首页> 外文期刊>Water Research >Characterizing algogenic organic matter (AOM) and evaluating associated NF membrane fouling
【24h】

Characterizing algogenic organic matter (AOM) and evaluating associated NF membrane fouling

机译:表征生藻有机质(AOM)并评估相关的NF膜结垢

获取原文
获取原文并翻译 | 示例
       

摘要

Occasional algal blooms, comprised of blue-green algae and/or green algae, cause significant challenges in drinking water treatment due to the release of algogenic organic matter (AOM) into water extracellularly and, upon cell lysis, intracellularly. AOM has been extracted from blue-green algae (cyanobacteria) by various means and analyzed by UV absorbance scanning, HPSEC-UV-fluorescence-DOC, UV absorbance ratio index (URI), FTIR, and fluorescence excitation emission matrix (EEM). AOM extracted in water as a solvent exhibited a high hydrophilic fraction (57.3%) with a low SUVA (1.0L/m-mg). The molecular weight (MW) distribution showed a significant heterogeneity (high value of polydispersivity) and high protein content (as indicated by specific fluorescence). Significant amounts of proteinaceous components such as mycosporine-like amino acids (MAAs, UV-screening components) and phycobilins (light-harvesting pigment) were detected by UV/visible absorption. The presence of proteins was confirmed by FTIR (at 1661 and 1552cm~(-1)), EEM spectra (EX:278-282 nm and EM:304-353nm), and high URI values (3.1-6.0). A bench-scale cross-flow unit, employing a flat-sheet membrane specimen, was used to examine nanofiltration (NF) membrane fouling and removal of natural organic matter (NOM) derived from different blends of Suwannec River humic acid (SRHA) and AOM: SRHA 10mgC/L, AOM 3mg C/L + SRHA 7mgC/L, AOM 7mgC/L + SRHA 3mgC/L, and AOM 10mgC/L. The study focused mainly on the effects of two different sources of organic matter on NF (NF 200) membrane fouling under otherwise similar conditions. Flux decline and organic matter rejection as a function of delivered DOC (cumulative mass of feed DOC per unit area) showed significantly different results depending on the organic matter composition of samples even though the test conditions were the same (organic matter concentration, pH, temperature, inorganic salt composition and concentration, and recovery). A higher flux decline was observed with increasing proportions of AOM. Organic matter rejections also decreased with higher AOM contributions to the samples, indicating that lower molecular weight (MW) AOM components were not well rejected by the NF 200 membrane having a 360 Da MWCO. However, SRHA that exhibited a relatively high MW (1000-5000 Da range) and high SUVA (7.4L/m-mg) was preferentially rejected through electrostatic repulsion/size exclusion by the NF 200 membrane, having a high negative charge, low MWCO, and relatively low hydrophobicity. Even though the DOC concentration of feed water is a decisive factor for membrane fouling along with membrane properties and operating conditions, the characteristics of organic matter are more influential in fouling potential. Protein-like and polysaccharide-like substances were found as major foulants by FTIR.
机译:蓝藻和/或绿藻组成的偶尔藻华会在饮用水处理中造成重大挑战,因为藻生性有机物(AOM)会在细胞外以及细胞裂解后在细胞内释放到水中。已通过各种方法从蓝藻(蓝藻)中提取了AOM,并通过UV吸光度扫描,HPSEC-UV-荧光-DOC,UV吸光度比指数(URI),FTIR和荧光激发发射矩阵(EEM)进行了分析。在水中萃取的AOM作为溶剂表现出高亲水分数(57.3%)和低SUVA(1.0L / m-mg)。分子量(MW)分布显示出显着的异质性(多分散性值高)和高蛋白含量(如特异性荧光所示)。通过紫外/可见光吸收检测到大量的蛋白质成分,如霉菌素样氨基酸(MAA,紫外线屏蔽成分)和藻胆素(聚光色素)。 FTIR(在1661和1552cm〜(-1)),EEM光谱(EX:278-282 nm和EM:304-353nm)和高URI值(3.1-6.0)证实了蛋白质的存在。使用台式膜样品的台式横流装置用于检查纳滤(NF)膜结垢和去除源自Suwannec River腐殖酸(SRHA)和AOM的不同混合物的天然有机物(NOM) :SRHA 10mgC / L,AOM 3mg C / L + SRHA 7mgC / L,AOM 7mgC / L + SRHA 3mgC / L和AOM 10mgC / L。该研究主要集中于在其他条件相似的情况下,两种不同有机物源对NF(NF 200)膜结垢的影响。尽管测试条件相同(有机物浓度,pH,温度),但通量下降和有机物截留随输送的DOC(单位面积进料DOC的累积质量)的变化而显示出明显不同的结果,具体取决于样品的有机物组成,无机盐的组成和浓度以及回收率)。随着AOM比例的增加,观察到较高的通量下降。随着对样品的较高AOM贡献,有机物截留率也降低,表明较低分子量(MW)的AOM组分未被具有360 Da MWCO的NF 200膜很好地截留。但是,表现出较高分子量(1000-5000 Da范围)和较高SUVA(7.4L / m-mg)的SRHA被NF 200膜通过静电排斥/尺寸排阻优先排斥,具有高负电荷,低MWCO且疏水性相对较低。尽管进料水中的DOC浓度与膜的性质和操作条件一起是膜结垢的决定性因素,但有机物的特性对结垢潜力的影响更大。 FTIR发现蛋白质类和多糖类物质是主要污垢。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号