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431.
同步硝化反硝化生物脱氮技术研究   总被引:5,自引:0,他引:5  
讨论了影响同步硝化反硝化反应的各参数,并进行了单因素实验与正交实验,获得了同步硝化反硝化生物脱氮工艺运行的最佳条件:DO浓度控制在0.5~2mg/L,COD浓度为600~800mg/L,混合液悬浮固体(MLSS)为5000mg/L,pH值在8.0左右,反应时间为6h。在此条件下,氨氮及COD的去除率都较高,分别达85%和95%,总氮去除率为68.5%。  相似文献   
432.
焦炉装煤烟尘含有害物质,污染环境,危害人体健康。袋式除尘器的使用,消除了烟尘的污染,但因投资大、运行费用高、操作复杂,难以得到快速、广泛的推广。根据实验结果和已有应用情况,本文推荐了三相流化床除尘装置和颗粒层除尘器,它们可用于焦炉装煤烟尘治理,其投资和运行费用会大大降低。  相似文献   
433.
通过血清瓶批式实验,研究了不同C/N下葡萄糖和乙酸钠对厌氧氨氧化耦合反硝化系统(SAD)污泥活性及脱氮性能的影响.耦合系统颗粒污泥为在亚硝态氮充足的UASB连续流反应器中培养得到,具有较高的厌氧氨氧化活性和反硝化活性.以葡萄糖为碳源,C/N分别为1,2,4时,厌氧氨氧化活性差异不大,反硝化活性逐渐增加,亚硝态氮最大降解速率分别为0.265,0.345,0.453kgN/(kgVSS·d);以乙酸钠为碳源,C/N分别为1、2、4时,厌氧氨氧化活性和反硝化活性都无明显差别.相同C/N下,耦合系统以葡萄糖为碳源时的厌氧氨氧化活性较高,以乙酸钠为碳源时的反硝化活性较高.C/N分别为1,2,4时,以葡萄糖为有机物的氨氮最大降解速率分别为乙酸钠的1.15,1.19,1.58倍,以乙酸钠为有机物时反应的亚硝态氮最大降解速率分别为葡萄糖的1.89,1.48,1.15倍.实验的数学模拟结果表明,通过模型的模拟,能较为准确地预测实验过程中氮素的变化趋势,在C/N为1~4时耦合系统中颗粒污泥的厌氧氨氧化活性无较大变化.  相似文献   
434.
制革废水处理过程中磺胺类抗生素和抗性细菌的分布特征   总被引:2,自引:2,他引:0  
花莉  李璐  杨春燕 《环境科学》2018,39(9):4229-4235
针对两家制革厂废水处理过程中3种磺胺类抗生素和磺胺类抗性细菌的丰度和分布特性以及两个不同工艺污水处理厂对抗生素的去除规律做了相关研究.结果表明,3种抗生素在两家制革污水处理过程中均有检出,水样中3种抗生素的总质量浓度在59.1~706.7 ng·L~(-1)之间;两家制革厂废水处理剩余污泥中3种抗生素的总含量分别为4 388 ng·kg~(-1)和2 979.4ng·kg~(-1),与市政污水处理厂中的抗生素含量相差不大.不同的污水处理工段对3种抗生素去除效果不同,但去除效率均大于70%.生物处理单元对抗生素的去除率相对较高,而厌氧池是去除抗生素的主要阶段(去除率50%).两个制革厂的进出水和剩余污泥中共筛选出8株抗性细菌,这8个分离菌株可分为5个菌属.进出水中的抗性细菌含量介于9.37×10~3~5.08×10~5CFU·mL~(-1)之间,剩余污泥中的磺胺类抗性细菌含量较高分别为1.17×10`7CFU·g~(-1)和7.2×10~6CFU·g~(-1).两个制革污水处理厂对磺胺甲唑抗性细菌的去除率分别达到了1.34 log和2.15 log.  相似文献   
435.
白洁  陈琳  黄潇  胡春辉  赵阳国  李岿然 《环境科学》2018,39(10):4793-4801
从胶州湾沉积物中分离出1株异养硝化-好氧反硝化菌株B307,采用16S rRNA基因序列分析对该菌株进行鉴定,采用单因素实验对其进行条件优化和耐盐特性研究,并在最优条件下考察其在单一和混合氮源中的脱氮效果.结果表明,该菌为Zobellella sp.,其最佳碳源为丁二酸钠,最适C/N为5,最适初始p H为9,最适温度为35~40℃.该菌株在混合氮源体系中12 h对NH_4~+-N和NO_3~--N的去除率分别为98.35%和99.75%;在盐度为75 g·L~(-1)(以NaCl计)条件下24 h对NH_4~+-N和NO_3~--N去除率仍分别保持在97.67%和94.39%.表明该菌株具有高效的异养硝化-好氧反硝化能力和较强的耐盐特性,在高盐废水脱氮等领域具有广泛的应用前景.  相似文献   
436.
长期侧流提取对EBPR系统除磷及其磷回收性能的影响   总被引:1,自引:1,他引:0  
俞小军  李杰  周猛  宋璐  李维维  王亚娥  马娟  吕慧 《环境科学》2018,39(9):4274-4280
实验采用交替厌氧/好氧(An/O)运行模式的SBR反应器,考察310 d内分3个批次提取侧流比为0、1/4、1/3、1/2的厌氧放磷上清液后EBPR系统的脱氮除磷效果及相应的磷回收性能.结果表明,整个实验阶段系统对COD和氨氮的去除较为稳定,出水均能满足《城镇污水处理厂污染物综合排放标准》一级A标准,总氮去除因厌氧阶段反硝化不断增强有所提升,达标率由88.2%显著上升至98.6%.然而,随着厌氧上清液提取次数的增多,系统释磷能力整体下降,但前两个批次中系统除磷均稳定高效,去除率在90%以上,相应地出水磷达标率大于75%,仅第3批次实验中侧流比为1/2时系统除磷率出现大幅波动,最低降为54.2%,并贡献该批次出水磷不达标率的60%,说明长期提取1/2侧流比不利于主流工艺出水稳定维持.研究还发现,长期进行侧流磷回收实验有利于污泥减量,且对污泥沉降性能影响不大.因此,在EBPR系统内长期提取适当侧流比的厌氧上清液以进行磷回收与主流工艺同步高效脱氮除磷具有可行性.  相似文献   
437.
In recent years there has been an increasing interest in the use of autohydrogenotrophic bacteria to treat nitrate from wastewater. However, our knowledge about the characteristics of extracellular polymeric substances (EPS) releasing by these activities is not yet very advanced. This study aimed to investigate the change in EPS compositions under various pH values and hydrogen flow rates, taking into consideration nitrogen removal. Results showed that pH 7.5 and a hydrogen flow rate of 90 mL/min were the optimal operating conditions, resulting in 100% nitrogen removal after 6 hr of operation. Soluble and bound polysaccharides decreased, while bound proteins increased with increasing pH. Polysaccharides increased with increasing hydrogen flow rate. No significant change of bound proteins was observed at various hydrogen flow rates.  相似文献   
438.
For the removal of phosphate (PO43 -) from water, an adsorbent was prepared via carbonization of sewage sludge from a wastewater treatment plant: carbonized sludge adsorbent (CSA). The mechanism of phosphate removal was determined after studying the structure and chemical properties of the CSA and its influence on phosphate removal. The results demonstrate that phosphate adsorption by the CSA can be fitted with the pseudo second-order kinetics and Langmuir isotherm models, indicating that the adsorption is single molecular layer adsorption dominated by chemical reaction. The active sites binding phosphate on the surface are composed of mineral particles containing Si/Ca/Al/Fe. The mineral containing Ca, calcite, is the main factor responsible for phosphate removal. The phosphate removal mechanism is a complex process including crystallization via the interaction between Ca2 + and PO43 -; formation of precipitates of Ca2 +, Al3 +, and PO43 -; and adsorption of PO43 - on some recalcitrant oxides composed of Si/Al/Fe.  相似文献   
439.
When adding sufficient chlorine to achieve breakpoint chlorination to source water containing high concentration of ammonia during drinking water treatment, high concentrations of disinfection by-products(DBPs) may form. If N-nitrosamine precursors are present, highly toxic N-nitrosamines, primarily N-nitrosodimethylamine(NDMA), may also form. Removing their precursors before disinfection should be a more effective way to minimize these DBPs formation. In this study, zeolites and activated carbon were examined for ammonia and N-nitrosamine precursor removal when incorporated into drinking water treatment processes.The test results indicate that Mordenite zeolite can remove ammonia and five of seven N-nitrosamine precursors efficiently by single step adsorption test. The practical applicability was evaluated by simulation of typical drinking water treatment processes using six-gang stirring system. The Mordenite zeolite was applied at the steps of lime softening, alum coagulation, and alum coagulation with powdered activated carbon(PAC) sorption. While the lime softening process resulted in poor zeolite performance, alum coagulation did not impact ammonia and N-nitrosamine precursor removal. During alum coagulation, more than67% ammonia and 70%–100% N-nitrosamine precursors were removed by Mordenite zeolite(except 3-(dimethylaminomethyl)indole(DMAI) and 4-dimethylaminoantipyrine(DMAP)). PAC effectively removed DMAI and DMAP when added during alum coagulation. A combination of the zeolite and PAC selected efficiently removed ammonia and all tested seven N-nitrosamine precursors(dimethylamine(DMA), ethylmethylamine(EMA), diethylamine(DEA), dipropylamine(DPA), trimethylamine(TMA), DMAP, and DMAI) during the alum coagulation process.  相似文献   
440.
Zero-valent iron (ZVI) was loaded on expanded graphite (EG) to produce a composite material (EG-ZVI) for efficient removal of hexavalent chromium (Cr(VI)). EG and EG-ZVI were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), Fourier-transform infrared (FTIR) spectroscopy and Brunauer–Emmett–Teller (BET) analysis. EG-ZVI had a high specific surface area and contained sub-micron sized particles of zero-valent iron. Batch experiments were employed to evaluate the Cr(VI) removal performance. The results showed that the Cr(VI) removal rate was 98.80% for EG-ZVI, which was higher than that for both EG (10.00%) and ZVI (29.80%). Furthermore, the removal rate of Cr(VI) by EG-ZVI showed little dependence on solution pH within a pH range of 1–9. Even at pH 11, a Cr(VI) removal rate of 62.44% was obtained after reaction for 1 hr. EG-ZVI could enhance the removal of Cr(VI) via chemical reduction and physical adsorption, respectively. X-ray photoelectron spectroscopy (XPS) was used to analyze the mechanisms of Cr(VI) removal, which indicated that the ZVI loaded on the surface was oxidized, and the removed Cr(VI) was immobilized via the formation of Cr(III) hydroxide and Cr(III)–Fe(III) hydroxide/oxyhydroxide on the surface of EG-ZVI.  相似文献   
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