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Treatment of simulated aquaculture water using biofilters subjected to aerationon-aeration cycles

机译:使用经过曝气/非曝气循环的生物滤池处理模拟水产养殖用水

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The overall objective of this research activity is the development of a fixed-film biological nutrient removal (BNR) biofilter system for the reuse and discharge of a selected aquaculture water. The three stage biofilter system used in the study provided alternating aerationon-aeration cycles for phosphorus removal in two of the three biofilters. The removal of TOC and ammonia improved as the cycle duration (CD) increased as a result of the reduction in the frequency of the transition periods between the cycles. The system achieved limited net phosphorus removal due to the limited sludge wasting and lack of external organic carbon supplies during phosphorus uptake, However, the phosphorus activity in the system was significant and was modified by the CD. The denitrification activity was coupled with phosphorus uptake and both activities appeared to have been supplied by an internal organic carbon source. The major challenges of achieving phosphorus removal in the system include: (1) overcoming the deterioration in the performance of the system during the transition period following the start of each new cycle; and (2) wasting the excess biomass following the aeration cycle. Without active sludge wasting, the system behaves as a phosphorus reservoir with a limited storage capacity. On the other hand, frequent sludge wasting may disrupt the performance of the system. (C) 1998 Published by Elsevier Science Ltd. All rights reserved. [References: 9]
机译:这项研究活动的总体目标是开发固定膜生物营养物去除(BNR)生物过滤器系统,以再利用和排放选定的水产养殖用水。研究中使用的三级生物滤池系统为三个生物滤池中的两个提供了交替的曝气/非曝气循环以去除磷。随着循环持续时间(CD)的增加,TOC和氨气的去除由于循环之间过渡期频率的减少而提高。由于有限的污泥浪费和磷吸收过程中缺乏外部有机碳供应,该系统实现了有限的净磷去除,但是,系统中的磷活度很显着,并且被CD改性。反硝化活性与磷的吸收有关,两种活性似乎都由内部有机碳源提供。在系统中实现除磷的主要挑战包括:(1)克服每个新循环开始后的过渡期内系统性能的下降; (2)在曝气循环后浪费掉多余的生物量。在没有积极的污泥浪费的情况下,该系统可作为磷库,但存储容量有限。另一方面,频繁的污泥浪费可能会破坏系统的性能。 (C)1998由Elsevier Science Ltd.出版。保留所有权利。 [参考:9]

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