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Journal ArticleDOI

Techniques for transformation of biogas to biomethane

TLDR
A number of techniques have been developed to remove H 2 S from biogas, such as pressure swing adsorption, membrane separation, physical or chemical CO 2 -absorption as discussed by the authors.
Abstract
Biogas from anaerobic digestion and landfills consists primarily of CH 4 and CO 2 . Trace components that are often present in biogas are water vapor, hydrogen sulfide, siloxanes, hydrocarbons, ammonia, oxygen, carbon monoxide and nitrogen. In order to transfer biogas into biomethane, two major steps are performed: (1) a cleaning process to remove the trace components and (2) an upgrading process to adjust the calorific value. Upgrading is generally performed in order to meet the standards for use as vehicle fuel or for injection in the natural gas grid. Different methods for biogas cleaning and upgrading are used. They differ in functioning, the necessary quality conditions of the incoming gas, the efficiency and their operational bottlenecks. Condensation methods (demisters, cyclone separators or moisture traps) and drying methods (adsorption or absorption) are used to remove water in combination with foam and dust. A number of techniques have been developed to remove H 2 S from biogas. Air dosing to the biogas and addition of iron chloride into the digester tank are two procedures that remove H 2 S during digestion. Techniques such as adsorption on iron oxide pellets and absorption in liquids remove H 2 S after digestion. Subsequently, trace components like siloxanes, hydrocarbons, ammonia, oxygen, carbon monoxide and nitrogen can require extra removal steps, if not sufficiently removed by other treatment steps. Finally, CH 4 must be separated from CO 2 using pressure swing adsorption, membrane separation, physical or chemical CO 2 -absorption.

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Citations
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Journal ArticleDOI

Selective separation of CO2 and CH4 for biogas upgrading on zeolite NaKA and SAPO-56

TL;DR: In this article, commercial and potential adsorbents were investigated for the separation of CO2 from CH4, which is relevant for the upgrading of raw biogas, and the main focus of the paper was on the working c...
Journal ArticleDOI

Recovery of ammonia and sulfate from waste streams and bioenergy production via bipolar bioelectrodialysis.

TL;DR: The applicability of bipolar bioelectrodialysis was successfully demonstrated with cattle manure and the results provide new possibilities for development of cost-effective technologies, capable of waste resources recovery and renewable energy production.
Journal ArticleDOI

Capturing CO2 into the Precipitate of a Phase-Changing Solvent after Absorption

TL;DR: The major drawback of aqueous alkanolamine-based CO2 capture processes is the high energy penalty for regeneration, so the absorption of CO2 with amines dissolved in nonaqueous solvents with the TETA/ethanol solution is studied to overcome this weakness.
Journal ArticleDOI

Biomethane production from anaerobic co-digestion at wastewater treatment plants: A critical review on development and innovations in biogas upgrading techniques.

TL;DR: Water, organic solvent and chemical scrubbing, pressure swing adsorption, membrane separation, and cryogenic technology are commercially available CO2 removal technologies for biogas upgrade, and significant market growth in membrane separation has been seen over the 2015-2019 period.
Journal ArticleDOI

Methods for the Treatment of Cattle Manure—A Review

TL;DR: The potential for cattle manure as an energy source due to its relatively large calorific value (HHV of 8.7-18.7 MJ/kg dry basis) is explored in this paper.
References
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Journal ArticleDOI

Energy use of biogas hampered by the presence of siloxanes.

TL;DR: In this paper, the authors reviewed the fundamentals of siloxanes and the current problems of the associated fouling and summarized the useable methods for siloxane abatement from biogas and made some recommendations towards preventive actions.
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Removal of siloxanes in biogases.

TL;DR: In contrast to biogas drying by refrigeration, which had a poor effect on siloxane content, the installation of meadow ore adsorption beds resulted in a significantsiloxane reduction of 31-75%, depending on the site studied.
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Novel fixed-site–carrier polyvinylamine membrane for carbon dioxide capture

TL;DR: In this paper, fixed-site-carrier membranes were prepared for the facilitated transport of CO2 by casting polyvinylamine (PVAm) on various supports, such as poly(ether sulfone) (PES), polyacrylonitrile (PAN), cellulose acetate (CA), and polysulfone (PSO).
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Chemical absorption of H2S for biogas purification

TL;DR: In this paper, an experimental study of purification of a biogas by removal of its hydrogen sulphide (H2S) content was carried out by means of chemical absorption in an iron-chelated solution catalyzed by Fe/EDTA, which converted H2S into elemental sulphur (S).
Journal ArticleDOI

Chemo-autotrophic biogas purification for methane enrichment: mechanism and kinetics

TL;DR: This gas stream treatment process improves the quality and caloric value of the biogas and increases the methane content through the use of a chemo-autotrophic methanogen, uncoupled methanogenesis techniques and hollow fiber membranes.
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