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31.
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
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城市污水处理过程中溶解性有机物转化特性 总被引:7,自引:0,他引:7
运用反渗透技术对城市处理厂进出水中的溶解性有机物(DOM)进行浓缩富集,利用DAX-8大孔树脂将DOM分为亲水物质(Hy I)、类富里酸(FA)和类腐殖酸(HA)3种组分。研究表明,原污水中有机物各组分经生物处理后的总量去除近90%,各组分所占总TOC的百分含量在生化反应过程中也发生了变化:出水中HA组分有降低的趋势,平均下降9.77%,而FA和Hy I两大组分所占总和呈现上升趋势,其中类FA物质升高7.94%,而Hy I组分百分比略有下降。与进水相比,出水中Hy I、FA和HA组分在Ⅲ(色氨酸)、Ⅳ(酪氨酸)区的荧光峰全部消失,而在Ⅰ(类腐殖酸)、Ⅱ(类富里酸)荧光峰变化不大。SUVA和电位滴定结果表明出水有机物的结构发生变化,各组分的芳香性比进水有机物有所增加。研究结果表明,进水中的有机物在污水处理过程中,小分子物质可以被生物利用并形成新的代谢产物释放到水中,大分子物质却较难被生物利用,但在处理过程中其分子构造在一定程度上被微生物改变,系统的生化驯养可以达到构造改变的效果,从而影响出水各组分分子量变化。 相似文献
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为增强膜的亲水性,提高抗污染能力,采用原子转移自由基反应(ATRP),将甲基丙烯酸羟乙酯(HEMA)接枝到聚偏氟乙烯(PVDF)膜表面;再以硝酸铈铵(CAN)为引发剂,N,N’-亚甲基双丙烯酰胺(MBAA)为交联剂,通过自由基聚合反应将两性离子单体3-(甲基丙烯酰胺基)丙基-二甲基(3-硫代丙基)氢氧化铵内盐(MPDSAH)成功接枝到膜表面.采用全反射红外光谱仪(ATR-FTIR)、X射线光电子能谱仪(XPS)、扫描电子显微镜(SEM)以及接触角测定仪分析了改性前后膜表面性质及结构形态变化.随接枝时间的增加,接枝密度(GD)逐渐升高,膜孔径变小,孔隙率降低,但同时膜表面亲水性明显增强.通过牛血清蛋白(BSA)吸附及过滤实验,检验PVDF膜改性前后的抗污染性能.随着GD的增加,在高浓度BSA溶液中膜表面吸附量明显减少.当GD为288.340μg·cm-2时,膜表面接触角(CA)降低最多,由原膜的77.2°降至41.7°,且在5 s内降为0,通量恢复率高达94.961%.因此,最佳接枝时间为2 h,此时接枝密度288.340μg·cm-2则是最佳接枝密度. 相似文献
34.
本文简要介绍了二氧化钛(TiO2)的光催化氧化及超亲水性机理,从杀菌、表面自清洁塑料薄膜、保鲜塑料薄膜、防雾滴塑料薄膜、光催化降解塑料薄膜、耐久性塑料薄膜等几个方面论述了其在农用塑料薄膜中的应用情况. 相似文献
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《环境科学与技术》2016,(6)
以废塑料瓶为原料制备了未改性束状填料和低温等离子体改性(LTPM)束状填料,分析了2种填料的性能;并将2种填料用于生物膜反应器处理生活污水,研究了其去污能力。AFM分析结果表明,低温等离子体改性明显增加了塑料表面的粗糙度;FTIR及亲水性分析结果表明,低温等离子体改性后,在废塑料表面引入了羰基、羟基等亲水性基团,塑料表面的亲水性明显增强。挂膜时,改性填料上生物膜厚度和生物膜量明显大于未改性填料。含改性填料的生物膜反应器对污水中COD和氨氮的去除效果,明显优于含未改性填料的生物膜反应器。研究既有效处理了污水,又可实现固体废物的资源化利用,研究成果具有一定的推广应用价值。 相似文献
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Fouling of nanofiltration membrane by effluent organic matter: Characterization using different organic fractions in wastewater 总被引:3,自引:0,他引:3
ZHANG Liqing WANG Lei ZHANG Gang WANG Xudong . Key Laboratory of Northwest Water Resource Environment Ecology MOE Xi’an University of Architecture Technology Xi’an China. . School of Civil Architectural Engineering University of Jinan Jinan China 《环境科学学报(英文版)》2009,21(1)
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
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超高效液相色谱/电喷雾串联质谱(UPLC/MS/MS)分析全氟代化合物(PFCs) 总被引:1,自引:0,他引:1
Antonietta Gledhill Anna Karman Ingrid Ericson Bert van Bavel Gunilla Linstrom Gordon Kearney 《环境化学》2007,26(5):717-720
近年来,在全球范围内的环境和人体血液中检测到全氟代化合物(PFCs)增长的趋势,引起了研究者和有关当局的关注.PFCs同时具有亲水性和疏水性,经常用于地毯、纤维、皮革的处理、纸张和食品包装物等,也是塑料生产、灭火剂、抛光剂和杀虫剂的功能化学品. 相似文献
40.
以腐殖酸和纳米Fe2O3为对象,着重研究了腐殖酸分子在纳米Fe2O3表面的吸附过程中的疏水效应,借助红外光谱和热重等分析方法研究了腐殖酸吸附前后的疏水性随溶液环境变化的规律。结果表明,当离子强度为0、0.005、0.01和0.05 mol/kg,pH从7变到12时,纳米Fe2O3吸附溶解性腐殖酸分子后形成的复合体的热失重量随着pH的升高先减小后增大。当pH从7升高到10时,亲水性降低,疏水性增强;当pH从10升高到12时,亲水性增强,疏水性降低。当离子强度为0.001 mol/kg,pH从7变到12时,复合体的热失重量随着pH的升高而减小,亲水性降低,疏水性增强。当pH为定值,离子强度变化时,纳米Fe2O3吸附溶解性腐殖酸分子后形成的复合体的热失重量随着离子强度的增加不断变化,曲线呈现出波动趋势,亲、疏水性在交替变化。红外光谱分析结果说明,对纳米Fe2O3吸附溶解性腐殖酸分子后形成的复合体的亲疏水性起主要影响的官能团可能是亲水性的羟基—OH、羰基CO和疏水性的CH2烷烃。 相似文献