Search results for "Nutrient"

showing 10 items of 668 documents

Microbiological investigation of Raphanus sativus L. grown hydroponically in nutrient solutions contaminated with spoilage and pathogenic bacteria

2012

Abstract The survival of eight undesired (spoilage/pathogenic) food related bacteria (Citrobacter freundii PSS60, Enterobacter spp. PSS11, Escherichia coli PSS2, Klebsiella oxytoca PSS82, Serratia grimesii PSS72, Pseudomonas putida PSS21, Stenotrophomonas maltophilia PSS52 and Listeria monocytogenes ATCC 19114T) was investigated in mineral nutrient solution (MNS) during the crop cycle of radishes (Raphanus sativus L.) cultivated in hydroponics in a greenhouse. MNSs were microbiologically analyzed weekly by plate count. The evolution of the pure cultures was also evaluated in sterile MNS in test tubes. The inoculated trials contained an initial total mesophilic count (TMC) ranging between 6.…

Hygienic safety; Microbial transfer; Mineral nutrient solution; Raphanus sativus L.; Soilless cultivation; Undesired bacteriaFood spoilageSettore AGR/04 - Orticoltura E FloricolturaBacterial Physiological Phenomenamedicine.disease_causeMicrobiologySoilless cultivationRaphanusMicrobiologyHydroponicsmedicineMicrobial transferMicrobial ViabilityBacteriabiologyUndesired bacteriaPathogenic bacteriaKlebsiella oxytocaGeneral MedicineEnterobacterMineral nutrient solutionbiology.organism_classificationBacterial LoadPseudomonas putidaRandom Amplified Polymorphic DNA TechniqueCitrobacter freundiiRaphanus sativus L.Food MicrobiologyHygienic safetyTemperature gradient gel electrophoresisBacteriaSettore AGR/16 - Microbiologia AgrariaFood ScienceInternational Journal of Food Microbiology
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Proteome adaptations under contrasting soil phosphate regimes of Rhizophagus irregularis engaged in a common mycorrhizal network.

2021

International audience; For many plants, their symbiosis with arbuscular mycorrhizal fungi plays a key role in the acquisition of mineral nutrients such as inorganic phosphate (Pi), in exchange for assimilated carbon. To study gene regulation and function in the symbiotic partners, we and others have used compartmented microcosms in which the extra-radical mycelium (ERM), responsible for mineral nutrient supply for the plants, was separated by fine nylon nets from the associated host roots and could be harvested and analysed in isolation. Here, we used such a model system to perform a quantitative comparative protein profiling of the ERM of Rhizophagus irregularis BEG75, forming a common my…

Hyphal growthRhizophagus irregularisProteomicsProteomeNitrogen[SDV]Life Sciences [q-bio]Glyoxylate cyclemycorrhizal symbiosisMicrobiologyPlant RootsPhosphatesFungal Proteins03 medical and health sciencesSoilNutrientcommon mycelial networkSymbiosisGeneticsMycorrhizal networkSymbiosisMycelium030304 developmental biology2. Zero hungerphosphate nutrition0303 health sciencesbiology030306 microbiologyfungiFungi15. Life on landextra-radical myceliumbiology.organism_classificationshotgun proteomicBiochemistryProteomeFungal genetics and biology : FGB
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Effect of light intensity, light duration and photoperiods in the performance of an outdoor photobioreactor for urban wastewater treatment

2019

[EN] A series of eight experiments were carried out to analyse the effects of light intensity, light duration and photoperiods on a microalgae culture for treating AnMBR effluent at an outdoor photobioreactor (PBR) plant. Improved performance was achieved in terms of nutrient recovery rates, biomass productivity and effluent nutrient concentrations at a higher net photon flux. However, the higher irradiance was also responsible for lower biomass productivity:light irradiance ratios. None of the experiments with different lighting regimes and the same net photon flux showed any significant differences. The data obtained suggest that microalgae performance in this system did not depend on the…

INGENIERIA HIDRAULICA020209 energyIrradianceBiomassPhotobioreactor02 engineering and technology010501 environmental sciences01 natural sciencesLight intensityNutrientAnimal scienceProductivity (ecology)0202 electrical engineering electronic engineering information engineeringEnvironmental scienceSewage treatmentAgronomy and Crop ScienceEffluentTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciences
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Performance of an outdoor membrane photobioreactor for resource recovery from anaerobically treated sewage

2018

[EN] The objective of this work was to evaluate the performance of a pilot scale membrane photobioreactor (MPBR) for treating the effluent of an anaerobic membrane bioreactor (AnMBR) system. In particular, new experimental data on microalgae productivity, nutrient recovery, CO2 biofixation and energy recovery potential was obtained under different operating conditions, which would facilitate moving towards cost-effective microalgae cultivation on wastewater. To this aim, a 2.2-m(3) MPBR equipped with two commercial-scale hollow-fibre ultrafiltration membrane modules was operated treating the nutrient-loaded effluent from an AnMBR for sewage treatment. The influence of several design, enviro…

INGENIERIA HIDRAULICA020209 energyStrategy and ManagementUltrafiltrationBiomassPhotobioreactor02 engineering and technologyMembrane photobioreactor010501 environmental sciences01 natural sciencesIndustrial and Manufacturing EngineeringMicroalgae cultivation0202 electrical engineering electronic engineering information engineeringEffluentTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesGeneral Environmental ScienceSuspended solidsEnergy harvestingRenewable Energy Sustainability and the EnvironmentPulp and paper industryReclaimed waterSewage treatmentNutrient recoveryWastewaterEnvironmental scienceSewage treatmentCarbon dioxide captureJournal of Cleaner Production
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Comprehensive assessment of the microalgae-nitrifying bacteria competition in microalgae-based wastewater treatment systems: Relevant factors, evalua…

2022

[EN] Due to their capacity to assimilate carbon dioxide and nutrients, microalgae-based cultivation systems have emerged as a green solution for intensive wastewater treatment. However, when large concentrations of ammonium are present the competition between microalgae and ammonium-oxidising bacteria plays a significant role. Microalgae use ammonium to synthesise proteins, photosynthetic pigments and nucleic acids, while ammonium-oxidising bacteria use it as a source of electrons and oxidise it to nitrite.Several authors have studied the isolated factors that influence microalgae-nitrifying bacteria competition, although a comprehensive analysis of this interesting topic is still lacking. …

INGENIERIA HIDRAULICACompetitionbiologyChemistrymedia_common.quotation_subjectWastewaterPulp and paper industryPhotosynthesisbiology.organism_classificationNitrificationCompetition (biology)chemistry.chemical_compoundNutrientNitrifying bacteriaMicroalgaeNitrificationSewage treatmentAmmoniumAgronomy and Crop ScienceAmmoniumTECNOLOGIA DEL MEDIO AMBIENTEBacteriamedia_commonAlgal Research
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On-line monitoring of photosynthetic activity based on pH data to assess microalgae cultivation

2020

[EN] Microalgae performance of outdoor cultivation systems is influenced by environmental and operating dynamics. Monitoring and control systems are needed to maximise biomass productivity and nutrient recovery. The goal of this work was to corroborate that pH data could be used to monitor microalgae performance by means of data from an outdoor membrane photobioreactor (MPBR) plant. In this system, microalgae photosynthetic activity was favoured over other physical and biological processes, so that the pH data dynamics was theoretically related to the microalgae carbon uptake rate (CUR). Shortand long-term continuous operations were tested to corroborate the relationship between the first d…

INGENIERIA HIDRAULICAEnvironmental Engineering0208 environmental biotechnologyBiomassPhotobioreactor02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and LawControl microalgae cultivationPhotosynthesis01 natural sciencesPhotobioreactorsNutrientMicroalgaeMicroalgae growthBiomassPhotosynthesisWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesKinetic modelCarbon uptakeOn-line monitoringData dynamicsGeneral MedicineHydrogen-Ion ConcentrationPulp and paper industry020801 environmental engineeringEnvironmental scienceJournal of Environmental Management
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Water resource recovery by means of microalgae cultivation in outdoor photobioreactors using the effluent from an anaerobic membrane bioreactor fed w…

2016

[EN] With the aim of assessing the potential of microalgae cultivation for water resource recovery (WRR), the performance of three 0.55 m3 flat-plate photobioreactors (PBRs) was evaluated in terms of nutrient removal rate (NRR) and biomass production. The PBRs were operated outdoor (at ambient temperature and light intensity) using as growth media the nutrient-rich effluent from an AnMBR fed with pre-treated sewage. Solar irradiance was the most determining factor affecting NRR. Biomass productivity was significantly affected by temperatures below 20 °C. The maximum biomass productivity (52.3 mg VSS·L−1·d−1) and NRR (5.84 mg NH4-N·L−1·d−1 and 0.85 mg PO4-P·L−1·…

INGENIERIA HIDRAULICAEnvironmental EngineeringLight020209 energyFlat-plate photobioreactorsBiomassSewagePhotobioreactorBioengineering02 engineering and technology010501 environmental sciencesWastewater01 natural sciencesPhotobioreactorsNutrientBioreactorsNutrient removal0202 electrical engineering electronic engineering information engineeringMicroalgaeBiomassWaste Management and DisposalEffluentTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesResource recoverySewageRenewable Energy Sustainability and the Environmentbusiness.industryEnvironmental engineeringTemperatureMembranes ArtificialGeneral MedicineOutdoor cultivationCulture MediaLight intensityWastewaterWater ResourcesEnvironmental sciencebusinessWater MicrobiologyBiotechnologyScenedesmusBioresource technology
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Kinetic modeling of autotrophic microalgae mainline processes for sewage treatment in phosphorus-replete and -deplete culture conditions

2021

[EN] A kinetic model of autotrophic microalgal growth in sewage was developed to determine the biokinetic processes involved, including carbon-, nitrogen- and phosphorus-limited microalgal growth, dependence on light intensity, temperature and pH, light attenuation and gas exchange to the atmosphere. A new feature was the differentiation between two metabolic pathways of phosphorus consumption according to the availability of extracellular phosphorus. Two scenarios were differentiated: phosphorus-replete and -deplete culture conditions. In the former, the microalgae absorbed phosphorus to grow and store polyphosphate. In the latter the microalgae used the stored polyphosphate as a phosphoru…

INGENIERIA HIDRAULICAEnvironmental EngineeringNitrogenBiomassPhotobioreactorchemistry.chemical_elementWastewaterNutrients removalPhotobioreactorsMathematical modelMicroalgaeEnvironmental ChemistryOrganic matterBiomassWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTEchemistry.chemical_classificationSewage06.- Garantizar la disponibilidad y la gestión sostenible del agua y el saneamiento para todosPhosphorusPhosphorusPulp and paper industryPollutionPhosphorus storageLight intensityWastewaterchemistryEnvironmental scienceSewage treatmentEutrophication
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Short and long-term experiments on the effect of sulphide on microalgae cultivation in tertiary sewage treatment.

2017

[EN] Microalgae cultivation appears to be a promising technology for treating nutrient-rich effluents from anaerobic membrane bioreactors, as microalgae are able to consume nutrients from sewage without an organic carbon source, although the sulphide formed during the anaerobic treatment does have negative effects on microalgae growth. Short and long-term experiments were carried out on the effects of sulphide on a mixed microalgae culture. The short-term experiments showed that the oxygen production rate (OPR) dropped as sulphide concentration increased: a concentration of 5 mg S L¿1 reduced OPR by 43%, while a concentration of 50 mg S L¿1 came close to completely inhibiting microalgae gro…

INGENIERIA HIDRAULICAEnvironmental EngineeringSulphide0208 environmental biotechnologySewageBioengineering02 engineering and technologyChlorella010501 environmental sciencesSulfides01 natural sciencesNutrientBioreactorMicroalgaeWaste Management and DisposalEffluentScenedesmusTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesbiologySewageRenewable Energy Sustainability and the Environmentbusiness.industryEnvironmental engineeringGeneral Medicinebiology.organism_classification020801 environmental engineeringWaste treatmentChlorellaEnvironmental chemistrySewage treatmentbusinessScenedesmusBioresource technology
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Production of microalgal external organic matter in a Chlorella-dominated culture: influence of temperature and stress factors

2020

[EN] Although microalgae are recognised to release external organic matter (EOM), little is known about this phenomenon in microalgae cultivation systems, especially on a large scale. A study on the effect of microalgae-stressing factors such as temperature, nutrient limitation and ammonium oxidising bacteria (AOB) competition in EOM production by microalgae was carried out. The results showed non-statistically significant differences in EOM production at constant temperatures of 25, 30 and 35 degrees C. However, when the temperature was raised from 25 to 35 degrees C for 4 h a day, polysaccharide production increased significantly, indicating microalgae stress. Nutrient limitation also see…

INGENIERIA HIDRAULICAEnvironmental Engineeringgenetic structures0208 environmental biotechnologyBiomassPhotobioreactor02 engineering and technology010501 environmental sciencesExtracellular organic matter01 natural scienceschemistry.chemical_compoundNutrientMicroalgaeOrganic matterAmmoniumPolysaccharideTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesWater Science and Technologychemistry.chemical_classificationbiology06.- Garantizar la disponibilidad y la gestión sostenible del agua y el saneamiento para todosProteinMembrane foulingbiology.organism_classificationeye diseases020801 environmental engineeringChlorellachemistryNitrifying bacteriaEnvironmental chemistryStress factorAigua Microbiologiasense organsAigües residuals Depuració Tractament biològic
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