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1.
XAD-8 resin isolation of organic matter in water was used to divide organic matter into the hydrophobic and hydrophilic fractions. A pilot plant was used to investigate the change in both fractions during conventional and advanced treatment processes. The treatment of hydrophobic organics (HPO), rather than hydrophilic organicas (HPI), should carry greater emphasis due to HPO’s higher trihalomethane formation potential (THMFP) and haloacetic acid formation potential (HAAFP). The removal of hydrophobic matter and its transmission into hydrophilic matter reduced ultimate DBP yield during the disinfection process. The results showed that sand filtration, ozonation, and biological activated carbon (BAC) filtration had distinct influences on the removal of both organic fractions. Additionally, the combination of processes changed the organic fraction proportions present during treatment. The use of ozonation and BAC maximized organic matter removal e ciency, especially for the hydrophobic fraction. In sum, the combination of pre-ozonation, conventional treatment, and O3-BAC removed 48% of dissolved organic carbon (DOC), 60% of HPO, 30% of HPI, 63% of THMFP, and 85% of HAAFP. The use of conventional treatment and O3-BAC without pre-ozonation had a comparable performance, removing 51% of DOC, 56% of HPO, 45% of HPI, 61% of THMFP, and 72% of HAAFP. The e ectiveness of this analysis method indicated that resin isolation and fractionation should be standardized as an applicable test to help assess water treatment process e ciency.  相似文献   

2.
SPG膜表面润湿性对膜污染和化学耐受性的影响   总被引:2,自引:2,他引:0  
张静  肖太民  张晶  曹丽亚  杜亚威  刘春  张磊 《环境科学》2015,36(5):1694-1699
SPG膜微气泡曝气系统可应用于废水好氧处理,SPG膜污染以及其对化学清洗的耐受性是影响其应用的重要因素.本研究在采用在线化学清洗的微气泡曝气生物膜反应器中,考察了SPG膜表面性质对膜污染及化学耐受性的影响.结果表明,在长期运行过程中,SPG膜表面润湿性对膜污染和化学耐受性具有明显影响.膜表面污染层主要是有机污染,而疏水性膜抗有机污染能力较强.使用在线化学清洗时,碱性次氯酸钠溶液对亲水性膜腐蚀严重,膜孔径和孔隙率显著增大.疏水性膜抗碱性次氯酸钠溶液化学腐蚀能力较强,膜孔结构仅有轻微改变,但是疏水性膜表面疏水官能团易被氧化,使得膜表面润湿性下降.同时,疏水性膜在氧传质、污染物去除和降低能耗等方面具有优势.因此,疏水性SPG膜适用于微气泡曝气废水好氧生物处理.  相似文献   

3.
厌氧-缺氧-好氧处理出水中溶解性有机物组分的特征分析   总被引:1,自引:0,他引:1  
本研究利用XAD-8大孔树脂对某城市污水处理厂的厌氧-缺氧-好氧(A2O)工艺出水中的溶解性有机物进行了组分分离,分析了各组分的溶解性有机碳(Dissolved organic carbon,DOC)、紫外-可见光谱和遗传毒性.结果表明,污水中亲水性物质和疏水酸性物质的DOC含量分别占总DOC含量的65%和24%.亲水性物质组分中的芳香族化合物含量显著高于其它组分,但是单位质量的亲水性物质、疏水酸性物质和疏水碱性物质中的芳香族化合物含量相近.污水具有一定的遗传毒性,主要遗传毒性物质为亲水性物质和疏水酸性物质,而疏水碱性物质和疏水中性物质则未检出遗传毒性.  相似文献   

4.
石化污水厂二级出水溶解性有机物分级解析研究   总被引:5,自引:0,他引:5       下载免费PDF全文
以某石化污水处理厂二级出水为研究对象,采用大孔吸附树脂将污水中溶解性有机物分离成亲水性物质、疏水酸性物质、疏水中性物质和疏水碱性物质4个组分,分析了各组分的有机物的组成特征、三维荧光光谱特征及红外光谱特征.结果表明,亲水性物质和疏水酸性物质分别占水样中溶解性有机碳的49%和29%,是该石化污水厂二级出水中的主要物质类别.亲水性物质中含有较多的生物源腐殖质类物质,疏水中性物质含有较多的芳香族蛋白质和溶解性微生物代谢产物类物质.4种组分的红外光谱图中600~1200cm-1波数的指纹区波峰数量最多,多为芳香类同分异构体化合物.  相似文献   

5.
赵文涛  黄霞  李笃中  何苗  袁媛 《环境科学》2009,30(11):3316-3323
小试规模浸没式厌氧/缺氧/好氧-膜-生物反应器(A1/A2/O-MBR)系统用于处理实际焦化废水,在无排泥条件下连续运行160 d.考察了长期运行条件下系统对不同污染物的去除性能,并通过亲疏水组分分离和三维荧光光谱法,对进出水焦化废水中溶解性有机物(DOMs)特征进行分析.结果表明,A1/A2/O-MBR系统能稳定去除88.0%±1.6%的COD,99.9%的挥发酚,99.4%±0.2%的浊度和98.3%±1.9%的NH4+-N,相应的平均出水浓度分别为249 mg/L±44 mg/L、0.18 mg/L±0.05 mg/L、1.0NTU±0.2 NTU和4.1 mg/L±4.3 mg/L;最大TN去除率可达到74.9%.在系统160 d运行过程中,MLVSS/MLSS维持在90.2%±1.0%,没有出现无机物的积累;污泥的表观产率(MLVSS/COD)逐渐降低并最终稳定在0.035 kg/kg.在焦化废水DOMs的疏水酸性、疏水中性、疏水碱性和亲水物4种组分中,疏水酸性物是进出水中最主要的溶解性有机碳(DOC)和色度组分,分别占进出水总DOC的70%和67%,总色度的75%和76%.三维荧光光谱分析表明腐殖质类物质是系统出水中残留的主要难降解有机物和致色物质.  相似文献   

6.
污水中溶解性有机物组分特性及其氯消毒副产物生成潜能   总被引:15,自引:8,他引:7  
以城市污水厂二级出水为研究对象,采用大孔吸附树脂将污水中溶解性有机物分离成亲水性物质、疏水酸性物质、疏水中性物质和疏水碱性物质4个组分,分析了各组分的有机物特性、三维荧光光谱特征和氯消毒副产物生成潜能.结果表明,亲水性物质和疏水酸性物质分别占水样中溶解性有机碳的33%和30%,其中亲水性物质相对含有较多的生物源腐殖质类物质,疏水酸性物质相对含有更多的芳香族蛋白质和溶解性微生物代谢产物类物质.氯消毒后,亲水性物质的三卤甲烷生成潜能分别为630.4μg.L-1,占污水三卤甲烷生成潜能的73.7%.亲水性物质和疏水酸性物质的卤乙酸生成潜能分别为644.6μg.L-1和123.2μg.L-1,是污水氯消毒副产物的主要前体物.  相似文献   

7.
冬季不同污水处理工艺对溶解性有机物的去除   总被引:1,自引:0,他引:1  
以东北地区4个城市污水处理厂为研究对象,考察冬季不同污水处理工艺对溶解性有机物(DOM)组分的去除效果,以及对DOM组分的光谱学特性和卤代活性的影响.利用XAD树脂将DOM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,A/O法、曝气生物滤池、浮动填料法和A2/O法对DOM都具有较高的去除能力,其中曝气生物滤池对DOM的处理效果最好.经4种污水处理工艺处理后,5种组分的芳香性和三卤甲烷生成活性(STHMFP)均升高.A2/O法对HPO-A和TPI-A的芳香性增强程度最高,而曝气生物滤池对HPO-N,TPI-N和HPI的芳香性增强程度最高.浮动填料法对HPO-A,TPI-A和HPI的STHMFP升高最显著,A2/O法对HPO-N的STHMFP增加最显著,曝气生物滤池对TPI-N的STHMFP升高最显著.4种污水处理工艺对HPI中荧光物质的去除率高于非荧光物质.而对于其他4种DOM组分来说,不同的污水处理工艺对不同荧光峰的改变不相同.  相似文献   

8.
Algal uptake of dissolved organic nitrogen in wastewater treatment plants   总被引:1,自引:0,他引:1  
The algal uptake of dissolved organic nitrogen(DON) in the anaerobic–anoxic–oxic(A_2O)process was investigated in this study. Anaerobic, aerobic and effluent DON samples from two wastewater treatment plants(WWTPs) were separated into hydrophilic and hydrophobic fractions using a DAX-8 resin coupled with an anion exchange resin and a nanofiltration(NF)pretreatment. Hydrophilic DON accounted for 66.66%–88.74% of the entire DON for the two plants evaluated. After a 15-day incubation, 16.95%–91.75% DON was bioavailable for algal growth, and untreated samples exhibited higher DON bioavailability, with 52.83% DON average uptake rates, compared with the hydrophilic and hydrophobic fractions(45.53% and 44.40%, respectively) because the pretreatment caused the inorganic salt to be resistant to algae. Anaerobic untreated samples, hydrophilic fractions and hydrophobic fractions showed higher DON reduction rates and higher biomass accumulation compared with the other DON fractions due to the decomposition of resistant organics by anaerobic and anoxic bacteria.DON in aerobic and effluent samples of plant A was more bioavailable than that of plant B with usages of 27.49%–55.26% DON. DON bioavailability in the anaerobic–anoxic–oxic process decreased in the following order: anaerobic effluent aerobic. The DON contents were reduced after anaerobic treatment in the two plants. The EEM-PARAFAC model identified three DON components, including two humic acid-like substances and one protein-like substance in plant A and two protein-like substances and one humic acid-like substance in plant B.  相似文献   

9.
疏水性分子筛对焦化废水生物处理尾水的吸附过程解析   总被引:2,自引:1,他引:1  
采用表面活性剂为模板剂常温一步合成疏水性介孔分子筛(MCM-41-dry)和通过煅烧去除模板剂得到亲水性介孔材料(MCM-41-cal).分别以制备的两种分子筛作为吸附剂吸附焦化废水生物出水中COD和TOC组分,考察吸附剂浓度、pH值等对吸附过程的影响,并对吸附过程进行动力学拟合.结果表明,MCM-41-dry的吸附效果远远强于MCM-41-cal,归因于含有模板剂的材料表面具有较强的疏水性及含有高吸附容量的季铵基团.在25℃、吸附剂浓度为2g·L-1时,MCM-41-dry对焦化废水中COD和TOC的去除率分别达53%和66%,吸附量分别为64mg·g-1和17mg·g-1.拟二级动力学模型能够真实反映整个吸附过程.水样吸附前后的GC/MS数据表明,焦化废水生物出水中残留了长链烷烃、卤代物、多环芳烃等难降解有机物,经MCM-41-dry吸附后,各种物质浓度均得到降低,MCM-41-dry尤其对疏水性烷烃类有较好的吸附效果,表明该吸附剂能够优先吸附疏水性物质.此外,吸附剂对水具有一定的润湿性能,能与废水充分接触,从而利于其吸附水中的污染物,这使其用于实际废水的处理成为可能.  相似文献   

10.
聚合铝基复合絮凝剂用于城市纳污河道废水处理   总被引:1,自引:0,他引:1  
以城市纳污河道废水为处理对象,聚合氯化铝-二甲基二烯丙基氯化铵(PAC-PDMDAAC,代号JYF-1)复合絮凝剂为处理药剂,在室内模拟化学强化一级处理(CEPT)现场工艺,进行了烧杯絮凝实验,主要考察废水中颗粒物、有机物和氮磷的去除效果,以及pH和表面负荷率(SOR)对絮凝效果的影响,分析了投药前后废水中颗粒物粒径分布和电荷特性的变化,讨论了JYF-1药剂的作用机理及其在CEPT工艺中的应用. 结果表明,聚合铝基复合絮凝剂JYF-1比传统的PAC拥有更好的絮凝效果,对pH和SOR的适应能力更强. JYF-1对非溶解性污染物的去除要好于溶解性污染物的去除,8 mg·L-1的JYF-1对COD和溶解性COD(SCOD)的去除率分别为76.72%和64.31%,处理后出水的可生化性大幅提高,BOD/COD从处理前的0.23增加到处理后的0.53. JYF-1具有良好的除磷效果和一定的脱氮效果,当JYF-1投量为12 mg·L-1时,溶解性总磷(STP)的去除率可达到90%以上,总磷(TP)的去除率可达到80%左右,总氮(TN)去除率为20%左右. 将JYF-1应用于CEPT工艺,可以无需改变现有的设备和工艺,以更少的投药量获得更好的出水水质,产生更少的污泥,是值得推广应用的高效低价絮凝剂.  相似文献   

11.
表面憎水性活性炭的制造和表征   总被引:1,自引:0,他引:1  
活性炭是一种应用广泛的吸附催化剂,具有发达的空隙结构和巨大的比表面积,在环境污染处理,尤其是去除废水中有机污染物等方面,具有广泛的应用。但是,通常在活性炭的活化过程中,活性炭表面产生一些亲水性的基团,使其吸附废水中有机污染物量减少。文章通过活性炭表面改性,赋予活性炭表面一个合适的憎水性,从而增强其在废水中吸附有机污染物的能力。  相似文献   

12.
The UF membrane with molecular weight cuto (MWCO) ranging from 2 to 100 kDa and XAD-8 resin were employed to identify the characteristic of molecular weight (MW) distribution of wastewater e uent organic matter (EfOM) in terms of TOC and UV254, as well as the amounts of the hydrophilic/hydrophobic organic fractions in di erent MW ranges. Then, the nanofiltration (NF) membrane fouling experiments were carried out using the above fractionated water to investigate the e ect of MW distribution and hydrophilic/hydrophobic characteristics of EfOM on the membrane flux decline using the fractionated water samples. The experimental results have shown that 45.61% of the total organics belongs to the low MW one, among which the percentage of the hydrophilic organics with low MW (less than 2 kDa) was up to 28.07%, while that of the hydrophobic organics was 17.54%. In particular, the hydrophilic fraction was found to be the most abundant fraction in the e uents. MW distribution has a significant e ect on the membrane fouling. When the MWwas less than 30 kDa, the lower the MW, the larger was the specific flux decline, while in the case of MW higher than 30 kDa, the higher the MW, the larger was the specific flux decline, and the decline degree of low MW organics was larger than the high MW one. With the same MW distribution range, specific flux decline of the hydrophilic organic was considerably slower than that of the hydrophobic organic, which indicated that the hydrophobic organic fractions dominantly contribute to the flux decline.  相似文献   

13.
Dissolved organic matter(DOM) has been identified as precursor for disinfection by-products(DBPs) formation during chlorination. Recently,it has been demonstrated that the characteristics of DOM influence the DBPs formation mechanism. A study was,therefore,initiated to investigate the effects of DOM fractions on DBPs formation mechanism. In the chlorination process,organic acids are dominant precursors of total thihalomethanes(TTHM) because of the νC-O and unsaturated structures. Furthermore,the TTHM format...  相似文献   

14.
The UF membrane with molecular weight cutoff (MWCO) ranging from 2 kDa to 100 kDa and XAD-8 resin were employed to identify the characteristic of molecular weight (MW) distribution of wastewater effluent organic matter (EfOM) in terms of TOC and UV254, as well as the amounts of the hydrophilic/hydrophobic organic fractions in different MW ranges. Then, the nanofiltration (NF) membrane fouling experiments were carried out using the above fractionated water to investigate the effect of MW distribution and hydrophilic/hydrophobic characteristics of EfOM on the membrane flux decline using the fractionated water samples above. The experimental results have shown that 45.61% of the total organics belongs to the low MW one, among which the percentage of the hydrophilic organics with low MW (less than 2 kDa) was up to 28.07%, while that of the hydrophobic organics was 17.54%. In particular, the hydrophilic fraction was found to be the most abundant fraction in the effluents. MW distribution has a significant effect on the membrane fouling. When the MW was less than 30 kDa, the lower the MW, the larger was the specific flux decline, while in the case of MW higher than 30 kDa, the higher the MW, the larger was the specific flux decline, and the decline degree of low MW organics was larger than the high MW one. With the same MW distribution range, specific flux decline of the hydrophilic organic was considerably slower than that of the hydrophobic organic, which indicated that the hydrophobic organic fractions dominantly contribute to the flux decline.  相似文献   

15.
采用液液萃取法和树脂吸附法对化工园区的生化尾水中溶解性有机污染物进行富集、分离,通过气相色谱-质谱分析表明化工生化尾水中普遍含有四氯乙烯、苯类和烷烃类有机毒物,而不同来源的化工生化尾水中疏水性、亲水性和中性有机质的含量相差较大,分子量分布也不相同,液相色谱-质谱分析表明树脂富集分离后,氨基酸、邻苯二甲酸酯和糖类物质成为尾水中主要有机物。  相似文献   

16.
化学生物絮凝工艺的反应机理初探   总被引:2,自引:2,他引:0  
考察了化学生物絮凝工艺中的Zeta电位、颗粒物粒度分布和溶解性有机物的分子质量分级,并分别与化学强化一级工艺和初沉池进行了对比.研究表明,相同药剂投加量下,化学生物絮凝工艺和化学强化一级工艺的出水Zeta电位值基本相等,化学生物絮凝工艺的回流污泥所携带的化学药剂几乎不影响反应池内颗粒物的稳定状态,其中的生物作用是该工艺对污染物的絮凝效果优于化学强化一级工艺的关键因素.在化学生物絮凝工艺中,投加药剂仅对粒径>10 μm颗粒物和分子质量>6 ku溶解性有机物有较好的去除效果,而生物絮凝作用不但可以促进对大粒径颗粒物和大分子质量溶解性有机物的去除,而且对小粒径颗粒物和小分子质量溶解性有机物也有较好的去除,其出水中粒径>3 μm的颗粒物被完全去除,分子质量为2~6 ku 的溶解性有机物的去除率也高达42.5%.  相似文献   

17.
基于微气泡曝气的生物膜反应器处理废水研究   总被引:8,自引:7,他引:1  
张磊  刘平  马锦  张静  张明  吴根 《环境科学》2013,34(6):2277-2282
微气泡曝气有助于强化氧传质过程,在废水好氧生物处理中具有潜在的应用优势;生物膜反应器是应用微气泡曝气的可行工艺形式.本研究在生物膜反应器中采用SPG膜微气泡曝气处理模拟生活废水,探讨反应器连续运行过程中,SPG膜空气通透性、溶解氧变化、污染物去除效果及氧利用情况.结果表明,基于SPG膜微气泡曝气的生物膜反应器能够实现长期连续稳定运行,是微气泡曝气与废水好氧生物处理结合的可行方式.SPG膜表面性质及膜孔径影响其空气通透性,疏水性膜的空气通透性优于亲水性膜;膜孔径越大,空气通透性越好.一定的SPG膜空气通量下,反应器内的溶解氧浓度主要受有机负荷影响.SPG膜微气泡曝气生物膜反应器较优的COD处理负荷(以SPG膜面积计算)为6.88 kg·(m2.d)-1.氨氮的去除主要受溶解氧浓度及生物膜内氧扩散传质的影响,在高有机负荷下生物膜内出现同步硝化反硝化.微气泡曝气的氧利用率显著高于传统曝气方式,在优化的运行条件下,氧利用率可以接近100%.  相似文献   

18.
城市污水的混凝处理及混凝污泥厌氧消化研究   总被引:2,自引:0,他引:2  
采用聚合氯化铝与有机高分子絮凝剂复合投加的方法,对上海市闵行污水处理厂曝气沉砂池出水进行一级强化处理,研究了其对浊度、COD的去除效果,确定最佳投药量。在确定最佳投药量后,对混凝所产生污泥进行厌氧消化的可行性研究。结果表明:(1)有机絮凝剂与聚合氯化铝复合投加的强化效果明显优于单独投加聚合氯化铝;同时,聚合氯化铝与阳离子型有机絮凝剂复合投加的效果要优于阴离子型,并且可以进一步降低聚合氯化铝的投加量;使用聚合氯化铝与两性型有机絮凝剂复合投加也取得了较为满意的效果,与使用阳离子型有机絮凝剂的效果接近。(2)综合考虑COD、浊度和药剂投加量,当聚合氯化铝投量为30mg/L、阳离子型有机絮凝剂KP1205E投加量为2mg/L时,取得比较理想的效果。(3)被处理水的水质变化对化学一级强化的处理效果有很大影响,被处理水中溶解性的有机物组分越高,处理效果相应越差。(4)采用厌氧消化对混凝污泥进行处理,在投配比为5%时,单位VSS的产气量最大,达到0.76L/g,污泥的可消化性较好。  相似文献   

19.
In order to characterize the organic properties of waste activated sludge in a wastewater treatment plant,organic matter within sludge was extracted with NH 3 ·H 2 O preferentially,and subsequently fractionated into five fractions using XAD-8/XAD-4 resins.Up to a 63.8%-71.1% of organic matter within the sludge could be efficiently extracted by NH 3 ·H 2 O.Fractionation results showed that hydrophobic acid and hydrophilic fraction were two main components among the sludge organic matter (accounting for 32.2% and 48.0% of the bulk organic matter,respectively),whereas transphilic acid,hydrophobic neutral and transphilic neutral were quite low (accounting for 9.2%,5.8% and 4.8%,respectively).Despite that the extractant of NH 3 ·H 2 O showed a relatively higher extraction efficiency of the aromatic components,the relatively low aromaticity of the organic fractions implied that those non-aromatic components could also be effectively extracted,especially for neutral and hydrophilic fractions.In addition,acidic fractions contained more aromatic humic-like components,whereas the neutral fractions had a greater content of aromatic proteins and soluble microbial byproduct-like components.Extraction of sludge organics with NH 3 ·H 2 O and subsequential fractionation using XAD resins could be a novel method for further characterization of sludge organics.  相似文献   

20.
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   

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