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1.
以氯化铝为混凝剂,采用混凝-超滤联用工艺,对腐殖酸(HA)模拟水样进行处理,研究在不同混凝和水质条件下,包括硫酸根离子和铝离子的摩尔比以及水样p H等,对混凝和混凝-超滤联用工艺净水效果的影响。结果表明,使用氯化铝混凝剂对HA水样进行混凝-超滤处理时,在氯化铝投加量为5 mg/L,硫酸根离子与铝离子摩尔比为30∶1,p H为7时,HA的去除效率最高。破碎剪切条件下,以HA水样为去处对象时,投加硫酸根离子对工艺运行工况无明显影响。  相似文献   

2.
针对聚硅酸硫酸铁类混凝剂的混凝性能进行研究,并以珠江广州中大码头段作为实验水样的来源,选择聚硅酸硫酸铁(PFSS)、含硼聚硅酸硫酸铁(PFSSB)和含锌聚硅酸硫酸{~(PFSSZ)三种混凝剂,通过实验研究分别探寻PFSS、PFSSB、PFSSZ在混凝效果最佳时的各金属组分与硅的最佳比例,从而为替代现有的混凝剂处理微污染的地表水提供可能性的依据。  相似文献   

3.
有机物对水体的污染,是当前水质面临的突出问题,在有机物污染中可能存在致突变物、致畸物甚至致癌物的污染.本文以理论研究为依据,针对有机污染原水的强化混凝处理,在确定最佳混凝剂并分析了影响混凝效果因素的基础上,对高效混凝沉淀工艺在实际应用中的强化效能进行试验分析.  相似文献   

4.
酸性介质对于聚硅酸铁混凝性能的影响   总被引:1,自引:0,他引:1  
对新型混凝剂聚硅酸铁(PSF)中合成原料聚硅酸(PS)进行改性,制备出盐酸,硫酸,硝酸,醋酸以及磷酸为主体酸化剂的改性聚硅酸铁混凝剂(n(Si/Fe)=1),进行混凝实验研究并对PSF的混凝机理进行初步的探讨。结果表明,PSF中的PS性质改变并未降低其混凝性能,在投药量为0.18mmol/L时,取得良好的净水效果。PSF主要依靠电中和/脱稳及吸附架桥综合作用产生净水性能。  相似文献   

5.
PAC与PDMDAAC复合混凝剂去除高浊度水中有机氯   总被引:1,自引:0,他引:1  
以聚合氯化铝(PAC)和聚二甲基二烯丙基氯化铵(PDMDAAC)为原料制备复合混凝剂,采用强化混凝的处理方法,对高浊度水体中有机氯(OCPs)以及浊度去除效果进行研究.考察了PAC-PDMDAAC复合比例、复合混凝剂投加量、水样初始浊度、慢速搅拌时间、pH值等因素对浊度和OCPs去除效果的影响,结合絮体分形维数和Zeta电位对去除效果进行验证.结果表明,复合比例对处理高浊水体中的OCPs以及浊度效果影响较大,PAC与PDMDAAC复合比例为5:1,投药量为1mL/L,慢速搅拌时间为15min时,OCPs和浊度去除率达到最佳;随着初始浊度的升高,水体中OCPs的去除率也随之增加,表明PAC-PDMDAAC复合混凝剂更适用于高浊度水中OCPs和浊度的去除;复合混凝剂与其他混凝剂相比,其最佳pH值范围较广,当pH值为4时,OCPs和浊度去除率达到最佳.利用絮体分形维数和Zeta电位两种表征手段对混凝效果进行进一步探讨,说明了实验结果的正确性.  相似文献   

6.
李辉  王毅力  孙文童 《环境科学学报》2012,32(12):2912-2920
针对聚合硫酸铁(PFS)混凝-沉淀去除腐殖酸(HA)水样的过程,通过测定典型操作因素(PFS投加量、原水pH和搅拌方式)下微絮体的zeta电位、上清液的浊度、UV254、pH值及电导率和絮体沉降体积变化,探讨了这些因素对该过程的影响.结果表明:在原水pH=6.00时,PFS混凝HA的主要机制为电中和作用,搅拌方式对PFS的最佳投加范围没有明显的影响,但单一搅拌方式下HA的去除效果更好;在原水pH=8.00时,吸附络合-卷扫絮凝成为主要的混凝机制,复合搅拌方式下PFS的最佳投加量范围大于单一搅拌方式,且前者的HA去除效果更好.整体而言,几种混凝条件下PFS最佳投药量对应的微絮体zeta电位均在-12.00mV左右;原水pH=6.00时PFS混凝-沉淀去除HA的效果比原水pH=8.00时的好,且前者形成的PFS-HA沉淀絮体体积较小,但单一搅拌方式下絮体结构的重组过程并不是影响絮体体积的主要因素.复合搅拌方式中开始阶段的高强度搅拌有助于PFS组分在HA水样中的分散而有利于其电中和作用的发挥,但对PFS的水解过程影响不大.  相似文献   

7.
研究了氯化铝、硫酸铝、聚合氯化铝(poly-aluminum chloride, PAC)3种铝盐混凝剂在腐殖酸-高岭土模拟水样中的应用,以比较3种混凝剂在该水样中的混凝效果与残留铝含量和组分之间的关系.结果表明, 3种铝盐混凝剂在试验选取的投加量下对浊度和UV254的去除率最高可达90%左右,PAC能在较高的投加量下达到较好的混凝效果;较高投加量下PAC混凝沉淀出水中残留总铝含量为0.9 mg/L左右,余铝率为-3.0%左右,均明显低于传统的铝盐混凝剂;3种混凝剂混凝处理腐殖酸-高岭土模拟水样时,残留铝均大部分以溶解性总铝的形式存在,且溶解性有机铝在总溶解性铝中所占比例较大;PAC在腐殖酸-高岭土混凝沉淀出水中残留总铝的含量下降最快,且能够有效降低出水中毒性较大的溶解性铝的含量,其混凝沉淀出水中残留总溶解性铝含量为0.6 mg/L左右.  相似文献   

8.
PFS-PDM复合混凝剂对微污染河水的强化混凝处理   总被引:3,自引:1,他引:2       下载免费PDF全文
用聚合硫酸铁(PFS)和聚二甲基二烯丙基氯化铵(PDM)制备了复合混凝剂—聚合硫酸铁-聚二甲基二烯丙基氯化铵(PFS-PDM),并对微污染的流溪河水源水进行了强化混凝处理,对比分析了复合混凝剂与PFS2种处理的混凝效果.结果表明,与单独用PFS相比,用复合混凝剂处理冬季微污染流溪河水源水时,其对浊度、UV254及藻类去除能力更强;当投加量为3mg/L(以Fe计)时,PFS-PDM复合混凝剂的去浊率、除藻率和UV254去除率,分别提高22.1%、19.5%、14.9%,表现出优良的强化混凝效果.  相似文献   

9.
采用由铝屑制备的聚合铝,其净水效果表明,当它的盐基度在64%时,处理效果最佳;它的混凝效果要优于其它铝盐混凝剂,它与助凝剂改性活化硅酸共同使用可获得非常显著的处理效果.  相似文献   

10.
混凝法在滇池蓝藻暴发期净水除藻的可行性研究   总被引:8,自引:0,他引:8  
采用精制硫酸铝为混凝剂,L93^4正交法安排滇池蓝藻暴发期混凝沉降除藻除净水工艺实验。结果表明,混凝剂种类、水样pH值对蓝藻去除率有很大影响。研究确定了混凝剂除藻最佳操作条件,为混凝法去除蓝藻的工业化提供了理论和实际操作依据。  相似文献   

11.
三种常见混凝机理为主导条件下絮体特性研究   总被引:2,自引:0,他引:2       下载免费PDF全文
以模拟低浊微污染水为原水,硫酸铝[Al2 (SO4)3]为混凝剂,考察了3种常见混凝机理(电性中和、吸附架桥和网捕卷扫)为主导条件下絮体的成长过程、二维边界分形维数(Dpf)和比表面积及其与混凝效果的相关性.结果表明:吸附架桥为主导机理下絮体最大增长速率S (0.951)最快,达到稳定后絮凝指数FI最大(3.7%),二维边界分形维数Dpf最大(1.587),絮体呈块状且絮体间出现孔状间隙,比表面积介于网捕卷扫和电性中和之间[网捕卷扫(83.646m2/g)>吸附架桥(98.808m2/g)>电性中和(116.046m2/g)];FI值、S及Dpf变化与浊度去除率相关性较好,其相关系数分别达0.979、0.982和0.963,同时比表面积大的絮体吸附容量大,有机物的去除率高.  相似文献   

12.
水中天然有机大分子对混凝影响的电动特征   总被引:9,自引:1,他引:9  
以流动电流为特征参数,研究了水处理混凝过程中,天然有机大分子对水中悬浮胶体颗粒,无机盐混凝剂及其相互作用过程所表现出的电动性质特征,探讨了HA和DA影响混凝过程电动特性的条件与机理。结果表明,HA和DA的存在大大降低了无机盐混凝剂对水中悬浮胶粒作用的电动效果,这与二对混凝效果的影响具有一致性。  相似文献   

13.
The applications of natural polymeric flocculants due to their green feature has been recently received much more attention. In this work, the combined usages of a cationic starch-based coagulant and polyaluminum chloride (PACl) were extensively evaluated for various addition sequences in the coagulation of both raw (surface water from the Jiuxiang River) and synthetic turbid water (two kaolin suspensions with different initial turbidities). Two typical cationic starch-based coagulants with different structures (St-G and St-E) were tried. In comparison to St-G, St-E and PACl used individually as well as St-G and St-E dosed after PACl, the combination of the starch-based coagulants fed before PACl showed higher turbidity removal efficiency, which featured not only less optimal doses of both inorganic and organic coagulants but also lower residual turbidity. On the basis of a detailed analysis of the particle size and its distribution in solution supernatants before and after coagulation by two starch-based coagulants and PACl, polymeric coagulants preferentially coagulate the small-sized colloids due to their distinct long-chain structures, but PACl preferentially coagulates the medium-sized ones. Thus, the medium-sized particles that were previously formed by the starch-based coagulants would be collectively and effectively removed by the subsequent addition of PACl. The addition sequence of the inorganic and organic coagulants in their combined usage is an important factor for improvement of the turbidity removal efficiency in practice.  相似文献   

14.
强化絮凝法去除水中DBP先质研究   总被引:21,自引:4,他引:21  
采用强化絮凝的方法,实验研究和探明了混合反应强度,浊度,PH值等因素对去除水中DBP先质的影响规律,进一步揭示了强化絮凝条件下除浊与除DBP先质的相互关系,求得了不同水质条件下的最佳PH值和最佳投药量。  相似文献   

15.
The effects of polyaluminum chloride (PACl) hydrolysis prior to coagulation on both the coagulation zone and coagulation performance of a kaolin suspension were investigated by a novel jar test named the “reversed coagulation test”. The tests showed that PACl hydrolysis prior to coagulation decreased the performance of charge neutralization coagulation in the case of short-time slow mixing (10 min; G = 15 sec ?1 ) and increased the optimal dosage for charge neutralization and sweep coagulation. Moreover, the hydrolysis time had insignificant effects on the size and zeta potential of PACl precipitates and the residual turbidity of the raw water. However, PACl hydrolysis prior to coagulation and the size of PACl precipitates had a negligible effect on the performance of sweep coagulation.The results imply that, in practice, preparing a PACl solution with deionized water, rather than tap water or the outlet water from a wastewater treatment unit, can significantly save PACl consumption and improve the performance of charge neutralization coagulation,while preparing the PACl solution with tap or outlet water would not affect the performance of sweep coagulation. In addition, the optimal rapid mixing intensity appears to be deter-mined by a balance between the degree of coagulant hydrolysis before contacting the primary particles and the average size of flocs in the rapid mixing period. These results provide new insights into the role of PACl hydrolysis and will be useful for improving coagulation efficiency.  相似文献   

16.
强化混凝去除微污染饮用原水中的As(III)   总被引:4,自引:1,他引:3       下载免费PDF全文
以聚合硫酸铁和聚合氯化铝为混凝剂,采用强化混凝的处理方法,对微污染饮用水原水中微量砷的去除进行了研究.考察了pH值、氧化剂用量、混凝剂投加量、砷初始浓度和原水浊度等因素对砷去除的影响.结果表明,聚合硫酸铁除砷效果好于聚合氯化铝;在pH值为6~8,微污染原水砷浓度为0.1mg/L,聚合硫酸铁投加量为0.078mmol/L时,可使滤后水中砷浓度低于0.01mg/L.  相似文献   

17.
The highly e cient inorganic polymer flocculants (IPFs) of the ferric-silica system is a new and promising coagulant. Interactions between ferric species and silica play a large part in the coagulation of suspensions. These e ects are quite distinct from those associated with polymeric or colloid silica. However, although these species are key to coagulation e ciency, they have not been comprehensively discussed. A new type of coagulant, poly-silica-ferric-chloride (PFSC), was synthesized by co-polymerization and characterized by time complexation spectroscopy and photon correlation spectroscopy. Compared with traditional ferric salt, the results indicated that PFSC had a higher molecular weight, lesser positive charge, lower Feb and higher Fec. The higher the Si/Fe ratio, the higher the silica and lower the silicac found. The PFSC with appropriate polysilica acid not only obtained better coagulation/flocculation e ciency in turbidity removal, enhanced the flocculation index (FI) and provided less residual ferric, it also lowered water treatment costs compared to traditional ferric salt. Results showed that PFSC could remove colloid particles in water by charge neutralization and sweeping, adsorption bridging mechanism.  相似文献   

18.
强化混凝消除微污染水中有机氯的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
以聚合氯化铝和聚合硫酸铁为絮凝剂,采用强化混凝的处理方法,对微污染水中有机氯(OCPS)的消除进行了研究,考察了混凝剂投加量、pH值、原水浊度、温度和凹凸棒土助凝剂等因素对OCPS消除效果的影响.结果表明,pH值在5~6,PAC投加量为14mg/L时,OCPS及浊度的去除率分别达到57.03%~74.83%和98.18%;OCPS和浊度的去除率随原水浊度的增加而增加;低温有利于OCPS去除;活性炭和改性凹凸棒土作为助凝剂对OCPs的去处率有不同程度地提高,分别投加5mg/L改性凹凸棒土和活性炭,OCPS去除率分别达到47.4%~78.2%和22.8%~79.5%,低投加量下改性凹凸棒优于活性炭;混凝对DDT去除好于HCHs;PFS去除OCPS的效果好于PAC.  相似文献   

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