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Preliminary Energy Assessment of Glass Production in Nigeria

机译:尼日利亚玻璃生产的初步能源评估

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This article describes how the high energy consumption associated with glass factories has been responsible for high cost of manufacturing of glass. However, there is a need for a systematic approach to assess energy consumption in the factory in order to avoid wastage. Previous methods of assessment could not take into cognizance of assessing the entire unit. Additionally, the methods are mostly complex and not straight forward" To overcome these constraints, an approach for audit energy consumption was developed. Energy study was conducted in a glass production plant in Ughelli, Nigeria to determine the energy requirements for the production of glass. The energy consumption patterns of the units operations were evaluated for production of 200 tonnes of glass bottles. The analysis revealed that there were ten defined units in a glass production. The electrical, thermal and manual energy required for the productions were 84.31, 15.59 and 0.10% of the total energy, respectively. The average energy intensity was estimated to be 818.53 MJ/tonne. The most energy intensive operation was identified as the melting process of the furnace with an energy intensity of 395.94 MJ/tonne, which accounts for 48.37% of the total energy required for glass production. Improvement on the design of the melting furnace is suggested to make the system more energy efficient.
机译:本文介绍了与玻璃工厂相关的高能消耗如何负责玻璃制造成本。然而,需要一种系统的方法来评估工厂的能量消耗,以避免浪费。以前的评估方法无法认识到评估整个单位。此外,该方法主要是复杂的,而不是直接“为了克服这些约束,开发了一种审计能耗的方法。能源研究在尼日利亚尼吉的玻璃生产厂进行,以确定玻璃生产的能源要求。为生产200吨玻璃瓶的生产能耗模式进行了评价。分析显示,玻璃生产中有十个定义的单位。产品所需的电气,热和手动能量为84.31,15.59和0.10分别是总能量的百分比。估计平均能量强度为818.53 MJ /吨。最多能量密集型操作被确定为炉子的熔化过程,能量强度为395.94 MJ /吨,占48.37%玻璃生产所需的总能量。建议改善熔炉的设计,使系统更具能量高效的。

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