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A biological safety evaluation on reclaimed water reused as scenic water using a bioassay battery

机译:利用生物测定电池对再生水作为景区水进行再利用的生物安全性评估

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An assessment method based on three toxicity tests (algae growth inhibition, daphnia immobilization and larval fish toxicity) was used to screen the biological safety of reclaimed water which was reused as sole replenishment for scenic water system in a park (SOF Park) in northern China. A total of 24 water samples were collected from six sites of water system in the SOF Park in four different seasons. The results indicated that: (1) the reclaimed water directly discharged from a reclamation treatment plant near the SOF Park as influent of park had relatively low biological safety (all samples were ranked as C or D); (2) the biological safety of reclaimed water was improved greatly with the ecological reclamation treatment processes composing of artificial wetland system and followed oxidation pond system; (3) the biological safety of reclaimed water in the main lake of SOF Park kept at a health status during different seasons (all samples were ranked as A); (4) there was some certain correlation (R~2 = 0.5737) between the sum of toxicity scores and dissolved organic carbon for the studied water samples. It was concluded that the assessment method was reliable to screen the safety of reclaimed water reused as scenic water, and the reclaimed water with further ecological purification processes such as artificial wetland and oxidation pond system can be safely reused as scenic water in park.
机译:基于三种毒性测试(藻类生长抑制,水蚤固定化和幼体鱼类毒性)的评估方法用于筛选再生水的生物安全性,该再生水可作为唯一的补充物用于中国北方公园(SOF公园)的景区水系统。 。在四个不同的季节,从SOF公园的六个供水系统中收集了24个水样。结果表明:(1)从SOF公园附近的填海处理厂直接排放的再生水作为公园的进水,其生物安全性相对较低(所有样品均列为C或D); (2)通过人工湿地系统和氧化池系统组成的生态开垦处理工艺,大大提高了再生水的生物安全性。 (3)SOF公园主湖再生水的生物安全性在不同季节保持健康状态(所有样品均列为A); (4)在所研究的水样中,毒性分数之和与溶解有机碳之间存在一定的相关性(R〜2 = 0.5737)。结论是,该评价方法能够可靠地筛选再生水作为风景区水的安全性,经过人工湿地,氧化池等生态净化工艺的再生水可以安全地作为公园风景区的水回用。

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