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991.
盐度对好氧颗粒污泥硝化过程中N2O产生量的影响   总被引:2,自引:1,他引:1  
王珊珊  梁红  高大文 《环境科学》2014,35(11):4237-4243
采用好氧SBR反应器,考察盐度在0、5、10 g·L-1条件下好氧颗粒污泥全程硝化过程中N2O产生量的变化情况以及对系统脱氮效果的影响.结果显示,随着污水中盐度增加,N2O产生量呈递增趋势.在3个盐度下(0、5、10 g·L-1),溶解态N2O产生量分别为1.21、8.99、24.81 mg·m-3,释放态N2O产生量分别为0.95、3.46、16.45 mg·m-3.在盐度为5 g·L-1和10g·L-1条件下,N2O释放速率分别为0 g·L-1时的3.6倍和17.4倍.在3种盐度条件下无论是溶解态N2O还是释放态N2O产生量在硝化过程的变化趋势均是先上升后下降,且溶解态N2O产生量大于释放态产量.另外当盐度浓度较低时(低于5 g·L-1),对NH+4-N去除效果影响较小,NH+4-N的去除率与盐度为0 g·L-1时基本相同,均在98%以上;但当盐度升至10 g·L-1后,NH+4-N的去除率降到了70%.因此,污水中盐度增加不仅影响NH+4-N的去除效率,而且增加N2O产生量.  相似文献   
992.
白云石石灰流化结晶污水除磷工艺   总被引:1,自引:0,他引:1  
实验研究了白云石石灰流化床工艺除磷的可行性.石灰一方面可以提高水体的pH值并提供充足的Ca2+、Mg2+,另一方面可作为晶种加快结晶沉淀反应,提高磷去除效率,是一种廉价高效的药剂.设计了新型气体搅动式白云石石灰流化床结晶反应器,以模拟污水厂污泥厌氧消化上清液为处理对象,实验考察了药剂投加量、停留时间和曝气量对反应器运行的影响.结果表明:药剂投加量在600~650 mg·L-1、停留时间5.0 h及曝气量50 mL·min-1的条件下,可以获得较好的磷去除效果,去除率可达87.0%.采用扫描电子显微镜、X射线衍射和傅里叶变换红外光谱对产物进行了表征,发现磷主要以磷酸铵镁(MAP)和羟基磷灰石(HAP)两种形式去除;由于反应体系碱度较高,产物中混杂大量CaCO3.  相似文献   
993.
污泥灰渣中重金属煅烧脱除规律研究及安全性评价   总被引:2,自引:1,他引:1  
污泥目前被认为是磷酸盐矿的二次资源,焚烧处理可实现污泥中磷资源的浓缩富集,但其中重金属毒性问题尚待解决.该文以污泥焚烧灰渣为研究对象,利用马弗炉进行煅烧实验,通过改变反应时间(从10 min到60 min)、温度(从900℃到1200℃)及CaCl2的添加量(以Cl计,从1.5%到8.0%)研究重金属(Pb、Zn和Cu)的去除率及在煅烧灰渣中的赋存形态.结果表明:Pb有较高的去除率,且其去除率均随温度、时间及Cl含量的升高而升高,在1200℃、Cl含量为5.0%的时候有最大值为82.4%;Zn的去除率受温度的影响较大,高温时Zn有较高的去除率,且在1100℃时有最大值为83.9%;Cu的去除率较低,而在温度为1100℃时有最大的去除率为68.2%.就煅烧灰渣中重金属的赋存形态而言,各种工况下Pb在煅烧灰渣中均以残渣态存在;Zn在煅烧灰渣中主要也是以残渣态存在;Cu在煅烧后还存在一定的酸溶态,在900℃、煅烧10min时煅烧灰渣中酸溶态可达29.2%.增加CaCl2的添加量可以促进重金属的去除,同时使煅烧底渣中的重金属更稳定.地累积指数(Igeo)评价结果显示,煅烧底渣中的这3种重金属的污染程度都降低了.  相似文献   
994.
本试验平行运行了两套A/O生物强化除磷系统,通过观测温度诱发的污泥性状及微生物群落结构的变化,探索了温度对污泥沉降性能的影响及机理.试验结果表明,温度从20℃升至25℃能够有效改善污泥的沉降性能,而从20℃降至15℃可以使污泥沉降性急剧恶化.升温和降温均可导致EPS中蛋白质含量在短期内急剧增加.高温(25℃)能够抑制丝状菌的生长,而低温(15℃)会刺激Thiothrix II型丝状菌大量增殖.SPSS相关性分析显示,丝状菌的数量变化不大时,污泥含磷量和不可挥发性固体含量对沉降性影响显著,EPS的增加不利于污泥沉降,污泥密度与污泥沉降性无相关性.聚合酶链式反应-变性梯度凝胶电泳(PCR-DGGE)分析表明,不同温度会导致不同优势菌的生长.受高温影响较大的细菌为拟杆菌门(Bacteroidetes)和变形菌门(Proteobacteria),受低温影响较大的细菌为变形菌门(Proteobacteria)、拟杆菌门(Bacteroidetes)和放线菌门(Actinobacteria).  相似文献   
995.
An alternating mesophilic and thermophilic two stage anaerobic digestion(AD) process was conducted. The temperature of the acidogenic(A) and methanogenic(M) reactors was controlled as follows: System 1(S1) mesophilic A-mesophilic M;(S2) mesophilic A-thermophilic M; and(S3)thermophilic A-mesophilic M. Initially, the AD reactor was acclimatized and inoculated with digester sludge. Food waste was added with the soluble chemical oxygen demand(SCOD) concentrations of41.4–47.0 g/L and volatile fatty acids of 2.0–3.2 g/L. Based on the results, the highest total chemical oxygen demand removal(86.6%) was recorded in S2 while S3 exhibited the highest SCOD removal(96.6%). Comparing S1 with S2, total solids removal increased by 0.5%; S3 on the other hand decreased by 0.1 % as compared to S1. However, volatile solids(VS) removal in S1, S2, and S3was 78.5%, 81.7%, and 79.2%, respectively. S2 also exhibited the highest CH4 content, yield, and production rate of 70.7%, 0.44 L CH4/g VSadded, and 1.23 L CH4/(L·day), respectively. Bacterial community structure revealed that the richness, diversity, evenness, and dominance of S2 were high except for the archaeal community. The terminal restriction fragments dendrogram also revealed that the microbial community of the acidogenic and methanogenic reactors in S2 was distinct. Therefore,S2 was the best among the systems for the operation of two-stage AD of food waste in terms of CH4production, nutrient removal, and microbial community structure.  相似文献   
996.
ABR-MBR一体化工艺节能降耗措施优化研究   总被引:3,自引:1,他引:2  
吴鹏  陆爽君  徐乐中  刘捷  沈耀良 《环境科学》2015,36(8):2934-2938
能耗高和膜污染是限制膜生物反应器(MBR)广泛应用的重要因素.为降低工艺运行能耗和延缓膜污染,以厌氧折流板反应器(ABR)-MBR工艺处理生活污水为例,对工艺结构和脱氮除磷运行条件进行优化.结果表明,通过优化ABR-MBR工艺结构,可降低43%的运行能耗,同时可保持较高的COD、NH+4-N、TN和TP去除效果,平均去除率分别为91%、85%、76%和86%.另外,添加颗粒填料可有效延缓膜污染,不过也改变了膜污染的形成过程,膜内部污染物含量显著增多,碳水化合物含量增加,而蛋白质含量减少,碳水化合物/蛋白质比明显增大.最终,增强了MBR反应器的实际应用性能.  相似文献   
997.
The 4-year drawdown of Horsetooth Reservoir, Colorado, for dam maintenance, provides a case study analog of vegetation response on sediment that might be exposed from removal of a tall dam. Early vegetation recovery on the exposed reservoir bottom was a combination of (1) vegetation colonization on bare, moist substrates typical of riparian zones and reservoir sediment of shallow dams and (2) a shift in moisture status from mesic to the xeric conditions associated with the pre-impoundment upland position of most of the drawdown zone. Plant communities changed rapidly during the first four years of exposure, but were still substantially different from the background upland plant community. Predictions from the recruitment box model about the locations of Populus deltoides subsp. monilifera (plains cottonwood) seedlings relative to the water surface were qualitatively confirmed with respect to optimum locations. However, the extreme vertical range of water surface elevations produced cottonwood seed regeneration well outside the predicted limits of drawdown rate and height above late summer stage. The establishment and survival of cottonwood at high elevations and the differences between the upland plant community and the community that had developed after four years of exposure suggest that vegetation recovery following tall dam removal will follow a trajectory very different from a simple reversal of the response to dam construction, involving not only long time scales of establishment and growth of upland vegetation, but also possibly decades of persistence of legacy vegetation established during the reservoir to upland transition.  相似文献   
998.
Color removal from dye-containing wastewater by magnesium chloride   总被引:2,自引:0,他引:2  
Color removal by MgCl(2) when treating synthetic waste containing pure dyes was studied. The color removal efficiency of MgCl(2)/Ca(OH)(2) was compared with that of Al(2)(SO(4))(3), polyaluminum chloride (PAC) and FeSO(4)/Ca(OH)(2). The mechanism of color removal by MgCl(2) was also investigated. The experimental results show that the color removal efficiency of MgCl(2) is related to the type of dye and depends on the pH of the waste and the dosage of the coagulants used. Treatment of waste containing reactive dye or dispersed dye with MgCl(2) yielded an optimum color removal ratio when the pH of the solution was equal to or above 12.0. For both the reactive and dispersed dye waste, MgCl(2)/Ca(OH)(2) was shown to be superior to MgCl(2)/NaOH, Al(2)(SO(4))(3), PAC and FeSO(4)/Ca(OH)(2) for color removal. A magnesium hydroxide precipitate formed at pH values greater than 12.0, which provided a large adsorptive surface area and a positive electrostatic surface charge, enabling it to remove the dyes through charge neutralization and an adsorptive coagulating mechanism. So, the MgCl(2)/Ca(OH)(2) system is a viable alternative to some of the more conventional forms of chemical treatment, especially for treating actual textile waste with high natural pH.  相似文献   
999.
序批式膜生物反应器同时脱氮除磷的比较研究   总被引:13,自引:1,他引:12  
对比了厌氧-好氧(AO)及厌氧-缺氧-好氧(A2O)2种运行模式序批式膜生物反应器(SBMBR)对模拟生活污水同时脱氮除磷的性能.结果表明,2种运行模式的SBMBR对有机物及氨氮的去除率分别可保持在90%和95%以上.A2O MBR具有更强的释磷能力,其SPRR30(前30min比释磷速率)比AO MBR高出47.5%;但SPUR30(前30min比吸磷速率)却比AO MBR低,这是导致前者膜出水中TP值较后者高的原因之一.2个系统内污泥均有反硝化除磷能力,A2O MBR中DPAO(反硝化聚磷菌)的比例比AO MBR提高了57%;硝酸盐为电子受体时单位电子转移所吸收的磷,前者比后者高30%.这2个因素双重作用的结果导致了A2O MBR反硝化除磷能力的提高.A2O MBR系统曝气时间减半并没有加重膜污染,反而该系统的膜污染相对较轻.膜对有机物有较好的过滤截留作用,污泥沉降性能对SBMBR出水水质影响很小.  相似文献   
1000.
A bench-scale anaerobic/anoxic/aerobic process-biological aerated filter (A^2/O-BAF) combined system was carded out to treat wastewater with lower C/N and C/P ratios. The A^2/O process was operated in a short aerobic sludge retention time (SRT) for organic pollutants and phosphorus removal, and denitrification. The subsequent BAF process was mainly used for nitrification. The BAF effluent was partially returned to anoxic zone of the A^2/O process to provide electron acceptors for denitrification and anoxic P uptake. This unique system formed an environment for reproducing the denitdfying phosphate-accumulating organisms (DPAOs). The ratio of DPAOs to phosphorus accumulating organisms (PAOs) could be maintained at 28% by optimizing the organic loads in the anaerobic zone and the nitrate loads into the anoxic zone in the A^2/O process. The aerobic phosphorus over-uptake and discharge of excess activated sludge was the main mechanism of phosphorus removal in the combined system. The aerobic SRT of the A^2/O process should meet the demands for the development of aerobic PAOs and the restraint on the nitrifiers growth, and the contact time in the aerobic zone of the A^2/O process should be longer than 30 min, which ensured efficient phosphorus removal in the combined system. The adequate BAF effluent return rates should be controlled with 1--4 mg/L nitrate nitrogen in the anoxic zone effluent of A^2/O process to achieve the optimal nitrogen and phosphorus removal efficiencies.  相似文献   
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