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11.
BiOI powder has been proved to be an efficient photocatalyst, but the difficulty in removing it from water after reaction limits its application in real water treatment. To solve this problem,a thin-film fixed-bed reactor(TFFBR) was set-up by developing a BiOI thin film on glass fiber cloth(GFC). The composition and structure of the as-prepared films were characterized with X-ray diffraction, X-ray photoelectron spectroscopy, field emission microscopy, transmission electron microscopy and Fourier transform infrared spectroscopy. The BiOI thin film was made by painting a silica sol containing BiOI on GFC, which could be tailored to desired sizes to accommodate the TFFBR. The mass of BiOI on the GFC increased with the number of iterations of the painting process. SiO2 sol glued the BiOI particles tightly onto the GFC,making the thin film strong enough to resist fluid flushing in the TFFBR. The photocatalytic activity of the BiOI thin film was investigated by degrading bisphenol A(BPA) under simulated sunlight. Ninety eight percent of BPA(20 mg/L in 2 L) was degraded by the BiOI thin film sample of seven layers(GFC-7) on the TFFBR within 8 hr irradiation. The GFC-7 displayed good photocatalytic ability toward artificial sewage containing BPA in a wide pH range(5–9),and also demonstrated excellent durability and reusability. The working conditions were optimized and it was found that the thickness of the fluid film and residence time over the thin film were key factors affecting the photocatalytic efficiency.  相似文献   
12.
Environmental Science and Pollution Research - Glyphosate is a non-selective organophosphate herbicide that is widely used in agriculture, but its effects on soil microbial communities are highly...  相似文献   
13.
以餐饮企业的熟食操作间为例建立物理模型,通过CFD方法模拟不同空间阻塞度下天然气泄漏爆炸情形。研究结果表明:阻塞率在99.95%~100%时,燃气浓度呈现反抛物线式上升。空间阻塞率在99.982%时(开敞面积1 m2),泄漏1 200 s,熟食操作间燃气浓度值可达6%;空间阻塞率在99.955%(开敞面积2.5 m2)~100%时,燃气爆炸后熟食操作间内产生的超压最大值均大于30 kPa;当空间阻塞率在99.991%(开敞面积0.5 m2)~100%时,设定工况下爆炸超压随空间阻塞率呈指数式增加。研究认为,空间阻塞率在99.95%以上,燃气泄漏极易形成可燃蒸汽云,发生爆炸产生冲击波超压能够毁坏建筑物,在生产和生活中,对于有燃气使用的空间,应尽可能降低空间阻塞率,以避免可能的燃气泄漏形成危险域和爆炸形成过高冲击波超压。  相似文献   
14.
气相色谱法测定二硫化碳   总被引:2,自引:0,他引:2  
王永华  李新云 《环境化学》1994,13(4):359-362
本文使用极性色谱固定相,建立了顶空/GC/ECD测定水中CS2的方法。该方法是最低检出限为5.5μg/l,回收率103%,相对误差小于2%,相对标准偏差小于7%。具有很高的灵敏度、准确度和精密度,而且操作简便快速。  相似文献   
15.
通过对Baltur燃烧器温度控制器和电气控制原理的分析,提出智能数字温控器的设计方案,以便对电加热桶内油品进行数字温度调节和自动控制,提高Baltur燃烧器的安全可靠性.  相似文献   
16.
纵观国外同类化学事故应急咨询机构30多年的发展经验,结合化学事故应急响应专线的现状,提出了扩大化学事故应急响应专线的服务范围、加强化学事故技术支持体系的建设及加强与国内外同类机构的交流与合作等发展建议。  相似文献   
17.
西部管道工程HSE一体化绩效管理应用研究   总被引:1,自引:0,他引:1  
分析了我国管道工程项目HSE绩效管理存在问题,运用绩效管理理论,结合“PMT(业主)+PMC(监理)+EPC(施工总承包方)”一体化模式及西部管道工程,阐述了HSE一体化绩效管理体系的建立及应用情况。  相似文献   
18.
生产活性白土的污染最小化技术   总被引:2,自引:0,他引:2  
在生产活性白中,用低浓度的酸活化膨胀土,循环使用废酸和洗涤水,分级洗涤产品和生产活性白的同时副产硫酸铝等污染最小化技术。处理了废水使硫酸的利用率达到94%,降低了生产成本。  相似文献   
19.
Now, there is a decreasing trend for the prevalence rate of Kaschin–Beck disease (KBD) in most parts of China, but the disease is still active and severe in the Tibetan Plateau for some reason. To further explore the role of selenium in the occurrence of KBD, We collected samples including drinking water, cultivated topsoil, Highland Barley grains, and tsamba in Rangtang County and Aba County, Sichuan Province and determined concentrations of selenium by Hydride Generation Atomic Fluorescence Spectrometry. Levels of selenium in the environment were analyzed in detail. Selenium in the soil–plant–food system and their relationship with prevalence rate of KBD were also discussed. The results indicate: (a) the levels of environmental selenium are very low and the study area belongs to a selenium-deficient ecological landscape; (b) the KBD becomes much more severe with decreasing environmental selenium under the selenium-deficient condition. Namely, the lower the environmental selenium is, the more severe the disease is; (c) soil selenium deficiency plays a critical role for the prevalence of local KBD, and more factors inducing selenium deficiency should be more concerned in the future.  相似文献   
20.
Understanding ozone (O3) formation regime is a prerequisite in formulating an effective O3 pollution control strategy. Photochemical indicator is a simple and direct method in identifying O3 formation regimes. Most used indicators are derived from observations, whereas the role of atmospheric oxidation is not in consideration, which is the core driver of O3 formation. Thus, it may impact accuracy in signaling O3 formation regimes. In this study, an advanced three-dimensional numerical modeling system was used to investigate the relationship between atmospheric oxidation and O3 formation regimes during a long-lasting O3 exceedance event in September 2017 over the Pearl River Delta (PRD) of China. We discovered a clear relationship between atmospheric oxidative capacity and O3 formation regime. Over eastern PRD, O3 formation was mainly in a NOx-limited regime when HO2/OH ratio was higher than 11, while in a VOC-limited regime when the ratio was lower than 9.5. Over central and western PRD, an HO2/OH ratio higher than 5 and lower than 2 was indicative of NOx-limited and VOC-limited regime, respectively. Physical contribution, including horizontal transport and vertical transport, may pose uncertainties on the indication of O3 formation regime by HO2/OH ratio. In comparison with other commonly used photochemical indicators, HO2/OH ratio had the best performance in differentiating O3 formation regimes. This study highlighted the necessities in using an atmospheric oxidative capacity-based indicator to infer O3 formation regime, and underscored the importance of characterizing behaviors of radicals to gain insight in atmospheric processes leading to O3 pollution over a photochemically active region.  相似文献   
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