but also presents a challenge regarding the supply chain required for maintaining the high quality feedstock for sustained bioenergy production. This article focuses on one aspect of that supply chain – woodchip storage. To encourage the establishment of a bioenergy market and to help ensure a safe and stable fuel source, Suzanne Wetzel and Christopher Helmeste from the Canadian Forest Service, Canadian Wood Fibre Centre (CFS/CWFC) and collaborators contributed their scientific expertise to the developmen
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Richardson, Jim, and Theo Verwijst. "Multiple benefits from sustainable bioenergy systems." Biomass and Bioenergy 31, no. 9 (2007): 599–600. http://dx.doi.org/10.1016/j.biombioe.2007.06.024.

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Ni, Ziqiao, Yangyang Wang, and Zhenhe Yang. "Application of Bioenergy and Its Impact on Sustainable Development." Highlights in Science, Engineering and Technology 83 (February 27, 2024): 277–85. http://dx.doi.org/10.54097/vtrz5v64.

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In recent years, the rapid growth of global energy demand and the irreversible impact of traditional fossil energy on the environment have made the need for sustainable energy increasingly urgent, and bioenergy has attracted much attention as an important renewable energy source. However, bioenergy has received far less social attention than other energy sources in China. In this paper, starting from the types, benefits use, and uses of bioenergy development at home and abroad, we study the current misunderstandings and challenges in sustainable development and put forward countermeasures for
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Farrell, Judy. "Bioenergy '94 focuses on sustainable development, economic and environmental benefits of bioenergy." Energy for Sustainable Development 1, no. 4 (1994): 10–12. http://dx.doi.org/10.1016/s0973-0826(08)60062-9.

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Mokrousova, Olena, Olena Okhmat, Halyna Sakalova, Vitalii Ishchenko, and Myroslav Malovanyy. "Leather Waste to Energy: Environmental Benefits. A Review." Chemistry & Chemical Technology 19, no. 1 (2025): 131–40. https://doi.org/10.23939/chcht19.01.131.

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This review outlines the main approaches to developing the energy recovery processes from leather waste. It discusses the challenges and opportunities for accelerating the utilization of solid leather waste for biofuel production and considers promising methods for processing biomass, chromium waste, sewage sludge, and fat into bioenergy feedstocks.
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Welfle, Andrew James, Alberto Almena, Muhammad Naveed Arshad, et al. "Sustainability of bioenergy – Mapping the risks & benefits to inform future bioenergy systems." Biomass and Bioenergy 177 (October 2023): 106919. http://dx.doi.org/10.1016/j.biombioe.2023.106919.

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Dunnett, Alex J., and Nilay Shah. "Prospects for Bioenergy." Journal of Biobased Materials and Bioenergy 1, no. 1 (2007): 1–18. http://dx.doi.org/10.1166/jbmb.2007.1975.

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The prospects for bioenergy in the future energy mix are open to much debate. The potential synergies to be drawn with materials markets, agricultural practice reform and a broad range of policy promotion mechanisms tackling climate change, and energy security all have substantial influence on the sector. Furthermore, the identification of the best options for biomass to energy conversion is complex to ascertain owing to the broad range of potential indicators in assessing the impact and benefits of any application and the geographical specificities of any possible solutions, as well as the po
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Levidow, Les, Theo Papaioannou, and Alexander Borda-Rodriguez. "Innovation Priorities for UK Bioenergy." Science & Technology Studies 26, no. 3 (2013): 14–36. http://dx.doi.org/10.23987/sts.55286.

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UK bioenergy innovation pathways have been locked into current energy infrastructure through technological expectations, especially the reciprocal requirements of state bodies and industry. Over the past decade UK policy has given bioenergy an increasingly important role for decarbonising the energy system; technoscientific innovation has been expected to expand the range of biomass that can be sustainably converted to energy. Needing industry investment to fulfil its policy aims, the UK government has faced requirements to provide long-term support measures. Innovation priorities have been sh
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Clifton-Brown, John, Astley Hastings, Pete Smith, et al. "Bioenergy technology—balancing energy output with environmental benefits." Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology 150, no. 3 (2008): S174—S175. http://dx.doi.org/10.1016/j.cbpa.2008.04.464.

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Nugroho, Agus Dwi. "Do Economic Globalization and Paris Climate Accord Drive Bioenergy Consumption in Developing and Developed Countries?" Journal of Asian Energy Studies 9 (June 4, 2025): 131–48. https://doi.org/10.24112/jaes.090008.

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Climate change is driving the world to care about environmental sustainability, including the use of bioenergy. External factors like economic globalization and international agreements may impact the rise in bioenergy consumption. Hence, this study examines the impact of economic globalization and the Paris Climate Accord on bioenergy consumption in developing and developed countries. Economic globalization encourages developing and developed countries to use more bioenergy. One of the factors that compels both regions to employ bioenergy is a variety of ecologically friendly trade standards.
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Dissertations / Theses on the topic "Benefits of Bioenergy"

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Dessle, Filip. "Harvesting and utilizing beach cast on Gotland : A study of the benefits, challenges and opportunities of turning a waste into a resource." Thesis, KTH, Hållbar utveckling, miljövetenskap och teknik, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-226527.

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Accumulation of beach cast biomass on coastal zones around Gotland is an increasing problem that reduce the recreational value of beaches and cause environmental degradation of coastal environments. Beach cast was once regularly harvested on Gotland, as it was considered a valued biofertilizer, but as it seized to be used in combination with the eutrophication of the Baltic sea, beach cast accumulation has increased in scale. The use of beach cast as a resource for bioenergy and agriculture does not only provide important services that can replace the use of greenhouse gases and finite resourc
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Grilli, Gianluca. "Cost-Benefit Analysis Using GIS: an Application to the Forest Bioenergy sector." Doctoral thesis, Università degli studi di Trento, 2017. https://hdl.handle.net/11572/368803.

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This doctoral thesis introduces a novel methodology to optimize the use of forest biomass for energy purposes at regional scale, by means of GIS applications and economic tools. The procedure calculates, at first, the energy potential of a given forested area, as well as a reasonable location and dimension of a district heating power plant, based on local energy availability and energy demand. In a second step, it runs a cost-benefit analysis (CBA) to assess the economic feasibility of the plant. The CBA considers financial costs and benefit, social benefits and environmental costs, estimated
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Grilli, Gianluca. "Cost-Benefit Analysis Using GIS: an Application to the Forest Bioenergy sector." Doctoral thesis, University of Trento, 2017. http://eprints-phd.biblio.unitn.it/1970/1/Grilli_tesi.pdf.

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This doctoral thesis introduces a novel methodology to optimize the use of forest biomass for energy purposes at regional scale, by means of GIS applications and economic tools. The procedure calculates, at first, the energy potential of a given forested area, as well as a reasonable location and dimension of a district heating power plant, based on local energy availability and energy demand. In a second step, it runs a cost-benefit analysis (CBA) to assess the economic feasibility of the plant. The CBA considers financial costs and benefit, social benefits and environmental costs, estimated
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Maaß, Oliver. "Analyzing Transactions in Linked Value Chains of Wastewater Treatment and Crop Production." Doctoral thesis, Humboldt-Universität zu Berlin, 2019. http://dx.doi.org/10.18452/20128.

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In dieser Dissertation wird der Einfluss von Transaktionen zur Wiederverwendung von Nährstoffen und gereinigtem kommunalen Abwasser auf die Wertschöpfungsketten der Abwasserbehandlung und Pflanzenproduktion untersucht. Ziel ist es, Kosten und Nutzen sowie die Wertschöpfung von Transaktionen in verknüpften Wertschöpfungsketten der Abwasserbehandlung und Pflanzenproduktion zu analysieren. Darüber hinaus wird untersucht, wie Transaktionen und Interdependenzen zwischen Akteuren in verknüpften Wertschöpfungsketten die lokalen Governance-Strukturen für die Wiederverwendung von Abwasser beeinflussen.
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Gonçalves, Ana Luísa da Cunha. "Environmental benefits of Chlorella vulgaris and Pseudokirchneriella subcapitata : CO2 capture and bioenergy production." Master's thesis, 2012. http://hdl.handle.net/10216/69273.

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Gonçalves, Ana Luísa da Cunha. "Environmental benefits of Chlorella vulgaris and Pseudokirchneriella subcapitata : CO2 capture and bioenergy production." Dissertação, 2012. http://hdl.handle.net/10216/69273.

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Chang, Chin-Hsiue, and 張嫤雪. "Integration of Environmental and Health Impact into Economic Cost and Benefit Analysis Using Partial and General Equilibrium Models – Applications to Bioenergy Development and Infectious Disease Prevention Policies in Taiwan." Thesis, 2014. http://ndltd.ncl.edu.tw/handle/gee4d6.

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博士<br>國立臺灣大學<br>農業經濟學研究所<br>102<br>This thesis applied a partial equilibrium model and a general equilibrium model to conduct two cost-benefit analyses (CBA), one for the bioenergy policy and the other for the public health policy in Taiwan, respectively. The results can serve as empirical references for government policy decision making. In the first CBA study, the seeds of Tung trees (Vernicia fordii) is used as raw material for biodiesel to alleviate fuel price increases while reducing greenhouse gas emissions simultaneously. The positive benefit of macroeconomics and microeconomics was ge
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Book chapters on the topic "Benefits of Bioenergy"

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Börjesson, Pål, Serina Ahlgren, and Göran Berndes. "The Climate Benefit of Swedish Ethanol: Present and Prospective Performance." In Advances in Bioenergy. John Wiley & Sons, Ltd, 2015. http://dx.doi.org/10.1002/9781118957844.ch25.

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Cortez, Luís A. B., Manoel Regis L. V. Leal, Luiz A. Horta Nogueira, Arielle Muniz Kubota, and Ricardo Baldassin Junior. "Why modern bioenergy and not traditional production and use can benefit developing countries?" In Sugarcane Bioenergy for Sustainable Development. Routledge, 2018. http://dx.doi.org/10.4324/9780429457920-25.

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Mishra, Roli O., and Dr Chetna Rahangdale. "BIOENERGY." In Futuristic Trends in Biotechnology Volume 3 Book 14. Iterative International Publisher, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bbbt14p2ch6.

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The many facets of bioenergy are examined in this abstract, with an emphasis on its importance within the structure of eco-clean energy. The trip starts with an overview of bioenergy, laying the groundwork for its investigation within the history of the development of environmentally friendly energy. The many forms of bioenergy and the categorization of eco-clean energy are discussed, with examples of their practical uses provided. The abstract explores the methods that propel the production of bioenergy and explains how biofuel energy aids in efficient transportation. Examining the integratio
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Michael Smarte Anekwe, Ifeanyi, Edward Kwaku Armah, and Emmanuel Kweinor Tetteh. "Bioenergy Production." In Biomass [Working Title]. IntechOpen, 2022. http://dx.doi.org/10.5772/intechopen.102692.

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Bioenergy, when compared to traditional fossil fuels, offers clear benefits due to its renewable nature and enormous supply, and so plays a critical role in ensuring energy stability while minimizing net greenhouse gas emission. However, the advancement of bioenergy can produce major environmental changes, the extent of which is unknown. This chapter highlights the overview of bioenergy, available technologies for bioenergy production, environmental implications, challenges, prospects and future work consideration for the successful transition to bioenergy economy. Consequently, a global bioen
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Ravindranath, N. H., and D. O. Hall. "Environmental and socio-economic benefits of bioenergy." In Biomass, energy, and environment. Oxford University PressOxford, 1995. http://dx.doi.org/10.1093/oso/9780198564362.003.0008.

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Abstract The current trends of energy provision and use based on commercial energy were shown to be non-sustainable, environmentally damaging, and leading to inequities. It will be useful first to understand the socio-economic and environmental implications of continuing with the existing patterns (business as usual, BAU) and the possible implications of adopting the proposed bioenergy options. Major environmental problems such as deforestation, submergence of forest (from hydroelectric projects), acid rain, global warming, and local air pollution are all linked in various ways to the extracti
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Moriarty, Patrick, and Damon Honnery. "Microalgal based biofuels: Sources, benefits, and constraints." In Microalgal Biomass for Bioenergy Applications. Elsevier, 2024. http://dx.doi.org/10.1016/b978-0-443-13927-7.00012-8.

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Musa, O. I., J. O. Samuel, U. S. Ilyasu, et al. "Distribution of biomass sources for bioenergy production: challenges and benefits." In Microbial Biotechnology for Bioenergy. Elsevier, 2024. http://dx.doi.org/10.1016/b978-0-443-14112-6.00004-3.

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Ale, Srinivasulu, Pandara V. Femeena, Sushant Mehan, and Raj Cibin. "Environmental impacts of bioenergy crop production and benefits of multifunctional bioenergy systems." In Bioenergy with Carbon Capture and Storage. Elsevier, 2019. http://dx.doi.org/10.1016/b978-0-12-816229-3.00010-7.

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Kumari, Rachna. "BAMBOO: FUTURISTIC RESOURCE FOR BIOENERGY-ITS COMMERCIAL APPLICATION AND BENEFITS." In Futuristic Trends in Biotechnology Volume 3 Book 9. Iterative International Publisher, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bbbt9p2ch1.

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The sustainability of the resources for the massive production of energy as well as materialsis one of the crucial setbacksfaced globally today. The giant production units are looking for resources which are renewable.The plant which we know as “Bamboo” shows a promising characteristics owing to its renewable and abundant cellulosic content. Bamboo has shown tremendous potential owing to its physical and mechanical strength. There are substantial reports to prove that bamboo plant has enough natural content and its environmental perspective to substituteany fossil fuel for the production of en
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Hayat, Dr Hena. "BIOENERGY AND BIOFUELS." In Futuristic Trends in Biotechnology Volume 3 Book 14. Iterative International Publisher, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bbbt14p1ch3.

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Rising global energy demand and carbon dioxide emissions as a result of the use of fossil fuels have created a severe crisis in modern times. Demand for alternate fuel sources has increased due to the depletion of gasoline made from petroleum. The growing use of renewable energy is entering a new age. Currently, bioenergy accounts for 55% of all renewable energy supply, making it the greatest source of energy worldwide. The two key characteristics, sustainability and renewability, are what drive today's global biofuel research. The objective of the chapter is to review the numerous biofuel sou
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Conference papers on the topic "Benefits of Bioenergy"

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Cordova-Cordova, Jesmyl-Elisa, and Carlos Pozo. "Assessing the Environmental Impact of Global Hydrogen Supply through the Lens of Planetary Boundaries." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.176362.

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Hydrogen is increasingly recognized as a crucial energy carrier for a low-carbon future. However, most studies on clean hydrogen production devote limited attention to the entire supply chain. This study evaluates the sustainability of 800 combinations of hydrogen production and transportation methods, comparing their environmental impacts against the geophysical limits defined by the Planetary Boundaries framework. Findings reveal that no supply chain alone can make the current economy sustainable, yet powering water electrolysis with bioenergy and carbon capture and storage can meet the CO2-
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Mirkouei, Amin, and Kamran Kardel. "Enhance Sustainability Benefits Through Scaling-Up Bioenergy Production From Terrestrial and Algae Feedstocks." In ASME 2017 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2017. http://dx.doi.org/10.1115/detc2017-67014.

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The techno-economic analysis outcomes of bioenergy production compared with traditional energy indicate that the existing production technologies are not promising, however environmental analyses demonstrate that bioenergy products support cross-cutting sustainability and strategic analysis efforts. Therefore, utilization of bio-products, such as bio-oil and biofuels, is expected to increase in the near future due to environmental pressures. The overarching goal is to balance the primary dimensions of sustainability using both distributed and centralized conversion technologies. To this end, t
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Enweremadu, Christopher, Debendra Baruah, Sadhan Mahapatra, Dipam Patowary, Gunajit Sarma, and Sampriti Kataki. "Addressing Economic and Energy Poverty Through Locally Available Biomass Resources: Investigation of Issues Concerning India and South Africa." In ASME 2018 12th International Conference on Energy Sustainability collocated with the ASME 2018 Power Conference and the ASME 2018 Nuclear Forum. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/es2018-7292.

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The cyclic effect of energy poverty and economic poverty has been conclusively evidenced primarily from the experiences of developing World. In the developing countries, struggle to meet the basic energy needs impacts the life of the poorer section in terms of cost of health, education and quality. However, considering the adequate biomass resources and sustainable technologies for conversion of surplus biomass into useful form of energy; integration of the surplus resources with appropriate technology offers opportunities to address both energy and economic poverty. In this study, feasibility
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Mirkouei, Amin, Karl R. Haapala, John Sessions, and Ganti S. Murthy. "Reducing Greenhouse Gas Emissions for Sustainable Bio-Oil Production Using a Mixed Supply Chain." In ASME 2016 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/detc2016-59262.

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Recent growing interest in reducing greenhouse gas (GHG) emissions requires the application of effective energy solutions, such as the utilization of renewable resources. Biomass represents a promising renewable resource for bioenergy, since it has the potential to reduce GHG emissions from various industry sectors. In spite of the potential benefits, biomass is limited due to logistical challenges of collection and transport to bio-refineries. This study proposes a forest biomass-to-bio-oil mixed supply chain network to reduce the GHG emissions compared to a conventional bioenergy supply chai
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Olatunji, Obafemi O., Nkosinathi Madushele, Paul A. Adedeji, and Stephen Akinlabi. "Digitalisation of Biomass Exploration: A Case Study of Biomass Feedstock Classification." In ASME 2020 Power Conference collocated with the 2020 International Conference on Nuclear Engineering. American Society of Mechanical Engineers, 2020. http://dx.doi.org/10.1115/power2020-16772.

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Abstract Biomass is one of the renewable energy (RE) sources with high prospects in the clean energy strata. The diversity of its application and sources have made digitalisation of its exploration presents an array of attractive opportunity to deploy different categories of biomass in a manner that mitigates climate change, advances economies and reduces power dependency. This study discusses the drivers of digitalisation in bioenergy exploration with the associated opportunities and challenges along the bioenergy value chain. As proof of concept, a case study based on the intelligent classif
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Rasmeni, Zelda Z., Daniel M. Madyira, Obafemi O. Olatunji, Paul A. Adedeji, and Anthony N. Matheri. "Baseline Evaluation of Methanogenic Potential for Mono and Co-Digested Wastewater Biosolids and Brewery Spent Yeast." In ASME 2022 Power Conference. American Society of Mechanical Engineers, 2022. http://dx.doi.org/10.1115/power2022-86510.

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Abstract Co-digestion of organic rich wastewater sludge and brewery spent yeast is a prospectively viable bioenergy substrate, which can enhance future green energy and boost the emerging circular economy. Multi-objective optimization of wastewater treatment plant (WWTP) cost and its environmental footprint are considered significant and vital in modern WWTP. Despite the lauded benefits of co-digestion, current techniques developed to upgrade biogas quantity and quality in the water treatment sector have focussed on mono-substrates. This development has been associated to shortage of suitable
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Ulmasov, Tim. "CoverCress—a novel oilseed winter crop with canola-like composition that helps sequester carbon and prevent soil erosion." In 2022 AOCS Annual Meeting & Expo. American Oil Chemists' Society (AOCS), 2022. http://dx.doi.org/10.21748/qmfh4300.

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There is an urgent need for reducing greenhouse gas emissions and other detrimental impacts of civilization on the environment. One of the solutions proposed in agriculture are cover crops that are generally grown between regular cropping seasons, providing significant benefits such as enhanced soil health and increased carbon sequestration. The main problem with lack of wide-spread cover crops adoption is in their economics, as most farmers avoid them due to guaranteed costs and uncertain returns from the benefits to the following crop. This results in misplaced economic incentive where the s
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Kucher, Oleg, Liliya Prokopchuk, Zoya Pustova, Natalia Pustova, and Serhii Yermakov. "Current status and prospects for biogas development in Ukraine." In 24th International Scientific Conference Engineering for Rural Development. Latvia University of Life Sciences and Technologies, Faculty of Engineering and Information Technologies, 2025. https://doi.org/10.22616/erdev.2025.24.tf150.

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The article explores the potential of the agricultural sector in renewable energy and in particular in the development of biogas production. The Ukrainian biogas sector has potential both in terms of the availability of raw materials and in terms of demand for biogas. Currently, there is great interest in biomethane production from large agricultural companies that have sufficient amounts of their own raw materials. The Bioenergy Association of Ukraine estimates that Ukraine can produce 21.8 billion cubic meters of biogas annually. It is noted that the structure of agricultural enterprises is
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Dhyani, Vipin, Yogesh J. Patil, Nikita Singhal, Chinmayananda Khandai, Raghava Kannala, and M. Muralidharan. "Examining Ethanol-Biodiesel-Diesel Blends: Impact on Diesel Passenger Car Performance and Emissions under Legislative Test Cycles." In 11th SAEINDIA International Mobility Conference (SIIMC 2024). SAE International, 2024. https://doi.org/10.4271/2024-28-0125.

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&lt;div class="section abstract"&gt;&lt;div class="htmlview paragraph"&gt;Incorporating ethanol and biodiesel into diesel fuel offers substantial benefits from bioenergy perspective. To assess the effect of these alternative fuels, a study was undertaken to evaluate the impact of Ethanol-Biodiesel-Diesel blends (BD7, E2B7, E5B7) on the performance and emissions of a diesel car under Modified Indian Driving Cycle (MIDC), Worldwide Harmonized Light Vehicles Test Cycle (WLTC), wide-open throttle (WOT), and acceleration tests. A four-cylinder 1.5L Common Rail Turbo based diesel passenger car was s
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Dubey, Pankaj Kumar, Bindeshwar Singh, Dilip Kumar Patel, Navin Kumar Yadav, Manish Kumar Singh, and Deependra Singh. "Latest Advancements in Renewable Energy: A State of Art." In International Conference on Energy Transition and Innovation in Green Technology. REGIONAL ENERGY RESOURCES INFORMATION CENTER (RERIC), 2025. https://doi.org/10.64289/rericproc.25.0105.4567029.

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Renewable energy sources and technological advancements may be able to address the persistent power crisis that emerging nations are now experiencing. The world may overcome its energy shortage by utilizing sustainable energy alternatives including wind, solar, sea, bioenergy, and fuel cell development. Possibly due to fossil fuel reserves that may run out in the upcoming years, it is necessary to adopt cleaner and renewable energy alternatives. This study examines current developments in renewable energy from several angles, including objective, methodology, benefit, components, limitations,
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Reports on the topic "Benefits of Bioenergy"

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Muelaner, Jody Emlyn. Decarbonized Power Options for Non-road Mobile Machinery. SAE International, 2023. http://dx.doi.org/10.4271/epr2023002.

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&lt;div class="section abstract"&gt;&lt;div class="htmlview paragraph"&gt;Power options for off-road vehicles differ substantially from other commercial vehicles. Battery electrification is suitable for urban construction and light agriculture, but remote mining, forestry, and road building operations will require alternative fuels.&lt;/div&gt;&lt;div class="htmlview paragraph"&gt;&lt;b&gt;Decarbonized Power Options for Non-road Mobile Machinery&lt;/b&gt; discusses these domains as well as the potential benefits and challenges of implementing fuels and energy sources such as bioenergy, e-fuels
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You, Siming, Ondřej Mašek, Bauyrzhan Biakhmetov, et al. Feasibility and impacts of Bioenergy Trigeneration systems (BioTrig) in disadvantaged rural areas in India. University of Glasgow, 2023. http://dx.doi.org/10.36399/gla.pubs.305660.

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This project aims to evaluate the techno-economic and social feasibility, and socio-environmental impacts of bioenergy trigeneration (electricity, clean cooking fuel, and green soil conditioner) systems that tackle the triple crisis of poor electrification, household air pollution, and farmland contamination in rural India. This system is called BioTrig. A project workshop has been held in November in India to discuss and finalise action plans. A questionnaire has been developed to understand the energy, resource, and new technology acceptance of rural households in India. Chemical process mod
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