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Featured researches published by Claudio Ciavatta.


Chemosphere | 2016

Effect of humic monomers on the adsorption of sulfamethoxazole sulfonamide antibiotic into a high silica zeolite Y: An interdisciplinary study

Ilaria Braschi; Annalisa Martucci; Sonia Blasioli; L. L. Mzini; Claudio Ciavatta; Maurizio Cossi

The adsorption efficiency of a high silica zeolite Y towards sulfamethoxazole, a sulfonamide antibiotic, was evaluated in the presence of two humic monomers, vanillin and caffeic acid, representative of phenolic compounds usually occurring in water bodies, owing their dimension comparable to those of the zeolite microporosity. In the entire range of investigated pH (5-8), adsorption of vanillin, as a single component, was reversible whereas it was irreversible for sulfamethoxazole. In equimolar ternary mixtures, vanillin coadsorbed with sulfamethoxazole, conversely to what observed for caffeic acid, accordingly to their adsorption kinetics and pKa values. Lower and higher adsorptions were observed for sulfamethoxazole and vanillin, respectively, than what it was observed as single components, clearly revealing guest-guest interactions. An adduct formed through H-bonding between the carbonyl oxygen of vanillin and the heterocycle NH of sulfamethoxazole in amide form was observed in the zeolite pore by combined FTIR and Rietveld analysis, in agreement with Density Functional Theory calculations of the adduct stabilization energies. The formation of similar adducts, able to stabilize other naturally occurring phenolic compounds in the microporosities of hydrophobic sorbents, was proposed.


Journal of Environmental Management | 2016

Ecological restoration of a copper polluted vineyard: Long-term impact of farmland abandonment on soil bio-chemical properties and microbial communities

Luciano Cavani; Luisa M. Manici; F. Caputo; Elisabetta Peruzzi; Claudio Ciavatta

This study aimed at investigating the degree of interference of high soil copper (Cu) contamination when an old vineyard is converted into a protected area. This study was performed within an intensive agricultural system; it was organized into a two-factorial nested design to analyze the impact of management (conventional vs re-naturalized orchard) and position within each orchard (tree-rows and strips). Chemical and biochemical properties along with bacterial and fungal communities, evaluated with PCR-DGGE starting from total soil DNA, were analyzed. Total Cu was localized in tree rows in the old vineyard at 1000xa0mgxa0kg(-1) of soil, whereas it did not exceed 80xa0mgxa0kg(-1) soil in the other treatments. Total organic carbon and all biochemical properties significantly improved in re-naturalized compared to conventionally cultivated site, while no significant differences were observed between tree row and strip. Moreover, a higher extractable carbon-extractable nitrogen (Cext-to-Next) ratio in the re-naturalized (19.3) site than in the conventionally managed site (10.2) indicated a shift of soil system from C-limited to N-limited, confirming a successful ecological restoration. Deep improvement of soil biochemical properties exceeded the negative impact of Cu contamination. A shift of bacterial community composition as well as increased bacterial diversity in Cu contaminated treatment indicated a bacterial response to Cu stress; to the contrary, soil fungi were less susceptible than bacteria, though an overall reduction of fungal DNA was detected. Findings suggest that ecological restoration of highly polluted agricultural soils leads to overcoming the reduction of soil functionalities linked to Cu contamination and opens interesting perspectives for mitigating Cu stress in agricultural soils with strategies based on conservative agriculture.


Environmental Science and Pollution Research | 2015

Relationships between stability, maturity, water-extractable organic matter of municipal sewage sludge composts and soil functionality

Luigi Sciubba; Luciano Cavani; Marco Grigatti; Claudio Ciavatta; Claudio Marzadori

Compost capability of restoring or enhancing soil quality depends on several parameters, such as soil characteristics, compost carbon, nitrogen and other nutrient content, heavy metal occurrence, stability and maturity. This study investigated the possibility of relating compost stability and maturity to water-extractable organic matter (WEOM) properties and amendment effect on soil quality. Three composts from municipal sewage sludge and rice husk (AN, from anaerobic wastewater treatment plants; AE, from aerobic ones; MIX, from both anaerobic and aerobic ones) have been analysed and compared to a traditional green waste compost (GM, from green manure, solid waste and urban sewage sludge). To this aim, WEOMs were characterized through chemical analysis; furthermore, compost stability was evaluated through oxygen uptake rate calculation and maturity was estimated through germination index determination, whereas compost impact on soil fertility was studied, in a lab-scale experiment, through indicators as inorganic nitrogen release, soil microbial biomass carbon, basal respiration rate and fluorescein di-acetate hydrolysis. The obtained results indicated that WEOM characterization could be useful to investigate compost stability (which is related to protein and phenol concentrations) and maturity (related to nitrate/ammonium ratio and degree of aromaticity) and then compost impact on soil functionality. Indeed, compost stability resulted inversely related to soil microbial biomass, basal respiration rate and fluorescein di-acetate hydrolysis when the products were applied to the soil.


Waste Management | 2017

Effect of iron sulphate on the phosphorus speciation from agro-industrial sludge based and sewage sludge based compost

Marco Grigatti; Elisa Boanini; Giampaolo Di Biase; Claudio Marzadori; Claudio Ciavatta

Composting is considered a suitable process for organic waste management, providing stable products that can be safely utilized as fertilizers, but little is still known about the variation of phosphorous (P) extractability during the stabilization process. In this work, sequential chemical extraction (SCE) with increasing strength extractants (H2O; 0.5M NaHCO3 pH 8.5; 0.1M NaOH, 1M HCl) was applied for P speciation over 56days of composting of either agro-industrial or urban wastewater sludge with green waste treated (AICFe+; SSCFe+) or not (AICFe-; SSCFe-) with FeSO4 (2%v/v). Composting strongly reduced the H2O-P, promoting the organic-P (Po) mineralization from the labile fraction (H2O+NaHCO3 40%), in addition to the increases of NaHCO3- and HCl-extractable inorganic-P (Pi) in both AICFe- and SSCFe- (+20% on average). The FeSO4 treatment did not negatively affect the process, reducing the Po mineralization during composting by increasing the NaOH-P, also protecting this fraction from fixation in the sparingly soluble fraction. The final P fractionation (%) was in AICFe-: NaOH (41)=NaHCO3 (38)>HCl (18)>H2O (3); in AICFe+: NaOH (53)>NaHCO3 (24)=HCl (22)>H2O (2); in SSCFe-: NaOH (46)>NaHCO3 (29)>HCl (21)>H2O (4) and in SSCFe+: NaOH (66)>NaHCO3 (13)>HCl (20)>H2O (1). Composting reduced the more easily leachable fraction (labile-Po), reducing the risk of P loss by increasing the long-term available P fraction (NaOH-P). This was enhanced by the FeSO4 addition. Further investigation into soil behaviour and plant availability of P from this source is needed.


Waste and Biomass Valorization | 2015

Phosphorus in Digestate-Based Compost: Chemical Speciation and Plant-Availability

Marco Grigatti; Elisa Boanini; Luciano Cavani; Claudio Ciavatta; Claudio Marzadori


Soil & Tillage Research | 2016

Carbon sequestration and distribution in soil aggregate fractions under Miscanthus and giant reed in the Mediterranean area

Paola Gioacchini; Francesca Cattaneo; Lorenzo Barbanti; Daniela Montecchio; Claudio Ciavatta; Claudio Marzadori


Biomass & Bioenergy | 2016

Enhanced substrate degradation and methane yield with maleic acid pre-treatments in biomass crops and residues

Giuseppe Di Girolamo; Marco Grigatti; Lorenzo Bertin; Claudio Ciavatta; Lorenzo Barbanti


Geoderma | 2018

Changes in soil phenol oxidase activities due to long-term application of compost and mineral N in a walnut orchard

Martina Mazzon; Luciano Cavani; Alja Margon; Giovambattista Sorrenti; Claudio Ciavatta; Claudio Marzadori


Chemical Communications | 2018

Delivery systems for agriculture: Fe-EDDHSA/CaCO3 hybrid crystals as adjuvants for prevention of iron chlorosis

Elena Baldi; Grazia Marino; Moreno Toselli; Claudio Marzadori; Claudio Ciavatta; Marta Tavoni; Matteo Di Giosia; Matteo Calvaresi; Giuseppe Falini; Francesco Zerbetto


agriculture 2017, Vol. 2, Pages 221-232 | 2017

What we talk about when we talk about protein hydrolyzate-based biostimulants

Luciano Cavani; Alja Margon; Luigi Sciubba; Claudio Ciavatta; Claudio Marzadori

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