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1.
Sci Total Environ ; 838(Pt 4): 156458, 2022 Sep 10.
Article in English | MEDLINE | ID: mdl-35660624

ABSTRACT

In this study, real marine sediments polluted by petroleum compounds were treated by means of a bioslurry pilot scale reactor. The treatment performance was evaluated by measuring the removal of total petroleum hydrocarbon (TPH), coupled to further analyses required to understand the mechanisms involved in the biodegradation process. The maximum TPH-removal efficiency reached 86 % at the end of experiments. Moreover, high throughput 16S RNA gene sequencing was used to describe the microbiome composition in sediment prior to, and after, bioslurry treatment, in order to identify the taxa mostly entailed in the TPH removal process. The raw sediment was mostly colonized by members of Sulfurimonas genus; after bioslurry treatment, it was noticed a shift in the microbial community composition, with Proteobacteria phylum dominating the remediation environment (high increase in terms of growth for Hydrogenophaga and Sphingorhabdus genera) along with the Phaeodactylibacter genus (Bacteroidetes). Furthermore, the assessment of gaseous emissions from the system allowed to quantify the volatile hydrocarbon component and, consequently, to obtain a more accurate evaluation of TPH-removal pathway by the bioslurry system. Finally, phytotoxicity tests on sediment samples highlighted an increase of the treated sample quality status compared to the untreated one.


Subject(s)
Microbiota , Petroleum , Soil Pollutants , Biodegradation, Environmental , Geologic Sediments/chemistry , Hydrocarbons/metabolism , Petroleum/analysis , Soil Microbiology , Soil Pollutants/analysis
2.
Water Sci Technol ; 81(5): 1011-1028, 2020 Mar.
Article in English | MEDLINE | ID: mdl-32541118

ABSTRACT

Every year ship traffic produces tons of liquid waste mainly consisting of bilge water and of washing water of tankers' tanks. The latter are called slop waters and are characterized by high salinity and by the presence of recalcitrant pollutants mainly of hydrocarbon origin: these characteristics promote the use of chemical-physical rather than biological treatment. In particular, in the present study the slop waters were subjected to a clariflocculation treatment by means of batch tests. This treatment involves the dosage of specific chemical reagents (coagulants and flocculants) added to water at different stages of the process. In order to establish the optimal reagents' type and dose, also considering the operating costs, the proposed study presents a frequency analysis belonging to the family of multi-criteria exploration. The application of this methodology to examine the validity of the different process alternatives has allowed the inclusion of, in a single assessment, both economic and extra-economic (measurable only in qualitative terms) procedures. Thanks to this qualitative and quantitative method, it was therefore possible to order the different treatment alternatives analyzed, identifying the one that allows optimizing the wastewater management, for a conscious choice of the most suitable solution to the problem.


Subject(s)
Waste Disposal, Fluid , Water Pollutants, Chemical , Salinity , Wastewater
3.
Psychiatry Res ; 272: 698-706, 2019 02.
Article in English | MEDLINE | ID: mdl-30832189

ABSTRACT

OBJECTIVES: To identify the variables that are associated with persistence to Aripiprazole-Long Acting (A-LAI), in adult patients with schizophrenia. METHODS: Observational, retrospective, non-interventional study involving 261 patients with schizophrenia. RESULTS: Eighty-six percent of study subjects were persistent for at least 6 months. All subjects with baseline CGI-S of 1 or 2, 95% of subjects with CGI-S of 3, 86% with CGI-S of 4, 82% of subjects with CGI-S of 5, 73% of subjects with CGI of 6 and 90% of subjects with CGI of 7 were persistent. A-LAI treatment continuation rate was higher in patients with: 1) baseline CGI score ≤ 4; 2) schizophrenia dimension (LDPS) mania score ≤ 5; 3) psychotic spectrum schizoid score ≤ 11. CONCLUSIONS: A relatively high number of patients (n = 225, 86%) were persistent to A-LAI for at least 6 months. Not surprisingly, very severe patients were more unlikely to be persistent. However, it is noteworthy that a large number of subjects with high CGI score at the time when A-LAI was started (82% of subjects with CGI-S of 5, 73% of subjects with CGI of 6 and 90% of subjects with CGI of 7) were persistent. Larger, controlled, prospective and longer studies are warranted.


Subject(s)
Antipsychotic Agents/therapeutic use , Aripiprazole/therapeutic use , Schizophrenia/drug therapy , Adult , Delayed-Action Preparations/therapeutic use , Female , Humans , Italy , Male , Medication Adherence , Middle Aged , Retrospective Studies , Treatment Outcome
4.
Water Sci Technol ; 73(4): 716-24, 2016.
Article in English | MEDLINE | ID: mdl-26901712

ABSTRACT

This work aims to assess the acclimation of microorganisms to a gradual increase of salinity and hydrocarbons, during the start-up of two moving bed membrane bioreactors (MB-MBRs) fed with saline oily wastewater. In both systems an ultrafiltration membrane was used and two types of carriers were employed: polyurethane sponge cubes (MB-MBRI) and polyethylene cylindrical carriers (MB-MBRII). A decreasing dilution factor of slops has been adopted in order to allow biomass acclimation. The simultaneous effect of salinity and hydrocarbons played an inhibitory role in biomass growth and this resulted in a decrease of the biological removal efficiencies. A reduction of bound extracellular polymeric substances and a simultaneous release of soluble microbial products (SMPs) were observed, particularly in the MB-MBRII system, probably due to the occurrence of a greater suspended biomass stress as response to the recalcitrance of substrate. On the one hand, a clear attachment of biomass occurred only in MB-MBRI and this affected the fouling deposition on the membrane surface. The processes of detachment and entrapment of biomass, from and into the carriers, significantly influenced the superficial cake deposition and its reversibility. On the other hand, in MB-MBRII, the higher production of SMPs implied a predominance of the pore blocking.


Subject(s)
Bacteria/metabolism , Bioreactors/microbiology , Hydrocarbons/metabolism , Wastewater/chemistry , Water Pollutants, Chemical/metabolism , Water Purification/methods , Biodegradation, Environmental , Membranes, Artificial , Salinity , Sodium Chloride/metabolism , Water Purification/instrumentation
5.
J Hazard Mater ; 185(1): 392-400, 2011 Jan 15.
Article in English | MEDLINE | ID: mdl-20940088

ABSTRACT

Five soil size aggregate fractions, corresponding to coarse (500-840 µm), medium (200-350 µm), fine (75-200 µm) sand, silt (10-75 µm) and clay (<4 µm), were artificially contaminated with diesel, and thermally treated using a laboratory scale apparatus to investigate the effect of soil texture on contaminant adsorption and removal. Ex situ thermal process was simulated using helium as the carrier gas at a flow rate of 1.5 L min(-1), different temperatures (100-300 °C) and different treatment times (5-30 min). The amount of contaminant adsorbed on the soil and the residual amount after thermal treatment was determined by gas chromatography. Results showed that adsorption phenomena and desorption efficiency were affected by the soil texture and that temperature and time of treatment were key factors in remedial process. A temperature of 175 °C is sufficient to remedy diesel polluted sandy and silty soils, whereas a higher temperature (250 °C) is needed for clays. Thermal desorption of diesel polluted soil was shown to be governed by first-order kinetics. Results are of practical interest and may be used in scaling-up and designing desorption systems for preliminary cost and optimal condition assessment.


Subject(s)
Gasoline/analysis , Soil Pollutants/analysis , Adsorption , Algorithms , Aluminum Silicates/chemistry , Clay , Cold Temperature , Hydrogen-Ion Concentration , Kinetics , Models, Chemical , Particle Size , Porosity , Silicon Dioxide/chemistry , Temperature , Thermodynamics
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