共查询到19条相似文献,搜索用时 125 毫秒
1.
研究了不同形态硅酸对聚合铝混凝过程的影响作用 .实验结果表明经预制形成的具有不同形态分布组成的硅酸与聚合铝 ,在投加后相互间发生了十分复杂的物理化学作用 ,并受溶液pH值的影响 ,从而最终决定了混凝效果 .反应过程中所生成的形态产物及其物化特征 ,很大程度上取决于聚合铝碱化度以及所投加的Si Al比 .其中碱化度越高 ,最终产物所带电荷越高 .而不同硅酸所起影响作用分别取决于聚合程度 ,在与聚合铝反应过程中表现出一定的规律性 .单体硅酸与单体铝迅速发生较强的络合作用 ,抑制了多聚水解铝阳离子的形成 .聚合硅酸则倾向于与聚合铝形态相互作用形成一定的胶状化合物 ,从而在溶液中稳定存在 .对于胶体硅酸 ,在聚合铝作用下迅速凝聚形成更大的聚集体 ,在颗粒物间架桥形成粗大的絮体 .所得结果对混凝机理的解释与复合混凝剂的发展提供了一定的参考作用 相似文献
2.
3.
4.
研究了工业废水中Cr(Ⅵ)在不同颗粒物浓度影响下对不同铝形态混凝剂的影响过程,通过考察浊度去除率以及出水余铝、余铬浓度甄别了混凝效率,并利用混凝过程中剩余p H值、Zeta电位以及絮体性质揭示水中Cr(Ⅵ)在不同浊度下的混凝机制.结果表明,在低浊度条件下,Cr(Ⅵ)对高聚合态Alb的混凝过程具有较大影响,而对低聚合态Ala无明显影响;在高浊度条件下,水中浊度较高时颗粒物会吸附部分Cr(Ⅵ)从而降低其与Alb之间的作用.Alb在混凝中主要发挥电中和作用,其对颗粒的脱稳和絮体的再生具有重要的作用,Ala水解形成的部分Alc在混凝中主要发挥架桥网捕作用,其对絮体的生产和强度因子具有重要作用.同时Cr(Ⅵ)的存在会增强Al13絮体的强度因子,但其消耗了部分正电荷会导致絮体恢复因子降低. 相似文献
5.
研究了模拟配水中硫酸铝和氯化铝2种传统铝凝聚剂和2种聚合氯化铝(PAC)絮凝剂在混凝过程中的形态转化规律以及原水浊度和溶解性有机碳(DOC)对残余铝形态分布的影响.结果表明,在低浊体系中,投加铝系混凝剂是导致出水余铝升高的主要原因;但在高浊体系中,铝系混凝剂,尤其是聚合铝具有一定的除铝功能;混凝沉淀过程中传统铝凝聚剂的残余铝总量明显高于聚合铝混凝剂的残余铝总量;聚合铝混凝剂的残余铝全部为悬浮态铝,传统铝混凝剂的残余铝中还存在着胶体态铝和溶解态铝.原水浊度和DOC浓度增加,会提高残余铝中胶体态铝和溶解态铝的含量. 相似文献
6.
聚合氯化铁-聚(环氧氯丙烷-二甲胺)复合絮凝剂在模拟水处理中的混凝特性研究 总被引:1,自引:0,他引:1
制备出一系列具有不同聚合氯化铁(PFC)的碱化度(B)、不同聚(环氧氯丙烷-二甲胺)[P(EPI-DMA)]质量分数[ω(E)]和黏度(η)的PFC-P(EPI-DMA)复合混凝剂,并将其用于模拟染料废水和模拟天然地表水的絮凝脱色处理,对比探讨了ω(E)、η和B对PFC-P(EPI-DMA)中铁的形态分布及其混凝效果的影响,以及混凝作用机制.结果表明,复合絮凝剂中铁的有效形态含量随ω(E)的增大而不断降低;η=850 mPa.s时,复合混凝剂中铁的有效形态含量最高;随B值的增大,Feb含量先增大后减少,而Fec含量逐渐增大.一定程度上使用预水解程度较低、有机成分黏度较大的PFC-P(EPI-DMA)有利于混凝效果的提高,复合混凝剂中有机成分质量分数对混凝效果的影响则与处理对象有关.在模拟水处理中,复合混凝剂依靠电性中和及架桥吸附能力发挥混凝特性. 相似文献
7.
8.
9.
IPF-PACl混凝动力学研究:形态组成的重要性 总被引:6,自引:1,他引:6
应用一种新近发展起来的基于浊度脉动测定的混凝监测技术结合经改进的传统混凝烧杯试验方法 ,对具有不同形态组成的聚合铝 (PACl)产品的混凝性能进行了细致地研究 .结果表明 :聚合铝不同形态在混凝过程中起着十分重要的影响作用 .混凝反应途径随预制后产品形态分布的不同而得到改变 .其中 ,A1b 是起电中和作用的主要形态 .PACl中A1b 的含量越高 ,其电中和能力越强 ,因此大大增加了颗粒间的碰撞效率 .然而 ,PAC2 5则表现出更为优越的混凝性能 ,在于其中A1c 含量的不同而引发“静电簇”混凝效应 ,导致混凝的快速动力学过程 相似文献
10.
11.
采用聚丙烯酰胺凝胶柱层析法分离纯化聚合氯化铝(PAC)中的Al13形态,用透光率脉动检测技术并结合絮凝效能和Zeta电位测定结果,对纳米Al13形态以及PAC、AlCl3絮凝过程中絮集物形成和增长的变化差异作了对比性研究.结果表明,混凝剂的不同铝形态分布在混凝过程中起着十分重要的作用.Al13形态是在絮凝过程中起电中和作用的主要形态,可以大大增加颗粒间的有效碰撞率,其凝聚速度和所形成絮集物颗粒大小在实验条件下呈现最大值.而对于PAC,其Alc含量较高,可起到吸附架桥和网捕卷扫作用,所以在低投加量表现出较快的絮体增长速率. 相似文献
12.
Nano-Al13 was separated and purified by four methods to investigate its characteristic, and was analyzed by Al-Ferron timed complexation spectrophotometer,27 Al-NMR (nuclear magnetic resonance), and transmission electron microscopy (TEM). Coagulation efficiency of nano-Al13, polyaluminum chloride (PAC), and AlCl3 in synthetic water were also investigated by jar test. The dynamic process and aggregation state of kaolin suspensions coagulating with nano-Al13, PAC, and AlCl3 were also investigated. The experimental results indicated that the efficiency of gel column chromatography method was the highest for separating PAC solution with low Al concentration. Ethanol and acetone method was simple and could separated PAC solution with different Al concentrations, while silicon alkylation white block column chromatography method could separate PAC solution only with low Al concentration. The SO42−/Ba2+ displacement method could separate PAC solution with high Al concentration, but extra inorganic cation and anion could be introduced into the solution during the separation. The coagulation efficiency and dynamic experimental results showed that nano- Al13 with a high positive-charged species was the main species of electric neutralization in coagulation process, and it could reduce the turbidity and increase the effective particles collision rate efficiently in coagulation process. Its coagulation speed and the particle size of coagulant formed were of greatest value in this study. 相似文献
13.
In order to evaluate the influence of particle size and particle concentration on the coagulation process, two kinds of particle suspensions, nanoparticles and microparticles,were employed to investigate the effect of particle size on coagulation mechanisms with varying coagulation parameters. Results showed that it is easier for nanoparticles to cause self-aggregation because of Brownian motion, while interception and sedimentation are the mainly physical processes affecting particle transport for microparticles, so they are more stable and disperse more easily. The particle size distribution and particle concentration had distinct influence on the coagulation mechanisms. Under neutral conditions, as the amount of coagulant increased, the coagulation mechanism for nanoparticles changed from charge neutralization to sweep flocculation and the nanoparticles became destabilized, re-stabilized and again destabilized. For microparticles, although the coagulation mechanism was the same as that of nanoparticles, the increased rate of aluminum hydroxide precipitation exceeded the adsorption of incipiently formed soluble alum species, resulting in the disappearance of the re-stabilization zone. Under acidic conditions, Brownian motion dominates for nanoparticles at low particle concentrations, while sweep flocculation is predominant at high particle concentrations. As for microparticles, charge neutralization and sweep flocculation are the mechanisms for low and high particle concentrations respectively.Under alkaline condition, although the mechanisms for both nano-and microparticles are the same, the morphology of flocs and the kinetics of floc formation are different. At low particle concentrations, nanoparticles have larger growth rate and final size of flocs, while at high particle concentrations, nanoparticles have higher fractal dimension and recovery factors. 相似文献
14.
15.
16.
17.
以地表水中丰度较高的聚乙烯(PE)微塑料作为研究对象,开展吸附和混凝试验,在解析PE微塑料对水中有机物吸附能力的基础上,用氙灯对PE微塑料进行光老化以模拟微塑料在自然条件下的风化行为,深入研究PE微塑料风化行为对混凝过程的影响。结果表明:粒度为50~200目的PE微塑料对有机物的吸附量为310~350 mg/g(以碳计),不存在显著的吸附性能差异。在混凝过程中,相较于未添加PE微塑料的情况,添加未风化的PE微塑料会降低有机物去除率,而添加风化PE微塑料则能明显提升有机物去除率。同时,混凝过程对风化PE微塑料的去除率高于未风化PE微塑料,表明PE微塑料的风化行为有利于其在混凝过程中被去除。根据混凝过程中絮体特征可知,PE微塑料的风化行为对形成絮体的尺寸影响极小,但能显著提高絮体的生长速度。
相似文献18.
The results of studies carried out using a computer programme simulating the coagulation of suspensions containing spherical sol particles and spherical coagulant particles are reported.The influence of the degree of dispersion of the system on the coagulation reaction kinetics was investigated. The obtained results of kinetic studies were tested in the light of classical Müller–Smoluchowski equations. The influence of the physical properties of the coagulant,such as size, density and mass, on the coagulation rate was tested. It was found that within the range described in this paper, the rate of the simulated coagulation process fulfils both the kinetic equation of a first-order reaction, and the kinetic equation of a second-order reaction.Within the tested range, a significant influence of the mass and size of the coagulant on the coagulation rate was ascertained. The kinetic Müller–Smoluchowski dependence is fulfilled in a broader range of the degree of dispersion, when the coagulant particle mass and the sol particle mass are equal. When the particle mass increases with an increase in the particle radius, the coagulation rate increases faster that it would result from the Müller's dependence. 相似文献
19.
Microplastics have caused great concern worldwide recently due to their ubiquitous presence within the marine environment. Up to now, most attention has been paid to their sources, distributions, measurement methods, and especially their eco-toxicological effects. With microplastics being increasingly detected in freshwater, it is urgently necessary to evaluate their behaviors during coagulation and ultrafiltration (UF) processes. Herein, the removal behavior of polyethylene (PE), which is easily suspended in water and is the main component of microplastics, was investigated with commonly used Fe-based salts. Results showed that although higher removal efficiency was induced for smaller PE particles, low PE removal efficiency (below 15%) was observed using the traditional coagulation process, and was little influenced by water characteristics. In comparison to solution pH, PAM addition played a more important role in increasing the removal efficiency, especially anionic PAM at high dosage (with efficiency up to 90.9%). The main reason was ascribed to the dense floc formation and high adsorption ability because of the positively charged Fe-based flocs under neutral conditions. For ultrafiltration, although PE particles could be completely rejected, slight membrane fouling was caused owing to their large particle size. The membrane flux decreased after coagulation; however, the membrane fouling was less severe than that induced by flocs alone due to the heterogeneous nature of the cake layer caused by PE, even at high dosages of Fe-based salts. Based on the behavior exhibited during coagulation and ultrafiltration, we believe these findings will have potential application in drinking water treatment. 相似文献