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41.
Biosurfactants from Urban Wastes for Detergent Formulation: Surface Activity and Washing Performance
Piero Savarino Enzo Montoneri Giorgia Musso Vittorio Boffa 《Journal of surfactants and detergents》2010,13(1):59-68
To promote biobased products for industry, six biosurfactants (BS) isolated from green and food urban residues aged under
aerobic digestion for 0–60 days were investigated for their chemical composition, surface activity properties and detergent
performance in fabric washing in comparison with commercial anionic and nonionic surfactants (CS). The BS exhibited a range
of chemical composition and surface activity properties presumably related to their different biomass sources. Surface tension
data for these substances correlated meaningfully with performance data in fabric washing. It was found that BS have similar
performances as CS when used neat, but the 1:1 w/w BS–CS mixes are characterized by significant synergy. High sensitivity
to water hardness and fabric yellowing were found to be the main deficiencies for the BS. However, both effects are minimized
or are not critically evident when the BS are used together with CS and/or in common detergents formulations. The results
indicate that when used above critical micellar concentration, no significant or critical performance differences are evident
within the whole group of BS or between BS and CS. These facts encourage expectations for industrial production and real commercialization
of BS as components of detergents formulations. 相似文献
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Stefano Lo Russo Glenda Taddia Giorgia Baccino Vittorio Verda 《Energy and Buildings》2011,43(2-3):347-357
A multidisciplinary methodology is proposed for analyzing opportunities to use existing boreholes and an open-loop groundwater heat pump to provide summer cooling needs for large university buildings in Turin (NW Italy). The approach starts from a model of the buildings to determine the time profile of the cooling load. This curve is then coupled with a model of the off-design behaviour of the heat pump, which allows calculation of its energy performance (coefficient of performance, electricity consumption, etc.) as well as profiles of water discharge to the aquifer in terms of mass flow rate and temperature.Covering the peak energy needs of the buildings requires a variable amount of groundwater during the day. This could be provided varying the withdrawals from the aquifer but, as possible alternatives, two storage system solutions are examined: (1) chilled water storage and (2) groundwater storage. Simulations show that in both cases the use of storage systems produces environmental advantages, as the extent of the thermal plume reduces significantly. Moreover, chilled water storage presents a benefit in terms of reduced total primary energy consumption. The additional costs incurred by storage systems could necessitate public funding as well as system optimization. 相似文献
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46.
Wheel-flat diagnostic tool via wavelet transform 总被引:3,自引:0,他引:3
Vittorio Belotti Francesco Crenna Rinaldo C. Michelini Giovanni B. Rossi 《Mechanical Systems and Signal Processing》2006,20(8):1953-1966
The detection and acknowledgement of signatures, for condition monitoring and fault diagnostics by wavelet transform, deserves increased attention, due to its property of variable time–frequency resolution, which overcomes limitations of classical time–frequency approaches.In the paper, a diagnostic tool is presented, based on the wavelet transform, able to detect and to quantify the wheel-flat defect of a test train at different speeds and to measure the train speed with proper accuracy. The designed diagnostic tool minimises the hardware requirements, since only one accelerometer is needed, and provides results in real time.The results, achieved by an exhaustive experimental campaign, permit to validate the effectiveness of the diagnostic tool and to demonstrate the advantages of wavelet-based detection of signatures. 相似文献
47.
Guido Mula Lucy Loddo Elisa Pinna Maria V Tiddia Michele Mascia Simonetta Palmas Roberta Ruffilli Andrea Falqui 《Nanoscale research letters》2014,9(1):332
The results of an investigation on the Er doping of porous silicon are presented. Electrochemical impedance spectroscopy, optical reflectivity, and spatially resolved energy dispersive spectroscopy (EDS) coupled to scanning electron microscopy measurements were used to investigate on the transient during the first stages of constant current Er doping. Depending on the applied current intensity, the voltage transient displays two very different behaviors, signature of two different chemical processes. The measurements show that, for equal transferred charge and identical porous silicon (PSi) layers, the applied current intensity also influences the final Er content. An interpretative model is proposed in order to describe the two distinct chemical processes. The results can be useful for a better control over the doping process.
PACS
81.05.Rm; 82.45.Rr 相似文献48.
Giuseppe Cirillo Maria Vittoria Mauro Umile Gianfranco Spizzirri Paolina Cavalcanti Francesco Puoci Cristina Giraldi Orazio Vittorio Nevio Picci Francesca Iemma 《Journal of materials science. Materials in medicine》2014,25(1):67-77
Different fluoroquinolon-type antibiotics were conjugated to gelatin with the aim to synthesize biomacromolecules with antimicrobial properties. The covalent linkage of the antibiotic was performed by a radical process involving the residues in the side chains of gelatin able to undergo oxidative modifications. The conjugation of antibiotic moieties onto the protein structure was confirmed by FT-IR, UV–Vis, fluorescence, and calorimetric analyses. Biocompatibility tests were performed on human bone marrow mesenchymal stromal cells and the antibacterial properties of bioactive polymers were investigated by appropriate tests against Klebsiella pneumoniae and Escherichia coli. With regard to the tests conducted in the presence of E. coli, a minimum inhibitory concentration (MIC) ranging from 0.05 to 0.40 μg mL?1 was recorded, while in the presence of K. pneumoniae this concentration varies from 0.10 to 1.60 μg mL?1. In all the conjugates, the drug moieties retain their biological activity and the MIC values are lower than the resistance parameters of fluoroquinolon-type antibiotics versus Enterobacteriacae. The collected data suggest a broad range of applications, from biomedical to pharmaceutical and food science for all conjugates. 相似文献
49.
Vittorio Pace Wolfgang Holzer Berit Olofsson 《Advanced Synthesis \u0026amp; Catalysis》2014,356(18):3697-3736
The nucleophilic addition of carbon nucleophiles to amides has traditionally been a difficult task, both due to reactivity and selectivity problems. When successful, these processes would represent straightforward routes towards carbonyl‐type or amine compounds, depending on the fate of the generated tetrahedral intermediate. The direct addition of nucleophiles to amides for the preparation of ketones has been studied and applied to the syntheses of several natural products. On the other hand, the addition of nucleophiles to amides to obtain substituted amines represented a major challenge, and only scattered applications on particular substrates have appeared. Initial improvements were based on the activation of amides by introduction of particular substituents, such as in N‐methoxy amides (Weinreb amides) or electron‐withdrawing groups able to increase the carbon nucleophilicity. Although these strategies facilitate the introduction of nucleophiles, chemoselectivity issues arise when additional electrophilic moieties (i.e., carbonyls) are present, thus decreasing the versatility of the methods. In recent years, important advancements towards fully chemoselective methods have been realized. The capture of tetrahedral intermediates with acids generates highly electrophilic iminium species able to undergo chemoselective additions of various nucleophiles, thus accessing substituted amines. Alternatively, the in situ generation of an iminium triflate ion allows highly chemoselective additions of nucleophiles, yielding amines, ketones or ketimines. Also thioamides can be used as precursors of ketones or α‐substituted amines. The success of the above methodologies is further showcased by the application in various syntheses of natural products or biologically active molecules.
50.
The Role of Higher Lying Electronic States in Charge Photogeneration in Organic Solar Cells 下载免费PDF全文
Giulia Grancini Maddalena Binda Stefanie Neutzner Luigino Criante Vittorio Sala Alberto Tagliaferri Guglielmo Lanzani 《Advanced functional materials》2015,25(44):6893-6899
The role of excess photon energy on charge generation efficiency in bulk heterojunction solar cells is still an open issue for the organic photovoltaic community. Here, the spectral dependence of the internal quantum efficiency (IQE) for a poly[2,6‐(4,4‐bis‐(2‐ethylhexyl)‐4H‐cyclopenta[2,1‐b;3,4‐b]dithiophene)‐alt‐4,7‐(2,1,3‐benzothiadiazole)]:6,6‐phenyl‐C61‐butyric acid methyl ester (PCPDTBT:PC60BM)‐based solar cell is derived combining accurate optoelectronic characterization and comprehensive optical modeling. This joint approach is shown to be essential to get reliable values of the IQE. Photons with energy higher than the bandgap of the donor material can effectively contribute to enhance the IQE of the solar cell. This holds true independently of the device architecture, reflecting an intrinsic property of the active material. Moreover, the nanomorphology of the bulk heterojunction plays a crucial role in determining the IQE spectral dependence: the coarser and more crystalline, the lesser the gain in IQE upon high energy excitation. 相似文献