Tisler T, Zagorc-Koncan J, Ros M, Cotman M
National Institute of Chemistry, Ljubljana, Slovenia.
Chemosphere. 1999 Mar;38(6):1347-52. doi: 10.1016/s0045-6535(98)00536-0.
The water chemistry, toxicity, and biodegradation of wastewater from an industry producing mineral fibres for thermal insulation were studied. Values for COD, BOD5, suspended solids, and phenol exceeded permissible values for the wastewater discharged into a nearby river and acute toxicity was also detected. Consequently, the effluent should be treated in a municipal wastewater treatment plant so its ready biodegradability was investigated. We found that the wastewater was readily biodegradable, therefore we assume it can be treated in the wastewater treatment plant as the ratio of the wastewater flow rate and the minimal total inflow into the sewage treatment plant would be one to at least 30.
对一家生产隔热矿物纤维的工厂排放的废水的水化学性质、毒性和生物降解性进行了研究。化学需氧量(COD)、五日生化需氧量(BOD5)、悬浮物和苯酚的值超过了排入附近河流的废水的允许值,并且还检测到了急性毒性。因此,该废水应在城市污水处理厂进行处理,为此对其易生物降解性进行了研究。我们发现该废水易于生物降解,因此我们认为它可以在污水处理厂进行处理,因为废水流量与污水处理厂最小总进水量的比例将为1比至少30。