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1.
围绕着中水回用过程中面临的若干关键问题,通过系统研究筛选高效混凝剂及优化混凝过程来提高污染物去除率,为中水回用提供经济合理的工艺途径。实验结果表明,与FeCl2相比,HPACS系列具有显著优越的除浊与除有机物性能。除磷性能则较为一致,可以达到90%以上的去除率。PFAC系列与FeCl3相比,除浊性能较差,取决于混凝剂中的有效成分的含量,但是具有较为优越的除有机物性能。HPAA系列具有显著优越的除浊和除有机物性能。HPFA与FeCl3系列相比,则具有较高的除磷效果,HPAA的除磷效果则相对较差。不同系列混凝剂具有不同的除浊、除有机物与除磷性能,需要结合分质供水的要求进行优化应用。  相似文献   

2.
氯化铁处理AB工艺二级出水中的磷   总被引:1,自引:1,他引:0  
铁盐混凝剂因其高电荷、安全无毒、易于控制等优点,在城市污水厂除磷方面得到了进一步的发展和应用。为了考察FeCl3除磷的作用特征,探讨除磷效率随pH值、FeCl3投加量等混凝参数的变化规律,以氯化铁(FeCl3)为除磷剂,某城市污水处理厂二级出水为实验水样,进行了实验研究。研究结果表明,水样的硬度对混凝剂除磷性能有较大影响,在最佳工艺条件———不调节水样pH值、FeCl3投加量为75 mg/L时,可将废水中的总磷含量从4.95 mg/L降至0.44 mg/L以下,处理出水可达《城镇污水处理厂污染物排放标准》(GB 18918-2002)中的一级A排放标准(GB18918-2002)(TP<0.50 mg/L)。  相似文献   

3.
采用共聚法制备聚硅酸铁(PSF)混凝剂,同时研究PSF的水解规律,并对比研究PSF与复合铝铁(PFA)的微观品质及对低温低浊水、屠宰废水及含磷模拟水的混凝性能,并初步探讨PSF除磷(或除有机物)的机理.结果表明,混凝剂混凝性能的优劣取决于其微观性质,而PSF独特的微观特征正是其具有优异混凝性能的根本原因.不同pH值对P(或有机物)与PSF之间的络合模式具有不同的影响,3种水解形态Fe(OH)2 、Fe3 及Fe(OH)3在宽泛的pH范围内(5<pH<9.5)稳定存在并基本均为定值,这些可能都是PSF在宽泛的近中性范围内及碱性范围内具有优异除磷、除有机物性能的重要原因.可以认为PSF的混凝机理是以电中和(配位)/脱稳为前提条件,以架桥为必要条件,以卷扫网捕为补充条件.  相似文献   

4.
滤布滤池强化处理城市二级出水中试研究   总被引:3,自引:1,他引:2  
采用滤布滤池对南方某城市污水处理厂二级出水进行强化处理中试研究,以达到中水回用的目的。实验选用氯化铁(FeCl3)、聚合氯化铝铁(PAFC)和聚合氯化铝(PAC)作为强化滤布滤池除磷效果的混凝剂。当不投加混凝剂时,滤布滤池对TP和COD的平均去除率为28.76%和8%,其中TP的去除效果受进水水质影响较大;当投加氯化铁、聚合氯化铝铁与聚合氯化铝强化滤布滤池时,滤布滤池对TP的平均去除率分别为63.58%、60.13%和66.94%,TP去除效果受进水水质影响较小;对SS的平均去除率分别为70.7%、64.3%和49.1%;对COD平均去除率分别为17.7%、26.3%和27.7%。滤布滤池对TN和NH3-N去除效果不稳定。  相似文献   

5.
以城市污水处理厂原水为实验水样,研究了液体FeCl3混凝剂中亚铁含量对其混凝效果的影响。结果表明,液体FeCl3混凝剂中亚铁的含量与其对污水中总磷和COD的去除效果呈非线性相关性,当FeCl3中亚铁含量为25%时,16.0 mg/L的投加量即可使上清液COD降至195 mg/L,去除率达56.7%,总磷降至1.7 mg/L,去除率达70.7%;当FeCl3中亚铁含量继续降低至0.4%时,COD、总磷的去除率仅提高1.1%和1.3%。因此从性价比来讲,FeCl3混凝剂用于污水厂原水混凝时,可适当放宽产品质量标准中亚铁含量限值的规定,有利于降低氯化铁混凝剂的生产成本。  相似文献   

6.
水厂废水的综合处理与回用是我国供水行业的新趋势和节水目标所在,采用强化混凝技术进行水厂排泥废水的深度处理。通过混凝剂筛选实验和有机物表征确定最佳混凝剂为高效聚合铝(HPAC),适宜投加量为650 mg/L。当混凝剂HPAC投加量为650 mg/L时,对COD、TOC、浊度和色度的去除率分别为82.5%、89.8%、95%和92.5%,相应的出水值分别为58 mg/L、8.46 mg/L、2.35 NTU、13度,COD满足《污水综合排放标准》(GB 8978-1996)的要求(COD≤100 mg/L),同时实验结果显示聚合氯化铝(PAC)、HPAC、三氯化铁(FeCl3)主要去除分子量处于>1 300 Da范围的有机物,对分子量处于744~1 300 Da之间的有机物去除有限。  相似文献   

7.
聚合氯化铝絮凝剂深度除磷实验研究   总被引:8,自引:0,他引:8  
通过混凝实验考察了聚合氯化铝絮凝剂(PAC)除磷作用,研究探讨了聚二甲基二烯丙基氯化铵(PDADMAC),赤泥与聚合氯化铝的协同除磷性能.研究表明,PAC具有良好的除磷效果,对模拟废水磷的去除率达94.6%,对实际污水总磷去除率达96.6%,浊度去除率达93.8%.赤泥能显著提高PAC的除磷效果,但PDADMAC没有明显作用.  相似文献   

8.
A-A2/O工艺是预缺氧/厌氧/缺氧/好氧组成的生物脱氮除磷工艺,广州市某污水处理厂采用该工艺处理城市污水,具有同时去除有机物、脱氮除磷能力,但是TN去除率较低。分析了其TN去除率低的原因,并提出相应措施。该水厂针对本厂水质特征以及影响工艺脱氮性能的主要因素,优化了工艺控制参数,提高了TN去除率和TN达标保证率。  相似文献   

9.
A-A2/O工艺是预缺氧/厌氧/缺氧/好氧组成的生物脱氮除磷工艺,广州市某污水处理厂采用该工艺处理城市污水,具有同时去除有机物、脱氮除磷能力,但是TN去除率较低。分析了其TN去除率低的原因,并提出相应措施。该水厂针对本厂水质特征以及影响工艺脱氮性能的主要因素,优化了工艺控制参数,提高了TN去除率和TN达标保证率。  相似文献   

10.
以城市污水处理厂二级出水为研究对象,通过烧杯实验,确定了以三氯化铁(FeCl3)和聚合氯化铝(PAC)为混凝剂时两种混凝剂的最佳投加量,在此基础上采用XAD树脂分离技术和超滤膜法对水中溶解性有机物(DOM)进行分级表征,研究了混凝前后水中DOM的亲疏水特性、分子量分布规律以及比紫外吸收值(SUVA)和E4/E6(A465nm/A665nm)的变化.结果表明,当FeCl3和PAC投加量分别达到30 mg/L和60 mg/L时,可以使出水水质满足《城镇污水处理厂污染物排放标准》(GB18918-2002)中的一级A标准;FeCl3对含碳碳不饱和双键及芳香环的有机物的去除效果优于PAC;FeCl3对小分子有机物的去除效率更高,而PAC对分子量>100 000的大分子有机物的去除效果优于FeC13;混凝处理对疏水性有机物的去除效果优于对亲水性有机物的去除效果,同时其对酸性物质的去除效率高于对非酸性物质的去除效率.  相似文献   

11.
Relatively "old" (stabilized) landfill leachates are a special category of wastewaters, which are difficult to treat further, mainly due to their bio-refractory organic content (humic substances). In this study, coagulation-flocculation was examined as post-treatment method for the biologically pre-treated stabilized leachates. The purpose was to examine the coagulation performance of alternative coagulant agents, i.e. the composite coagulant polyaluminium silicate chloride. Composite coagulants with different Al to Si molar ratio and different preparation methods were tested. Their efficiency was evaluated by monitoring from turbidity and phosphate content, other parameters strongly correlated with the presence of organic matter, such as UV absorbance at 254nm, COD and colour. The results suggest that the silica-based coagulants exhibit better coagulation performance, than the relevant conventional coagulant (alum) or simple pre-polymerized coagulants (PACl). Polyaluminium silicate chloride has greater tolerance against pH variation than alum or PACl, whereas this novel coagulant works better at pH values between 7 and 9. Coagulation-flocculation has proved to be an efficient post-treatment method for the biologically pre-treated leachates, promoting the removal of the refractory humic substances, while the treatment efficiency of coagulation can be improved by the application of the new coagulant agent.  相似文献   

12.
废石粉渣制备混凝剂及其除浊净水效果研究   总被引:3,自引:0,他引:3  
利用废石粉渣制备无机混凝剂,并研究所得初产品对硅藻土悬浮液和受污湖水样品进行处理的适宜操作条件以及除浊净水效果,结果表明,利用某些废石粉渣制备的混凝剂有较好效果,但制备工艺有待改善。  相似文献   

13.
针对北京某水库水在冬季呈现低温低浊特性,以此为原水的某水厂在该期间常会出现出水余铝超标现象的问题,通过烧杯实验研究不同投药量下聚合氯化铝(PAC)以及它与三氯化铁(FeCl3)不同复配比形成混凝剂对冬季北京某水库水的处理效果。结果表明,复配药剂存在最佳的Fe/Al摩尔复配比为1/5,此时余铝、有机物去除效果较其他配比混凝剂高。在此配比下,当PAC投药量为0.03 mmol/L时,水中残余铝量取得最低值0.0063 mg/L。相同投药量复配药剂的浊度去除效果比单独使用PAC的浊度去除效果略弱。当投药量为0.06 mmol/L时,Fe/Al摩尔比为1/5的复配混凝剂,能使浊度降至0.4 NTU左右。此外,复配药剂的投药量小,投药范围更宽,易于实际投药操作;同时复配药剂还适于常温及偏中性水源水的处理。规模为5 m3/h中试实验也证明,采用铁铝复配混凝剂连续运行,可获得良好的浊度、余铝去除效果。  相似文献   

14.
以向地表水中投加的隐孢子虫微球和贾第鞭毛虫微球为对象,研究通过对给水混凝工艺对其的去除效果进行比较,着重考察了不同混凝剂种类、投加量及水样pH值对去除效果的影响.结果表明,混凝工艺可较为有效地去除地表水中的两虫微球,去除率最高可达4 lg.相比常规的金属盐类混凝剂,高分子的PAC、PAFC混凝剂对两虫微球的混凝去除率更...  相似文献   

15.
用聚二甲基二烯丙基氯化铵(PDM)、聚合氯化铝(PAC)按照质量比1%制备了复配混凝剂,研究了其理化特性及原水污染物去除效果。利用Al-Ferron逐时络合比色法研究了复配混凝剂的铝(Ⅲ)形态分布,结果表明,Ala、Alb和Alc分别占12.62%、16.02%和71.36%。复配混凝剂Zeta电位平均值为41.6 mV。红外吸收光谱分析表明复配混凝剂的羟基缔合程度比PAC要高。扫描电镜结果表明,固体复配混凝剂表面较为粗糙、结构疏松。相同投加量时,复配混凝剂对江河水、水库水的浊度、CODMn、UV254的去除效率均优于PAC。实验利用针杆藻人工模拟高藻原水,当投加PDM:PAC质量比10%的复配混凝剂10 mg/L时,复配混凝剂对藻类的去除率为80.5%。  相似文献   

16.
Yan M  Wang D  Yu J  Ni J  Edwards M  Qu J 《Chemosphere》2008,71(9):1665-1673
Enhanced coagulation is considered to be among the best available techniques (BAT) for disinfection by-product (DBP) precursor removal in water treatment. Improving existing understanding requires further consideration of nuances of chemical speciation relative to source water chemistry. In this paper, the effect of alkalinity/pH and speciation on inorganic polymer flocculants, polyaluminum chlorides (PACls) for enhanced particle and natural organic matter (NOM) removal was investigated. Three kinds of well-characterized typical source waters in China with low, moderate, and high alkalinity were selected. Performance of coagulants is controlled not only by preformed species but also by those formed in situ. At neutral and basic pH values, PACls with higher basicity (ratio of OH(-)/Al), which have more stable preformed Alb (the rapid reacted species as in ferron assay), are more efficient for turbidity and NOM removal. At slightly acidic pH, PACls with lower basicity are more efficient since more Alb can be formed in situ. Optimal NOM removal was achieved at pH 5.5-6.5 for all PACls. Basicity, speciation, and dosage of coagulant should be optimized based on raw water alkalinity to enhance the removal efficiency of NOM.  相似文献   

17.
Effect of Al(III) speciation on coagulation of highly turbid water   总被引:2,自引:0,他引:2  
Lin JL  Huang C  Pan JR  Wang D 《Chemosphere》2008,72(2):189-196
In Taiwan, the turbidity of raw water for fresh water treatments can sometimes reach as high as 40 000 NTU due to intensive rainfall, especially in typhoon seasons. In response, water works often apply large quantities of coagulants such as polyaluminium chloride (PACl). In this study, simulated and natural highly turbid water was coagulated with two PACls, a commercial product (PACl-1) and a laboratory product (PACl-E). The Al species distributions of PACl-1 and PACl-E under various pH conditions were determined, and the corresponding coagulation efficiency was evaluated. The PACl-E has a wider range of operational pH, while the efficiency of PACl-1 peaks at around neutral pH. For simulated water up to 5000 NTU, the PACl-E was superior to PACl-1 at low dosage and in the pH range studied. Similar results were discovered with natural water, except that when the turbidity was extremely high, the coagulation efficiency of PACl-E decreased significantly due to the presence of large amounts of organic matter. The coagulation of PACl-E was closely related to the content of polycationic aluminium (Al13) while that of PACl-1 was dictated by the amount of Alc. The sludge from PACl-E coagulation had better dewaterability when the optimum dosage was applied. The experimental results suggest that for natural water up to 5000 NTU, PACl containing high Al13 species is recommended for coagulation. In cases when the water contains high organic matter, efficient coagulation depends upon enmeshment by amorphous aluminium hydroxide.  相似文献   

18.
陶瓷印花废水处理的混凝剂及工艺条件   总被引:1,自引:1,他引:0  
采用混凝剂聚合氯化铝(PAC)、聚丙烯酰胺(PAM)、聚合硫酸铁(PFS)对陶瓷印花废水进行混凝沉降处理,监测水样的吸光度、浊度、悬浮物,以脱色率、浊度去除率、悬浮物去除率评价混凝处理的效果。结果表明:PAC是陶瓷印花废水沉降处理的理想混凝剂;水样的吸光度、浊度、悬浮物随混凝剂用量增大和沉降时间延长而呈降低趋势,而脱色率、浊度去除率、悬浮物去除率随混凝剂和沉降时间的增大呈增大的趋势;PAC投加量为20mg/L,沉降时间约为24h,水样脱色率达到90.0%,而当PAC投加量达到100mg/L,沉降时间约为4h,陶瓷印花水的脱色率可达到96.0%。证明了药剂用量的增加与沉降时间的延长对混凝过程具有增效作用。  相似文献   

19.
Chen Z  Fan B  Peng X  Zhang Z  Fan J  Luan Z 《Chemosphere》2006,64(6):912-918
Polyaluminum coagulant with a content of 76.8% of Al30 (PACAl30) was prepared. Its coagulation behaviors were compared with high Al13 content polyaluminum coagulant (PACAl13) and AlCl3. The species stability was studied using Al-Ferron method and 27Al NMR. The coagulation performances were investigated by studying the rate of flocs development, the turbidity removal efficiency and charge neutralization capacity under fixed pH conditions and uncontrolled pH conditions. The effect of pH on coagulation was also studied. The results show that PACAl30 are stable for using as coagulant. PACAl30 causes less pH depression than PACAl13. The charge neutralization capacity of PACAl30 is slightly lower than that of PACAl13 at pH6.8 and higher at pH 6.5. PACAl30 achieves the most effective turbidity removal in these three coagulants. And it acts effectively within a much broader dosage range and a wider pH range when compared with PACAl13. PACAl30 achieves the highest turbidity removal due to its strong flocs formation capacity. The results verify that Al30 is another highly active coagulation/flocculation species for turbidity removal.  相似文献   

20.
A new inorganic-organic hybrid material zirconium-glycine complex (ZGC) was firstly used as a coagulant in a coagulation process to treat Pearl River raw water. Its coagulation performance was compared with commonly used aluminum (Al) coagulants such as aluminum sulfate (Al2(SO4)3) and polyaluminum chloride (PAC), in terms of water quality parameters and floc properties. ZGC coagulation achieved higher removal of turbidity (93.8 %) than other traditional coagulants. Charge neutralization was proven to act as a dominant mechanism during ZGC coagulation. The aggregated flocs with ZGC showed the fastest growth rate and good recovery ability compared with the other coagulants and achieved the largest floc size within 5 min. The ZGC coagulant can decrease the hydraulic retention time and increase removal efficiency.  相似文献   

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