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191.
聚硅硫酸铝的形貌结构和絮凝机理 总被引:3,自引:0,他引:3
以工业水玻璃、工业硫酸铝为原料制得聚硅硫酸铝(PASS)复合絮凝剂,采用电子显微镜观察了不同,nAl/n(Si)的PASS的形貌,借助倒置式生物显微镜分析了PASS所形成絮体的形貌并用激光粒度分析仪对絮体粒度分布进行了测定,通过红外光谱和X-射线衍射研究了PASS中铝与聚硅酸的相互作用情况,考察了模拟江水中胶体颗粒物和PASS水解物的Zeta电位随pH值的变化,在此基础上探讨分析了PASS的絮凝机理和絮凝过程.结果发现:nAl/n(Si)对PASS的形貌有较大影响,絮体粒度分布的数据印证了该结果;红外光谱图表明PASS中有Si-O-Al振动峰出现,峰强度随nAl/n(Si)减小而增大;X-射线衍射图证实了聚硅硫酸铝不是晶体,而是铝水解产物与聚硅酸共同作用形成的无定型聚合物;吸附架桥及粘结卷裹作用是PASS絮凝时的主导作用. 相似文献
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Zhenhao Ling Liqing Wu Yonghong Wang Min Shao Xuemei Wang Weiwen Huang 《环境科学学报(英文版)》2022,34(4):259-285
Secondary organic aerosol(SOA) is a very important component of fine particulate matter(PM2.5) in the atmosphere. However, the simulations of SOA, which could help to elucidate the detailed mechanism of SOA formation and quantify the roles of various precursors, remains unsatisfactory, as SOA levels are frequently underestimated. It has been found that the performance of SOA formation models can be significantly improved by incorporating the emission and evolution of semivolatile and ... 相似文献
194.
畜禽环境中抗生素的去除及其风险评估 总被引:2,自引:0,他引:2
抗生素作为饲料添加剂广泛应用于畜禽养殖业,造成养殖环境抗生素大量蓄积,尤其是在畜禽粪便中,长期的积累不仅污染养殖场内土壤环境,残留的抗生素还会随畜禽粪便进入周边水体及农田环境,威胁农作物及人体健康。目前,国内相关研究主要集中在抗生素的降解工艺及降解规律方面,而对其去除效率的影响因素及风险评价研究相对较少。笔者综述了国内外抗生素的降解转化及去除方式等的研究进展,并概述了抗生素在畜禽环境中的生态风险评估的研究现状,为抗生素的高效去除、风险预估及畜禽粪便资源化安全利用提供理论基础和技术支撑。 相似文献
195.
Bottom ash is the major by-product of municipal solid waste incineration(MSWI), and is often reused as an engineering material, such as road-base aggregate. However, some metals(especially aluminum) in bottom ash can react with water and generate gas that could cause expansion and failure of products containing the ash; these metals must be removed before the ash is utilized. The size distribution and the chemical speciation of metals in the bottom ash from two Chinese MSWI plants were examined in this study, and the recovery potential of metals from the ash was evaluated. The metal concentrations in these bottom ashes were lower than that generated in other developed countries. Specifically, the contents of Al,Fe, Cu and Zn were 18.9–29.2, 25.5–32.3, 0.7–1.0 and 1.6–2.5 g/kg, respectively. Moreover,44.9–57.0 wt.% of Al and 55.6–75.4 wt.% of Fe were distributed in bottom ash particles smaller than 5 mm. Similarly, 46.6–79.7 wt.% of Cu and 42.9–74.2 wt.% of Zn were concentrated in particles smaller than 3 mm. The Fe in the bottom ash mainly existed as hematite, and its chemical speciation was considered to limit the recovery efficiency of magnetic separation. 相似文献
197.
Qin Shao Machelle D. Wilson Christopher S. Romanek Keith A. Hobson 《Environmental and Ecological Statistics》2004,11(3):323-337
A temporal record of environmental conditions is often contained within accretionary biological tissue. These records can provide knowledge of the environmental conditions that existed at the time the tissue was formed. In this study, we look at trace element concentrations and isotopic ratios of carbon and nitrogen as contained in baleen from bowhead whales in the eastern and western Arctic Ocean. Time series techniques, including maximum likelihood method and likelihood ratio tests, are applied to analysis of data and inference about their mean structures. 相似文献
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Sihua Lu Ying Liu Min Shao Shan Huang 《Frontiers of Environmental Science & Engineering》2007,1(2):147-152
Volatile organic compounds (VOCs) were measured at six sites in Beijing in August, 2004. Up to 148 VOC species, including C3 to C12 alkanes, C3 to C11 alkenes, C6 to C12 aromatics, and halogenated hydrocarbons, were quantified. Although the concentrations differed at the sites, the chemical compositions were similar, except for the Tongzhou site where aromatics were significantly high in the air. Based on the source profiles measured from previous studies, the source apportionment of ambient VOCs was preformed by deploying the chemical mass balance (CMB) model. The results show that urban VOCs are predominant from mobile source emissions, which contribute more than 50% of the VOCs (in mass concentrations) to ambient air at most sites. Other important sources are gasoline evaporation, painting, and solvents. The exception is at the Tongzhou site where vehicle exhaust, painting, and solvents have about equal contribution, around 35% of the ambient VOC concentration. As the receptor model is not valid for deriving the sources of reactive species, such as isoprene and 1,3-butadiene, other methodologies need to be further explored. 相似文献