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1.
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   

2.
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   

3.
战晓  高宝玉  刘斌  许春华  岳钦艳 《环境科学》2010,31(5):1198-1205
选用2种无机高分子混凝剂聚合氯化铁(PFC)和聚合氯化铝(PAC)处理黄河水,考察了混凝剂的投加量对浊度、UV254、DOC和高锰酸盐指数的去除效果,并结合混凝出水的Zeta电位分析其混凝机制.选择粉末活性炭与混凝联用,研究了混凝剂和吸附剂投加量以及二者的投加顺序对有机物去除效果的影响,并对混凝吸附后出水进行加氯消毒,考察水中残余氯随时间的变化.结果表明,2种混凝剂均有较高的浊度去除率(﹥90%).PAC对UV254、高锰酸盐指数和DOC的去除率分别为29.2%、26.1%和27.9%;PFC对三者的去除率分别为32.3%、23.3%和32.9%.PAC在混凝过程中,电中和作用占主导地位;PFC在混凝过程中,吸附架桥和电中和同时发挥作用.混凝-吸附联用处理黄河水样时,有机物的去除率随混凝剂和吸附剂投加量的增加而升高.先混凝后吸附工艺对UV254和DOC的去除效果优于先吸附后混凝工艺.先使用PAC混凝后吸附对UV254和DOC的去除率分别为95.2%和99.9%;对于PFC,先混凝后吸附对UV254和DOC的去除率分别为90.1%和99.9%.但是先投加粉末活性炭能提高矾花的沉降性能,且处理出水在保持持续消毒效果方面优于前者.  相似文献   

4.
混凝去除垃圾渗滤液中DOM的实验研究   总被引:1,自引:1,他引:1  
选取氯化铁(FeCl3.6H2O)为混凝剂,以经0.45μm膜和1nm膜分子切割的垃圾渗滤液为研究对象,通过混凝剂投加量和混凝pH值实验,研究了垃圾渗滤液中DOM的去除情况,并比较了两种不同分子量水平的渗滤液中DOM的混凝去除特点。研究表明,pH值是影响渗滤液DOM去除的主要因素,氯化铁在pH=5、投加量为4g/L的条件下混凝效果最佳。混凝pH值对大分子量渗滤液中DOC去除的影响较大;而两种分子量水平的渗滤液UV254的去除差异不大。  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.
典型南方水源溶解性有机物分子量分布变化及去除特性   总被引:17,自引:0,他引:17  
用超滤膜法对以东江为水源的深圳水库水体溶解性有机物(DOM)进行物理分级表征,研究了2005年3~9月原水中DOM分子量分布的连续变化特性,以及各分子量范围的DOM组分与消毒副产物三卤甲烷生成势(THMFP)之间的关系结果表明,在此原水DOM中,相对分子量小于1000的有机物所占比例最高(平均值为41.15%(以DOC计)),这说明东江原水中DOM主要以小分子量有机物为主,此分子量范围有机物所产生的THMFP在原水中所占比例均值为32.23%水处理研究表明,常规工艺和深度处理工艺对其DOC和THMFP的去除率均不高.对原水总DOC的贡献占第二位的是分子量在104~3×104之间的有机物(均值为24.07%),其对总THMFP的贡献率为29.09%,常规工艺对此分子量范围有机物去除效果很好.  相似文献   

7.
城市景观水体混凝除藻过程对氮元素协同去除特性初探   总被引:2,自引:1,他引:1  
以城市景观水体净化为目标,考察混凝除藻同时去除氮元素的特性和影响因素. 结果发现,水体内较高的DOC(溶解性有机质)含量会阻碍藻浊度的去除. 聚合氯化铝(PACl)以及PACl与硫酸铝(Alum)的复合剂(PACl+Alum)对藻浊度的去除效果均相对单独使用PACl或Alum较好,其中PACl+Alum对其他物质(如氮、DOC等)的去除效果也相对单独使用PACl或Alum更佳;在同样的最佳投药量时,低pH条件能获得更好的藻浊度去除率;对氮元素去除的进一步研究发现,DON(溶解性有机氮)的去除特征和过程与TN(总氮)非常一致,表明该水体TN的去除主体上是通过DON的去除实现的;低pH条件同样有利于氮和DOC的去除;但DOC与DON去除的不同步性,说明DOC中的DON成分和性质是非均一性的,是未来可进一步深入研究的重要方向.   相似文献   

8.
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   

9.
低温污水前置强化混凝   总被引:1,自引:0,他引:1  
刘海龙  任宇霞  张忠民 《环境科学》2018,39(5):2239-2248
研究低温对强化混凝过程的影响,合成新型复合混凝剂(Synth A),利用膜分离分级、三维荧光光谱(3DEEM)和紫外差异分析等技术研究常温、低温(2~5℃)条件下强化混凝对溶解性有机物、溶解性有机氮等的去除特征及其对后续生物处理的影响.结果表明,常温下氯化铝(AlCl_3)、聚合氯化铝(PACl)和Synth A混凝后浊度去除率和颗粒态COD、N去除率,胶态COD、N去除率高度相关;与相应溶解态指标关系不明确.混凝对溶解性有机物荧光响应值的去除率远高于溶解态COD的去除率.溶解性有机氮(DON)是除颗粒氮(PN)和胶态氮(CN)外,前置混凝分离去除总氮(TN)的主要部分.低温对强化混凝的影响主要体现在,低温抑制上述3种混凝对浊度和COD去除,且抑制程度依次为AlCl_3PAClSynth A;低温对颗粒态、胶态和溶解态COD、N的混凝去除效果产生不同程度的影响,且对颗粒态和胶态COD、N的负面影响较大.低温原水溶解性有机物荧光响应值较常温原水大幅度升高.低温混凝对荧光响应值及紫外差异吸收的影响较常温更为显著.低温条件下,Synth A对TN、DN及DON的去除率较常温略有提高,保持了对PN和CN的去除能力,投量为30 mg·L-1以上时,DON去除率约为28.5%~41.7%,而常温仅为17%~31.4%.采用前置混凝分离去除大量COD和一定量的TN,能大幅减少曝气池停留时间,稳定TN控制效果.因而冬季采用Synth A等低温适应性强的混凝剂强化前置混凝可以在一定程度上弥补生化效率降低,缓解脱氮压力,稳定处理效果.  相似文献   

10.
聚合氯化铝对水体中双酚A 的混凝特征   总被引:4,自引:1,他引:3       下载免费PDF全文
以聚合氯化铝(PAC)作为混凝剂,探讨了双酚A(BPA)在模拟水体混凝过程中的去除效果和混凝特征.结果表明,在较低TOC 浓度和浊度条件下,随着PAC 投加量的增加,BPA 的去除率呈先上升后下降的趋势,本实验条件下最优的混凝剂投加量约为BPA/PAC=1:2.6(质量比).pH 值6.0~8.0 时,混凝对BPA 有相对较好的去除效果,此时水体中铝盐多核络合物的电中和是混凝的主要作用机理.原水中的腐殖酸类有机物和浊度物质对BPA 的混凝过程有较大的影响,较高浓度的腐殖酸类物质会削弱PAC 对BPA 的混凝效果,而随着浊度的提高,BPA 的去除率呈先上升后下降的趋势.  相似文献   

11.
Raw water from the Songhua River was treated by four types of coagulants, ferric chloride(FeCl3), aluminum sulfate(Al2(SO4)3),polyaluminum chloride(PACl) and composite polyaluminum(HPAC), in order to remove dissolved organic matter(DOM). Considering the disinfection byproduct(DBP) precursor treatability, DOM was divided into five chemical fractions based on resin adsorption.Trihalomethane formation potential(THMFP) and haloacetic acid formation potential(HAAFP) were measured for each fraction. The results showed that hydrophobic acids(HoA), hydrophilic matter(HiM) and hydrophobic neutral(HoN) were the dominant fractions.Although both HoN and HoA were the main THM precursors, the contribution for THMFP changed after coagulation. Additionally,HoA and HiM were the main HAA precursors, while the contribution of HoN to HAAFP significantly increased after coagulation.HoM was more easily removed than HiM, no matter which coagulant was used, especially under enhanced coagulation conditions.DOC removal was highest for enhanced coagulation using FeCl3 while DBPFP was lowest using PACl. This could indicate that not all DOC fractions contained the precursors of DBPs. Reduction of THMFP and HAAFP by PACl under enhanced coagulation could reach51% and 59% respectively.  相似文献   

12.
Correlations between raw water characteristics and pH after enhanced coagulation to maximize dissolved organic matter (DOM) removal using four typical coagulants (FeCl3, Al2(SO4)3, polyaluminum chloride (PACl) and high performance polyaluminum chloride (HPAC)) without pH control were investigated. These correlations were analyzed on the basis of the raw water quality and the chemical and physical fractionations of DOM of thirteen Chinese source waters over three seasons. It was found that the final pH after enhanced coagulation for each of the four coagulants was influenced by the content of removable DOM (i.e. hydrophobic and higher apparent molecular weight (AMW) DOM), the alkalinity and the initial pH of raw water. A set of feed-forward semi-empirical models relating the final pH after enhanced coagulation for each of the four coagulants with the raw water characteristics were developed and optimized based on correlation analysis. The established models were preliminarily validated for prediction purposes, and it was found that the deviation between the predicted data and actual data was low. This result demonstrated the potential for the application of these models in practical operation of drinking water treatment plants.  相似文献   

13.
This study was intended to compare coagulation behavior and floc properties of two dualcoagulants polyaluminum chloride–compound bioflocculant(PAC–CBF)(PAC dose first) and compound bioflocculant–polyaluminum chloride(CBF–PAC)(CBF dose first) with those of PAC alone in low temperature drinking water treatment. Results showed that dualcoagulants could improve DOC removal efficiency from 30% up to 34%. Moreover, CBF contributed to the increase of floc size and growth rate, especially those of PAC–CBF were almost twice bigger than those of PAC. However, dual-coagulants formed looser and weaker flocs with lower breakage factors in which fractal dimension of PAC–CBF flocs was low which indicates a looser floc structure. The floc recovery ability was in the following order:PAC–CBF PAC alone CBF–PAC. The flocculation mechanism of PAC was charge neutralization and enmeshment, meanwhile the negatively charged CBF added absorption and bridging effect.  相似文献   

14.
混凝沉淀-UF工艺去除二级出水中ARGs效能研究   总被引:1,自引:0,他引:1       下载免费PDF全文
为了研究混凝沉淀-UF工艺对城市污水处理厂二级出水中ARGs(抗生素抗性基因)去除的影响,以PACl(聚合氯化铝)和PFS(聚合硫酸铁)作为混凝剂,采用qPCR(实时荧光定量聚合酶链式反应)和EEM(三维荧光光谱)等分析混凝沉淀-UF工艺对ARGs的削减及其影响因素.结果表明:① PACl、PFS投加量(分别以Al、Fe计,下同)分别为0.85、0.50 mmol/L时,与直接UF工艺相比,混凝沉淀-UF工艺对水中各类ARGs的去除量高2~3个数量级,其中PACl-UF工艺的效果更好,去除量为2.51~3.52个数量级;对水中DOC(溶解性有机碳)、富里酸类及溶解性微生物代谢产物的去除效果更好,DOC去除率由18%升至36%.②直接UF、PACl-UF、PFS-UF 3种工艺膜进、出水的线性拟合结果显示,ARGs浓度与ρ(DOC)、16S rDNA浓度均呈显著正相关.研究显示,混凝沉淀-UF工艺可以有效去除二级出水中的ARGs,且有机物、16S rDNA的去除有助于ARGs的削减.   相似文献   

15.
This research was aimed at investigating the reduction of DOM fractions and their trihalomethane formation potential (THMFP) by in-line coagulation with 0.1 μm ceramic membrane filtration. The combination of ceramic membrane filtration with a coagulation process is an alternative technology which can be applied to enhance conventional coagulation processes in the field of water treatment and drinking water production. The Ping River water (high turbidity water) was selected as the raw surface water because it is currently the main raw water source for water supply production in the urban and rural areas of Chiang Mai Province. From the investigation, the results showed that the highest percent reductions of DOC, UV-254, and THMFP (47.6%, 71.0%, and 67.4%, respectively) were achieved from in-line coagulation with ceramic membrane filtration at polyaluminum chloride dosage 40 mg/L. Resin adsorption techniques were employed to characterize the DOM in raw surface water and filtered water. The results showed that the use of a ceramic membrane with in-line coagulation was able to most efficiently reduce the hydrophobic fraction (HPOA) (68.5%), which was then followed by the hydrophilic fraction (HPIA) (49.3%). The greater mass DOC reduction of these two fractions provided the highest THMFP reductions (55.1% and 37.2%, respectively). Furthermore, the in-line coagulation with ceramic membrane filtration was able to reduce the hydrophobic (HPOB) fraction which is characterized by high reactivity toward THM formation. The percent reduction of mass DOC and THMFP of HPOB by in-line coagulation with ceramic membrane filtration was 45.9% and 48.0%, respectively.  相似文献   

16.
High performance size exclusion chromatography (HPSEC) is used in water quality research primarily to determine the molecular weight distribution of the dissolved organic matter (DOM), but by applying peak fitting to the chromatogram, this technique can also be used as a tool to model and predict DOM removal. Six low specific UV absorbance (SUVA) source waters were treated using coagulation with alum and both the source and treated water samples were analysed using HPSEC. By comparing the molecular weight profiles of the source and treated waters, it was established that several DOM components were not effectively removed by alum coagulation even after high dosage alum treatment. A peak-fitting technique was applied based on the concept of linking the character (molecular weight profile) of the recalcitrant organics in the treated water with those of the source water. This was then applied to predict DOM treatability by determining the areas of the peaks which were assigned to removable organics from the source water molecular weight profile after peak fitting, and this technique quantified the removable and non-removable organics. The prediction was compared with the actual dissolved organic carbon (DOC) removal determined from jar testing and showed good agreement, with variance between 2% and 10%. This confirmed that this prediction approach, which was originally developed for high SUVA waters, can also be applied successfully to predict DOC removal in low SUVA waters.  相似文献   

17.
Refractory dissolved organic matter (DOM) from landfill leachate treatment plant was with high dissolved organic carbon (DOC) content. An aminated polymeric adsorbent NDA-8 with tertiary amino groups and sufficient mesopore was synthesized, which exhibited high adsorption capacity to the DOM (raw water after coagulation). Resin NDA-8 performed better in the uptake of the DOM than resin DAX-8 and A100. Electrostatic attraction was considered as the decisive interaction between the adsorbent and adsorbate. Special attention was paid to the correlation between porous structure and adsorption capacity. The mesopore of NDA-8 played a crucial role during uptake of the DOM. In general, resin in chloride form performed a higher removal rate of DOC. According to the column adsorption test, total adsorption capacity of NDA-8 was calculated to 52.28 mg DOC/mL wet resin. 0.2 mol/L sodium hydroxide solution could regenerate the adsorbent efficiently.  相似文献   

18.
以聚合氯化铝(PAC)和氯化铁(FeCl3)为混凝剂,分析了双酚A(BPA)在1g/L高岭土溶液混凝过程中的特征.并借助循环错流过滤强化污染层累积的方法,评价产生滤饼层的微滤(MF)膜对BPA的截留效果.结果表明:清洁的微滤膜过滤BPA溶液在短时间内达到截留吸附饱和,之后其对BPA的吸附截留作用显著降低;混凝絮体混合液经膜过滤时产生的污染层有利于BPA的去除,且单独混凝对BPA去除率最高的混凝剂投加量下进行膜过滤时的阻力较小.PAC混凝—膜过滤后BPA去除率比单独混凝提高了34.30%;FeCl3混凝—膜过滤后BPA去除率比单独混凝提高了28.38%.初始BPA浓度对混凝-膜过滤去除率有一定影响,BPA浓度为100μg/L时,比BPA浓度为5mg/L时采用2种混凝-微滤膜过滤方式去除率均有提高.  相似文献   

19.
UF膜与混凝粉末活性炭联用处理微污染原水   总被引:24,自引:3,他引:21  
采用混凝、粉末活性炭和UF膜分离的联用技术对黄浦江原水进行试验 ,结果表明 ,混凝、粉末活性炭可有效地去除溶解性有机物 .混凝处理主要去除大分子量的有机物 ,粉末活性炭主要去除低分子量的有机物 .混凝、粉末活性炭还能有效地去除三氯甲烷生成潜能 (THMFP) ,对于低分子量的THMFP ,混凝去除效果很差 ,而粉末活性炭去除很好 .试验还表明 ,混凝、粉末活性炭还可大大降低膜的滤饼层阻力 ,当混凝剂投加量为 4mg/L时 ,膜的滤饼层阻力最小 .  相似文献   

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