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21.
以温州市某大学校区内富营养化水体为研究对象,采用本地明矾石对含藻水体进行混凝除藻、除浊实验研究,分别进行投加量、搅拌强度、搅拌时间、静置时间及pH值对微藻去除效率的影响研究,以获得处理工艺的最佳条件,为恢复河流水体生态自净功能提供理论基础.试验中对投加明矾石前后,水体中浊度、总磷、氨氮和总氮进行了测定,结果表明:明矾石最佳投加量为0.35 g/L,最佳搅拌方式为200 rpm搅拌4 min;最佳静置时间为25 min;在碱性或中性水体的处理效果尤佳.  相似文献   
22.
以乌鲁木齐市某集中供热锅炉污染物减排方案为例,通过建立脱硫除尘设施综合评价指标体系,运用层次分析法确定指标权重,利用模糊综合评判法分别对两种除尘设施情况下的环境效益、经济效益以及设施能耗、物耗等指标着手,进行综合评价,最终评选出较优实施方案.评选结果表明:袋式除尘+石灰石-石膏法脱硫除尘设施方案运用于该集中供热站综合效益较好,可有效实现污染物减排,为今后燃煤锅炉环保设施的评选提供一定的参考作用.  相似文献   
23.
采用序批式生物反应器(SBR)培养好氧颗粒污泥处理模拟废水,优化好氧颗粒污泥内部好氧-兼氧-厌氧微环境,在反应器的快速启动、稳定运行阶段分别考察不同优化条件下系统的脱氮除磷性能。提出了优化污泥沉降时间、调控曝气方式等好氧污泥快速颗粒化途径,并研究排泥方式对颗粒污泥反应器稳定性的影响,通过强化脱氮除磷功能菌富集,实现氮磷同步高效去除。  相似文献   
24.
Higher concentrations of Hg can be emitted from coal pyrolysis or gasification than from coal combustion, especially elemental Hg. Highly efficient Hg removal technology from coal-derived fuel gas is thus of great importance. Based on the very excellent Hg removal ability of Pd and the high adsorption abilities of activated carbon(AC) for H2 S and Hg, a series of Pd/AC sorbents was prepared by using pore volume impregnation, and their performance in capturing Hg and H2 S from coal-derived fuel gas was investigated using a laboratory-scale fixed-bed reactor. The effects of loading amount, reaction temperature and reaction atmosphere on Hg removal from coal-derived fuel gas were studied. The sorbents were characterized by N2 adsorption, X-ray diffraction(XRD) and X-ray photoelectron spectroscopy(XPS). The results indicated that the efficiency of Hg removal increased with the increasing of Pd loading amount, but the effective utilization rate of the active component Pd decreased significantly at the same time. High temperature had a negative influence on the Hg removal. The efficiency of Hg removal in the N2-H2S-H2-CO-Hg atmosphere(simulated coal gas) was higher than that in N2-H2S-Hg and N2-Hg atmospheres, which showed that H2 and CO, with their reducing capacity, could benefit promote the removal of Hg. The XPS results suggested that there were two different ways of capturing Hg over sorbents in N2-H2S-Hg and N2-Hg atmospheres.  相似文献   
25.
Removal of phosphate from wastewater using alkaline residue   总被引:2,自引:0,他引:2  
Alkaline residue(AR) was found to be an efficient adsorbent for phosphate removal from wastewater. The kinetic and equilibrium of phosphate removal were investigated to evaluate the performance of modified alkaline residue. After treatment by NaOH(AR-NaOH), removal performance was significantly improved, while removal performance was almost completely lost after treatment by HCl(AR-HCl). The kinetics of the removal process by all adsorbents was well characterized by the pseudo second-order model. The Langmuir model exhibited the best correlation for AR-HCl, while AR was effectively described by Freundlich model. Both models were well fitted to AR-NaOH. The maximum adsorption capacities calculated from Langmuir equation were in following manner: AR-NaOH AR AR-HCl. Phosphate removal by alkaline residue was pH dependent process. Mechanisms for phosphate removal mainly involved adsorption and precipitation, varied with equilibrium pH of solution. For AR-HCl, the acid equilibrium pH( 6.0) was unfavorable for the formation of Ca-P precipitate, with adsorption as the key mechanism for phosphate removal. In contrast, for AR and ARNaOH, precipitation was the dominant mechanism for phosphate removal, due to the incrase on pH( 8.0) after phosphate removal. The results of both XRD and SEM analysis confirmed CaHPO4·2H2O formation after phosphate removal by AR and AR-NaOH.  相似文献   
26.
The nitrogen changes and the nitrogen mass balance in a free water surface flow constructed wetland (CW) using the four-year monitoring data from 2008 to 2012 were estimated. The CW was composed of six cells in series that include the first settling basin (Cell 1), aeration pond (Cell 2), deep marsh (Cell 3), shallow marsh (Cell 4), deep marsh (Cell 5) and final settling basin (Cell 6). Analysis revealed that the NH4+-N concentration decreased because of ammonification which was then followed by nitrification. The NO4+-N and NO4+-N were also further reduced by means of microbial activities and plant uptake during photosynthesis. The average nitrogen concentration at the influent was 37,819 kg/year and approximately 45% of that amount exited the CW in the effluent. The denitrification amounted to 34% of the net nitrogen input, whereas the accretion of sediment was only 7%. The biomass uptake of plants was able to retain only 1% of total nitrogen load. In order to improve the nutrient removal by plant uptake, plant coverage in four cells (i.e., Cells 1, 3, 4 and 5) could be increased.  相似文献   
27.
Understanding the efectiveness of national air pollution controls is important for control policy design to improve the future air quality in China. This study evaluated the efectiveness of major national control policies implemented recently in China through a modeling analysis. The sulfur dioxide(SO2) control policy during the 11th Five Year Plan period(2006–2010) had succeeded in reducing the national SO2emission in 2010 by 14% from its 2005 level, which correspondingly reduced ambient SO2and sulfate(SO4 2) concentrations by 13%–15% and 8%–10% respectively over east China. The nitrogen oxides(NOx) control policy during the 12th Five Year Plan period(2011–2015) targets the reduction of the national NOx emission in 2015 by 10% on the basis of 2010. The simulation results suggest that such a reduction in NOx emission will reduce the ambient nitrogen dioxide(NO2), nitrate(NO3), 1-hr maxima ozone(O3) concentrations and total nitrogen deposition by 8%, 3%–14%, 2% and 2%–4%, respectively over east China. The application of new emission standards for power plants will further reduce the NO2, NO3, 1-hr maxima O3concentrations and total nitrogen deposition by 2%–4%, 1%–6%, 0–2% and 1%–2%, respectively. Sensitivity analysis was conducted to evaluate the inter-provincial impacts of emission reduction in Beijing-Tianjin-Hebei and the Yangtze River Delta, which indicated the need to implement joint regional air pollution control.  相似文献   
28.
汉江上游金水河流域氮湿沉降   总被引:10,自引:4,他引:6  
汉江上游金水河流域是南水北调工程的重要水源涵养区,但是氮污染已成为该流域水质的主要威胁因素.该研究对汉江的金水河流域开展了为期1 a(2012-02~2013-02)的氮湿沉降观测,并利用氮输出模型估算了氮湿沉降对河流氮负荷的贡献量.结果表明雨水中总氮(DTN)的浓度在0.24~2.89 mg·L-1之间,铵态氮(NH+4-N)、硝态氮(NO-3N)及有机氮(DON)分别占42.8%、13.3%和43.9%;雨水氮浓度随降雨量增大而变小,明显受到降雨的稀释作用.流域内氮湿沉降主要来自人类活动,沉降负荷在4.97~7.00 kg·(hm2·a)-1之间,受降雨量的主要影响,上游地区的氮湿沉降负荷>下游地区>中游地区,春夏两季约占全年氮湿沉降的81%.流域氮湿沉降对河流氮负荷贡献量约为34 000~46 000 kg,只占流域氮肥贡献量的5.05%~6.78%,远小于流域内农业活动化肥氮的贡献量,不是河流氮的主要来源.  相似文献   
29.
利用介质阻挡放电(DBD)进行模拟烟气脱除NO实验,通过改变乙炔体积分数和烟气水蒸汽含量研究添加乙炔对NO脱除效率的影响.结果表明:烟气中添加乙炔强化了NO氧化作用,随着乙炔体积分数的提高,NO脱除率逐渐增加.在NO/N2/O2/C2H2/H2O体系中,水的电负性和离解反应消耗大量高能电子,降低了活性自由基的生成,NO脱除速率随之减慢;能量密度低于400 J·L-1时,相对湿度(RH)为0的情况下脱出效果最好.但随着能量密度的增加,H2O不会影响最终的NO脱除率;H2O的添加可以产生更多的·OH自由基,促进NO2向HNO3转化,使出口NO2浓度大幅度降低.  相似文献   
30.
静置/好氧/缺氧序批式反应器(SBR)脱氮除磷效果研究   总被引:5,自引:1,他引:4  
以静置段代替传统厌氧段,采用后置缺氧方式,考察了静置/好氧/缺氧序批式反应器(SBR)(R1)的生物脱氮除磷(BNR)性能,并与传统厌氧/好氧/缺氧序批式反应器(SBR)(R2)进行对比.两反应器进水乙酸钠、氨氮(NH+4-N)及磷酸盐(PO3-4-P)浓度均分别为350 mg·L-1(以COD计)、40 mg·L-1及12 mg·L-1,水力停留时间(HRT)为12 h.研究结果表明,R1长期运行中磷的去除率与R2相当,分别为92.4%和92.1%,而总氮(TN)去除率则较R2高,分别为83.5%和77.0%.R1静置段省去搅拌但仍能起到厌氧段的作用,为好氧快速摄磷奠定了基础,同时R1缺氧段发生反硝化摄磷,使出水磷降至0.91 mg·L-1.好氧段内R1发生了同步硝化-反硝化(SND),贡献了18.0%的TN去除量,R2也存在SND,但脱氮贡献率较少,仅为9.8%.R1和R2后置缺氧反硝化均以糖原驱动,反硝化速率分别为0.98、0.84 mg·g-1·h-1(以每g VSS产生的N(mg)计),出水TN分别为6.62、9.21 mg·L-1.研究表明,静置段代替传统厌氧段后,可获得更好的脱氮效果,且工艺更为简化.  相似文献   
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