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1.
不同相对分子质量的有机物对膜通量的影响   总被引:3,自引:0,他引:3       下载免费PDF全文
聂莉  董秉直 《中国环境科学》2009,29(10):1086-1092
采用截留分子量分别为10、30kDa的聚醚砜膜和100kDa的聚偏氟乙烯膜对原水进行分级处理,并采用截留分子量分别为150kDa的聚偏氟乙烯膜和0.1μm的醋酸纤维素膜对出水进行膜过滤试验,研究不同相对分子质量的有机物对膜通量的影响.结果表明,虽然相对分子质量>30kDa的大分子有机物仅为总有机物的15%,但它分别引起微滤膜的通量下降86%和超滤膜通量下降54%.混凝处理可以去除相对分子质量>100kDa的有机物,这部分有机物导致通量下降40%以上.因此,尽管混凝处理仅去除10%的有机物,但改善通量的效果显著.粉末活性炭可以去除相对分子量<30kDa的小分子有机物,这部分有机物对通量下降的贡献程度甚低.因此,尽管粉末活性炭去除76%的有机物,但改善通量的效果甚微.预处理改善通量的效果并不取决于去除有机物的多少,而是取决于所去除的有机物对通量的影响大小.  相似文献   

2.
粉末活性炭-超滤膜处理黄浦江原水的研究   总被引:15,自引:0,他引:15  
董秉直  曹达文  范瑾初 《上海环境科学》2003,22(11):731-733,737
采用粉末活性炭与超滤膜联用技术处理黄浦江原水。试验表明.投加粉末活性炭不会造成膜过滤阻力的增加。粉末活性炭的投加量越多,膜过滤阻力也越小。粉末活性炭与膜联用能有效地提高有机物的去除效果。  相似文献   

3.
以粉末活性炭和硅藻土为涂膜材料,在聚醚砜超滤膜表面形成预涂动态膜,考察了预涂动态膜对海水中有机物的去除效果和作用机制,通过比较分析直接超滤和预涂动态膜过滤海水前后膜表面亲疏水性、形貌结构、粗糙度及膜阻力分布的变化,探讨了活性炭和硅藻土预涂覆对超滤膜污染的影响.结果表明,预涂动态膜可提高超滤膜对海水中溶解有机碳(DOC)和UV_(254)的去除率,活性炭预涂动态膜对海水中DOC和UV_(254)的去除率较直接超滤分别提高11.2%和11.3%.硅藻土预涂膜主要利用超滤膜表面形成的硅藻土滤饼层强化海水中蛋白质类有机物的截留,活性炭对海水中小分子有机物的额外吸附导致海水过滤过程中活性炭预涂膜对有机物的去除效果优于硅藻土预涂膜.与直接超滤相比,预涂动态膜过滤海水后膜表面亲水性更好,膜表面粗糙度更低,膜过滤阻力也更小,活性炭预涂动态膜净化海水时膜过滤总阻力较直接超滤降低50.3%.利用涂膜材料在超滤膜表面形成的滤饼层将超滤膜与有机物进行了"隔离",避免了超滤膜与有机污染物直接接触,降低了小分子有机物在膜孔内的吸附堵塞,能够有效减缓超滤膜的不可逆污染.  相似文献   

4.
以东海原甲藻分泌的藻类有机物(AOM)为研究对象,研究粉末活性炭预沉积和预吸附两种膜前预处理手段对海水中AOM的去除作用,对比分析AOM直接超滤、预沉积和预吸附后再超滤时膜通量、膜阻力分布、膜表面亲疏水性和粗糙度的变化,探讨粉末活性炭孔隙结构、沉积量对AOM去除效果及超滤膜污染的影响.结果表明,活性炭预沉积和预吸附能够提高超滤膜对含AOM海水中DOC和UV254的去除率,预沉积对AOM的去除作用优于预吸附,介孔活性炭较微孔活性炭的预沉积效果更好,当介孔活性炭PAC2的沉积量为0.4g/L时,DOC和UV254的去除率较直接超滤分别提高了25.1%和33.6%.紫外吸收比指数(URI)分析表明,活性炭预沉积和预吸附对有机物的去除作用具有选择性,AOM中芳香族物质较脂肪族羧基类物质更易被除去.粉末活性炭预沉积下AOM超滤时的滤饼层污染阻力(Rc)和膜孔堵塞阻力(Rp)较直接超滤分别降低了39.6%和81.2%,活性炭在超滤膜表面形成的滤饼层结构将AOM与超滤膜进行了隔离,能够减缓膜污染速率,对于控制膜的不可逆污染亦具有重要作用.  相似文献   

5.
强化混凝去除黄浦江水有机物的试验研究   总被引:11,自引:0,他引:11  
强化混凝去除有机物的效果与水源的分子量分布特性有着密切的关系.由于黄浦江水中低分子量的溶解性有机物占多数,因此,强化混凝处理有机物效果有限.对于<1k分子量区间的有机物.增加混凝剂投量可有效去除紫外吸光值(UV254),但去除溶解性有机碳(DOC)的效果很差.尽管增加混凝剂投量和降低pH都能有效地去除有机物,但决定强化混凝效果的主要因素是pH,去除黄浦江水有机物的最佳pH范围为6~5.  相似文献   

6.
术研究开发中心一2(X)3,29(3)一155一158 环图均一7 本文就不同的净水处理引起的水中有机物分·子量分布的变化进行了探讨。混凝处理去除大分子有机物,粉末活性炭不仅能有效地去除小分子有机物,对大分子量的有机物也有很好的去除效果。臭氧主要氧化大分子有机物,生物预处理由于微生物新陈代谢产物的影响,没有分子量变化的规律性。根据水源有机物分子量分布和净水处理去除不同分子量有机物的特点,可达到净水处理工艺的最佳组合。图3表2参4X522(X) 303244活性炭多维电极法去除水中腐殖酸过程与宏观动力学研究/曾抗美(四川大学环境科学与工程…  相似文献   

7.
磁性离子交换树脂对原水中有机物去除效能的研究   总被引:7,自引:1,他引:6       下载免费PDF全文
采用磁性离子交换树脂(MIEX)预处理原水中有机物的中试试验结果表明,MIEX技术可有效地去除原水中的有机物,对UV254,DOC和CODMn的去除率分别稳定在82%、66%和50%,MIEX预处理可以有效强化混凝沉淀对有机物、藻细胞和浊度的去除.与常规工艺相比,在混凝剂聚合氯化铝投加量降低56%时,该工艺对UV254和CODMn的去除率分别为90%和71%,对藻细胞数和浊度的去除率分别为99%和95%.对溶解性有机物分级和分子量分布的测定表明,MIEX预处理主要去除混凝沉淀无法有效去除的小分子区间的亲水性和疏水性有机物,可以有效控制消毒副产物的产生,MIEX预处理与混凝沉淀联用工艺出水的三卤甲烷生成势(THMFP)和卤乙酸生成势(HAAFP)比原水降低了88%和87%.  相似文献   

8.
混凝处理防止膜污染的作用与机理   总被引:20,自引:2,他引:18  
通过膜过滤混凝上清液的方法 ,并比较膜进水和透过水中有机物相对分子质量分布的变化 ,探讨了混凝防止膜污染的作用和机理 .结果表明 ,相对分子质量大于 10 0 0的有机物是造成膜污染的主要因素 ,而相对分子质量小于 10 0 0的有机物对膜污染的影响较小 .尽管混凝能有效地去除相对分子质量较大的有机物 ,但混凝防止膜污染的效果与其投加量有密切的关系 .较低的混凝投加量 (2 5mg·L- 1 )防止膜污染的效果较差 ,较大的投加量 (>5 0mg·L- 1 )防止膜污染的效果较好 .UV2 54能更好地反映有机物对膜污染的影响程度 ,如何有效地去除这类有机物是防止膜污染的关键 .混凝防止膜污染的效果与去除相对分子质量大于 10 0 0的UV2 54的程度密切相关 .试验结果表明 ,混凝去除这类有机物的效果达到 5 0 %时 ,可有效地防止膜污染  相似文献   

9.
一体式粉末活性炭-微滤组合工艺的除污染效能   总被引:1,自引:1,他引:0  
研究了一体式粉末活性炭-微滤(PAC-MF)组合工艺对有机物、农药和氨氮的去除效果,并量化了粉末活性炭-微滤工艺中PAC、微生物和MF分别对去除污染物的贡献.结果表明,PAC-MF组合工艺对TOC、UV254、以及THMFP和HAAFP的平均去除率分别为73.56%、96.75%、77.64%、83%,对敌敌畏的平均去除率为95.1%,对氨氮的平均去除率可达98%.粉末活性炭-微滤工艺中,活性炭能够使膜的有机负荷降至膜直接过滤工艺的28.32%,膜表面的炭层对污染物有去除作用;活性炭在一次性高浓度的投加方式下,可以提高活性炭对氨氮的吸附作用,使对氨氮的去除率达44.5%.  相似文献   

10.
混凝对膜污染的防止作用   总被引:38,自引:6,他引:32  
研究了混凝改善膜通量和防止膜污染的效果 .结果表明 :直接过滤原水的情况下 ,反冲洗后的膜通量恢复仅为初始通量的40% ;而投加了混凝剂 4mg/L和10mg/L(以Al计 )后 ,反冲洗后的通量得到了完全的恢复 .混凝防止膜污染取决于过滤过程在膜表面形成的滤饼层的性能 .在过滤混凝液的情况下 ,混凝能在膜表面形成滤饼层 ,从而有效地防止膜污染 ,而过滤上清液的情况下 ,无法为混凝去除的中性亲水性的有机物沉积在膜表面 ,造成膜污染 .  相似文献   

11.
不同水体溶解性有机物的混凝去除特性   总被引:3,自引:1,他引:3  
采用硫酸铝、工业氯化铁、无机高分子絮凝剂(PAC)3种无机混凝剂,对广州珠江、北京密云、天津滦河不同原水进行了混凝实验,分析了不同混凝剂去除水体有机物的特性以及不同水体溶解性有机物(DOM)的内在分级特征与其混凝去除率的关系.实验结果表明,①珠江水体由于碱度低,pH较易下降,高投药浓度下此水体DOM更易被氯化铁去除;中低投药下,在南方水体中,PAC与盐类絮凝剂对去除DOM的混凝性能差别不如在北方水体中明显,表明南北方水体DOM的内在特性存在一定差异,即北方水体DOM中可混凝去除部分的有机物易发生电中和作用,带有较多负电基团,南方珠江水体DOM含带电基团的有机物相对较少,而中性有机物含量相对较高,这与进一步分级结果一致.②所有水体从混凝收敛点看,总溶解性有机碳(DOC)去除率都是工业PAC最高,显示电中和(憎水化)-沉淀(吸附)可能为这些水体DOM的主要去除机理.③从不同水体的DOC平均去除率看,珠江水体高于密云水体,它们又明显高于滦河水体.对水体DOM进一步的化学分级研究结果表明,DOC去除率越高的水体,其中的憎水中性物质(HoN)含量也越高.这表明,除了碱度、总有机碳(TOC)外,原水DOM的内在化学分级特征也是影响水体DOC混凝去除率的重要因素.  相似文献   

12.
强化混凝对二级处理出水中溶解性有机物特性的影响   总被引:3,自引:1,他引:2  
以沈阳市B污水处理厂二级处理出水为研究对象,采用FeCl3.6H2O作为混凝剂,研究了强化混凝对二级处理出水中溶解性有机物(DOM)的卤代活性和荧光特性的影响.按照DOM在XAD树脂上的吸附特性将其分为5个部分:疏水性有机酸(HPO-A)、疏水性中性有机物(HPO-N)、过渡亲水性有机酸(TPI-A)、过渡亲水性中性有机物(TPI-N)和亲水性有机物(HPI).结果表明,强化混凝(混凝剂投加量为80mg.L-1,pH=5.00)对DOC的去除率为55.3%.强化混凝对HPO-A的去除率最高,而对HPI的去除率最低.强化混凝后,HPO-N的三卤甲烷生成活性(STHMFP)上升,而其他4种DOM组分的STHMFP下降.强化混凝能够有效去除类富里酸荧光物质和具有高环数和高聚合度的稠环类芳香性荧光物质.强化混凝对DOM组分的去除率和DOM组分的荧光强度下降率的相关性不显著.  相似文献   

13.
聚合氯化铝中纳米Al13形态的混凝效应   总被引:4,自引:2,他引:4       下载免费PDF全文
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   

14.
The aim of the present work was to produce a polyaluminium ferric silicate chloride (PAFSiC) coagulant from acidic and alkaline wastewater of purifying graphite by roasting, and subsequently to evaluate coagulation efficiency of the reagent by treating surface water from the Yellow River as well as municipal wastewater in comparison with the conventional coagulant polyaluminium chloride (PAC). The PAFSiC coagulant was prepared by co-polymerization. The effects of (Al+Fe)/Si molar ratio, OH/(Al+Fe) molar ratio (i.e., value), coagulant dosage and pH value of test suspension on the coagulation behavior of FAFSiC and the stability of the PAFSiC were also examined. Results showed that PAFSiC performed more efficiently than PAC in removing turbidity, chemical oxygen demand (COD), and total phosphate (TP). The PAFSiC with a value of 2.0 and (Al+Fe)/Si ratio of 5 (PAFSiC 2.0/5) showed excellent coagulation effect for both turbidity and COD, while PAFSiC 1.0/5 was the best for TP. The optimum coagulation pH range of PAFSiC 2.0/5 was 5.0–9.0, slightly wider than that of PAC (6.0–8.0). The process can be easily incorporated into high-purity graphite production plants, thereby reducing wastewater pollution and producing a valuable coagulant.  相似文献   

15.
制药废水二级出水中溶解性有机物混凝去除特性研究   总被引:3,自引:0,他引:3  
制药废水二级出水中溶解性有机物(DOM)由于组成复杂、难去除、具有多异质性和分散性,是污水深度处理与回用的主要去除对象和关键限制因子.本论文以发酵制药废水二级出水的DOM为研究对象,采用投加聚合氯化铝(PAC)混凝剂去除DOM,考察混凝剂投加量和混凝pH值对去除效果的影响,并结合分子量分级、亲疏水性分级以及三维荧光光谱-平行因子分析方法等对DOM进行了系统表征和分析,进一步阐述混凝过程DOM的去除特征.结果表明,PAC投加量为250 mg·L~(-1)、pH=7时,混凝沉淀30 min对DOC、UV_(254)、色度和浊度的去除率分别为13.05%±0.29%、23.65%±0.75%、12.66%±1.34%、63.67%±0.89%;混凝对分子量10 kDa的组分和疏水中性(HON)组分去除效果分别为50.33%±0.98%、21.56%±0.42%,而对分子量1 kDa组分去除率较低为2.26%±0.12%;三维荧光光谱-平行因子分析将制药废水二级出水分为2个类腐殖质组分(C1、C3)和1个类蛋白组分(C2),混凝对类腐殖酸组分(C1)最大荧光强度去除率(F_(max))最高为46.22%,而亲水性的小分子和蛋白类物质混凝去除效果较差.  相似文献   

16.
以聚合氯化铝(PAC)为絮凝剂,壳聚糖(CTS)为助凝剂在Taylor-Couette反应器中进行混凝实验.采用粒子成像速度场仪(PIV)研究了不同内筒转速(水力学条件)下 CTS 助凝对PAC混凝过程中絮体形态和浊度的影响.结果表明,添加CTS后,相应的混凝效果都得到提高,但与单独使用PAC时产生的变化趋势一致,说明适宜的化学条件下,水力条件是制约混凝效果的关键因素;且添加助凝剂有助于降低混凝过程对流体力学条件的依赖性,提高混凝的稳定性.  相似文献   

17.
This study investigated the removal of dissolved organic matter(DOM) from real dyeing bio-treatment effluents(DBEs) with the use of a novel magnetic anion exchange resin(NDMP).DOMs in two typical DBEs were fractionized using DAX-8/XAD-4 resin and ultrafiltration membranes. The hydrophilic fractions and the low molecular weight(MW)(〈3 kDa) DOM fractions constituted a major portion(〉50%) of DOMs for the two effluents. The hydrophilic and low MW fractions of both effluents were the greatest contributors of specific UV254absorbance(SUVA254),and the SUVA254 of DOM fractions decreased with hydrophobicity and MW. Two DBEs exhibited acute and chronic biotoxicities. Both acute and chronic toxicities of DOM fractions increased linearly with the increase of SUVA254 value. Kinetics of dissolved organic carbon(DOC) removal via NDMP treatment was performed by comparing it with that of particle active carbon(PAC). Results indicated that the removal of DOC from DBEs via NDMP was 60%,whereas DOC removals by PAC were lower than 15%. Acidic organics could be significantly removed with the use of NDMP. DOM with large MW in DBE could be removed significantly by using the same means. Removal efficiency of NDMP for DOM decreased with the decrease of MW. Compared with PAC,NDMP could significantly reduce the acute and chronic bio-toxicities of DBEs. NaCl/NaOH mixture regenerants,with selected concentrations of 10% NaCl(m/m)/1%NaOH(m/m),could improve desorption efficiency.  相似文献   

18.
The characteristics of dissolved organic matter (DOM) and bromide ion concentration have a significant influence on the formation of disinfection by-products (DBPs). In order to identify the main DBP precursors, DOM was divided into five fractions based on molecular weight (MW), trihalomethane formation potential and haloacetic acid formation potential were determined for fractions, and the change in contents of different fractions and total DBPs during treatment processes (pre-chlorination, coagulation, sand filtration, disinfection) were studied. Moreover, the relationship between bromide concentration and DBP generation characteristics in processes was also analyzed. The results showed that the main DBP precursors were the fraction with MW < 1 kDa and fraction with MW 3−10 kDa, and the DBP''s generation ability of lower molecular weight DOM (< 10 kDa) was higher than that of higher molecular weight DOM. During different processes, pre-chlorination and disinfection had limited effect on removing organics but could alter the MW distribution, and coagulation and filtration could effectively remove organics with higher MW. For DBPs, trihalomethanes (THMs) were mainly generated in pre-chlorination and disinfection, while haloacetic acids (HAAs) were mostly generated during pre-chlorination; coagulation and sand filtration had little effect on THMs but resulted in a slight removal of HAAs. In addition, the results of ANOVA tests suggested that molecular sizes and treatment processes have significant influence on DBP formation. With increasing bromide concentration, the brominated DBPs significantly increased, but the bromine incorporation factor in the processes was basically consistent at each concentration.  相似文献   

19.
Powered activated carbon (PAC) is widely used in water treatment plants to minimize odors in drinking water. This study investigated the removal of 2-methylisoborneol (MIB) by PAC adsorption, combined with coagulation using iron as a coagulant. The adsorption and coagulation process were studied through different case scenarios of jar tests. The analysis evaluated the effect of PAC dosing in the liquid phase immediately before or after the coagulant addition. Ferric sulphate was used as the coagulant with dosages from 10 to 30 mg/L, and PAC dosages varied from 10 to 40 mg/L. The highest MIB removal efficiency (about 70%) was achieved without the coagulant addition and with the highest PAC dosage (40 mg/L). Lower MIB removal efficiencies were observed in the presence of coagulant, showing a clear interference of the iron precipitate or coagulant in the adsorption process. The degree of interference of the coagulation process in the MIB removal was proportional to the ratio of ferric hydroxide mass to the PAC mass. For both cases of PAC dosing, upstream and downstream of the coagulant injection point, the MIB removal efficiency was similar. However, MIB removal efficiency was 15% lower when compared with experiments without the coagulant application. This interference in the MIB adsorption occurs potentially because the coagulant coats the surface of the carbon and interferes with the MIB coming in contact with the carbon’s surface and pores. This constraint requires an increase of the PAC dosage to provide the same efficiency observed without coagulation.  相似文献   

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