No label defined (Q3303811)

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Revision as of 17:36, 24 October 2021 by DG Regio (talk | contribs) (‎Created claim: summary (P836): The project is based on an innovative and highly efficient melting and warm-keeping process through an aluminium melting furnace with high melting capacity with low energy consumption and low burn-off losses. The innovation of the melting furnace lies in the division of the furnace space into three zones with a preheating zone, a melting zone and a warming bath for the liquid melt. The hot exhaust air of the burners above the warming bath is fir...)
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Project Q3303811 in Germany
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Project Q3303811 in Germany

    Statements

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    662,600.0 Euro
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    21 December 2018
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    31 December 2020
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    Heck & Becker GmbH & Co. KG Heck & Becker GmbH & Co. KG
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    35232
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    Das Vorhaben basiert auf einem innovativen und hocheffizienten Schmelz- und Warmhalteprozess durch einen Aluminiumschmelzofen mit hoher Schmelzleistung bei niedrigem Energieverbrauch und geringen Abbrandverlusten. Die Innovation des Schmelzofens liegt in der Unterteilung des Ofenraumes in drei Zonen mit einer Vorheizzone, einer Schmelzzone und einem Warmhaltebad für die flüssige Schmelze. Dabei wird die heiße Abluft der Brenner über dem Warmhaltebad zunächst in die Schmelzzone und von dort in die Vorheizzone geführt. Dadurch wird das Schmelzgut vorgeheizt, bevor es den Schmelzschacht erreicht. Dies führt zu erheblichen Brennstoffeinsparungen, geringeren Materialverlusten und einer unterbrechungsfreien Verfügbarkeit der Schmelze. (German)
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    The project is based on an innovative and highly efficient melting and warm-keeping process through an aluminium melting furnace with high melting capacity with low energy consumption and low burn-off losses. The innovation of the melting furnace lies in the division of the furnace space into three zones with a preheating zone, a melting zone and a warming bath for the liquid melt. The hot exhaust air of the burners above the warming bath is first led to the melting zone and from there to the preheating zone. This preheated the melted material before it reaches the melting shaft. This results in significant fuel savings, reduced material losses and uninterrupted availability of the melt. (English)
    24 October 2021
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    Identifiers

    DE_TEMPORARY_6595
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