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Startup pattern and performance enhancement of pilot-scale biofilm process for raw water pretreatment

机译:原水预处理中试规模生物膜工艺的启动模式和性能增强

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摘要

The quality of raw water is getting worse in developing countries because of the inadequate treatment of municipal sewage, industrial wastewater and agricultural runoff. Aiming at the biofilm enrichment and pollutant removal, two pilot-scale biofilm reactors were built with different biological carriers. Results showed that compared with the blank carrier, the biofilm was easily enriched on the biofilm precoated carrier and less nitrite accumulation occurred. The removal efficiencies of NH4 + -N, DOC and UV_(254) increased under the aeration condition, and a optimum DO level for the adequate nitrification was 1.0–2.6 mg L~(-1) with the suitable temperature range of 21–22 °C. Study on the trihalomethane prediction model indicated that the presentence of algae increased the risk of disinfection by-products production, which could be effectively controlled via manual algae removing and light shading. In this study, the performance of biofilm pretreatment process could be enhanced under the optimized condition of DO level and biofilm carrier.
机译:由于市政污水,工业废水和农业径流的处理不当,发展中国家的原水水质越来越差。针对生物膜的富集和污染物去除,建造了两个具有不同生物载体的中试规模的生物膜反应器。结果表明,与空白载体相比,生物膜易于富集在生物膜预涂载体上,亚硝酸盐的积累较少。在曝气条件下,NH4 + -N,DOC和UV_(254)的去除效率增加,适当硝化的最佳DO水平为1.0–2.6 mg L〜(-1),且温度范围为21–22 ℃。对三卤甲烷预测模型的研究表明,藻类的存在增加了消毒副产物产生的风险,这可以通过手动去除藻类和遮光来有效控制。在这项研究中,生物膜预处理过程的性能可以在溶解氧水平和生物膜载体的优化条件下得到提高。

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