Dino Musmarra
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Explore the profile of Dino Musmarra including associated specialties, affiliations and a list of published articles.
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37
Citations
273
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Recent Articles
1.
Galoppo S, Fenti A, Falco G, Huang Q, Chianese S, Musmarra D, et al.
Heliyon
. 2024 Sep;
10(17):e36803.
PMID: 39263129
Wastewater from livestock farms contains high concentrations of suspended solids, organic contaminants, and nitrogen compounds, such as ammoniacal nitrogen. Discharging livestock effluents into water bodies without appropriate treatment leads to...
2.
Amabile C, Abate T, Chianese S, Musmarra D, Munoz R
Polymers (Basel)
. 2024 Jul;
16(13).
PMID: 39000765
The increasing need for biodegradable polymers demands efficient and environmentally friendly extraction methods. In this study, a simple and sustainable method for extracting polyhydroxybutyrate (PHB) and poly(3-hydroxybutyrate-co-3-hydroxyvalerate (PHB-co-HV) from and...
3.
Amabile C, Abate T, Munoz R, Chianese S, Musmarra D
Sci Total Environ
. 2024 Apr;
929:172599.
PMID: 38657807
Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) is a biobased and biodegradable polymer that could efficiently replace fossil-based plastics. However, its widespread deployment is slowed down by the high production cost. In this work, the techno-economic...
4.
Abate T, Amabile C, Munoz R, Chianese S, Musmarra D
Chemosphere
. 2024 Apr;
356:141950.
PMID: 38599326
Due to their excellent properties, polyhydroxyalkanoates are gaining increasing recognition in the biodegradable polymer market. These biogenic polyesters are characterized by high biodegradability in multiple environments, overcoming the limitation of...
5.
Amabile C, Abate T, Munoz R, Chianese S, Musmarra D
Sci Total Environ
. 2024 Apr;
927:172138.
PMID: 38582106
Polyhydroxyalkanoates (PHAs) are biobased and biodegradable polymers that could effectively replace fossil-based and non-biodegradable plastics. However, their production is currently limited by the high production costs, mainly due to the...
6.
Amabile C, Abate T, Marcos E, Chianese S, Musmarra D, Munoz R
ACS Sustain Chem Eng
. 2024 Mar;
12(11):4690-4699.
PMID: 38516398
In this work, the potential of a synthetic coculture and a mixed methanotrophic consortium to synthesize poly(3-hydroxybutyrate--3-hydroxyvalerate) (PHBV) from renewable and waste-based feedstocks was assessed batchwise. cocultivated with and a...
7.
Amabile C, Abate T, Chianese S, Musmarra D, Munoz R
Bioresour Technol
. 2023 Aug;
387:129699.
PMID: 37604259
In this work, the potential of Methylocystis hirsuta to simultaneously use methane and volatile fatty acids mixtures for triggering PHBV accumulation was assessed for the first time batchwise. Biotic controls...
8.
Najafinejad M, Chianese S, Fenti A, Iovino P, Musmarra D
Molecules
. 2023 May;
28(10).
PMID: 37241948
In recent years, the discharge of various emerging pollutants, chemicals, and dyes in water and wastewater has represented one of the prominent human problems. Since water pollution is directly related...
9.
Iovino P, Fenti A, Galoppo S, Najafinejad M, Chianese S, Musmarra D
Molecules
. 2023 Feb;
28(3).
PMID: 36770973
In the last few years, many industrial sectors have generated and discharged large volumes of saline wastewater into the environment. In the present work, the electrochemical removal of nitrogen compounds...
10.
Amabile C, Abate T, De Crescenzo C, Sabbarese S, Munoz R, Chianese S, et al.
ACS Sustain Chem Eng
. 2022 Nov;
10(43):14230-14239.
PMID: 36340972
Bacterially produced polyhydroxyalkanoates are valuable substitutes for petrochemical plastics, but their current production capacities are very scarce. Producing poly(3-hydroxybutyrate--3-hydroxyvalerate) (PHB--HV) from methane and odd-chain carbon fatty acids could make the...