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Cleaning of hollow-fibre polyvinyl chloride (PVC) membrane with di erent chemical reagents after ultrafiltration of algal-rich
water was investigated. Among the tested cleaning reagents (NaOH, HCl, EDTA, and NaClO), 100 mg/L NaClO exhibited the best
performance (88.4% 1.1%) in removing the irreversible fouling resistance. This might be attributed to the fact that NaClO could
eliminate almost all the major foulants such as carbohydrate-like and protein-like materials on the membrane surface, as confirmed by
Fourier transform infrared spectroscopy analysis. However, negligible irreversible resistance (1.5% 1.0%) was obtained when the
membrane was cleaning by 500 mg/L NaOH for 1.0 hr, although the NaOH solution could also desorb a portion of the major foulants
from the fouled PVC membrane. Scanning electronic microscopy and atomic force microscopy analyses demonstrated that 500 mg/L
NaOH could change the structure of the residual foulants on the membrane, making them more tightly attached to the membrane
surface. This phenomenon might be responsible for the negligible membrane permeability restoration after NaOH cleaning. On the
other hand, the microscopic analyses reflected that NaClO could e ectively remove the foulants accumulated on the membrane surface. 相似文献
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Catalytic bubble-free hydrogenation reduction of azo dye by porous membranes loaded with palladium (Pd) nanoparticles was studied for the first time. The effects of Pd loading, dye concentration and reuse repetitions of membranes were investigated. In reduction, the dye concentration decreased whereas the pH rose gradually. An optimal Pd loading was found. The catalytic membranes were able to be reused more than 3 times. 相似文献
56.
Fouling behavior along the length of membrane module was systematically investigated by performing simple modeling and lab-scale experiments of forward osmosis (FO) membrane process. The flux distribution model developed in this study showed a good agreement with experimental results, validating the robustness of the model. This model demonstrated, as expected, that the permeate flux decreased along the membrane channel due to decreasing osmotic pressure differential across the FO membrane. A series of fouling experiments were conducted under the draw and feed solutions at various recoveries simulated by the model. The simulated fouling experiments revealed that higher organic (alginate) fouling and thus more flux decline were observed at the last section of a membrane channel, as foulants in feed solution became more concentrated. Furthermore, the water flux in FO process declined more severely as the recovery increased due to more foulants transported to membrane surface with elevated solute concentrations at higher recovery, which created favorable solution environments for organic adsorption. The fouling reversibility also decreased at the last section of the membrane channel, suggesting that fouling distribution on FO membrane along the module should be carefully examined to improve overall cleaning efficiency. Lastly, it was found that such fouling distribution observed with co-current flow operation became less pronounced in counter- current flow operation of FO membrane process. 相似文献
57.
冬季低温下MBR与CAS工艺运行及微生物群落特征 总被引:7,自引:5,他引:2
研究了在冬季低温条件下,膜生物反应器(MBR)与传统活性污泥法(CAS)工艺运行效果及微生物群落特征的差异,对工艺出水水质和微生物活性进行了分析,并借助454焦磷酸高通量测序法对微生物群落组成和结构进行了解析.结果表明,三套对比工艺(MBR两套:高污泥浓度R1和低污泥浓度R2,CAS工艺R3)的出水总氮平均去除率分别为85.2%、56.1%、58.8%;NH+4-N的平均去除率分别为99.7%、99.7%、59.7%,比硝化速率由大到小依次为R2、R1、R3,比反硝化速率由大到小依次为R3、R1、R2,高浓度MBR污泥具有较好的耐寒特性和氨氮去除效果;从454焦磷酸测序结果看,相似性为97%时,菌群丰富度:R2>R3>R1,多样性:R2>R1>R3;MBR污泥微生物菌群的组成和丰度与CAS系统有较大不同;R1、R2、R3中主要的硝化菌为Nitrospira菌属,总相对度依次为:1.22%、1.64%、0.15%,主要的反硝化菌为Zoogloea菌属、Thauera菌属、Comamonadaceae菌属及Comamonas菌属,总相对丰度依次为:5.8%、4.52%、15.21%;低温环境下,泥龄长、污泥浓度高、TN负荷低的MBR系统有利于硝化、反硝化细菌累积,提升生物脱氮效果. 相似文献
58.
曝气膜生物反应器运行过程中污泥活性特征变化及其对膜污染的影响 总被引:2,自引:2,他引:0
研究了曝气膜生物反应器运行过程中活性污泥主要活性特征变化及其对膜污染的影响.通过排出剩余污泥的办法维持活性污泥浓度在4000 mg·L-1左右,并连续运行75 d.运行期间,每日检测活性污泥的各项性质指标便于反映污泥特性的变化.结果表明,随着反应器运行时间的延长,污泥脱氢酶活性逐渐增加,其对反应器的运行有着两方面的作用,一方面会强化微生物对污染物的去除,但另一方面则导致了胞外聚合物的增加,并加速膜污染.而污泥表观产率则随着运行时间的延长先增加后有所减少,其粒径逐渐减小,且胞外聚合物呈现增加的趋势,总的出水水质情况逐渐提高,与此同时,反应器内原生动物及后生动物在运行前期较少,而在后期大量出现.膜污染分析结果表明运行后期膜污染速度明显加快,其原因在于:污泥粒径的减小以及胞外聚合物的增加导致细小颗粒及胞外聚合物堵塞或在膜表面沉积数量增加. 相似文献
59.
基于聚合多巴胺的附着性及易与氨基(—NH2)等基团形成共价键的特性,本实验将聚合多巴胺作为对聚醚砜(PES)超滤膜进行表面改性的接枝中间物,将聚乙烯醇(PVA)-氨基酸共聚物接枝至PES膜表面,从而提高PES超滤膜的亲水性能.实验通过PVA与氨基酸的酯化反应形成PVA-氨基酸共聚物,将带有—NH2的共聚物与PES超滤膜表面的聚合多巴胺涂覆层形成共价键,从而将亲水的PVA-氨基酸共聚物接枝到疏水的超滤膜表面.实验利用通量的变化、红外光谱(FTIR)分析、表面接触角、场发射扫描电镜(FESEM)等手段来表征膜特征参数的变化,同时也考察了改性膜对油水乳化液的分离效率和抗污染能力.试验结果表明,经过PVA-氨基酸共聚物接枝改性的膜表面的亲水性有一定的提高,原膜接触角为91°,涂覆和接枝改性后的膜表面接触角分别为71°和53°,油水乳化液的分离实验显示,改性后的膜通量和清洗恢复率均有明显提高. 相似文献
60.
低强度超声波强化SMBR处理中的超声波参数优化研究 总被引:1,自引:0,他引:1
研究了利用低强度超声波强化低温一体式膜生物反应器(SMBR)污水生物处理中最优超声波参数的选择。结果表明,功率密度为0.27 W/L、辐照时间为20 min时,超声波对低温SMBR中COD去除的强化效果最佳。SMBR对NH3-N去除效果达到最佳时,超声波功率密度和辐照时间分别为0.27 W/L和15 min。综合考虑,选择更有利于低温时NH3-N去除的超声波参数:功率密度0.27 W/L、辐照时间15 min。经此超声波处理后COD、NH3-N的强化效果在24 h均能保持,故可设置超声波处理的时间间隔为24 h。 相似文献