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1. IN1691/KOLNP/2011 - METHOD FOR PRODUCING ENERGY AND APPARATUS THEREFOR

Office
India
Application Number 1691/KOLNP/2011
Application Date 25.04.2011
Publication Number 1691/KOLNP/2011
Publication Date 02.09.2011
Publication Kind A
IPC
G21B 3/00
GPHYSICS
21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
BFUSION REACTORS
3Low-temperature nuclear fusion reactors, e.g. alleged cold fusion reactors
Applicants BERGOMI, LUIGI
GHIDINI, TIZIANO
PIANTELLI, SILVIA
Inventors PIANTELLI, SILVIA
PIANTELLI, FRANCESCO
Priority Data PI2008A000119 24.11.2008 IT
Title
(EN) METHOD FOR PRODUCING ENERGY AND APPARATUS THEREFOR
Abstract
(EN) A method and a generator to produce energy from nuclear reactions between hydrogen and a metal, comprising thesteps of a) production of a determined quantity of micro/nanometric clusters of a transition metal, b) bringing hydrogen into contactwith said clusters and controlling its pressure and speed, preferably after applying vacuum cycles of at least 10-9 bar between35° and 500°C for degassing the clusters; c) creating an active core for the reactions by heating the clusters up to a temperaturethat is higher than the Debye temperature TD of the metal, preferably a temperature close to a temperature at which a sliding ofreticular planes occurs, in order to adsorb in the clusters the hydrogen as H- ions; d) triggering the reactions by a mechanical, thermal,ultrasonic, electric or magnetic impulse on the active core, causing the atoms of the metal to capture the hydrogen ions, withliberation of heat, preferably in the presence of a gradient of temperature on the active core; e)removing the heat maintaining thetemperature above TD, preferably in the presence of a magnetic and/or electric field of predetermined intensity. The active core cancomprise a sintered material of micro/nanometric clusters, or a clusters powder collected in a container, or a deposit of clustersonto a substrate of predetermined volume and shape, with at least 109 clusters per square centimetre of surface, obtainable bymeans of methods such as sputtering, spraying evaporation and condensation of metal, epitaxial deposition, by heating up to approachingthe melting point and then slow cooling, such methods followed by quick cooling for freezing the cluster structure.
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