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Biomethane technology [PDF]

open access: possible, 2014
This publication provides a general overview of anaerobic digestion and the current status of biomethane technology on livestock farms in the United States. It is part of the Bioenergy Engineering Education Program (BEEP) of the Biological Systems Engineering Department at Virginia Tech.
Ogejo, Jactone Arogo   +4 more
openaire  

Biomethane—Future Trends

2019
Given global greenhouse gas reduction pressures and incentives for renewables there are strong forces supporting the future growth of the global biomethane industry. This chapter deals with future technologies and uses of biomethane. Developments in improving anaerobic digesters, such as acid-phase digesters, are examined. Future sources of biogas from
Sirichai Koonaphapdeelert   +2 more
openaire   +1 more source

Biomethan im Güterverkehr

UmweltMagazin, 2020
Fahren Lkw mit Flüssigerdgas hergestellt aus biogenen Reststoffen, emittieren sie bei voller Leistung weniger CO2. Ein Unternehmen aus Sachsen-Anhalt betreibt in Deutschland bereits zwei Bioraffinerien, in denen Biomethan aus Stroh hergestellt wird.
openaire   +1 more source

Biomethan als Energiespeicher

BWK ENERGIE., 2020
Nach erfolgreich abgeschlossener Testphase speiste die nach eigenen Angaben derzeit weltweit größte Power-to-Gas (PtG)-Anlage mit einer Leistungsaufnahme von einem Megawatt Ende September 2019 erstmals Biomethan in das dänische Erdgasnetz. Die Anlage, die am südlichen Stadtrand von Kopenhagen in Avedøre liegt, nutzt eine von der Electrochaea GmbH aus ...
openaire   +1 more source

Biomethanization of orange peel waste

Bioresource Technology, 2010
Recent research has demonstrated that orange peel waste is a potentially valuable resource that can be developed into high value products such as methane. Following a pre-treatment to extract D-limonene, the anaerobic digestion of orange peel waste was evaluated at laboratory and pilot scale under mesophilic and thermophilic conditions.
M A, Martín   +3 more
openaire   +2 more sources

Biomethane

2022
Sonil Nanda, Prakash K. Sarangi
openaire   +2 more sources

Biomethanation of water hyacinth biomass

Bioresource Technology, 2018
The aim of this study was to test practical solutions to improve biogas yield during the anaerobic digestion of water hyacinth (WH) biomass. Increasing the WH (whole plant) solid content to ∼40% through sun drying (6 h), and its subsequent digestion increased biogas yield by 14% with a higher biogas methane (75%) content.
P, Priya   +4 more
openaire   +2 more sources

Introduction to Biomethane

2019
The global market of biofuels is led by bioethanol and biodiesel. Bioethanol is industrially produced from sugarcane, wheat, corn, and sugar beet. Biodiesel is made from vegetable oils and, in limited cases, from fats and waste cooking oils. In comparison, global biogas production was 27% of the global biofuel market or about 0.25% of the global energy
Sirichai Koonaphapdeelert   +2 more
openaire   +1 more source

Biomethanation in Paraguay

Mircen Journal of Applied Microbiology and Biotechnology, 1988
Ten digesters have already been built in Paraguay of which nine are operational, six are of the Indian design and two of the Chinese design. Cattle manure is the most common substrate. Biogas appliances are lamps, stove burners, refrigerators and electricity generators.
openaire   +1 more source

Marketing of Biomethane

2017
Biomethane is playing an important role in the transition to a sustainable energy system. It is renewable and can be easily stored, and its availability can be matched to times of peak demand. It benefits from an existing infrastructure for transport, storage, and use, namely, the public gas grid, gas-based heating systems in millions of private ...
openaire   +1 more source

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