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861.
溶解氧对SBR脱氮性能与脱氮方式的影响 总被引:4,自引:0,他引:4
通过设置不同溶解氧(DO)浓度(曝气时段DO浓度均值分别为2.0、1.2和0.4 mg/L),研究了SBR的脱氮性能以及脱氮方式。结果表明,低DO条件下SBR可实现良好的脱氮效果,但需延长曝气时间。运行稳定后,各反应器氨氮的去除率均达到94%以上。总氮去除率随DO水平的降低而增高,分别为67%、74%和78%。不同DO浓度下SBR的脱氮方式不尽相同,DO浓度越低,同步硝化反硝化(SND)脱氮效果越明显。DO为2.0、1.2和0.4 mg/L时,SND率分别为31.4%、48.3%和66.8%。典型周期性实验表明,DO为2.0 mg/L时,通过SND现象去除的总氮占进水总氮的比例为7.6%,通过内源反硝化去除的总氮为12.0%;DO为1.2 mg/L时,通过亚硝酸型SND现象去除的总氮为12.2%,通过内源反硝化去除的总氮为8.1%;DO为0.4 mg/L时,通过亚硝酸型SND现象去除的总氮为15.8%,通过内源反硝化去除的总氮为5.0%。 相似文献
862.
碳基材料对污水厂尾水和太湖水体中CDOM的吸附特征 总被引:1,自引:0,他引:1
采用颗粒活性炭、粉末活性炭和碳纳米管3种典型碳基材料来吸附太湖水和污水厂尾水中的有机物,考察碳基材料对水中有色可溶性有机物(CDOM)的吸附特征。基于荧光光谱和平行因子分析(PARAFAC),提取出C1(腐殖酸类)、C2(色氨酸类蛋白)和C3(酪氨酸类蛋白)3个PARAFAC荧光组分。粉末活性炭和碳纳米管具有发达的中孔孔隙结构,对水中大分子有机物具有较高的吸附容量,颗粒活性炭微孔结构发达反而不利于吸附水中腐殖酸等大分子有机物。粉末活性炭对水中有机物具有最高的吸附速率,对太湖水中荧光组分C1、C2和C3的吸附速率分别为0.278、0.358和0.359min-1,颗粒活性炭的吸附速率明显低于粉末活性炭和碳纳米管。研究结果揭示了水中复杂混合有机物的吸附特征,为吸附工艺参数的优化提供技术参考。 相似文献
863.
Yulin Han Xue Wu Jiguang Gu Jiuzhou Zhao Suzhen Huang Haiyan Yuan Jiajia Fu 《Environmental science and pollution research international》2016,23(18):17901-17909
The effect of citric acid (CA), acetic acid (Ac), and ethylene diamine tetraacetic acid (EDTA) on the photosynthetic and antioxidant properties and the accumulation of some heavy metals (HMs) of Melilotus officinalis seedling growing in Cu mine tailings for 25 days were studied. Results showed that the formation of photosynthesizing cells of M. officinalis was inhibited by EDTA at 2 mmol/kg. Photosynthetic pigment contents under EDTA of 2 mmol/kg were reduced by 26, 40, and 19 %, respectively, compared to the control. The proline contents in aboveground and underground parts increased as the level of EDTA was enhanced. CA and Ac enhanced the activities of superoxide dismutase (SOD) and peroxidase (POD) in the aboveground parts and EDTA inhibited the activity of POD in the underground parts. The addition of CA promoted significantly the growth of M. officinalis, while the biomass decreased significantly under 2 mmol/kg EDTA. Cu contents in the aboveground parts treated with 0.5 and 2.0 mmol/kg EDTA reached 175.50 and 265.17 μg/g dry weight, respectively. Ac and EDTA treatments promoted Cd to translocate from root to aboveground parts. The result indicated that M. officinalis was a tolerant species of Cu tailing and can be used to remediate Cu contaminated environment, and rationally utilization of organic acids, especially EDTA, in the phytoremediation can improve the growth and metals accumulation of M. officinalis. 相似文献
864.
The impacts of production disruption in Remanufacturing/Manufacturing (R/M) integrated supply chain on the sales and the methods of production disruption management were studied. A system dynamics model for the R/M integrated supply chain with production disruption was improved by system dynamics methodology. The numerical examples were shown to illustrate the simulation results. The impacts of different recovery times of production disruption on the sales were presented. In order to mitigate the disruption risks and ensure the sales at the needed sales ratio, the methods for setting multi-echelon inventory levels before the occurring of the production disruption and the methods for making back-up plans after the production disruption occurs were given. 相似文献
865.
太湖蓝藻暴发成因及其富营养化控制 总被引:19,自引:1,他引:19
顾岗 《环境监测管理与技术》1996,8(6):17-19
根据近年太湖水质和生物监测资料,结合近年藻类生长趋势和区域污染物人湖状况,探讨近年夏季梅梁湖蓝藻暴发原因,并提出了控制太湖富营养化措施。 相似文献
866.
基于Tenax脱附技术评价沉积物中不同碳质对菊酯类农药生物有效性的影响研究 总被引:1,自引:0,他引:1
本文选取泥炭、生物质炭、木炭和活性炭4种含碳材料,结合以经济底栖生物菲律宾蛤仔(Venerupis philippinarum)为受试生物的生物累积实验和Tenax连续萃取法,阐述不同碳质对沉积物中4种菊酯类农药生物有效性的影响,并将Tenax萃取结果与底栖生物的累积结果进行了相关分析。结果表明,碳质的添加导致沉积物中菊酯类农药的快速脱附组分(Frap)降低,极慢速脱附组分(Fv s)增大,生物有效性降低,且4种碳质对Frap的影响有所不同,然而因为菊酯类农药的理化性质,Frap的差异并不显著。Tenax 6 h和24 h的单点萃取组分与快速脱附组分相关性显著(P0.0001),基本可以代替完整的脱附动力学评价生物有效性,但是对于组成复杂,有机碳(OC)和黑炭(BC)含量高的沉积物进行研究评价时仍应注意由此产生的偏离。Tenax快速脱附组分与2种底栖生物累积结果之间具有显著的相关性(R2=0.38,P0.0001),表明在OC和BC含量不同的沉积物中,Tenax萃取技术也可以预测菊酯类农药在经济底栖生物菲律宾蛤仔体内的累积量,进而为沉积物中HOCs的环境质量和相关水产品的质量评估提供更为快捷、有效的参考依据。 相似文献
867.
Jing Gu Hongtao Yu Xie Quan Shuo Chen 《Frontiers of Environmental Science & Engineering》2017,11(6):13
The spontaneous oxidation process of pristine silicon (Si) limits its application as photocatalyst or electrode in aqueous solution or moist air. Covering a protection layer on Si surface is an effective approach to overcome this disadvantage. In this paper, α-Fe2O3 is demonstrated to be an excellent alternative as a protection material. α-Fe2O3 layer was deposited around each p-type Si micropillar (SiMP) in well-ordered array by chemical bath deposition method. The diameter of SiMP was 5 mm and the thickness of α-Fe2O3 layer was about 20 nm. The photoeletrochemical stability of SiMP/α-Fe2O3 was proved by 10 circles cyclic voltammetry testing. Compared with SiMP, its optical absorption and photocurrent density improved 2 times and 4 times, respectively, and its onset potential for hydrogen evolution moved positively about 0.4 V. These improved performances could be ascribed to the enhanced photogenerated-charge-separation efficiency deriving from built-in electric field at the interface between Si and α-Fe2O3. The above results show an effective strategy to utilize Si material as photocatalyst or electrode in aqueous solution or moist air. 相似文献
868.
Yandong Yang Liang Zhang Hedong Shao Shujun Zhang Pengchao Gu Yongzhen Peng 《Frontiers of Environmental Science & Engineering》2017,11(2):8
Conventional biological removal of nitrogen and phosphorus is usually limited due to the lack of biodegradable carbon source, therefore, new methods are needed. In this study, a new alternative consisting of enhanced biological phosphorus removal (EBPR) followed by partial nitritationanammox (PN/A), is proposed to enhance nutrients removal from municipal wastewater. Research was carried out in a laboratory-scale system of combined two sequencing batch reactors (SBRs). In SBR1, phosphorus removal was achieved under an alternating anaerobic-aerobic condition and ammonium concentration stayed the same since nitrifiers were washed out from the reactor under short sludge retention time of 2–3 d. The remaining ammonium was further treated in SBR2 where PN/A was established by inoculation. A maximum of nitrogen removal rate of 0.12 kg N?m–3?d–1 was finally achieved. During the stable period, effluent concentrations of total phosphorus and total nitrogen were 0.25 and 10.8 mg?L–1, respectively. This study suggests EBPR-PN/A process is feasible to enhance nutrients removal from municipal wastewater of low influent carbon source.
相似文献
869.
Xianyong Gu Zhenliang Liao Guangqian Zhang Jiaqiang Xie Jin Zhang 《Environmental science and pollution research international》2017,24(26):21038-21049
In order to assist and optimize the operation of a clean water diversion project for the medium-sized inland rivers in Chaohu, China, an integrated hydrodynamic and water quality model was used in this study. Sixteen diversion scenarios and five sewage interception scenarios were defined to assess the improvement of water quality parameters including ammonia nitrogen (NH3-N), total phosphorus (TP) and chemical oxygen demand (COD) under different diverted water flows, diverting times, diverting points, diverting routines and sewage interception proportions. An index of pollutant removal rate per unit diverted water flow (PRUWF) was proposed to evaluate the effect of the clean water diversion. Results show that operating conditions played important roles in water quality improvement of medium-sized inland rivers. The optimal clean water diversion was operated under the conditions of a flow rate of 5 m3/s for 48 h with an additional constructed bridge sluice. A global sensitivity analysis using the Latin Hypercube One-Factor-at-a-Time (LH-OAT) method was conducted to distinguish the contributions of various driving forces to inland river water restoration. Results show that sewage interception was more important than diverted water flow and diverting time with respect to water quality improvement, especially for COD. 相似文献
870.