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Advanced effluent treatment in the pulp and paper industry with a combined process of ozonation and fixed bed biofilm reactors

机译:制浆和造纸工业中的高级废水处理,采用臭氧化和固定床生物膜反应器相结合的工艺

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An advanced treatment process was developed during the last five years to improve the treated effluent quality in view of stronger environmental regulations and the possibility for the reuse of treated effluent in the Pulp and Paper Industry. The combination of ozone with fixed bed biofilm reactors is one of the most efficient tertiary effluent treatment processes to give maximum elimination of COD, colour and AOX with a minimum of ozone dosage. Several laboratory and pilot tests with effluent from a full biological treatment works confirmed the expected targets. Ozone diffusion parameters, i.e. bubble size, and distribution, reaction time and hydrodynamic pattern are decisive for interface/film or bulk reaction. This is the key economic factor for the elimination of certain kinds of organic matter by transferring persistent "hard" COD into biodegradable compounds (BOD). Two-stage ozonation with intermediate biodegradation proved to be a valuable tool for obtaining high COD elimination efficiencies in the tertiary treatment of effluent with high persistent COD concentrations. A fully equipped bench scale plant using the ozonation - biofiltration process is in operation since the beginning of 1998. A separate batch ozonation system allows tests for optimisations which are difficult to perform in a continuous process. Results with papermill effluent are presented. This equipment gives results sufficient for determination of design parameters for an industrial size.
机译:鉴于更严格的环境法规以及制浆造纸行业中处理后废水的再利用的可能性,在过去五年中开发了一种先进的处理工艺,以提高处理后废水的质量。臭氧与固定床生物膜反应器的结合是最有效的三级废水处理工艺之一,可以以最少的臭氧剂量最大程度地消除COD,颜色和AOX。一项完整的生物处理厂废水进行的实验室和中试测试证实了预期目标。臭氧扩散参数,即气泡的大小,分布,反应时间和流体动力学模式,对界面/薄膜或本体反应至关重要。这是通过将持久的“硬” COD转移到生物可降解化合物(BOD)中来消除某些有机物的关键经济因素。经证实,具有中间生物降解作用的两阶段臭氧化技术是在高持续COD浓度的废水三级处理中获得高COD消除效率的有价值的工具。自1998年初起,使用臭氧化-生物过滤工艺的设备齐全的台式规模的工厂就开始运转。单独的批量臭氧化系统可以进行难以连续进行的优化测试。介绍了造纸厂废水的结果。该设备提供的结果足以确定工业规模的设计参数。

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