Academic literature on the topic 'Leach-bed reactor'

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Journal articles on the topic "Leach-bed reactor"

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Nkemka, Valentine Nkongndem, Jorge Arenales-Rivera, and Marika Murto. "Two-Stage Dry Anaerobic Digestion of Beach Cast Seaweed and Its Codigestion with Cow Manure." Journal of Waste Management 2014 (July 17, 2014): 1–9. http://dx.doi.org/10.1155/2014/325341.

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Two-stage, dry anaerobic codigestion of seaweed and solid cow manure was studied on a laboratory scale. A methane yield of 0.14 L/g VSadded was obtained when digesting solid cow manure in a leach bed process and a methane yield of 0.16 L/g VSadded and 0.11 L/g VSadded was obtained from seaweed and seaweed/solid manure in a two-stage anaerobic process, respectively. The results showed that it was beneficial to operate the second stage methane reactor for the digestion of seaweed, which produced 83% of the methane, while the remainder was produced in the first leach bed reactor. Also, the two-st
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Browne, James D., Eoin Allen, and Jerry D. Murphy. "Improving hydrolysis of food waste in a leach bed reactor." Waste Management 33, no. 11 (2013): 2470–77. http://dx.doi.org/10.1016/j.wasman.2013.06.025.

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Xiong, Ziyi, Abid Hussain, Jangho Lee, and Hyung-Sool Lee. "Food waste fermentation in a leach bed reactor: Reactor performance, and microbial ecology and dynamics." Bioresource Technology 274 (February 2019): 153–61. http://dx.doi.org/10.1016/j.biortech.2018.11.066.

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Cadavid-Rodríguez, Luz Stella, and Nigel J. Horan. "Production of volatile fatty acids from wastewater screenings using a leach-bed reactor." Water Research 60 (September 2014): 242–49. http://dx.doi.org/10.1016/j.watres.2014.05.001.

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Silvey, P., P. C. Pullammanappallil, L. Blackall, and P. Nichols. "Microbial ecology of the leach bed anaerobic digestion of unsorted municipal solid waste." Water Science and Technology 41, no. 3 (2000): 9–16. http://dx.doi.org/10.2166/wst.2000.0050.

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The microbial ecology of the sequential, leach-bed, mesophilic anaerobic digestion of unsorted, coarse municipal solid waste (MSW) was examined over 80 days. The methane yield was approximately 75% of the ultimate biochemical methane potential (BMP) of the waste loaded into the digesters. The operational strategy involved a sequence of two digesters containing fresh and anaerobically stabilised MSW respectively. Cell wall phospholipid fatty acid (PLFA) and ether lipid (PLEL) analysis was used to monitor changes in microbial biomass. Both Bacterial and Archaeal biomass were heavily influenced b
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Cysneiros, D., C. J. Banks, and S. Heaven. "Anaerobic digestion of maize in coupled leach-bed and anaerobic filter reactors." Water Science and Technology 58, no. 7 (2008): 1505–11. http://dx.doi.org/10.2166/wst.2008.518.

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The methane potential of a leach bed reactor (LBR) coupled to an anaerobic filter (AF) was assessed using energy maize (Zea mays) as substrate. Four LBRs were used operated as pairs, with and without leachate recirculation, over two feed cycles with retention times of 14 and 28 days. Performance was estimated from the total solids destruction in the LBR, and the volatile fatty acid (VFA) and soluble chemical oxygen demand (SCOD) in the leachate. Overall conversion of fresh substrate added to the combined system was good although the organic loading rate (OLR) was limited. The coupled LBR demon
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Nkemka, Valentine Nkongndem, Karen A. Beauchemin, and Xiying Hao. "Treatment of feces from beef cattle fed the enteric methane inhibitor 3-nitrooxypropanol." Water Science and Technology 80, no. 3 (2019): 437–47. http://dx.doi.org/10.2166/wst.2019.302.

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Abstract The study evaluated the residual effect of the known enteric methane inhibitor 3-nitrooxypropanol (3NOP) on anaerobic digestion of cattle feces (feces) in a CH4 potential batch test and two consecutive runs of an anaerobic leach bed reactor at a solids retention time of 40 days. The feces used in this study were collected from beef cattle fed forage- (backgrounding) or grain- (finishing) based diets supplemented with 3NOP in feedlot and metabolism studies. The results showed that CH4 yields were not significantly different from treatments using control feces and feces collected from c
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Korazbekov, K. U., and Zh K. Bakhov. "Performance of Leach-bed Reactor with Immobilization of Microorganisms in Terms of Methane Production Kinetics." Journal of Biological Sciences 14, no. 4 (2014): 258–66. http://dx.doi.org/10.3923/jbs.2014.258.266.

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Hanif, Asma, Lucas Loetscher, and Sybil Sharvelle. "Evaluation of a leach bed reactor for the anaerobic digestion of drylot collected cattle manure." Journal of Environmental Chemical Engineering 9, no. 5 (2021): 106080. http://dx.doi.org/10.1016/j.jece.2021.106080.

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Korazbekov, K. U., Zh K. Bakhov, and A. A. Saparbekov. "Dry Fermentation of Agricultural Waste in the Modified Leach-bed Reactor with Immobilization of Microorganisms." Biotechnology(Faisalabad) 12, no. 6 (2013): 236–44. http://dx.doi.org/10.3923/biotech.2013.236.244.

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Dissertations / Theses on the topic "Leach-bed reactor"

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Digan, Laura. "Production de molécules plateformes pour la valorisation des déchets organiques solides : étude de processus physiques et biologiques impactant la qualité du mélange d'acides organiques." Thesis, Toulouse, INSA, 2019. http://www.theses.fr/2019ISAT0051.

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La consommation de ressources pétrolières, épuisables et non renouvelables, conduit à rechercher de nouvelles voies de production pour l’industrie chimique. De plus, la production d’Ordures Ménagères Résiduelles (OMR) continue d’augmenter à l’échelle mondiale. La fermentation acidogène des OMR permet de répondre au double objectif de traiter ces déchets et réduire leur quantité tout en produisant des molécules plateformes biosourcées (acides organiques) d’intérêt pour la chimie.La teneur en solides élevée des OMR et le souci de limiter les coûts de procédé justifient le choix du réacteur à lit
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Reports on the topic "Leach-bed reactor"

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Pullammanappallil, Pratap, Haim Kalman, and Jennifer Curtis. Investigation of particulate flow behavior in a continuous, high solids, leach-bed biogasification system. United States Department of Agriculture, 2015. http://dx.doi.org/10.32747/2015.7600038.bard.

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Recent concerns regarding global warming and energy security have accelerated research and developmental efforts to produce biofuels from agricultural and forestry residues, and energy crops. Anaerobic digestion is a promising process for producing biogas-biofuel from biomass feedstocks. However, there is a need for new reactor designs and operating considerations to process fibrous biomass feedstocks. In this research project, the multiphase flow behavior of biomass particles was investigated. The objective was accomplished through both simulation and experimentation. The simulations included
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