共查询到18条相似文献,搜索用时 437 毫秒
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由于兰州段夏季黄河水的浊度较高,直接影响了自来水厂的正常运行,而目前水厂所用工艺无法满足高浊度水的处理要求,因此,采用自主研究开发的具有特殊结构的水旋澄清池对黄河高浊度水进行了强化处理的试验研究.研究结果表明:在多点投药混合方式下,强化水旋澄清池可提高浊度的处理效果;若在投加无机絮凝剂PAC后,再投加有机絮凝剂PAM进行复配作用,不仅可降低无机絮凝剂的用量,节约制水成本,而且提高了自来水厂的出水水质;结果也表明该水旋澄清池技术能够推广应用于黄河高浊度水的强化处理工艺中. 相似文献
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完全混合活性污泥法处理印染废水在国内已广泛应用,其中合建式曝气沉淀池占有很大比重.这种池的特点是建材耗量少,充氧效果好,动力省,由于回流污泥量大,对维持生物活性很有利.但也存在一些问题,如沉淀区不稳定,澄清效果差,严重时出现蘑菇状翻泥,直接影响处理效果,并且给运转管理带来了很 相似文献
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中温条件下,采用浓缩消化一体化反应器处理污泥,考察稳定运行阶段投配率、搅拌和容积负荷对反应器的运行效果的影响。研究结果表明,投配率在10%~20%之间,排泥的含水率有所降低,之后随着投配率的增加,排泥含水率急剧升高;投配率由10%至30%增加过程中,排泥有机物(VS)的去除率和产气量也呈上升的趋势,投配率由30%再增加时,VS的去除率和产气量急剧下降。搅拌对排泥的含水率影响较小,但能够提高VS去除率和产气量。随着进泥容积负荷的增大,反应器排泥含水率逐渐增大;随着容积负荷在一定范围内的增加, VS去除率也随之提高。 相似文献
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新型悬浮填料澄清池中填料对澄清作用的影响初探 总被引:2,自引:0,他引:2
为考察可取代传统二沉池的新型悬浮填料澄清池技术的原理及关键参数,小试试验研究了填料对新型悬浮填料澄清池固液分离过程中附着污泥形成及其絮凝性能的影响,并对填料在澄清中的作用机理进行了探讨。结果表明,当泥水界面上升至填料区后,可以形成较悬浮污泥更加致密稳定的附着污泥区,并形成孔道流,强化了对混合液中污泥颗粒的絮凝效果;填料区可以捕捉去除从悬浮污泥区中“逃逸”的微小污泥絮体,并降低出水浊度,有效地保证了出水水质的稳定性。填料的存在发挥了强大的整流作用,降低了雷诺数Re,提高了弗汝德数Fr,从而改善了污泥絮凝的水力条件,提高了澄清能力。 相似文献
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本试验采用混凝-A/O系统组合工艺处理二步法腈纶废水,该系统处理效果良好,出水水质符合排故标准,可直接排入水体。A/O系统试验装置总容积80L,水力停留时间58—70h,缺氧池与好氧池的容积比为1:3,回流比(2—3):1,COD和BOD总去除率分别约为84%和98%。 相似文献
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水解酸化-AMBBR-好氧组合工艺的启动过程研究 总被引:2,自引:0,他引:2
对现有污水处理厂进行工艺优化,提出新的脱氮组合工艺——水解酸化-AMBBR-好氧工艺,并研究该工艺的启动过程。采用单池驯化培养的方式,同时启动了水解酸化池、缺氧移动床生物膜反应器(AMBBR)和好氧池,重点就水解酸化池和AMBBR的启动进行详细介绍。结果表明,水解酸化反应器采用投泥启动,小流量进水,逐渐增大流量的方式,可以在15 d之内完成启动,出水清澈;AMBBR宜采用好氧启动,微氧运行的方式,挂膜时间短,膜的更新速度快;组合工艺串联后,在较短的时间内,COD的去除率可达到80%,NH3-N的去除率达到70%以上;启动污泥和污水回流后,填料很快适应水质水量变化,并在3~4 d内重新挂膜,出水TN平均浓度低于20 mg/L;运行的3周内,系统没有外排污泥。 相似文献
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Weng Ah Yuen 《Water environment research》2004,76(2):175-182
A generic methodology for determining the required surface area of a final clarifier is presented. Clarification and thickening requirements are integrated to form a unified procedure for final clarifier design. The new method is based on results obtained by Yuen (2002) on the solids flux theory for a secondary clarifier; it does not require the specification of recycle rate, which is computed as an output of the method. The author shows that there is a minimum required surface area (A(m)) for a final clarifier under the thickening requirement when the designed recycle rate is set at the maximum allowable value (FR)m (at the critical state). The designed surface area and the return activated sludge pumping capacity can be determined by applying a safety factor to A(m) and (FR)m, respectively. The method is shown to conform to conventional design criteria under typical design conditions. 相似文献
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剩余污泥减量化工艺条件优化研究 总被引:2,自引:1,他引:1
运用超声处理连续流活性污泥系统中不同种类的污泥,并将其回流至原系统中,研究其剩余污泥减量化效果。按正交实验设计并进行试验,确定最优工艺条件。结果表明:当声能密度为0.6 W/mL,作用时间为5 min,超声污泥为混合污泥,回流比为7∶120时,减量效果最佳。且在该条件下经一周期的运行,污泥减量效果达到96.24%,COD由进水的830 mg/L降至44 mg/L,NH4+-N和TN分别由进水的62.43 mg/L和103.19 mg/L,降解到2.31 mg/L和6.52 mg/L,达到《城镇污水处理厂污染物排放标准》(GB18918-2002)一级排放标准。 相似文献
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磁化处理对活性污泥胶体颗粒表面的zeta电位的影响 总被引:1,自引:0,他引:1
污水处理过程中,二沉池的泥水分离影响整套工艺的效果,用投加混凝剂来降低活性污泥胶体颗粒表面的zeta电位(以下简写活性污泥zeta电位),增加了运行成本.通过磁场磁化可以降低活性污泥zeta电位,达到节省药剂的目的.研究了磁感应强度、磁化时间、磁场位型以及搅拌速率对氧化沟活性污泥zeta电位的影响规律.研究表明,磁化处理能降低活性污泥zeta电位,在磁场中心磁感应强度为0.40 T左右及反应器与磁场平行静置磁化时,zeta电位降低幅度最大,平均在46.5%~51.4%. 相似文献
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Franklin R. Alvarez Glenn M. Shaul E. Radha Krishnan Daniel L. Perrin Maqsud Rahman 《Journal of the Air & Waste Management Association (1995)》2013,63(6):734-739
ABSTRACT Terpene-based cleaners are being widely used in industrial cleaning formulations because of their ability to replace suspected ozone-depleting chemicals such as 1,1,1-trichloroethane and 1,1,2-trichloro-1,2,2-trifluoroethane (CFC-113). Substitution of chlorinated solvents with ter-pene-based cleaners, however, is expected to result in increased discharges to wastewater from industrial operations. A pilot-scale study was conducted at the U.S. Environmental Protection Agency's (EPA) Test & Evaluation Facility in Cincinnati, OH, to quantify the fate of specific terpene compounds in the activated sludge wastewater treatment process. Biodegradation rates of terpenes were estimated from the difference between the influent terpene mass flow rates and the amounts volatilized to air, partitioned to waste sludge, and passed through the treatment process unchanged. Any chemical transformation of the terpene compounds studied was attributed to biodegradation. Analytical methods were developed to determine ter-pene concentrations in aqueous and gaseous media. The fate of two common terpene compounds (d-limonene and terpinolene) were evaluated in three identical pilot-scale systems: (1) a system with a high target spike range (2–10 mg/L), (2) a system with a low target spike range (0.5–2 mg/L), and (3) a control system (no spike). The study showed that the primary removal mechanism for the terpene compounds in the activated sludge process is biodegradation. Typically, greater than 90% of the mass of terpenes entering the aeration basin of the activated sludge process biodegrades to other compounds; volatilization from the reaction basin accounts for less than 10%, while loss to waste activated sludge and the secondary clarifier effluent accounts for less than 1%. 相似文献
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污泥膨胀是活性污泥工艺运行中经常遇到的最棘手的问题之一。本实验以人工合成污水为底物,采用序机式活性污泥法(SBR);研究投加无机混凝剂氯化钙控制污泥膨胀的情况,同时研究丝状菌和菌胶团的变化。研究发现,投加氯化钙后,丝状菌数量明显减少;形成较多大而密实规则的菌胶团,污泥膨胀得到控制。污泥容积指数(SVI)由最初的309.5 mL/g降到67.1 mL/g,污泥沉降性能改善。停止投加氯化钙后又运行了18周期,活性污泥没有发生再次膨胀。投加氯化钙对COD去除率没有明显影响。研究结果表明,投加氯化钙是一种有效的污泥膨胀应急控制措施。 相似文献