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首页> 外文期刊>Water Science and Technology >Removal of natural organic matter (NOM) from drinking water supplies by ozone-biofiltration
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Removal of natural organic matter (NOM) from drinking water supplies by ozone-biofiltration

机译:通过臭氧生物过滤去除饮用水中的天然有机物(NOM)

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Removal of natural organic matter (NOM) in biofilters can be affected by many factors including NOM characteristics, use of pre-ozonation, water temperature, and biofilter backwashing. Laboratory experiments were performed and a biofilter simulation model was developed for the purpose of evaluating the effects of each of these factors on NOM removal in biofilters. Four sources of NOM were used in this study to represent a broad specturm of NOM types that may be encountered in water treatment. In batch experiments with raw NOM, the removal of organic carbon by biodegradation was inversely proportional to the UV absorbance (254 nm)-to-TOC ratio and directly proportional to the percentage of low molecular weight material (as determined by ultrafiltration). The extent and rate of total organic carbon (TOC) removal typically increased as ozone dose increased, but the effects were highly dependent on NOM characteristics. NOM with a higher percentage of high molecular weight material experienced the greatest enhancement in biodegradability by ozonation. The performance of laboratory-scale continuous-flow biofilters was not significantly affected by periodic backwashing, because backwashing was unable to remove large amounts of biomass from the filter media. Model simulations confirmed our experimental results and the model was used to further evaluate the effects of temperature and backwashing on biofilter performance.
机译:生物滤池中天然有机物(NOM)的去除可能受到许多因素的影响,包括NOM特性,预臭氧化的使用,水温和生物滤池反冲洗。进行了实验室实验,并开发了生物过滤器模拟模型,以评估这些因素中的每一个对生物过滤器中NOM去除的影响。在这项研究中使用了NOM的四种来源来代表在水处理中可能遇到的NOM类型的广泛范围。在使用原始NOM的分批实验中,通过生物降解去除有机碳与UV吸收率(254 nm)/ TOC比成反比,与低分子量材料的百分比成正比(由超滤确定)。总有机碳(TOC)去除的程度和速率通常随着臭氧剂量的增加而增加,但是其效果高度依赖于NOM特性。具有较高百分比的高分子量材料的NOM在臭氧降解作用下的生物降解能力得到了最大的提高。定期反洗不会对实验室规模的连续流生物过滤器的性能产生重大影响,因为反洗无法从过滤介质中去除大量生物质。模型仿真证实了我们的实验结果,该模型用于进一步评估温度和反洗对生物滤池性能的影响。

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