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801.
不同填料组合的曝气生物滤池前置反硝化工艺特性的比较研究 总被引:1,自引:0,他引:1
研究了2组不同填料组合的前置反硝化曝气生物滤池(BAF)脱氮工艺:陶粒-沸石工艺(C-Z BAF)和沸石-陶粒工艺(Z-C BAF),比较二者在不同的水力停留时间(HRT)、气水比和回流比条件下的工艺特性。当进水COD、氨氮和TN容积负荷分别为0.72~5.97、0.09~0.60和0.11~0.78 kg/(m3.d)时,C-Z BAF和Z-C BAF的最佳HRT、气水比和回流比分别为1.5 h、5∶1、1∶1和1.5 h、5∶1、2∶1,相应COD、氨氮和TN的平均去除率分别为94.7%、99.0%、62.2%和93.2%、99.5%、70.1%。单因素方差分析结果表明,HRT对2组工艺的各种污染物的去除率均有显著影响;回流比对Z-C BAF的TN去除率存在显著的影响,而对C-Z BAF的TN去除率几乎没有影响。污染物沿程分布分析结果表明,两组工艺的COD去除主要发生在缺氧滤池以及好氧滤池0~0.3 m的填料区;硝化作用主要发生在好氧滤池的0~0.6 m填料区,Z-C BAF工艺的硝化速率高于C-Z BAF工艺。Z-C BAF工艺存在明显的同步硝化反硝化作用,且Z-C BAF工艺的脱氮性能优于C-Z BAF工艺。 相似文献
802.
以颗粒活性炭为填料,采用盐度梯度两步驯化法构建含盐水体生物滤器硝化功能,研究了生物滤器稳定后水力停留时间(hydraulic retention time,HRT)、进水氨氮负荷和CODMn/N等对反应器硝化性能的影响。结果表明,25~27℃,盐度30的含盐水体生物滤器硝化功能构建需73 d,其中淡水生物滤器硝化功能构建需28 d,淡水驯化为盐度15的生物滤器需19 d,盐度15驯化为盐度30的生物滤器需26 d;实验条件下生物活性炭填料反应器中生物量达到146~742.1 nmolP/g-BAC;调节进水氨氮浓度2 mg/L左右时,最佳HRT为1 h,氨氮去除率达到84.98%,相应的氨氧化菌和硝酸菌氧吸收速率(oxygen uptake rate,OUR)分别为2.091和1.948 mg O2/(g-BAC.h);HRT为1 h时,随着进水氨氮负荷的加大,氨氮去除率逐渐降低,当进水氨氮负荷由0.12增加到0.48 g-N/(kg-BAC.d)时,氨氮去除率由84.98%降低到41.68%,同时氨氧化菌OUR由2.091降低到0.625 mg O2/(g-BAC.h);随着CODMn/N的升高,氨氮去除率下降,CODMn/N从1~8时,氨氮去除率由84.98%降低到53.64%,CODMn去除率却逐渐增加,由40.86%增加到93.59%,异养菌OUR随着CODMn/N升高呈上升趋势,最大达到0.914 mg O2/(g-BAC.h)。 相似文献
803.
构建复合塔式生态滤池进行污水处理实验,对含氮污水通过系统各处理单元前后4种氮形态变化和浓度分布进行探讨。比较各单元进出水水质变化,研究各单元总氮和硝氮的去除效果以及对系统总去除率的贡献。结合装置构造特点,系统分析了氮素在复合塔式生态滤池中的迁移转化规律及除氮机制,并创新性应用δ15N-NO-3方法加以佐证。研究结果表明,复合塔式生态滤池工艺对总氮和硝氮均有很好的去除作用,实验污水中氮污染以硝氮为主,总氮去除主要取决于硝氮的去除;复合塔式生态滤池中硝化-反硝化交替作用明显,为不同形态氮的相关转化以及氮的去除创造了优越的条件。 相似文献
804.
针对水中病原微生物的污染,选择大肠埃希氏菌E.coli作为病原示踪剂,以E.coli染色体上β-葡萄糖醛酸酶uid A目的基因建立了SYBR Green实时荧光定量PCR的检测方法。该定量PCR方法灵敏度高,检测限可达104CFU/L,线性关系良好,相关系数为R2=0.999。研究表明,定量PCR与菌液浓度呈显著正相关R2=0.935。通过人工投加腐殖酸、COD,研究了水中抑制物对定量PCR和膜过滤MF培养法的影响。结果显示,腐殖酸可使E.coli在培养皿上的菌落变小聚集,且显色不明显,当腐殖酸量为20 mg/L时,浓度为50 CFU/100 m L的E.coli完全受到抑制,没有菌落出现。腐殖酸对PCR扩增的抑制作用明显,当腐殖酸浓度增加到10 mg/L,定量PCR检测结果基因拷贝数减少约1 log,增加到20 mg/L定性PCR检测结果为阴性。 相似文献
805.
S. Ramljak B. K. Hackenberger T. Smital S. Britvić 《Journal of environmental science and health. Part. B》2013,48(6):751-770
Abstract The effect of the herbicide Dicuran 500 FL (formulated product) on the phenotypical and genotypical changes in procaryotic and eucaryotic organisms was investigated using short‐term tests for detecting genotoxins. Since pesticides discharged in the water environment can modulate the mixed‐function monooxygenases (MFO) detoxification system of water organisms, the in vivo and in vitro effects of Dicuran on hepatic cytochrome P450 (cyt P450) monooxygenase activities were also examined in juvenile carp (Cyprinus carpio L.). By measuring the activities of MFO in experimental carp exposed to Dicuran an attempt was made to establish whether Dicuran could be bioactivated by MFO into ultimate mutagens. Our results on the bacterial strains Salmonella typhimurium TA100 and TA98 show that Dicuran does not possess either mutagenic or premutagenic characteristics. The micronucleus test on the erythrocytes of experimental carp did not establish any clastogenic effect either. However, Dicuran significantly inhibited the MFO activity of 7‐ethoxyresorufin‐O‐deethylase (EROD) and benzo[a]pyrene monooxygenase (BaPMO) in the liver of experimental carp in vitro, as well as in in vivo conditions. These findings demonstrate the potentially damaging effect of Dicuran on the xenobiotic metabolizing enzyme systems of fish, and suggest the applicability of described methods for the prediction of the ecotoxicological significance of the presence of pesticides in the water environment. 相似文献
806.
807.
Carine Saison Natasha J. Waller Anu Kumar Rai S. Kookana 《Journal of environmental science and health. Part. B》2013,48(3):226-234
The impact of pesticides, namely thiobencarb (TBC), molinate (MOL) and chlorpyrifos (CPF), on soil microbial processes was studied in two Australian soils. Substrate induced respiration (SIR), substrate induced nitrification (SIN) and phosphatases and chitinase enzymatic activities were assessed during a 30-day microcosm study. The pesticides were applied to soils at recommended rates either alone, or as binary mixtures with TBC. Soil samples were sampled at 5, 15 and 30 days after pesticide treatments. Substrate induced respiration was only transiently affected by pesticides in both soils. In contrast, the process of indigenous nitrification was affected by the presence of pesticides in both soils, especially when the pesticides were applied as binary mixtures. Substrate induced nitrification increased with pesticides in the Griffith soil (except with MOL+TBC after 5 days) whereas SIN values were non-significantly different to the control on the Coleambally soil. The binary mixtures of pesticides with TBC resulted in a decrease in SIN in both soils, but the effects disappeared within 30 days. The enzymatic activities were not consistently affected by pesticides, and varied with the soil and pesticides studied. This study showed that, when applied at recommended application rates, TBC, MOL, and CPF (individually or as binary mixtures), had little or only transitory effects on the functional endpoints studied. However, further investigations are needed to assess the effect on microbial densities and community structure despite the low disturbance to the functions noted in this work. 相似文献
808.
C.M. Tu 《Journal of environmental science and health. Part. B》2013,48(3):289-306
Abstract A laboratory study was conducted to examine the effects of five insecticides on microbial and enzymatic activities important to fertility in sandy soil. Cyfluthrin significantly increased bacterial populations after 2 wks. Imidacloprid showed an inhibitory effect on fungal numbers after 2 wks incubation while the others did not affect fungal population. No inhibitory effect was observed on nitrification of soil indigenous nitrogen. All treatments stimulated S‐oxidation after 4 wks. With the exception of cyfluthrin and imidacloprid after 2 wks, denitrification in sandy soil indicated that all treatment inhibited denitrification throughout the experiment. No inhibitory effects on biomass‐c were observed during 2‐wk periods. An inhibitory effect was observed on amylase after 1 wk while significant recovery was observed after 3 wks. With the exception of HgCl2, no effect was observed on reducing sugar formation for 2 wks with all treatments. Formazan formation resulting from dehydrogenase activity was significantly greater with tebupirimphos and Aztec for 1 wk. All treatments supressed phosphatase activity for 1 wk, while none of the treatments suppressed phosphatase activity after 2 wks. Amitraz, tebupirimphos and Aztec inhibited urease activity for 1 wk. With the exception of tebupirimphos, no treatments affected N2‐fixation in soil. Although short‐lived inhibitory effects on activities of microbes and enzymes were caused by the insecticides, the soil indigenous microbes can tolerate the chemicals used for control of soil pests. 相似文献
809.
以好氧颗粒污泥接种小试柱形SBR,采用自配无机氨氮废水为进水,在中温(28~30℃)条件下通过逐步提升进水NH4^+-N浓度(100~650mg/L)和缩短水力停留时间(8~4h)快速培养硝化颗粒污泥。实验结果证实,以好氧颗粒污泥接种可以促使硝化颗粒污泥快速形成,36d时粒径〉0.21mm的颗粒污泥占总数的93%,颗粒污泥NH4-N比去除速率为50.53mgNH4^+-N/(gSS·h)。硝化颗粒污泥具有良好的短程硝化性能,亚硝酸盐产生速率和累积率分别保持在3.3kgNO2-N/(m^3·d)和85%以上。反应初期高FA和反应末期高FNA的共同抑制是该研究中实现和维持稳定短程硝化的关键因素。 相似文献
810.
研究了城市生活垃圾焚烧厂渗沥液中Ca2+对厌氧颗粒污泥膨胀床反应器(EGSB)处理效果的影响,并采用静态实验方法考察了Ca2+对厌氧颗粒污泥产甲烷活性的影响。实验结果表明,进水COD为17 000 mg/L的条件下,当Ca2+浓度低于6 000 mg/L时,EGSB对COD去除率达93%以上;当Ca2+浓度高于6 000 mg/L时,COD去除率随运行时间明显下降,并在污泥中形成大量沉淀。静态实验结果表明,废水中低浓度Ca2+促进了厌氧颗粒污泥的产甲烷活性,但高浓度Ca2+明显抑制了其产甲烷活性,这是导致高Ca2+浓度条件下EGSB对COD去除率降低的主要原因。研究表明,颗粒污泥产甲烷活性恢复程度随Ca2+浓度增加而减弱。 相似文献