Digestion anaérobie (French Wikipedia)

Analysis of information sources in references of the Wikipedia article "Digestion anaérobie" in French language version.

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aikantechnology.com

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anaerobic-digestion.com

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bcfarmbiogas.ca

biogas-digester.com

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cigrjournal.org

  • (en) A, Abowei, Ayotamuno et Eze, « Comparative Evaluation of Batch and Continuous Anaerobic Digesters in Biogas Production from Municipal Solid Waste using Mathematical Models », Agricultural Engineering International: CIGR Journal,‎ (ISSN 1682-1130, lire en ligne)

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  • Koyama, Tadashiro, « Gaseous metabolism in lake sediments and paddy soils and the production of atmospheric methane and hydrogen », Journal of Geophysical Research, vol. 68, no 13,‎ , p. 3971–3973 (DOI 10.1029/JZ068i013p03971, Bibcode 1963JGR....68.3971K)
  • Pamatmat, Mario Macalalag et Bhagwat, Ashok M., « Anaerobic metabolism in Lake Washington sediments », Limnology and Oceanography, vol. 18, no 4,‎ , p. 611–627 (DOI 10.4319/lo.1973.18.4.0611, Bibcode 1973LimOc..18..611P, lire en ligne [archive du ]).
  • MacGregor, A. N. et Keeney, D.R., « Methane formation by lake sediments during in vitro incubations », Journal of the American Water Resources Association, vol. 9, no 6,‎ , p. 1153–1158 (DOI 10.1111/j.1752-1688.1973.tb05854.x, Bibcode 1973JAWRA...9.1153M).
  • Tabatabaei, « Importance of the methanogenic archaea populations in anaerobic wastewater treatments », Process Biochemistry, vol. 45, no 8,‎ , p. 1214–1225 (DOI 10.1016/j.procbio.2010.05.017, lire en ligne [PDF]).
  • Song, Kwon et Woo, « Mesophilic and thermophilic temperature co-phase anaerobic digestion compared with single-stage mesophilic- and thermophilic digestion of sewage sludge », Water Res., vol. 38, no 7,‎ , p. 1653–62 (PMID 15026219, DOI 10.1016/j.watres.2003.12.019).
  • Jewell, Cummings et Richards, « Methane fermentation of energy crops: Maximum conversion kinetics and in situ biogas purification », Biomass and Bioenergy, vol. 5, nos 3–4,‎ , p. 261–278 (DOI 10.1016/0961-9534(93)90076-G)
  • Richards, Cummings, White et Jewell, « Methods for kinetic analysis of methane fermentation in high solids biomass digesters », Biomass and Bioenergy, vol. 1, no 2,‎ , p. 65–73 (DOI 10.1016/0961-9534(91)90028-B)
  • Griffin, McMahon, Mackie et Raskin, « Methanogenic population dynamics during start-up of anaerobic digesters treating municipal solid waste and biosolids », Biotechnol Bioeng, vol. 57, no 3,‎ , p. 342–55 (PMID 10099211, DOI 10.1002/(sici)1097-0290(19980205)57:3<342::aid-bit11>3.0.co;2-i)
  • Chen, Cheng et Creamer, « Inhibition of anaerobic digestion process: A review », Bioresource Technology, vol. 99, no 10,‎ , p. 4044–4064 (PMID 17399981, DOI 10.1016/j.biortech.2007.01.057)
  • Benner, Ronald, « Book Review: Biology of anaerobic microorganisms », Limnology and Oceanography, vol. 34, no 3,‎ , p. 647 (DOI 10.4319/lo.1989.34.3.0647, Bibcode 1989LimOc..34..647B, lire en ligne [archive du ])
  • Richards, Cummings et Jewell, « High rate low solids methane fermentation of sorghum, corn and cellulose », Biomass and Bioenergy, vol. 1, no 5,‎ , p. 249–260 (DOI 10.1016/0961-9534(91)90036-C)
  • Richards, Cummings, Jewell et Herndon, « High solids anaerobic methane fermentation of sorghum and cellulose », Biomass and Bioenergy, vol. 1,‎ , p. 47–53 (DOI 10.1016/0961-9534(91)90051-D)
  • Hafner, Rennuit, Triolo et Richards, « Validation of a simple gravimetric method for measuring biogas production in laboratory experiments », Biomass and Bioenergy, vol. 83,‎ , p. 297–301 (DOI 10.1016/j.biombioe.2015.10.003)
  • Roubík, Mazancová, Banout et Verner, « Addressing problems at small-scale biogas plants: a case study from central Vietnam », Journal of Cleaner Production, vol. 112,‎ , p. 2784–2792 (DOI 10.1016/j.jclepro.2015.09.114)
  • Meyer-Jens, Matz et Märkl, « On-line measurement of dissolved and gaseous hydrogen sulphide in anaerobic biogas reactors », Applied Microbiology and Biotechnology, vol. 43, no 2,‎ , p. 341–345 (DOI 10.1007/BF00172836)
  • Richards, Herndon, Jewell et Cummings, « In situ methane enrichment in methanogenic energy crop digesters », Biomass and Bioenergy, vol. 6, no 4,‎ , p. 275–282 (DOI 10.1016/0961-9534(94)90067-1)
  • Yue, Teater, Liu et MacLellan, « A sustainable pathway of cellulosic ethanol production integrating anaerobic digestion with biorefining », Biotechnology and Bioengineering, vol. 105, no 6,‎ , p. 1031–9 (PMID 19998279, DOI 10.1002/bit.22627).
  • Dosta, Galí, Macé et Mata‐Álvarez, « Modelling a sequencing batch reactor to treat the supernatant from anaerobic digestion of the organic fraction of municipal solid waste », Journal of Chemical Technology & Biotechnology, vol. 82, no 2,‎ , p. 158–64 (DOI 10.1002/jctb.1645)
  • Auer et al., « Agricultural anaerobic digestion power plants in Ireland and Germany: Policy and practice », Journal of the Science of Food and Agriculture, vol. 97, no 3,‎ , p. 719–723 (PMID 27553887, DOI 10.1002/jsfa.8005)
  • Trasatti, « 1799–1999: Alessandro Volta's 'Electric Pile': Two hundred years, but it doesn't seem like it », Journal of Electroanalytical Chemistry, vol. 460,‎ , p. 1–4 (DOI 10.1016/S0022-0728(98)00302-7)
  • Gijzen, « Anaerobic digestion for sustainable development: a natural approach », Water Science and Technology, vol. 45, no 10,‎ , p. 321–328 (PMID 12188565, DOI 10.2166/wst.2002.0364, lire en ligne)
  • Marsh, « Rise of the Anaerobic Digestor », Renewable Energy Focus, vol. 9, no 6,‎ november–december 2008, p. 28–30 (DOI 10.1016/S1755-0084(08)70063-2)
  • Grando et al., « Technology overview of biogas production in anaerobic digestion plants: A European evaluation of research and development », Renewable and Sustainable Energy Reviews, vol. 80,‎ , p. 44–53 (DOI 10.1016/j.rser.2017.05.079, lire en ligne)
  • Wagenhals et al., « Sewage treatment in the United States: A report on the study of 15 representative sewage treatment plants », Public Health, vol. 38,‎ , p. 38 (DOI 10.1016/S0033-3506(24)80014-8)
  • Bishop, C., Shumway, C. et Wandschneider, P., « Agent heterogeneity in adoption of anaerobic digestion technology: Integrating economic, diffusion, and behavioral innovation theories », Land Economics, vol. 86, no 3,‎ , p. 585–608 (DOI 10.3368/le.86.3.585, lire en ligne).
  • Bangalore et al., « Policy incentives and adoption of agricultural anaerobic digestion: A survey of Europe and the United States », Renewable Energy, vol. 97,‎ , p. 559–571 (DOI 10.1016/j.renene.2016.05.062).

drive.google.com

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ejbiotechnology.info

encyclopedia.com

energy.gov

eere.energy.gov

energyvortex.com

envirochemie.com

epa.gov

espacenet.com

worldwide.espacenet.com

  • [2], "Removal of hydrogen sulfide from anaerobic digester gas" 

europa.eu

ec.europa.eu

foe.co.uk

googleusercontent.com

webcache.googleusercontent.com

gouv.qc.ca

gdt.oqlf.gouv.qc.ca

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harvard.edu

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iea-biogas.net

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www-sop.inria.fr

issn.org

portal.issn.org

  • (en) A, Abowei, Ayotamuno et Eze, « Comparative Evaluation of Batch and Continuous Anaerobic Digesters in Biogas Production from Municipal Solid Waste using Mathematical Models », Agricultural Engineering International: CIGR Journal,‎ (ISSN 1682-1130, lire en ligne)

iwaponline.com

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jhu.edu

muse.jhu.edu

  • Bishop, C., Shumway, C. et Wandschneider, P., « Agent heterogeneity in adoption of anaerobic digestion technology: Integrating economic, diffusion, and behavioral innovation theories », Land Economics, vol. 86, no 3,‎ , p. 585–608 (DOI 10.3368/le.86.3.585, lire en ligne).

jstor.org

  • Hill et Barth, « A Dynamic Model for Simulation of Animal Waste Digestion », Journal (Water Pollution Control Federation), vol. 49, no 10,‎ , p. 2129–2143 (JSTOR 25039421)

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  • Adapté de Beychok, M., Aqueous Wastes from Petroleum and Petrochemical Plants, John Wiley & Sons, (LCCN 67019834).

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newmediaexplorer.org

nfuonline.com

nih.gov

ncbi.nlm.nih.gov

  • Song, Kwon et Woo, « Mesophilic and thermophilic temperature co-phase anaerobic digestion compared with single-stage mesophilic- and thermophilic digestion of sewage sludge », Water Res., vol. 38, no 7,‎ , p. 1653–62 (PMID 15026219, DOI 10.1016/j.watres.2003.12.019).
  • Griffin, McMahon, Mackie et Raskin, « Methanogenic population dynamics during start-up of anaerobic digesters treating municipal solid waste and biosolids », Biotechnol Bioeng, vol. 57, no 3,‎ , p. 342–55 (PMID 10099211, DOI 10.1002/(sici)1097-0290(19980205)57:3<342::aid-bit11>3.0.co;2-i)
  • Chen, Cheng et Creamer, « Inhibition of anaerobic digestion process: A review », Bioresource Technology, vol. 99, no 10,‎ , p. 4044–4064 (PMID 17399981, DOI 10.1016/j.biortech.2007.01.057)
  • Yue, Teater, Liu et MacLellan, « A sustainable pathway of cellulosic ethanol production integrating anaerobic digestion with biorefining », Biotechnology and Bioengineering, vol. 105, no 6,‎ , p. 1031–9 (PMID 19998279, DOI 10.1002/bit.22627).
  • Auer et al., « Agricultural anaerobic digestion power plants in Ireland and Germany: Policy and practice », Journal of the Science of Food and Agriculture, vol. 97, no 3,‎ , p. 719–723 (PMID 27553887, DOI 10.1002/jsfa.8005)
  • Gijzen, « Anaerobic digestion for sustainable development: a natural approach », Water Science and Technology, vol. 45, no 10,‎ , p. 321–328 (PMID 12188565, DOI 10.2166/wst.2002.0364, lire en ligne)

nnfcc.co.uk

paques.nl

sciencedirect.com

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  • (en) Hema Vijay, « Satisfaction of reducing your carbon footprint », The Hindu,‎ (lire en ligne, consulté le )

translate.google.com

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ddd.uab.cat

  • Grando et al., « Technology overview of biogas production in anaerobic digestion plants: A European evaluation of research and development », Renewable and Sustainable Energy Reviews, vol. 80,‎ , p. 44–53 (DOI 10.1016/j.rser.2017.05.079, lire en ligne)

ucla.edu

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  • Klinkner, « Anaerobic Digestion as a Renewable Energy Source and Waste Management Technology: What Must be Done for This Technology to Realize Success in the United States? », UMass Law Review, vol. 9,‎ , p. 79 (lire en ligne)

unu.edu

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  • Tabatabaei, « Importance of the methanogenic archaea populations in anaerobic wastewater treatments », Process Biochemistry, vol. 45, no 8,‎ , p. 1214–1225 (DOI 10.1016/j.procbio.2010.05.017, lire en ligne [PDF]).

vccs.edu

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waste.nl

wasteresearch.co.uk

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