首页> 外文会议>International Conference on Environmental Toxicology; 20060911-13; Mykonos(GR) >Toxicity and biodegradation potential of waste water from industry producing fire protection materials
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Toxicity and biodegradation potential of waste water from industry producing fire protection materials

机译:生产防火材料的工业废水的毒性和生物降解潜力

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Effluents may contain hazardous chemicals, which could have adverse effects on aquatic ecosystems. Important intrinsic properties are toxicity and biodegradability of effluents and they should be assessed in order to protect the aquatic environment. Microorganisms of activated sludge are responsible for biological waste water treatment. The lack of treatment effectiveness could, in case of unexpected toxic influents to waste water treatment plants, lead to a discharge of toxic and undegradable effluents into receiving streams. The assessment of potential adverse effects of influents entering the waste water treatment plant is for this reason necessary. The aim of the study was to predict a suitability of discharging the industrial waste water into waste water treatment plants based on the assessment of waste water toxicity and biodegradability. The waste water sample, originating from the industry producing fire protection materials, was highly polluted with organic substances. At first, the acute toxicity of the investigated sample was determined using activated sludge measuring oxygen consumption rates. It was found that the waste water sample was acutely toxic to microorganisms. Ready biodegradability of waste water was determined in a closed respirometer by measuring oxygen consumption. As diluted samples of the waste water were not readily biodegradable inherent biodegradability of the waste water sample was evaluated using the Zahn-Wellens test. It was found that diluted samples were inherently biodegradable probably due to the fact that higher concentration of microorganisms of activated sludge was added. It can be concluded that the tested waste water could be discharged into the sewerage system on the condition that a dilution of the tested waste water in the municipal waste water treatment plant would be at least 1:20.
机译:废水中可能含有有害化学物质,可能对水生生态系统产生不利影响。重要的内在特性是废水的毒性和生物降解性,应对其进行评估,以保护水生环境。活性污泥中的微生物负责生物废水的处理。如果污水处理厂中有意料之外的有毒流入物,则缺乏有效的处理效果可能导致有毒和不可降解的流出物排放到接收流中。因此,有必要评估进入废水处理厂的进水的潜在不利影响。该研究的目的是基于对废水毒性和生物降解性的评估,预测将工业废水排入废水处理厂的适用性。来自生产防火材料的行业的废水样品被有机物质高度污染。首先,使用测量氧气消耗率的活性污泥确定所研究样品的急性毒性。发现废水样品对微生物具有剧毒。在封闭的呼吸计中通过测量耗氧量确定废水的易生物降解性。由于废水的稀释样品不易生物降解,因此使用Zahn-Wellens测试评估了废水样品的固有生物降解性。发现稀释的样品固有地是可生物降解的,这可能是由于添加了更高浓度的活性污泥的微生物这一事实。可以得出结论,在城市污水处理厂中,被测废水的稀释度至少应为1:20的情况下,可以将被测废水排放到污水处理系统中。

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