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Low energy treatment system for brewery wastewater reuse

机译:用于啤酒废水回用的低能耗处理系统

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A pilot plant consisting of UASB, SBR and microfiltration in series was operated for 15 months to study a low energy treatment option for brewery effluent. The UASB was loaded up to 18 kg/kL.d. However for trouble free operation the loading had to be limited to 14 kg/kL.d. More than 80% of the feed COD was removed in the anaerobic process and a further 60% COD removal was observed in the aerobic process. An air backwashable microfiltration unit was used to remove suspended solids so that the treated water could be reused. The membrane unit was optimised by operating under dead-end, controlled flux conditions (permeate pumping) and air backwashing at set transmembrane pressure (TMP) (in practice the membranes are backwashed at set time interval). Operating energy cost calculations for the membrane system showed that the unit needs to be operated at low flux (say 20 to 30 L/m~2.h) to have a low energy demand. However this necessitates a large membrane area. Optimisation for capital and energy cost indicates that the unit needs to be operated at more than 60 L/m~2.h depending on the maximum TMP specified. The system energy balance was also calculated. The energy needed for the operation of all units less the energy gained from methane gas generated indicates that the system could yield a net energy of 2.5 kWh/kL water treated. The treated effluent had a turbidity of less than 1.2 NTU and the BOD5 less than 20 mg/L.
机译:由UASB,SBR和微滤串联组成的中试工厂运营了15个月,以研究啤酒废水的低能耗处理方案。 UASB的最高装载量为18 kg / kL.d。但是,为了无故障运行,负载必须限制在14 kg / kL.d。在厌氧工艺中去除了超过80%的进料COD,在好氧工艺中还观察到了60%的COD去除。使用空气可反冲洗的微滤装置除去悬浮的固体,以便处理后的水可以重复使用。通过在死角,受控通量条件下(渗透泵)和设定的跨膜压力(TMP)进行空气反冲洗(在实践中,以设定的时间间隔反冲洗膜)来优化膜单元。膜系统的运行能源成本计算表明,该装置需要在低通量(例如20至30 L / m〜2.h)下运行才能具有较低的能源需求。然而,这需要大的膜面积。资金和能源成本的优化表明,根据指定的最大TMP,该装置需要以60 L / m〜2.h以上的速度运行。还计算了系统能量平衡。所有装置运行所需的能量减去从产生的甲烷气体中获得的能量,表明该系统可产生2.5 kWh / kL水处理后的净能量。处理后的废水的浊度小于1.2 NTU,BOD5小于20 mg / L。

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