Search results for " microbial"

showing 10 items of 340 documents

Bioarosol

2022

Cultural heritage constitutive materials can provide excellent substrates for microbial colonisation, highly influenced by thermo-hygrometric parameters. In cultural heritage-related environments, a detrimental microbial load may be present both on artworks surface and in the aerosol. Confined environments (museums, archives, deposits, caves, hypogea) are characterised by peculiar structures and different thermo-hygrometric conditions, influencing the development of a wide range of microbial species, able to induce artefact biodeterioration and to release biological particles in the aerosol (spores, cellular debrides, toxins, allergens) potentially dangerous for the human health (visitors/u…

Settore BIO/03 - Botanica Ambientale E ApplicataBiodeterioration Microbial colonisation Preventive conservation
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Biodeterioration

2022

The biodeterioration of organic and inorganic materials, as well as polymers, is a complex of alteration processes induced by the growing and metabolic activity of organisms. It can be recognized on monuments, wall paintings, stone, wood, paper, vegetal/animal fibers, and parchment artworks. As defined by Hueck, 1968, biodeterioration is “any undesirable change in the properties of a material caused by the vital activities of organisms”; this definition is accepted as the meaning of the phenomenon. Both macroorganisms (such as animals, plants, and mosses) and microorganisms (such as autotrophic or heterotrophic bacteria, microfungi, cyanobacteria, algae, and lichens) represent the triggers …

Settore BIO/03 - Botanica Ambientale E ApplicataCultural heritage material · Wall painting · Microbial colonization · Stone surface · Sampling and culture methods
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Assessment of the ecological status of transitional waters in Sicily (Italy): first characterisation and classification according to a multiparametri…

2010

A 1-year cycle of observations was performed in four Sicilian transitional water systems (Oliveri-Tindari, Cape Peloro, Vendicari and Marsala) to characterise their ecological status. A panel of variables among which trophic and microbial (enzyme activities, abundance of hetetrophic bacteria and of bacterial pollution indicators) parameters, were selected. Particulate organic carbon (POC) and nitrogen (PON) and chlorophyll-. a (Chl-. a) contents defined the trophic state, while microbial hydrolysis rates and abundance gave insights on microbial community efficiency in organic matter transformation and on allochthonous inputs. To classify the trophic state of examined waters, the synthetic t…

Settore BIO/07 - EcologiaAquatic ScienceOceanographyMediterranean SeaWater Pollution ChemicalOrganic matterSeawaterTrophic state indexSicilyEcosystemTrophic levelchemistry.chemical_classificationEcologyTransitional areas Water Framework Directive Ecological quality status Trophic conditions Microbial decomposition SicilyPollutionWater Framework DirectiveMicrobial population biologychemistryEnvironmental chemistryEnvironmental scienceWater qualityTrixEutrophicationWater MicrobiologyEcological quality status; Microbial decomposition; Sicily; Transitional areas; Trophic conditions; Water Framework DirectiveWater Pollutants ChemicalEnvironmental MonitoringMarine pollution bulletin
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Differential response of benthic microbes and meiofauna to fish-farm disturbance in coastal sediments

2001

Bacterial and meiofaunal abundance and biomass and their response to the disturbance induced by fish-farm biodeposition were investigated from March to October 1997 on a monthly basis at two stations of the Gaeta Gulf (Tyrrhenian Sea, Mediterranean Sea). The biopolymeric fraction of the organic matter was characterized by high concentrations which was similar at both fish-farming-impacted and control stations. Similarly, bacteria accounted for a small fraction of the biopolymeric organic carbon (<1%), while the contribution due to auto-fluorescent cell biomass (i.e. prokaryotic and eukaryotic cells displaying auto-fluorescence) to the total biopolymeric carbon was quantitatively negligible …

Settore BIO/07 - EcologiaChlorophyllGeologic SedimentsNematodaMeiofaunaHealth Toxicology and MutagenesisMeiobenthosColony Count MicrobialAquacultureBiologyToxicologyCyanobacteriaFish-farmMediterranean seaBenthosSedimentary organic matterEnvironmental ChemistrySedimentary organic matterAnimalsOrganic matterBiomassMicrophytobenthoTotal organic carbonchemistry.chemical_classificationBiomass (ecology)Bacteria2300EcologyChlorophyll Ameiofauna; bacteria; microphytobenthos; fish-farms; sedimentary organic matterGeneral MedicinePigments BiologicalPollutionchemistryItalyBenthic zone
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Carbonate stromatolites from a Messinian hypersaline setting in the Caltanissetta Basin, Sicily: petrographic evidence of microbial activity and rela…

2010

Lower Messinian stromatolites of the Calcare di Base Formation at Sutera in Sicily record periods of low sea-level, strong evaporation and elevated salinity, thought to be associated with the onset of the Messinian Salinity Crisis. Overlying aragonitic limestones were precipitated in normal to slightly evaporative conditions, occasionally influenced by an influx of meteoric water. Evidence of bacterial involvement in carbonate formation is recorded in three dolomite-rich stromatolite beds in the lower portion of the section that contain low domes with irregular crinkly millimetre-scale lamination and small fenestrae. The dominant microfabrics are: (i) peloidal and clotted dolomicrite with c…

Settore GEO/07 - Petrologia E PetrografiaCalcare di Base Messinian microbial carbonate petrography rare earth elements Sicily stable isotopes stromatolitesSettore GEO/08 - Geochimica E Vulcanologia
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Integrated production of biopolymers with industrial wastewater treatment: Effects of OLR on process yields, biopolymers characteristics and mixed mi…

2022

The production of polyhydroxyalkanoates (PHA) using industrial wastewaters as feedstocks is a current and challenging topic. This study investigated the production of biopolymers by a mixed microbial culture under different OLRs equal to 1 kgCOD m-3d-1 (Period 1), 2 kgCOD m-3d-1 (Period 2) and 3 kgCOD m-3d-1 (Period 3). The maximum PHA content was achieved in Period 2 (0.38 gPHA gTSS-1), whereas lower values were obtained in Period 1 (0.13 gPHA gTSS-1) and Period 3 (0.26 gPHA gTSS-1). Overall, the maximum PHA productivity resulted equal to 0.08 gPHA L-1h-1 (P2), 0.05 gPHA L-1h-1 (P1) and 0.04 gPHA L-1h-1 (P3), respectively. The molecular weight of the PHA increased from Period 1 (250 kDa) t…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleProcess Chemistry and TechnologyIndustrial wastewater Mixed microbial cultures Organic loading rate Polyhydroxybutyrate SBR reactorsSafety Risk Reliability and QualityWaste Management and DisposalBiotechnologyJournal of Water Process Engineering
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Membrane Fouling Mitigation in MBR via the Feast–Famine Strategy to Enhance PHA Production by Activated Sludge

2022

Fouling is considered one of the main drawbacks of membrane bioreactor (MBR) technology. Among the main fouling agents, extracellular polymeric substances (EPS) are considered one of the most impactful since they cause the decrease of sludge filterability and decline of membrane flux in the long term. The present study investigated a biological strategy to reduce the membrane-fouling tendency in MBR systems. This consisted of seeding the reactor with activated sludge enriched in microorganisms with polyhydroxyalkanoate (PHA) storage ability and by imposing proper operating conditions to drive the carbon toward intracellular (PHA) rather than extracellular (EPS) accumulation. For that purpos…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleProcess Chemistry and Technologyextracellular polymeric substances (EPS) cake layer fouling control membrane bioreactor (MBR) polyhydroxyalkanoate (PHA) resistance in series (RIS) model soluble microbial products (SMP)Chemical Engineering (miscellaneous)Filtration and Separationextracellular polymeric substances (EPS); cake layer; fouling control; membrane bioreactor (MBR); polyhydroxyalkanoate (PHA); resistance in series (RIS) model; soluble microbial products (SMP)Membranes
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Influence of ferric iron dosing on aerobic granular sludge: granule formation, nutrient removal and microbial community

2021

BACKGROUND: Three lab-scale sequencing batch reactors were used to investigate the effects of Fe3+ on aerobic granular sludge (AGS) formation, nutrient removal, and microbial community. RESULTS: The addition of 6 and 12 mg Fe3+ L−1 could not shorten the granulation time. However, compared to the reactor without Fe3+ addition (average sludge volume index at 30 min (SVI30) 70.8 mL g−1; stable average particle size 548 μm), the addition of 12 mg Fe3+ L−1 helped improve the physical properties of AGS (average SVI30 57.0 mL g−1; stable average particle size 1067 μm). Furthermore, with 12 mg Fe3+ L−1 addition (Fe3+ to PO43−-P molar ratio = 1.33), effective removal of NH4+-N (≤0.5 mg L−1) and PO43…

Settore ICAR/03 - Ingegneria Sanitaria-AmbientaleRenewable Energy Sustainability and the EnvironmentChemistryGeneral Chemical EngineeringOrganic ChemistryGranule (cell biology)Pollutionaerobic granular sludge ferric iron microbial activity microbial community phosphorus and nitrogen removalInorganic ChemistryFuel TechnologyNutrientMicrobial population biologyDosingFood scienceFERRIC IRONWaste Management and DisposalBiotechnologyJournal of Chemical Technology &amp; Biotechnology
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The influence of sludge retention time on mixed culture microbial fuel cell start-ups

2017

Abstract In this work, the start-ups of air-cathode microbial fuel cells (MFCs) seeds with conventional activated sludge cultivated at different solid retention times (SRTs) are compared. A clear influence of the SRT of the inoculum was observed, corresponding to an SRT of 10 days to the higher current density exerted, about 0.2 A m −2 . This observation points out that, in this type of electrochemical device, it is recommended to use high SRT seeds. The work also points out that in order to promote an efficient start-up, it is not only necessary to use high SRT seeds, but also to feed a high COD concentration. When feeding 10,000 ppm COD and keeping SRT of 10 d differences of current densi…

Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciEnvironmental EngineeringMicrobial fuel cellMicrobial fuel cellAir-cathodeBiomedical EngineeringBioengineering02 engineering and technology010501 environmental sciencesSolid retention time Microbial fuel cell Air-cathode Acetate01 natural sciencesMixed culture0105 earth and related environmental sciencesSolid retention timChemistryAir cathodeAcetateEnvironmental engineeringSettore ING-IND/27 - Chimica Industriale E Tecnologica021001 nanoscience & nanotechnologyPulp and paper industryStart upSolid retention time Microbial fuel cell Air-cathode AcetateActivated sludge0210 nano-technologyRetention timehuman activitiesBiotechnology
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Electrochemical Processes and Apparatuses for the Abatement of Acid Orange 7 in Water

2014

We have studied the electrochemical treatment of aqu eous solutions contaminated by Acid Orange 7 (AO7) by electro-Fenton process (EF). The main object ive was to evaluate how the electrochemical route affects the performances of the d egradation process. EF process was carried out in a number of very different reactors: conventional bench scale electrochem ical cell, microfluidic electrochemical reactor, microbial fuel cell and stack for reverse electrodialysis processes. The utilisation of micro devices allowed to work without the addition of a supporting elec trolyte and improved the performances of EF. Microbial fuel cell did not need the supply of electric energy bu t our device requir…

Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimicilcsh:Computer engineering. Computer hardwarereverse electrodialysis microreactors microbialfuel cell AO7 electrofentonlcsh:TP155-156lcsh:TK7885-7895lcsh:Chemical engineeringSettore ING-IND/27 - Chimica Industriale E Tecnologica
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