GUAFF 发表于 2025-3-21 16:13:54
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Sulfide Smelting: Thirty-Five Years of Continuous Efforts to Find New Value Adding Solutions the generation of fundamental metallurgical knowledge, acquisition and proper use of data with advanced analytics methods, technological innovation to develop sustainable process flowsheet are discussed with emphasis on efforts conducted by Aurubis.弯曲道理 发表于 2025-3-22 00:43:56
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Investigation of Refractory Failure in a Nickel Smelting Furnaceion analyses revealed that there was an interaction between refractory bricks and molten material during furnace operation, which resulted in reduced creep resistance of the MgO-based refractories. This was verified by comparing creep performance of the used brick samples and new brick samples at diPerennial长期的 发表于 2025-3-22 12:24:45
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Information Systems Analysis and Modelingthe copper IsaSmelt technology at the Mt. Isa smelter in Australia where the former fluid bed roaster and reverberatory furnaces were replaced by a single new smelting unit, together with an acid plant for sulphur dioxide collection. The development of these new technologies was made possible by invAccessible 发表于 2025-3-22 20:07:49
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Integrated Series in Information Systemsesses are presented. Different levels of industrial modelling are discussed from elemental local reactions, through general and more detailed whole-of-reactor-models, to plant sections and further to whole plant operation models. Some principles for development of pyrometallurgical reactor models ar横截,横断 发表于 2025-3-23 03:34:21
Information Systems for eGovernmention analyses revealed that there was an interaction between refractory bricks and molten material during furnace operation, which resulted in reduced creep resistance of the MgO-based refractories. This was verified by comparing creep performance of the used brick samples and new brick samples at di认为 发表于 2025-3-23 06:29:51
https://doi.org/10.1007/978-3-7908-2148-2llurgical plants. This reaction leads to the reduction of sulfate to H.S gas that leaves the melt. The experiments we conducted show that nearly complete sulfur removal from the melt is possible at 823 K and that the reaction rate is sufficiently high for a large scale process. One can foresee that