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短程硝化反硝化工艺为解决人工快渗(CRI)系统脱氮效率低的弊端提供了新思路,通过适宜的调控方法启动短程硝化是实现该工艺的关键。为此,考察了游离氯和湿干比对CRI系统内氮素污染物转化的影响,分析了不同阶段的菌群活性和结构特征,探究了游离氯联合湿干比调控启动CRI系统短程硝化的可行性。结果表明,连续添加3 mg/L游离氯23 d后NO2--N积累率稳定在70%左右,亚硝酸氧化菌(NOB)的活性将受到严重抑制且难以在短期内恢复。此时调节湿干比为1∶5,NH_4~+-N平均去除率、NO_2~--N平均积累率分别升高至97.41%、94.80%,成功启动短程硝化。16S rRNA高通量测序结果表明,CRI系统内氨氧化菌(AOB)的主要类型为Nitrosomonas、Nitrosovibrio,NOB的主要类型为Nitrospira。CRI系统短程硝化启动成功后,AOB的相对丰度由启动前的4.21%增加到6.69%,而NOB的相对丰度由4.34%降低到0.17%。因此,游离氯联合湿干比调控能选择性抑制NOB活性和促进AOB增殖,可为CRI系统启动短程硝化提供一种可行的新方法。  相似文献   
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Pre-oxidation has been reported to be an effective way to remove algal cells in water, but the released algal organic matter (AOM) could be oxidized and lead to the increment in disinfection by-product (DBP) formation. The relationship between pre-oxidation and AOM-derived DBP formation needs to be approached more precisely. This study compared the impact of four pre-oxidants, ozone (O3), chlorine dioxide (ClO2), potassium permanganate (KMnO4) and sodium hypochlorite (NaClO), on the formation of nitrogenous (N-) and carbonaceous (C-) DBPs in AOM chlorination. The characterization (fluorescent properties, molecular weight distribution and amino acids concentration) on AOM samples showed that the characterization properties variations after pre-oxidation were highly dependent on the oxidizing ability of oxidants. The disinfection experiments showed that O3 increased DBP formation most significantly, which was consistent with the result of characterization properties variations. Then canonical correspondent analysis (CCA) and Pearson's correlation analysis were conducted based on the characterization data and DBP formation. CCA indicated that C-DBPs formation was highly dependent on fluorescent data. The formation of haloacetic acids (HAAs) had a positive correlation with aromatic protein-like component while trichloromethane (TCM) had a positive correlation with fulvic acid-like component. Pearson's correlation analysis showed that low molecular weight fractions were favorable to form N-DBPs. Therefore, characterization data could provide the advantages in the control of DBP formation, which further revealed that KMnO4 and ClO2 were better options for removing algal cells as well as limiting DBP formation.  相似文献   
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The vacuum ultraviolet (VUV) process, which can directly produce hydroxyl radical from water, is considered to be a promising oxidation process in degrading contaminants of emerging concern, because of no need for extra reagents. In this study, the influencing factors and mechanism for degradation of diethyl phthalate (DEP) by the VUV process were investigated. The effects of irradiation intensity, inorganic anions, natural organic matter (NOM), and H2O2 dosage on the performance of VUV process were evaluated. The results showed that DEP could be more efficiently degraded by the VUV process compared with ultraviolet (UV)-254-nm irradiation. The presence of HCO3?, NO3? and NOM in the aqueous solutions inhibited the degradation of DEP to a different degree, mainly by competing hydroxyl radicals (HO?) with DEP. Degradation rate and removal efficiency of DEP by VUV process significantly enhanced with the addition of H2O2, while excess H2O2 dosage could inhibit the DEP degradation. Moreover, based on the identified seven oxidation byproducts and their time-dependent evolution profiles, a possible pathway for DEP degradation during the VUV process was proposed. Finally, the ecotoxicity of DEP and its oxidation byproducts reduced overall according to the calculated results from Ecological Structure Activity Relationships (ECOSAR) program. The electrical energy per order (EE/O) was also assessed to analysis the energy cost of the DEP degradation in the VUV process. Our work showed the VUV process could be an alternative and environmental friendly technology for removing contaminants in water.

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文章采用人工快渗(CRI)系统启动厌氧氨氧化处理低基质浓度污水,分别考察了(20±1)、(15±1)、(10±1)、(5±1)℃低温冲击对其脱氮性能的影响,并探讨了低温冲击后厌氧氨氧化脱氮性能的可恢复性。结果表明,在(30±1)℃条件下,CRI系统经83 d运行后可成功启动厌氧氨氧化,稳定运行期NH_4~+-N、NO_2~--N、TN平均去除率分别为99.7%、99.8%、91.3%。(20±1)℃低温冲击对脱氮效果的影响较小,厌氧氨氧化在20~30℃范围内均能高效稳定的运行。受(15±1)、(10±1)、(5±1)℃低温冲击后,CRI系统对TN的平均去除率分别较低温冲击前降低了5.7%、20.9%、59.3%,低温冲击对厌氧氨氧化的抑制作用随温度的降低而增大。当恢复(30±1)℃运行后,受(15±1)、(10±1)℃低温冲击的CRI系统分别于6、19 d后恢复至受冲击前水平,而受(5±1)℃低温冲击后的厌氧氨氧化脱氮性能难以在短期内恢复。  相似文献   
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