Abstract:
In a method and a system for sorting shredder residues of metal-containing wastes, in particular from vehicle body shells, shredder residues are separated into a shredder light fraction and a non-ferromagnetic fraction. The method and system provide for a raw-granulate fraction being produced during the sorting of the shredder light fraction and the shredder heavy fraction in preliminary processes and a main process, by separating out at least one ferromagnetic fraction, a nonferrous-metal fraction, a fiber fraction, and a sand fraction, and the raw-granulate fraction being split up in a refining process.
Abstract:
In a method for sorting shredder residues of metal-containing wastes, in particular of vehicle bodies, where the shredder residues are separated into a shredder light fraction and a non-ferromagnetic fraction) and a system for implementing the method, (a) a crude-fiber fraction being generated during the processing of the shredder light fraction and the shredder heavy fraction in preliminary processes and a main process, by extracting at least a ferromagnetic fraction, a fraction containing nonferrous metals, a granulate fraction, and a sand fraction, and (b) the crude-fiber fraction being separated into a metal-containing dust fraction, a fiber fraction depleted in metals, and a metallic fraction in a refining process, using the successive process steps of metal-balling, dust removal, and density separation.
Abstract:
In a method and a system for sorting shredder residues of metal-containing wastes, in particular from vehicle body shells, shredder residues are separated into a shredder light fraction and a non-ferromagnetic fraction. The method and system provide for a raw-granulate fraction being produced during the sorting of the shredder light fraction and the shredder heavy fraction in preliminary processes and a main process, by separating out at least one ferromagnetic fraction, a nonferrous-metal fraction, a fiber fraction, and a sand fraction, and the raw-granulate fraction being split up in a refining process.
Abstract:
In a method for sorting shredder residues of metal-containing wastes, e.g., vehicle bodies, the shredder residues are separated into a shredder light fraction and a non-ferromagnetic fraction (shredder heavy fraction). A system is arranged for sorting shredder residues of metal-containing wastes, e.g., vehicle bodies. At least parts of the primary material streams produced during the sorting of the shredder light fraction and the shredder heavy fraction in preliminary processes are fed to a common, main process for final processing, at least a ferromagnetic fraction, a fraction containing non-ferromagnetic metals, a granulate fraction, a fiber fraction, and a sand fraction being produced as end products.
Abstract:
A system and method of improving error handling in a development environment created by a platform provider in which a third party developer develops applications for use by customers The method includes storing business objects and error messages, where the error messages corresponds to potential errors during run time processing of the plurality of business objects. The method further includes receiving a first user input regarding an error situation, where the error situation includes a resolution of the error situation, and receiving a second user input that associates the error situation with a sub-subset of a subset of the error messages. In this manner, the usability of the platform is improved.
Abstract:
In a method and to an arrangement for treating a light fraction produced during the treatment of plastic-rich waste that is low in metal, at least the following steps are carried out consecutively: the light fraction is stressed by percussion and/or bashing, the light fraction is classified into at least two light fraction classes, at least one light fraction class is separated into at least one dust fraction and at least one other fraction, the separation of the dust fraction taking place over a substantially controlled residence time of the light fraction class in at least one device involved in the separation. Due to the separation of at least one light fraction class into at least one dust fraction and at least one other fraction, the separation of the dust fraction takes place over a substantially controlled residence time of the light fraction class in at least one device involved in the separation, a very pure intermediate product (intermediate fraction) is produced, providing the processability of the intermediate product to be improved in subsequent method steps. Overall, clearly improved material recycling and also energy recovery is obtained.
Abstract:
A system and method of improving error handling in a development environment created by a platform provider in which a third party developer develops applications for use by customers The method includes storing business objects and error messages, where the error messages corresponds to potential errors during run time processing of the plurality of business objects. The method further includes receiving a first user input regarding an error situation, where the error situation includes a resolution of the error situation, and receiving a second user input that associates the error situation with a sub-subset of a subset of the error messages. In this manner, the usability of the platform is improved.
Abstract:
A computer system includes instructions recorded on a computer-readable storage medium and executable by at least one processor. The computer system includes a process component of a first deployment unit and a component module. The process component has a handling module and an object module. The handling module is operatively coupled to the object module. The handling module is operatively coupled to the component module. The handling module is configured to receive a message from a second deployment unit.
Abstract:
A method and system are for sorting shredder residues of metal-containing wastes, in particular of body shells Shredder residues are separated into a shredder light fraction and a non-ferromagnetic fraction (shredder heavy fraction). During the sorting of the shredder light fraction and the shredder heavy fraction in preliminary processes and a main process, a crude-sand fraction is produced by separating out at least a ferromagnetic fraction, a fraction containing nonferrous metals, a fiber fraction, and a granulate fraction. In a refining process, the crude-sand fraction is separated into a residual fraction rich in organics, a dust fraction containing heavy metals, a sand fraction depleted in organics and metals, and a metallic fraction, using the sequential process steps of density separation and metal separation.
Abstract:
Methods and apparatus, including computer program products, are provided for providing a query language based on a model. In one aspect, there is provided a computer-implemented method. The method may include receiving a first query; generating, based on a model including metadata representing a data structure, a second query specific to the data structure stored in a database; and sending the second query to the database. Related apparatus, systems, methods, and articles are also described.