首页> 外文会议>Cement Industry Technical Conference, 2012 IEEE-IAS/PCA 53rd >Innovative measuring technology on the burner cuts operating costs when using liquid substitute fuels
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Innovative measuring technology on the burner cuts operating costs when using liquid substitute fuels

机译:使用液体替代燃料时,燃烧器上的创新测量技术可降低运营成本

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The cement production process requires large quantities of energy. For this reason, the use of secondary fuels was studied intensively at an early stage, with the aim of reducing energy costs in the thermal zone of this process. The most diverse alternative fuels and raw materials, extending from coarse grained solids up to and including liquids, are used, depending on their market availability and their suitability for the combustion process, to heat the rotary kiln. A constant energy input rate is important in clinker production, to assure consistent and uniform clinker quality in the kiln. Monitoring of the diverse mass flows of combustion air, and the various fuels, at the burner is now standard technological practice. On-line mass flow meters applying the Coriolis principle are increasingly being installed to monitor liquid fuel flows. A frequently encountered characteristic of secondary fuels is the fact that their properties and parameters may change with every new delivery; in the case of liquid fuels, the variable factors may be composition or viscosity — or both, in some cases. The existing infrastructure is generally utilized to provide storage tanks for liquid secondary fuels, assuring adequate buffer capacity for accommodation of several batches or shipments. Segregation of the individual batches can occur during storage, however, with the consequence that any sample taken at a previous delivery has too little informative value concerning the quality of the liquid secondary fuel now metered at the burner. In the following, liquid alternative fuels like glycerin by-product from bio-diesel production and waste oil are looked at, and the use of online viscosity measurement to save costs and optimize the burner is described.
机译:水泥生产过程需要大量能量。因此,在早期阶段就对二次燃料的使用进行了深入研究,目的是降低该过程热区的能源成本。从市场上的可利用性及其对燃烧过程的适应性,使用了从粗粒状固体到液体在内的最多样化的替代燃料和原材料来加热回转窑。恒定的能量输入速率在熟料生产中很重要,以确保窑中一致且均匀的熟料质量。现在,在燃烧器上监视燃烧空气和各种燃料的不同质量流量是标准技术实践。越来越多地安装了采用科里奥利原理的在线质量流量计,以监控液体燃料流量。二次燃料的一个经常遇到的特征是,其性质和参数可能会随着每次新的输送而改变。对于液体燃料,在某些情况下,可变因素可能是成分或粘度-或两者兼而有之。通常利用现有的基础设施来提供液体二次燃料的储罐,以确保足够的缓冲容量以容纳多个批次或装运。但是,在存储过程中可能会发生各个批次的分离,结果是,先前交付的任何样品都与现在在燃烧器中计量的液态二次燃料的质量有关的信息价值太小。在下文中,研究了液体替代燃料,例如来自生物柴油生产的甘油副产物和废油,并描述了使用在线粘度测量以节省成本和优化燃烧器的方法。

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