Abstract:
A carbonization process of rubber products, such as shredded waste tires, in a sealed carbonizing vessel whose operating pressure is below atmospheric pressure and under controlled high temperature environment while continuously being moved in a defined path at a controlled speed thus enabling the shredded tires to be fed constantly into the vessel while the by-products of the carbonization process are continually discharged.
Abstract:
Proposed are a system and method for wasteless pyrolytic processing and complete utilization of municipal and domestic wastes. The wastes are sequentially passed through units of sorting, grinding, drying, accumulating, and sending to a pyrolysis reactor for pyrolytic treatment. The syngas produced in the pyrolysis is passed through dry cleaning, dust catching, a first wet cleaning with water, a second wet cleaning with alkali, and a floatation unit for separation of water which is purified to an extent sufficient for technical use. The purified syngas is also passed through an absorber and is then used as a working medium for a power generation unit such as a gas turbine co-generator that generates electricity. Solid products of the pyrolysis reaction, such as coke, are returned to the reactor for afterburning, and the heat of the reaction can be utilized in a dryer, or the like.
Abstract:
The essential and innovative characters of the proposed solution consists in: 1. the use of a pyrolyser and a gasifying device in series and in a loop; 2. the two most harmful products for the environment, namely tar (condensable tar) and char (a sort of carbon) are gasified with priority. Char, before gasifying, will be subjected to particular mechanical, chemical and electrical washing processes, that separate and stabilise part of the most polluting substances, among which heavy metals (iron, steel, aluminium, copper, etc.) so that the proposed system is, for all purposes, also a method for recovering metals from wastes; 3. there are no polluting emissions into the environment; in fact, wastes, air and possibly water, together with some additives and an auxiliary fuel, when entering the system are completely converted into a "clean" gaseous fuel and into an inert material that will contain, suitably stabilised, the most harmful substances for the environment and possible metals contained in the wastes.
Abstract:
The invention relates to a method for processing waste, in particular for utilising the recyclable material contained in waste, and a waste processing plant, in particular a plant processing waste fractions suitable for recycling of material. At first, the waste is pre-treated for removing undesirable matter. Fibre waste is separated from the other waste and processed into a raw material for paper or board. Plastics-containing matter is separated and processed into plastic oil by pyrolysis. The by-products from the processes and the waste fraction which remains of the processing are used as energy for the needs of the processes. The method can additionally comprise a stage in which waste wood is separated from the other waste and processed into a raw material for particleboard or equivalent.
Abstract:
Die Erfindung betrifft ein Verfahren und eine komplexe Vorrichtung, bestehend aus mehren speziellen Vorrichtungen zur Aufbereitung und zur Verwertung von festen und/oder von flüssigen Abfallstoffen und/oder deren Gemische, insbesondere zur energetischen Verwertung deren organischer Stoffbestandteile. In einem ersten Verfahrensabschnitt werden zunächst die visuell und manuell erfassbaren Bestandteile nach Werkstoffgruppen selektiert. In einem zweiten Verfahrensabschnitt wird nicht aussortiertes Material vorzerkleinert und weitgehendst von metallischen Bestandteilen getrennt. Die Feinfraktion gelangt sodann in eine Floatation. In einem dritten Verfahrensabschnitt wird das so aus Abfällen aufbereitete Material in Form von Briketts in ein motorisch nutzbares teerfreies Gas umgesetzt, das sowohl für den Betrieb von Blockheizkraftwerken und /oder auch für Brennstoffzellen geeignet ist. In einem vierten Verfahrensabschnitt kann das so erzeugte Gas durch direkte Verbrennung zur Wärmeerzeugung und/oder zur Stromerzeugung genutzt werden.
Abstract:
In a waste wire harness including electric wires each coated with a resin comprised of an olefin-based resin and magnesium hydroxide as a fire retardant, and including accompanied members having at least one of terminals, connectors, various kind of boxes such as junction boxes and fuse boxes, tapes, tubes, grommets, wiring clips, and protectors, a method for recycling the waste wire harness includes a step of removing the accompanied members from the waste wire harness, a step of crushing the waste wire harness after removing the accompanied members to obtain crushed particles, a step of incinerating the crushed particles to produce incinerated ash, a step of converting a magnesium compound contained in the incinerated ash into magnesium hydroxide, and a step of collecting the magnesium hydroxide.
Abstract:
The invention relates to a method for processing waste, in particular for utilising the recyclable material contained in waste, and a waste processing plant, in particular a plant processing waste fractions suitable for recycling of material. At first, the waste is pre-treated for removing undesirable matter. Fibre waste is separated from the other waste and processed into a raw material for paper or board. Plastics-containing matter is separated and processed into plastic oil by pyrolysis. The by-products from the processes and the waste fraction which remains of the processing are used as energy for the needs of the processes. The method can additionally comprise a stage in which waste wood is separated from the other waste and processed into a raw material for particleboard or equivalent.
Abstract:
A garbage incinerating system comprises a pretreatment apparatus (1) and an incineration fusing apparatus (2). The incineration fusing apparatus (2) includes an incineration chamber (3) and a fusing chamber (5) that are integrally formed with a partition (7) therebetween so as to enable continuously transferring unburnt remanants. Particles pulverized in the pretreatment apparatus (1) are fed as a fuel to a powder burner (4) for fusion in the fusing chamber (5). Accordingly, a heat source for fusion is obtained from garbage, and unburnt remanants in a non-cooled condition directly from the incineration chamber (3) is heated and fused, whereby it is possible to efficiently treat garbage at low cost.
Abstract:
Disclosed is a method and system for recovering energy from low-grade fuels such as industrial, municipal and agricultural waste, low-grade carbonaceous fuels such as lignite and similar solid fuels in which the fuel is comminuted into small particles and slurried in water. The alkali content of the slurry is adjusted to be at least about equal to the chemical equivalent of the halogen content of the slurry and, following pressurization of the slurry, it is heated sufficiently so that the substantial portion of chemically bound oxygen in the fuel separates therefrom as carbon dioxide, leaving a slurry including char particles and dissolved impurities such as halogen salts. The char particles are removed from the slurry and reslurried with just enough halogen-free water to provide the slurry with the needed viscosity to maximize the energy density thereof. The char particles are then reacted with air at a temperature below their ignition value to convert the fuel value of the low-grade fuel into thermal energy which is then further used, for example, to drive a turbine (253, 255, 257).