JUAN CARLOS
LOPEZ NEILA
Investigador en el periodo 2012-2018
Publicaciones en las que colabora con JUAN CARLOS LOPEZ NEILA (17)
2020
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Coupling Biogas with PHA Biosynthesis
The Handbook of Polyhydroxyalkanoates: Microbial Synthesis and Feedstocks
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Modeling of Polyhydroxyalkanoate Synthesis from Biogas by Methylocystis hirsuta
ACS Sustainable Chemistry and Engineering, Vol. 8, Núm. 9, pp. 3906-3912
2019
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Ammonium influences kinetics and structure of methanotrophic consortia
Waste Management, Vol. 89, pp. 345-353
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CH4-based polyhydroxyalkanoate production: A step further towards a sustainable bioeconomy
Biotechnological Applications of Polyhydroxyalkanoates (Springer Singapore), pp. 283-321
2018
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Biogas-based polyhydroxyalkanoates production by Methylocystis hirsuta: A step further in anaerobic digestion biorefineries
Chemical Engineering Journal, Vol. 333, pp. 529-536
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Feast-famine biofilter operation for methane mitigation
Journal of Cleaner Production, Vol. 170, pp. 108-118
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Optimization of CH4 removal from diluted emissions and continuous PHB production by methylocystis hirsuta: Towards GHG biorefineries
Chemical Engineering Transactions, Vol. 68, pp. 439-444
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Quantitative analysis of methane monooxygenase (MMO) explains process robustness in continuous and feast-famine bioreactors treating methane
Chemosphere, Vol. 212, pp. 319-329
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Simultaneous methane abatement and PHB production by Methylocystis hirsuta in a novel gas-recycling bubble column bioreactor
Chemical Engineering Journal, Vol. 334, pp. 691-697
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Technologies for the bioconversion of methane into more valuable products
Current Opinion in Biotechnology, Vol. 50, pp. 128-135
2017
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Biogas-based denitrification in a biotrickling filter: Influence of nitrate concentration and hydrogen sulfide
Biotechnology and Bioengineering, Vol. 114, Núm. 3, pp. 665-673
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Technologies for the bio-conversion of GHGs into high added value products: Current state and future prospects
Green Energy and Technology (Springer Verlag), pp. 359-388
2016
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Exploring the potential of fungi for methane abatement: Performance evaluation of a fungal-bacterial biofilter
Chemosphere, Vol. 144, pp. 97-106
2014
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Assessing the influence of CH4 concentration during culture enrichment on the biodegradation kinetics and population structure
Journal of Environmental Management, Vol. 146, pp. 116-123
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Assessment of methane biodegradation kinetics in two-phase partitioning bioreactors by pulse respirometry
Water Research, Vol. 67, pp. 46-54
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Effect of pollutant concentration during isolation on the CH4biodegradation kinetics, population structure and PHB accumulation
Chemical Engineering Transactions, Vol. 40, Núm. Special Issue, pp. 211-216
2013
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Biotechnologies for greenhouse gases (CH4, N2O, and CO2) abatement: State of the art and challenges
Applied Microbiology and Biotechnology, Vol. 97, Núm. 6, pp. 2277-2303