AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Agostini, Pietro
Cicconi, Flavio
Lamberti, Marco
Orefice, Agostina
Capogni, Marco
Pietropaolo, Antonino
Del Dotto, Alessio
Scaglione, Salvatore
Gadani, Gianni
Marinari, Ranieri
Abrégé
A radiation device comprises at least a vacuum chamber (1), an electromagnetic accelerator (8) for generating a primary energy beam of ions inside the vacuum chamber (1), and a layer of material (S) carried by a support (4) rotating in the vacuum chamber (1) to generate a flow of particles when a series of nuclear fusion reactions are triggered on the material (S) thanks to the energy of said beam, and wherein the support (4) is hollow and sealed defining a rotating three-dimensional surface that surrounds a containment volume for a cooling liquid in heat exchange with the layer of material (S), such rotating three-dimensional surface defining a heat exchange surface wetted by the liquid, and wherein a level of the free surface of the liquid on the heat exchange surface moves upwards in use due to the action of the centrifugal acceleration generated by the rotation of the support (4).
G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
G21G 1/10 - Dispositions pour la conversion des éléments chimiques par rayonnement électromagnétique, radiations corpusculaires ou bombardement par des particules, p. ex. production d'isotopes radioactifs à l'extérieur des réacteurs nucléaires ou des accélérateurs de particules par bombardement avec des particules électriquement chargées
G21K 5/10 - Dispositifs d'irradiation pourvus de dispositions permettant un mouvement relatif entre la source du rayonnement et l'objet à irradier
G21B 1/19 - Cibles pour la production de réactions de fusion thermonucléaire
H05H 6/00 - Cibles pour la production de réactions nucléaires
C07C 403/20 - Dérivés du cyclohexane ou d'un cyclohexène, comportant une chaîne latérale avec une partie non saturée d'au moins quatre atomes de carbone en ligne, ladite partie étant directement attachée aux cycles cyclohexane ou cyclohexène, p. ex. vitamine A, bêta-carotène, bêta-ionone ayant des chaînes latérales substituées par des groupes carboxyle
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Esposito, Salvatore
D'Angelo, Antonio
Diletto, Claudia
Graditi, Giorgio
Guglielmo, Antonio
Abrégé
A solar absorber coating for a receiver element of a solar thermal or thermodynamic system. An additional aspect is a receiver for solar thermal or thermodynamic systems comprising a coating. The receiver may be an evacuated receiver pipe or a non-evacuated or air-operating receiver pipe.
F24S 70/225 - Détails des éléments absorbeurs caractérisés par des revêtements absorbeursDétails des éléments absorbeurs caractérisés par un traitement de surface pour accroître l’absorption pour une absorption à spectre sélectif
F24S 70/30 - Revêtements auxiliaires, p. ex. revêtements anti-réfléchissants
4.
PROCESS FOR THE REALIZATION OF A CHAIN OF OPTICAL FIBRE SENSORS AND CHAIN OF OPTICAL FIBRE SENSORS
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Caponero, Michele Arturo
Polimadei, Andrea
Abrégé
A process for realizing a sensor chain comprises the steps of realizing a plurality of sensing elements (12) on an optical fibre (10), fitting the fibre into a protective sheath (16), realizing a housing (34, 52) for each sensing element (12) that protects the sensing element and acts as a transducer.
G01D 5/353 - Moyens mécaniques pour le transfert de la grandeur de sortie d'un organe sensibleMoyens pour convertir la grandeur de sortie d'un organe sensible en une autre variable, lorsque la forme ou la nature de l'organe sensible n'imposent pas un moyen de conversion déterminéTransducteurs non spécialement adaptés à une variable particulière utilisant des moyens optiques, c.-à-d. utilisant de la lumière infrarouge, visible ou ultraviolette avec atténuation ou obturation complète ou partielle des rayons lumineux les rayons lumineux étant détectés par des cellules photo-électriques en modifiant les caractéristiques de transmission d'une fibre optique
5.
AN APPARATUS FOR SUPPORTING A TO-BE-MANUFACTURED PPLASMA FACING UNITS OF TOKAMAK MACHINE DIVERTORS
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Cerri, Valerio
Roccella, Selanna
Verdini, Luigi
Cacciotti, Emanuele
Reale, Andrea
Mancini, Andrea
Visca, Eliseo
Pizzuto, Aldo
Abrégé
The present disclosure relates to an apparatus (1) for implementing Plasma Facing Units (PFU; 301) obtained through the Hot Radial Pressing (HRP) technique. The apparatus (1) mainly comprises a containment cage structure (7) suitable to follow and check the deformations of the PFU (301) during a welding thermal cycle. The apparatus (1) allows to implement PFUs which require neither additional mechanical treatments nor other thermal treatments.
C04B 37/00 - Liaison des articles céramiques cuits avec d'autres articles céramiques cuits ou d'autres articles, par chauffage
G21B 1/13 - Première paroiParoi de couvertureDivertor
B23K 20/02 - Soudage non électrique par percussion ou par une autre forme de pression, avec ou sans chauffage, p. ex. revêtement ou placage au moyen d'une presse
B23K 20/233 - Soudage non électrique par percussion ou par une autre forme de pression, avec ou sans chauffage, p. ex. revêtement ou placage tenant compte des propriétés des matériaux à souder sans couche ferreuse
B23K 31/00 - Procédés relevant de la présente sous-classe, spécialement adaptés à des objets ou des buts particuliers, mais non couverts par un seul des groupes principaux
B23K 37/04 - Dispositifs ou procédés auxiliaires non spécialement adaptés à un procédé couvert par un seul des autres groupes principaux de la présente sous-classe pour maintenir ou mettre en position les pièces
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Mingazzini, Claudio
Pullini, Daniele
Basso, Matteo
Abrégé
A battery pack (4), in particular for vehicles (1), has a plurality of storage modules (10a, 10b), which are arranged along at least one row (11a) inside an external housing structure (13) and are separated from one another by an internal structure provided with at least one corrugated wall (16a).
H01M 50/209 - Bâtis, modules ou blocs de multiples batteries ou de multiples cellules caractérisés par leur forme adaptés aux cellules prismatiques ou rectangulaires
H01M 50/231 - MonturesBoîtiers secondaires ou cadresBâtis, modules ou blocsDispositifs de suspensionAmortisseursDispositifs de transport ou de manutentionSupports caractérisés par le matériau des boîtiers ou des bâtis ayant une structure en couches
7.
METHOD AND PLANT FOR THE TREATMENT OF CARBON-BASED WASTE
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Giaconia, Alberto
Tosti, Silvano
Caputo, Giampaolo
Pozio, Alfonso
Abrégé
A process for the treatment of waste, comprising a hydrogasification step, during which a mass of carbon-based waste is caused to react with hydrogen at a temperature ranging from 250 to 500 C and at a pressure ranging from 1 to 50 bar for the production of methane by exothermic reaction; a reforming step, during which at least part of the methane produced by the hydrogasification step is caused to react with water at a temperature ranging from 400 to 1000 C and at a pressure ranging from 1 to 40 bar for the production of hydrogen and carbon monoxide; at least part of the hydrogen produced by the reforming step being introduced into the hydrogasification step.
C01B 3/34 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par réaction de composés organiques gazeux ou liquides avec des agents gazéifiants, p. ex. de l'eau, du gaz carbonique, de l'air par réaction d'hydrocarbures avec des agents gazéifiants
C01B 3/48 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par réaction de composés organiques gazeux ou liquides avec des agents gazéifiants, p. ex. de l'eau, du gaz carbonique, de l'air par réaction d'hydrocarbures avec des agents gazéifiants suivie par une réaction de la vapeur d'eau avec l'oxyde de carbone
C01B 3/50 - Séparation de l'hydrogène ou des gaz contenant de l'hydrogène à partir de mélanges gazeux, p. ex. purification
C10K 3/04 - Modification de la composition chimique des gaz combustibles contenant l'oxyde de carbone en vue de produire un carburant amélioré, p. ex. un carburant de pouvoir calorifique différent qui peut ne pas contenir d'oxyde de carbone par traitement catalytique réduisant le taux d'oxyde de carbone
B09B 3/40 - Destruction de déchets solides ou transformation de déchets solides en quelque chose d'utile ou d'inoffensif impliquant un traitement thermique, p. ex. évaporation
F23G 5/027 - Procédés ou appareils, p. ex. incinérateurs, spécialement adaptés à la combustion de déchets ou de combustibles pauvres comportant un traitement préalable par pyrolyse ou par gazéification
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Esposito, Salvatore
D'Angelo, Antonio
Diletto, Claudia
Graditi, Giorgio
Guglielmo, Antonio
Abrégé
A spectrally selective solar absorber coating (2) for a receiver of a solar thermal or thermodynamic system and comprising in sequence: • - an infrared reflecting multilayer structure (21, 22); • - an absorbing multilayer cermet structure (23); and • - an anti-reflection multilayer structure (24). The infrared reflecting multilayer structure (21, 22) comprises: • (i) an infrared reflecting base layer (21) with barrier and adhesion layer functions, arranged in contact with a substrate (1) which is part of the receiver and consists of one or more transition metals selected from among Ti, V, Cr, Zr, Nb, Hf, Ta, Mo, W or of a nitride of one or more of said transition metals; and • (ii) a multifunction structure (22), which is placed on the infrared reflecting base layer (21) and comprising at least: • - multiple additional infrared reflecting layers (22a) with the function of increasing the infrared reflectance of the absorber coating (2), each of which consists of a metal selected from among Au, Ag, Cu, Al, Mo and W, and • - multiple stabilizing layers (22b) of the additional infrared reflecting layer (22a), each of which consists of ■ a ceramic material; or ■ a cermet material; or ■ a material consisting of one or more transition metals or of a nitride of one or more transition metals. The multiple additional infrared reflecting layers (22a) and the multiple stabilizing layers (22b) are arranged so that one reflecting layer alternates with one or more stabilizing layers. One of the stabilizing layers (22b) is placed in contact with the absorbing multilayer cermet structure (23).
F24S 70/225 - Détails des éléments absorbeurs caractérisés par des revêtements absorbeursDétails des éléments absorbeurs caractérisés par un traitement de surface pour accroître l’absorption pour une absorption à spectre sélectif
9.
IDENTIFICATION OF MOLECULAR BIOMARKERS THAT ARE PREDICTIVE OF THE RESPONSE TO RADIOCHEMOTHERAPY TREATMENT IN CERVIX CARCINOMA
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Scambia, Giovanni
Gallo, Daniela
Ferrandina, Maria Gabriella
Petrillo, Marco
Raspaglio, Giuseppina
Buttarelli, Marianna
Mancuso, Mariateresa
Saran, Anna
Marino, Carmela
Desiderio, Angiola
Villani, Maria Elena
Abrégé
The present invention relates to the identification of new prognostic markers for cervix carcinoma, kit comprising them, their use and new markers and methods predictive of the response to radiochemotherapy treatment in cervix carcinoma.
C12Q 1/6886 - Produits d’acides nucléiques utilisés dans l’analyse d’acides nucléiques, p. ex. amorces ou sondes pour les maladies provoquées par des altérations du matériel génétique pour le cancer
10.
GENES AND METHODS FOR BIOTECHNOLOGICAL PRODUCTION AND COMPARTMENTALIZATION OF HIGH ADDED VALUE APOCAROTENOIDS
C07K 14/415 - Peptides ayant plus de 20 amino-acidesGastrinesSomatostatinesMélanotropinesLeurs dérivés provenant de végétaux
C12N 15/82 - Vecteurs ou systèmes d'expression spécialement adaptés aux hôtes eucaryotes pour cellules végétales
C12N 9/02 - Oxydoréductases (1.), p. ex. luciférase
C12N 15/52 - Gènes codant pour des enzymes ou des proenzymes
11.
ADVANCED DRESSING DEVICE WHICH ALLOWS THE MONITORING OF THE MICROBIAL COUNT OF SURFACE WOUNDS BY PROMOTING THE CICATRIZATION PROCESS AND THE CONTROL OF THE VITAL PARAMETERS OF THE SUBJECTS ON WHICH IT IS APPLIED
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Valles, Rosario
Cartiere, Carmelo Raffaele
Minarini, Carla
Maglione, Maria Grazia
Tassini, Paolo
Aprano, Salvatore
Abrégé
The present invention consists of an advanced dressing device which allows, through a particular series of technical and functional characteristics, to break down the microbial count present on surface wounds and promotes the cicatrisation process by remodelling the growth of the affected tissues through the use of electro-luminescent systems able to emit, in the programmed times and modes, visible and / or infrared electromagnetic radiation with certain wavelengths.
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Prosini, Pier Paolo
Fuso Nerini, Ivan
Abrégé
The present invention relates to the use of non-fluorinated polymer binders to prepare composite electrodes, and their use to make lithium-ion batteries. The use of said binders, as well as eliminating the use of organic solvents, improves the process of adhesion of the active material particles to the electrical conductor and the conductive substrate, thus increasing the power efficiency of the electrodes. Moreover, the electrodes thus manufactured possess high flexural strength, so that they can tolerate variations in the volume of the active particles during the intercalation process before cracking and loss of electrical contact with the substrate or the electrical conductor occurs, thus maintaining performance over time. Finally, the uniform polymer film formed guarantees protection against the active material by preventing the reduction or oxidation of the electrolyte solution on the surface of the electrode, reducing the irreversible capacity and increasing the coulombic efficiency.
H01M 4/1391 - Procédés de fabrication d'électrodes à base d'oxydes ou d'hydroxydes mixtes, ou de mélanges d'oxydes ou d'hydroxydes, p. ex. LiCoOx
H01M 4/1393 - Procédés de fabrication d’électrodes à base de matériau carboné, p. ex. composés au graphite d'intercalation ou CFx
H01M 4/62 - Emploi de substances spécifiées inactives comme ingrédients pour les masses actives, p. ex. liants, charges
H01M 10/0525 - Batteries du type "rocking chair" ou "fauteuil à bascule", p. ex. batteries à insertion ou intercalation de lithium dans les deux électrodesBatteries à l'ion lithium
H01M 4/52 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de nickel, de cobalt ou de fer
H01M 4/50 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de manganèse
H01M 4/525 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de nickel, de cobalt ou de fer d'oxydes ou d'hydroxydes mixtes contenant du fer, du cobalt ou du nickel pour insérer ou intercaler des métaux légers, p. ex. LiNiO2, LiCoO2 ou LiCoOxFy
H01M 4/583 - Matériau carboné, p. ex. composés au graphite d'intercalation ou CFx
H01M 4/58 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs de composés inorganiques autres que les oxydes ou les hydroxydes, p. ex. sulfures, séléniures, tellurures, halogénures ou LiCoFyEmploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs de structures polyanioniques, p. ex. phosphates, silicates ou borates
13.
METHOD AND APPARATUS FOR THE DISCRIMINATION AND IDENTIFICATION OF PLASTIC SAMPLES
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
B.M.C.R. S.R.L. (Italie)
Inventeur(s)
Pacella, Danilo
Causa, Federica
Claps, Gerardo
Gabellieri, Lori
Romano, Afra
Tuccillo, Angelo Antonio
Abrégé
A method for discriminating different types of plastic materials, in particular dark non-reflecting plastics, comprising the steps of: (a) providing a substrate (10) with a composition comprising a plurality of metallic elements, each suitable for producing a respective line of fluorescence emission when subjected to excitation by means of an X-ray beam; (b) providing a plastic sample (P) to discriminate interposed between a source of said X-ray beam (2) and said substrate (10); (c) irradiating said sample (P) by means of an X-ray beam with continuous spectrum S(E) of energy E produced by said source (2) and, through said sample (P), said substrate (10) underlying the sample (P); (d) detecting a resulting radiation S3(Ei) including: - a fluorescence emission radiation IMF(Ei) at energy Ei of each element (i) of said substrate (10) produced as a consequence of said step (c) of irradiating without said sample (P); (e) detecting a resulting radiation S4(Ei) including: - a fluorescence emission radiation IMD(Ei) at energy Ei of each element (i) of said substrate (10) produced as a consequence of said step (c) of irradiating and attenuated through said sample (P), and - a Compton scattering radiation S2(E) produced by said sample (P) 25 produced as a consequence of said step (c) of irradiating; (f) calculating, for each element (i), a parameter qualifying the plastic sample (P) as a function of such fluorescence emission radiation IMF(Ei), IMD(Ei) and Compton scattering radiation S2(E): αM (Ei), RiP/C.
G01N 23/22 - Recherche ou analyse des matériaux par l'utilisation de rayonnement [ondes ou particules], p. ex. rayons X ou neutrons, non couvertes par les groupes , ou en mesurant l'émission secondaire de matériaux
B29B 17/02 - Séparation de matières plastiques des autres matières
14.
ASSEMBLY FOR THE AUTOMATED MANAGEMENT OF PLANTS FOR THE BIOLOGICAL TREATMENT OF WASTEWATER
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Luccarini, Luca
Abrégé
An assembly (7) for the management of a wastewater treatment plant (1) comprising an anoxic tank (2), in which a denitrification process takes place, an aerobic tank (4), which is designed to receive wastewater to be treated from said anoxic tank (2) and in which a nitrification process takes place, and a recirculation system (6), which is designed to transfer wastewater to be treated from the aerobic tank (4) to the anoxic tank (2). The assembly (7) comprises a pH measuring probe (8), which is housed on the inside of said anoxic tank (2), a redox potential measuring probe (9), which is housed on the inside of the anoxic tank (2), a control unit (12), which is designed to receive signals from the pH measuring probe (8) and the redox potential measuring probe (9), and a variable-capacity pump (13), which is inserted in said recirculation system (6) and is controlled by the control unit (12 ).
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Fontana, Danilo
Pietrantonio, Massimiliana
Pucciarmati, Stefano
Torelli, Giorgia Nadia
De Carolis, Roberta
Brunori, Claudia
Abrégé
An assembly (1) to perform a hydrometallurgical recovery of materials from electronic boards comprising: a) a basket (9) housing electronic boards, which comprises a mesh structure with meshes have dimensions ranging from 1 to 10 cm; b) a dissolver (2), which is designed to house, on the inside and in a removable manner, said basket (9) and to be filled with a leaching solution comprising at least HNO3 at a concentration greater than or equal to 20% w/w. The dissolver (2) comprises a bottom portion (2b) having a draining device (7) to empty it; c) stirring means (3), which are designed to stir the leaching solution on the inside of the dissolver (2); d) a vibrating screen (4), which is designed to be connected to said draining means (7) of the dissolver (2) so as to receive therein the leaching solution. The vibrating screen (4) comprises at least one first screen having holes with dimensions ranging from 10 to 3 mm for the recovery of unwelded components of different nature, and a second screen having holes with dimensions ranging from 0.5 to 0.01 mm for the recovery of metal Au.
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Mingazzini, Claudio
Bedeschi, Andrea
Abrégé
A method to manufacture an article made of a thermostructural composite starting from a preceramic prepreg and comprising the steps of: - preparing a prepreg multilayer material, in which at least one layer of preceramic prepreg is arranged between at least two layers of conventional prepreg; - cross-linking, during which the conventional prepreg and the preceramic prepreg are cross-linked; - ceramization, during which said prepreg multilayer material resulting from the cross-linking step undergoes a temperature that is greater than the one of the cross-linking step and is such as to cause the ceramization of said preceramic prepreg; - removal, during which said layers of conventional prepreg are removed.
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Giuliano, Giovanni
Ferrante, Paola
Frusciante, Sarah
Diretto, Gianfranco
Pietrella, Marco
Al-Babili, Salim
Abrégé
The present invention relates to a new carotenoid dioxygenase and methods for the biological production in microorganisms and plants of compounds with high added value derived from saffron.
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
HYDROMINE NUCLEAR ENERGY S.A.R.L. (Luxembourg)
Inventeur(s)
Agostini, Pietro
Tarantino, Mariano
Cinotti, Luciano
Abrégé
A system (10) for evacuating the residual heat from a nuclear reactor (1) comprises: a first heat exchanger (11), which transfers heat from a primary fluid (5) of the reactor (1) to a secondary fluid (15); a second heat exchanger (12), where the secondary fluid (15) is cooled by an auxiliary fluid (16) which crosses a cooling duct (17); and a control portion (40), subject to thermal expansion by effect of the heating, induced by an increase in the temperature of the primary fluid (5) beyond a preset threshold, of the secondary fluid (15) in the control portion (40); the control portion (40) being connected to a mechanical actuator device (32) moved by the thermal expansion of the control portion (40) to open the cooling duct (17) and allow the passage of auxiliary fluid (16) into the cooling duct (17) and through the second heat exchanger (12).
G21C 15/18 - Dispositions pour le refroidissement d'urgenceMise hors circuit de la chaleur
F16K 31/00 - Moyens de fonctionnementDispositifs de retour à la position de repos
G21C 1/03 - Réacteurs de fission rapides, c.-à-d. réacteurs n'utilisant pas de modérateur refroidis par un réfrigérant non nécessairement pressurisé, p. ex. réacteurs du type piscine
19.
HYDROMETALLURGY PROCESS FOR THE RECOVERY OF MATERIALS FROM ELECTRONIC BOARDS
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Brunori, Claudia
Fontana, Danilo
De Carolis, Roberta
Pietrantonio, Massimiliana
Pucciarmati, Stefano
Guzzinati, Roberta
Torelli, Giorgia Nadia
Abrégé
A hydrometallurgical process for the recovery of materials from electronic boards and comprising at least one leaching stage (1) and one fractional precipitation stage (4) applied to the solution resulting from the leaching stage. In the leaching stage the whole electronic board is immersed for a time ranging from 15 m to 48 h in a leaching solution comprising HNO3 at a concentration greater than or equal to 20% by weight and with a solid/liquid ratio below or equal to 1. The process also comprises a vibrating sieving stage (2) in which the solution of HNO3 resulting from the leaching stage (1) is passed through at least one first sieve having holes with a size ranging from 10 to 3 mm for the recovery of unwelded components of different nature, and at least one second sieve having holes with a size ranging from 0.5 to 0.01 mm for the recovery of metallic Au; and a separation stage of stannic oxide and/or stannic acid (3) in which the leachedresulting from the vibrating sieving stage (2) undergoes a physical separation operation for the recovery of stannic oxide and/or stannic acid.
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Deiana, Paolo
Bassano, Claudia
Barbarossa, Vincenzo
Vanga, Giuseppina
Abrégé
An assembly for the production of methane comprising at least one methanation reactor (6) suited to convert carbon dioxide into methane by means of catalytic hydrogenation, an electrolyzer device (5) suited to produce the necessary hydrogen to be introduced into the methanation reactor (6), collection means (2) for collecting from degassing zones a soil gas comprising carbon dioxide, and a treatment device (3) for desulphurization of the soil gas from the soil collection means (2) and suited to purifying the carbon dioxide to be introduced into the methanation reactor. The electrolyzer device (5) is powered with electric energy from renewable sources.
C07C 1/12 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir d'anhydride carbonique avec de l'hydrogène
C23C 14/06 - Revêtement par évaporation sous vide, pulvérisation cathodique ou implantation d'ions du matériau composant le revêtement caractérisé par le matériau de revêtement
C23C 14/00 - Revêtement par évaporation sous vide, pulvérisation cathodique ou implantation d'ions du matériau composant le revêtement
F24J 2/48 - caractérisés par le matériau absorbant
C04B 35/581 - Produits céramiques mis en forme, caractérisés par leur compositionCompositions céramiquesTraitement de poudres de composés inorganiques préalablement à la fabrication de produits céramiques à base de non oxydes à base de borures, nitrures ou siliciures à base de nitrure d'aluminium
C04B 35/584 - Produits céramiques mis en forme, caractérisés par leur compositionCompositions céramiquesTraitement de poudres de composés inorganiques préalablement à la fabrication de produits céramiques à base de non oxydes à base de borures, nitrures ou siliciures à base de nitrure de silicium
F24J 2/46 - Parties constitutives, détails ou accessoires de collecteurs de chaleur solaire
C23C 14/14 - Matériau métallique, bore ou silicium
G02B 1/10 - Revêtements optiques obtenus par application sur les éléments optiques ou par traitement de la surface de ceux-ci
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
KARBOREK RCF S.R.L. (Italie)
CORMATEX S.R.L. - MACCHINARIO TESSILE E IMPIANTI (Italie)
Inventeur(s)
Cornacchia, Giacinto
Candelieri, Tommaso
Querci, Luca
Coriano', Stefano
Caretto, Flavio
Matera, Domenico Antonio
Galvagno, Sergio
Portofino, Sabrina
Abrégé
A method and apparatus (100) for manufacturing of a non-woven fabric from recycled carbon fibers, being in the form of flock, piece, etc., and the non-woven fabric, wherein the method comprises the steps of: - discontinuous cutting of the fibers, carried out so as to obtain size- homogeneous fibers of selected length; - mixing the fibers with auxiliary fibers, carried out concomitantly with, subsequently to, the cutting step; - orienting and cohesioning the mixed fibers in the previous step to obtain a fiber lap; and, forming the lap obtained in the previous step to obtain the non- woven fabric.
D04H 1/42 - Non-tissés formés uniquement ou principalement de fibres coupées ou autres fibres similaires relativement courtes à partir de voiles ou couches composés de fibres ne possédant pas des propriétés cohésives réelles ou potentielles caractérisés par l'emploi de certaines sortes de fibres dans la mesure où cet emploi n'a pas d'influence prépondérante sur la consolidation du voile
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
UNIVERSITÀ DEGLI STUDI DI BERGAMO (Italie)
Inventeur(s)
Cornacchia, Giacinto
Caretto, Flavio
Matera, Domenico Antonio
Galvagno, Sergio
Portofino, Sabrina
Dotti, Stefano
Abrégé
A method for the manufacturing of textile products in the form of a yarn, web or tow starting from recycled carbon fibers in the form of tuft, cloth or the like, comprising the steps of: • (a) discontinuous cutting of the fibers to obtain dimensionally homogeneous fibers of selected length; • (b) enzyming of the fibers cut in step (a), wherein the latter are additioned with one or more substances; • (c) blending of the fibers treated in step (b) with auxiliary fibers; • (d) double carding of the blended fibers obtained in said step (c); and • (e) feeding a pair of wicks to a spinning machine.
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Antonaia, Alessandro
Esposito, Salvatore
Addonizio, Maria Luisa
Guglielmo, Antonio
Abrégé
A thin-film spectrally selective coating for receiver tube of vacuumed type for use in thermodynamic solar installations and operating both at medium temperature (up to 400 °C) and at high temperature (up to 550 °C), coating where the optically absorbing layer is a multilayer of cermet material of type: WyN-AINx or MoyN-AINx, material prepared with reactive co-sputtering technique from an Al target and a W or Mo target, process conducted under a transition regimen, under PEM (Plasma Emission Monitoring) or CVM (Cathode Voltage Monitoring) monitoring for the sole Al target, with inletting near the Al target of a N2 amount adequate for obtainment of a high-transparency, high growth rate sub-stoichiometric ceramic AIN and with inletting near the W or Mo target of a N2 amount adequate for obtainment of the sole W2N or Mo2N phase, phase very stable at high temperature, such as to make the cermet material as close as possible to the formulation W2N-AINx or Mo2N-AINx (with x comprised between 0.90 and 1.00, preferably 0.95) and, therefore, cermet material employable at least up to the temperature of 550 °C.
F24J 2/48 - caractérisés par le matériau absorbant
C23C 14/06 - Revêtement par évaporation sous vide, pulvérisation cathodique ou implantation d'ions du matériau composant le revêtement caractérisé par le matériau de revêtement
C04B 35/58 - Produits céramiques mis en forme, caractérisés par leur compositionCompositions céramiquesTraitement de poudres de composés inorganiques préalablement à la fabrication de produits céramiques à base de non oxydes à base de borures, nitrures ou siliciures
C23C 16/455 - Revêtement chimique par décomposition de composés gazeux, ne laissant pas de produits de réaction du matériau de la surface dans le revêtement, c.-à-d. procédés de dépôt chimique en phase vapeur [CVD] caractérisé par le procédé de revêtement caractérisé par le procédé utilisé pour introduire des gaz dans la chambre de réaction ou pour modifier les écoulements de gaz dans la chambre de réaction
25.
METHOD FOR THE TREATMENT OF CERAMIC SURFACES FOR BESTOWING THEREON A HIGH HYDROPHOBICITY AND OLEOPHOBICITY
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
Inventeur(s)
Raimondo, Mariarosa
Bezzi, Federica
Blosi, Magda
Mingazzini, Claudio
Abrégé
A method for the treatment of ceramic surfaces comprising in succession : - a deposition step, in which applied on a ceramic surface is a coating including a metal oxide comprised in the group made up of alumina, silicon dioxide, zirconium dioxide, titanium dioxide, mullite, zinc oxide, yttrium oxide and mixtures thereof; - a first consolidation step, in which the coating is subjected to a temperature of between 150°C and 900°C; - a functionalization step, in which the coating is treated with boiling water and/or with steam for the production of hydroxyl groups; - a second consolidation step, in which the coating is subjected to a temperature of between 150°C and 900°C; - a fluorination step, in which the coating is treated with a fluorinated compound; and - a third consolidation step, in which the coating is subjected to a temperature of between 100°C and 300°C.
C23C 24/08 - Revêtement à partir de poudres inorganiques en utilisant la chaleur ou une pression et la chaleur
C23C 26/00 - Revêtements non prévus par les groupes
C23C 18/12 - Revêtement chimique par décomposition soit de composés liquides, soit de solutions des composés constituant le revêtement, ne laissant pas de produits de réaction du matériau de la surface dans le revêtementDépôt par contact par décomposition thermique caractérisée par le dépôt sur des matériaux inorganiques, autres que des matériaux métalliques
C23C 30/00 - Revêtement avec des matériaux métalliques, caractérisé uniquement par la composition du matériau métallique, c.-à-d. non caractérisé par le procédé de revêtement
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
ANSALDO NUCLEARE S.p.A. (Italie)
Inventeur(s)
Rinaldi, Luca
Fabrizi, Fabrizio
Alemberti, Alessandro
Gaggioli, Walter
Aliotta, Salvatore
Barbensi, Andrea
Tarquini, Pietro
Abrégé
A thermal-energy storage tank (1) comprising a containing structure (2) designed to house a store of thermovector fluid in the liquid state, a regenerating circuit (6) designed to draw the thermovector fluid from a bottom of the containing structure (2) and, once heated outside the tank, to deposit it in a surface portion of the store of thermovector fluid, at least one steam generator (13) comprising a heat exchanger (14, 16b) with vertical extension housed within the containing structure (2) and having at least one top opening (18) designed for inlet of the thermovector fluid and a bottom opening designed for outlet of the thermovector fluid (15).
F01K 3/00 - Ensembles fonctionnels caractérisés par l'emploi d'accumulateurs de vapeur ou de chaleur ou bien de réchauffeurs intermédiaires de vapeur
F22B 21/00 - Chaudières à tubes d'eau du type vertical ou semi-vertical, c.-à-d. où les faisceaux de tubes d'eau sont disposés verticalement ou pratiquement à la verticale
F22B 29/06 - Chaudières à vapeur du type à circulation forcée du type à circulation ouverte, c.-à-d. composées de tubes admettant de l'eau à une extrémité et dégageant de la vapeur surchauffée à l'autre extrémité
F01K 3/16 - Disposition commune de l'accumulateur et du réchauffeur
27.
SUPPORT STRUCTURE FOR A PARABOLIC- LINEAR SOLAR PLANT OF THE CONCENTRATION TYPE AND METHOD FOR ITS MANUFACTURE
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
D.D. S.R.L. (Italie)
Inventeur(s)
Zuliani, Gianfranco
Duri', Giordano
De Cillia, Luigi
Miliozzi, Adio
Nicolini, Daniele
Abrégé
Supporting structure (10) for a parabolic-linear solar plant (14) of the concentrating type, suitable to supporting mirrors (12) with a curved surface, which intercept the sun's rays and directing them towards a receiver member to produce energy, such as a receiver tube (16) in which a heat exchange fluid flows and/or concentration-type pho tovoltaic cells, the receiver member is disposed along a first axis (X) of substantial alignment of the focuses of said mirrors (12). The sup porting structure (10) comprises a supporting shaft (18) that develops parallel to a second rotation axis (Y) parallel to said first axis (X), sup porting centrings (22) of mirrors (12) are mounted along said support ing shaft (18), placed transversal from opposite sides with respect to said supporting shaft (18) in a manner coordinated with the position of said mirrors (12). Each of the supporting centrings (22) has pivot ing ends (26) coupled with the supporting shaft (18). The supporting structure (10) further comprises first positioning blocks (34) disposed along the supporting shaft (18) in a manner coordinated to the dis position of the centrings (22), which have, on opposite sides with re spect to the supporting shaft (18), first supporting faces (36) turning, during the use, towards the centrings (22). Said pivoting ends (26) of the centrings (22) carry second positioning blocks (38) having second supporting faces (40) turning, during the use, towards the support ing shaft (18) and apt to cooperate in beating with the first support ing faces (36). The first supporting faces (36) and second supporting faces (40) have surfaces processed together to define reciprocally co ordinated shapes, so as to ensure the precise positioning of centrings (22) with respect to the supporting shaft (18), so that the mirrors (12) supported by centrings (22) are correctly oriented with their focuses properly aligned along the first axis (X).
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
POLITECNICO DI TORINO (Italie)
Inventeur(s)
Clemente, Paolo
De Stefano, Alessandro
Barla, Giovanni
Abrégé
A seismic insulating structure (1) for buildings consists of an; insulating platform (2) arranged under the foundations| (3) of a building (3a) and comprising a top block (4), a bottom block (5) separated from the top block (4), a plurality of seismic insulators (6) arranged between the top block (4) and the bottom block (5), an inner underground wall (7) fixed on the bottom to the top block (4) and arranged so as to contain the ground that surrounds said building (3a) and an outer underground wall (8) fixed at the bottom to the bottom block (5) and arranged about said inner underground wall (7); said inner underground wall (7) and said outer underground wall (8) combinedly defining a seismic joint for their entire height (9).
E02D 27/48 - Fondations réalisées en sous-œuvre de bâtiment ou autres constructions préexistantes
E02D 31/08 - Dispositions de protection pour les fondations ou ouvrages réalisés par des techniques de fondationMesures dans le cadre des techniques de fondation pour protéger le sol ou l'eau du sous-sol, p. ex. prévention ou neutralisation de la pollution par le pétrole contre la transmission des vibrations ou les mouvements dans le sol de fondation
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE (ENEA) (Italie)
GENPORT S.R.L. (Italie)
Inventeur(s)
Pozio, Alfonso
De Francesco, Massimo
Galli, Stefano
Oronzio, Rosanna
Abrégé
A device for producing hydrogen from borohydride, comprising a first tank (6) capable of housing water, a second tank (7) in which there is housed a mixture consisting of a solid borohydride and a solid organic acid under normal conditions, and connection means (5, 9) capable of allowing the water to pass from the first tank (6) to the second tank (7).
C01B 3/06 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par réaction de composés inorganiques comportant un hydrogène lié électropositivement, p. ex. de l'eau, des acides, des bases, de l'ammoniac, avec des agents réducteurs inorganiques
30.
METHOD FOR PRODUCING A CERMET -BASED SPECTRALLY SELECTIVE COATING AND MATERIAL THUS OBTAINED
AGENZIA NAZIONALE PER LE NUOVE TECNOLOGIE, L'ENERGIA E LO SVILUPPO ECONOMICO SOSTENIBILE - ENEA (Italie)
Inventeur(s)
Antonaia, Alessandro
Esposito, Salvatore
Abrégé
A surface-coating material for receiver tubes of solar plants, in particular of the type with linear parabolic mirrors, constituted by a multilayer structure comprising a bottom metal layer (back reflector) highly reflective in the infrared and a top layer of anti-reflective material, provided between which is a layer of an innovative composite ceramic-metal material (CERMET) of the graded type, in the case in point with volumetric fraction of metal that decreases, passing from the metal reflector to the anti-reflective layer. In particular : i) the ceramic matrix of the CERMET is made up of aluminium oxide (AI2O3), whilst the metal particles dispersed in the ceramic matrix are constituted by tungsten (W); ii) the back reflector is tungsten in its crystalline form α; iii) the anti-reflective layer is aluminium oxide or else silicon oxide.
C23C 14/06 - Revêtement par évaporation sous vide, pulvérisation cathodique ou implantation d'ions du matériau composant le revêtement caractérisé par le matériau de revêtement