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981.
固载型TiO2光催化反应器对富营养水体杀藻作用研究 总被引:1,自引:0,他引:1
以泡沫镍作为载体,利用电沉积技术将纳米TiO2负载在泡沫镍上,制成固载型TiO2光催化反应器。研究表明,经过光催化反应器处理的富营养水体,30 h内叶绿素a由96.2 mg/m3降至2.2mg/m3,下降率达97.6%,而未负载纳米TiO2普通泡沫镍材料,在同样光强的紫外灯照射下,叶绿素a下降率为74.3%,表明紫外光照射虽然也具有一定的杀藻功能,但是光催化反应才是藻类被杀灭的主要原因。利用9.54 m3景观喷水池进行杀藻中试,光催化反应器也同样表现出优异的杀藻性能,12 d内叶绿素a由18.7 mg/m3降至1.9mg/m3,下降率达到89.8%,水体由浓绿变为清澈见底,这表明光催化反应器具有很强的杀藻能力,通过有效杀灭富营养水体中藻类、控制藻类基数,对应急处理城市景观水、湖泊等富营养水体和突发性藻华,提高生物-生态法处理效率,改善城市水环境具有十分重要的意义。 相似文献
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983.
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985.
Jiang W Zhang S Shan XQ Feng M Zhu YG McLaren RG 《Environmental pollution (Barking, Essex : 1987)》2005,138(2):278-284
Laboratory batch experiments were carried out to study the adsorption of arsenate on 16 Chinese soils with different physicochemical properties. Wide differences in arsenate adsorption were observed, and the Jiangxi and Hubei soils were more effective sorbents for arsenate than other soils. The Langmuir one-surface and two-surface equations were used to model the arsenate adsorption data. Except for the Jiangxi and Hubei soils, the Langmuir one-surface equation gave reasonably good fits to the arsenate adsorption data. However, the Langmuir two-surface equation generally provided a better fit than the Langmuir one-surface equation. For soils with relative high organic matter (OM), dissolved organic carbon (DOC) or extractable phosphate, the Langmuir one-surface and two-surface equations described the adsorption isotherms similarly. In contrast, for soils with relatively low contents of OM, DOC or extractable phosphate, the Langmuir two-surface equation gave the better fit to the arsenate adsorption data. 相似文献
986.
Measurements of outdoor human exposure to suspended particulate matter (PM) are always constrained by available resources. An effective network design requires tradeoffs between variables measured, the number of sampling locations, sample duration, and sampling frequency. Sampling sites are needed to represent neighborhood and urban spatial scales with minimal influences from nearby sources. Although most PM measurements for determining compliance with standards are taken over 24-h periods every third to sixth day, outdoor human exposure assessment requires measurements taken continuously throughout the day, preferably over durations of 1 h or less. More detailed particle size and chemistry data are also desirable, as smaller size fractions and specific chemicals may be better indicators of adverse health effects than total mass samples. 相似文献
987.
988.
Performance of three-phase three-dimensional electrode reactor for the reduction of COD in simulated wastewater-containing phenol 总被引:18,自引:0,他引:18
The removal of chemical oxygen demand (COD) from wastewater-containing phenol was investigated using three-phase three-dimensional electrode reactor. Special attention was paid to experimentally probe the performance of the reactor in COD removal in the process of repeated batch runs. The experimental results showed that the reactor could remove COD from phenol-containing wastewater much more efficiently than both granulated activated carbon (GAC) adsorption bed and conventional three-dimensional electrode. For 200th batch run, the three-phase three-dimensional electrode reactor with an airflow of 5 l min(-1) and a cell voltage of 30 V could remove 1350 ppm COD from the wastewater in 30 min while conventional three-dimensional electrode reactor with a same cell voltage and GAC adsorption bed with a same airflow only could remove 610 and 1000 ppm, respectively, at the same reaction duration. Although it was found that COD removal decreased with increasing repeated batch runs in our experimental range, due to adsorption saturation of GAC and electrode passivation, the extent of decrease for the three-phase three-dimensional electrode is much less than those for conventional three-dimensional electrodes and GAC adsorption beds. The passivated reactor could be partly re-activated by electrolysis in the presence of MnO2. 相似文献
989.
990.
低温等离子体联合技术降解甲苯气体的研究 总被引:1,自引:0,他引:1
以自制的纳米钛酸钡基介电材料为催化剂,以电工陶瓷拉西环为载体,利用介质阻挡放电产生的低温等离子体对常压下流动态含甲苯的空气进行处理,研究了电场强度、空塔气速、甲苯初始浓度及不同填料情况下甲苯的降解及臭氧产生情况,初步探讨了等离子体联合技术降解甲苯的机制,并进行了产物分析.实验结果表明,甲苯降解率随电场强度的提高而上升,随空塔气速和甲苯初始浓度的增加而降低;随反应器内填料变化,甲苯降解率表现为催化剂填料》普通填料》无填料,其降解率最高可达95%.当电场强度》13.0 kV/cm时,臭氧浓度因受到过量的高能电子攻击而发生分解,表现为臭氧浓度随电场强度的继续增加而降低,故最佳电场强度为13.0 kV/cm.当9.0 kV/cm<电场强度<13.0 kV/cm,臭氧产量表现为催化剂填料>普通填料>无填料,纳米钛酸钡基介电材料大大增强了臭氧的产量. 相似文献