Abstract:
A modular assembly for the production and accumulation of solar energy comprises a tank for accumulation of fused salts, a reflecting body for capturing the solar rays, a tubular collector facing the parabolic body and impinged upon, in use, by the solar rays sent by the reflecting body, a delivery circuit and a return circuit, which communicate, on one side, with the tank and, on the other, with the collector for supplying the fused salts through the collector; the accumulation tank being set in a position underlying the collector, and the delivery and return circuits being set so as to enable unloading by gravity of the fused salts into the accumulation tank.
Abstract:
A modular assembly for the production and accumulation of solar energy comprises a tank for accumulation of fused salts, a reflecting body for capturing the solar rays, a tubular collector facing the parabolic body and impinged upon, in use, by the solar rays sent by the reflecting body, a delivery circuit and a return circuit, which communicate, on one side, with the tank and, on the other, with the collector for supplying the fused salts through the collector; the accumulation tank being set in a position underlying the collector, and the delivery and return circuits being set so as to enable unloading by gravity of the fused salts into the accumulation tank.
Abstract:
An electroactive photonic device (D) comprises a substrate (1), at least one cathode layer (2), at least one anode layer (4), and at least one layer of active material (3) based on organic compounds and interposed at least partially between the anode and cathode layers (2, 4). The layers (2, 3, 4) are arranged on the substrate (1) in a predetermined configuration such that the device (D) can convert luminous energy into electrical energy or vice versa. The substrate (1) is made of float glass.
Abstract:
A modular assembly for the production and accumulation of solar energy comprises a tank for accumulation of fused salts, a reflecting body for capturing the solar rays, a tubular collector facing the parabolic body and impinged upon, in use, by the solar rays sent by the reflecting body, a delivery circuit and a return circuit, which communicate, on one side, with the tank and, on the other, with the collector for supplying the fused salts through the collector; the accumulation tank being set in a position underlying the collector, and the delivery and return circuits being set so as to enable unloading by gravity of the fused salts into the accumulation tank.
Abstract:
An anti-noise barrier consists of modules (1) having one or more acoustically active, soundproofing and/or deadening surfaces (3) provided with vertical side end sections having a corrugated horizontal section with the shape of an arc of circumference. Said acoustically active surfaces (3) are provided with means for pulling down gaseous polluting agents.