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RECENT DEVELOPMENTS OF BATCH AND CULLET PREHEATING IN EUROPE-PRACTICAL EXPERIENCES AND IMPLICATIONS

机译:分批和分块预热在欧洲的最新进展-经验和启示

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Batch & Cullet preheating itself is not new. First installations in the glass industry go back until the early 80ies of the last century. But, even after first successes and significant energy savings (-14-18%), the demand was not increasing, due to low energy prices, investment costs, risk aversion of decision makers, and also certain shortcomings of existing systems. However, in the last years the request for this technology increased significantly and the first new installations were made. One major challenge in first generation systems was the evaporation of batch moisture in the preheater, which resulted in batch clogging and maintenance efforts and restricted the application to batch with cullet ratios above approximately 50 per cent.In order to improve the existing technology, Zippe undertook considerable R & D activities and finally initiated a pilot project, together with a major European container glass producer and a leading company in furnace design to test and prove the superiority of the modern, 2°d generation system.1 In the meantime, in 2010, also another batch & cullet preheater (350 mt/d) was installed and first results are available. The paper will deal with these new experiences made and shall elaborate under which circumstances modern batch preheating shall be taken into account to save energy and therefore energy costs.
机译:批料和碎肉预热本身并不新鲜。玻璃工业的第一批装置可以追溯到上世纪80年代初。但是,即使在取得了成功并节省大量能源(-14-18%)之后,由于低廉的能源价格,投资成本,决策者对风险的厌恶以及现有系统的某些缺点,需求仍然没有增加。但是,在最近几年中,对该技术的需求显着增加,并且首次安装了新设备。第一代系统中的一个主要挑战是预热器中批次水分的蒸发,这导致批次堵塞和维护工作,并限制了碎玻璃比例超过50%的批次的应用。为了改进现有技术,Zippe进行了研究大量的研发活动,并最终与欧洲一家主要的玻璃容器生产商以及一家领先的熔炉设计公司一起启动了一个试点项目,以测试并证明现代2D发电系统的优越性。1同时,在2010年,还安装了另一台碎玻璃和碎玻璃预热器(350吨/天),并且可获得第一批结果。本文将介绍这些新的经验,并详细说明在何种情况下应考虑现代批量预热以节省能源,从而节省能源成本。

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