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A next generation pilot-scale continuous sterilization system for fermentation media

机译:用于发酵培养基的下一代中试规模连续灭菌系统

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摘要

A new continuous sterilization system was designed, constructed, started up, and qualified for media sterilization for secondary metabolite cultivations, bioconversions, and enzyme production. An existing Honeywell Total Distributed Control 3000-based control system was extended using redundant High performance Process Manager controllers for 98 I/O (input/output) points. This new equipment was retrofitted into an industrial research fermentation pilot plant, designed and constructed in the early 1980s. Design strategies of this new continuous sterilizer system and the expanded control system are described and compared with the literature (including dairy and bio-waste inactivation applications) and the weaknesses of the prior installation for expected effectiveness. In addition, the reasoning behind selection of some of these improved features has been incorporated. Examples of enhancements adopted include sanitary heat exchanger (HEX) design, incorporation of a “flash” cooling HEX, on-line calculation of Fo and Ro, and use of field I/O modules located near the vessel to permit low-cost addition of new instrumentation. Sterilizer performance also was characterized over the expected range of operating conditions. Differences between design and observed temperature, pressure, and other profiles were quantified and investigated.
机译:设计,建造,启动了一个新的连续灭菌系统,并具有资格进行二次代谢物培养,生物转化和酶生产的培养基灭菌。现有的基于Honeywell Total Distributed Control 3000的控制系统使用冗余的高性能Process Manager控制器扩展了98个I / O(输入/输出)点。这种新设备被改装成工业研究发酵中试工厂,该工厂于1980年代初设计和建造。描述了这种新型连续灭菌器系统和扩展控制系统的设计策略,并将其与文献(包括乳制品和生物废物灭活应用)进行比较,并与现有安装的缺点相提并论。此外,已经纳入了一些改进功能选择背后的理由。采取的增强措施包括:卫生换热器(HEX)设计,“闪速”冷却HEX的合并,Fo和Ro的在线计算以及使用位于容器附近的现场I / O模块以允许低成本添加新仪器。在预期的操作条件范围内还对灭菌器的性能进行了表征。设计和观察到的温度,压力和其他曲线之间的差异被量化和研究。

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