Peter Richter
Peter Richter, Schwarzbach DE
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20100175775 | CATALYST LOADING SYSTEM - A reformer tube processing and filling system is provided for ensuring uniformity of reformer tube flow rates and reactivity. The disclosed invention provides a system for detecting and removing tube obstructions, as well as an automated process for verifying the flow rate for each tube and identifying tubes with abnormal flow rates to remove a source of human error and conserve labor costs. An automated tube filling system provides a calibrated fill mechanism coordinated with a calibrated loading rope withdrawal mechanism to ensure loading consistency. A lack of vibrating parts ensures a low dust count, and what little dust is present is removed via a built-in vacuum outlet in the loader. | 07-15-2010 |
20100218843 | PROCESS AND DEVICE FOR FILLING A TUBE WITH GRANULAR MATERIAL - A process for filling a tube with granular material, which material is guided downwardly in a vertically oriented tube along a line provided with flexible elements in the shape of wires which are arranged substantially to the line, and having a radial dimension which is smaller than the inner diameter of the tube, the line being removed from the tube as the latter is filled with the granules, the line being moved during the removal movement with a non uniform speed which is related to the filling speed of the device. | 09-02-2010 |
20140034184 | CATALYST LOADING SYSTEM - A reformer tube processing and filling system is provided for ensuring uniformity of reformer tube flow rates and reactivity. The disclosed invention provides a system for detecting and removing tube obstructions, as well as an automated process for verifying the flow rate for each tube and identifying tubes with abnormal flow rates to remove a source of human error and conserve labor costs. An automated tube filling system provides a calibrated fill mechanism coordinated with a calibrated loading rope withdrawal mechanism to ensure loading consistency. A lack of vibrating parts ensures a low dust count, and what little dust is present is removed via a built-in vacuum outlet in the loader. | 02-06-2014 |
Peter Richter, Speyer DE
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20100216222 | Tissue Infiltration Device - The present invention relates to a tissue infiltration device ( | 08-26-2010 |
Peter Richter, Heldenstein DE
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20100181391 | DEVICE FOR COLD GAS SPRAYING - The invention relates to a nozzle for cold gas spraying in which gas and spraying particles are accelerated. According to the invention, the cold gas spraying nozzle is at least partially coated at its inner wall. | 07-22-2010 |
20120273152 | METHOD FOR PRODUCING A PIPE - A method for producing a pipe, a carrier element being coated by means of a thermal spraying method, the material of the pipe formed later being selected as the coating material, and the coating forming the pipe being detached from the carrier element, the spraying angle, at which the coating material is sprayed onto the carrier element, being selected such that a low level of adhesion of the coating on the carrier element is achieved. | 11-01-2012 |
Peter Richter, Karlstein DE
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20120015443 | NOVEL CHIRAL SELECTORS AND STATIONARY PHASES FOR SEPARATING ENANTIOMER MIXTURES - Chiral selectors having α-unsubstituted β-amino acid derivatives of the structure: | 01-19-2012 |
Peter Richter, Waldems DE
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20110277479 | METHOD AND DEVICE FOR SEPARATING OF CARBON DIOXIDE FROM AN EXHAUST GAS OF A FOSSIL-FIRED POWER PLANT - A method and corresponding apparatus for separation of carbon dioxide from an exhaust gas of a fossil-fired power are provided. In an absorption process, the exhaust gas containing carbon dioxide is brought into contact with an absorption medium so that the absorption medium is laden with carbon dioxide. In a desorption process, vapor from a water/steam circuit of the fossil-fired power plant is heated, wherein a laden absorption medium is regenerated. In a subsequent expansion process, the regenerated absorption medium is expanded so that a vapor and an expanded absorption medium are formed, wherein the vapor is recirculated into the desorption process. The laden absorption medium is divided into a first part stream and a second part stream. Only the second part stream is brought into heat-exchanging contact with the expanded absorption medium. The first and second part streams are supplied to the desorption process at different process stages. | 11-17-2011 |