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Black Liquor Evaporators Upgrade - Life Cycle Cost Analysis

机译:黑色液体蒸发器升级 - 生命周期成本分析

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Black liquor evaporation is generally the most energy intensive unit operation in a pulp and paper manufacturing facility. The black liquor evaporators can represent a third or more of the total mill steam usage followed by the paper machine and digester. Evaporator energy efficiency is expressed as the dimensionless steam economy which equals the unit mass of steam required to evaporate a unit mass of water from black liquor, i.e. lb/lb or kg/kg. The economy is determined by the number of effects in an evaporator train and the system configuration. Older systems use four to six effects, most of which are the long tube vertical rising film type. Newer systems may be designed with seven or even eight effects using falling film and forced circulation crystallization technology for high product solids. The median age of all North American evaporator systems is 44 years. Roughly 25% of the current North American operating systems are 54 years or older. Older systems require more periodic maintenance and have a higher risk of unplanned downtime. Also, older systems have chronic issues with persistent liquor and vapor leaks, shell wall thinning, corrosion, and plugged tubes. Often these issues worsen to the point of requiring rebuild or replacement. When considering the age, technology, and lower efficiency of older systems, a major rebuild or new system may be warranted. The intent of this paper is to review the current state of black liquor evaporator systems in North America and present a basic method for determining whether a major rebuild or new installation is warranted using total life cycle cost analysis.
机译:黑液蒸发通常是纸浆和纸张制造设施中最能集约的单元操作。黑液蒸发器可以代表总轧机蒸汽用途的第三或更多,然后是造纸机和蒸煮器。蒸发器能量效率表示为无量纲蒸汽经济,其等于从黑液中蒸发单位水的蒸汽的单位质量,即LB / LB或kg / kg。经济由蒸发器列车和系统配置中的效果数量决定。较旧的系统使用四到六个效果,其中大部分是长管垂直上升薄膜类型。新系统可以使用七甚至八个效果设计,使用下降薄膜和强制循环结晶技术进行高产品固体。所有北美蒸发器系统的中位年龄为44年。大约25%的当前北美操作系统为54岁或以上。较旧的系统需要更定期的维护,并具有更高的计划发生停机的风险。此外,较旧的系统具有持久性液体和蒸汽泄漏,壳体稀疏,腐蚀和堵塞管的慢性问题。这些问题往往会使要求重建或更换的程度恶化。在考虑年龄,技术和较低效率的旧系统时,可能需要重建或新系统。本文的目的是审查北美的黑液蒸发器系统的当前状态,并提出了使用总生命周期成本分析来确定是否有权确定主要重建或新安装的基本方法。

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