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301.
为研究香溪河库湾沉积物-水界面的营养盐交换特征,于2016年6月采集香溪河库湾上覆水和沉积物间隙水样品,分析不同形态氮、磷的空间分布特征并进行相关性分析,计算沉积物-水界面氮、磷的释放通量.结果表明:香溪河库湾上覆水和沉积物间隙水中ρ(TP)的变化范围分别为0.484~0.927和0.511~2.220 mg/L,ρ(TN)的变化范围分别为0.739~4.302和3.571~14.011 mg/L;上覆水和沉积物间隙水中氮、磷质量浓度在沿程和垂向上具有一定的变化规律,上游区域沉积物间隙水中氮、磷质量浓度大于下游区域,沉积物间隙水中氮、磷质量浓度明显大于上覆水;香溪河沉积物总体上表现为PO43--P和NH4+-N的"源",中下游区域沉积物表现为NO3--N的"源",而中上游区域表现为NO3--N的"汇";PO43--P的释放通量范围为0.129~0.339 mg/(m2·d),NH4+-N的释放通量范围为0.213~1.415 mg/(m2·d),NO3--N的释放通量范围为-1.109~3.446 mg/(m2·d).研究显示,上覆水的环境条件对于沉积物-水界面营养盐交换存在一定的影响,但影响程度各有不同. 相似文献
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Jiangsu Wen Changchang M Pengwei Huo Xinlin Liu Maobin Wei Yang Liu Xin Yao Zhongfei M Yongsheng Yan 《环境科学学报(英文版)》2017,29(10):98-107
Visible-light-driven photocatalysis as a green technology has attracted a lot of attention due to its potential applications in environmental remediation. Vesicle Cd Se nano-semiconductor photocatalyst are successfully prepared by a gas template method and characterized by a variety of methods. The vesicle Cd Se nano-semiconductors display enhanced photocatalytic performance for the degradation of tetracycline hydrochloride, the photodegradation rate of78.824% was achieved by vesicle Cd Se, which exhibited an increase of 31.779% compared to granular Cd Se. Such an exceptional photocatalytic capability can be attributed to the unique structure of the vesicle Cd Se nano-semiconductor with enhanced light absorption ability and excellent carrier transport capability. Meanwhile, the large surface area of the vesicle Cd Se nano-semiconductor can increase the contact probability between catalyst and target and provide more surface-active centers. The photocatalytic mechanisms are analyzed by active species quenching. It indicates that h+and UO_2~-are the main active species which play a major role in catalyzing environmental toxic pollutants. Simultaneously, the vesicle Cd Se nano-semiconductor had high efficiency and stability. 相似文献
306.
Sulfur poisoning of V_2O_5/BaSO_4–TiO_2(VBT),V_2O_5/WO_3–TiO_2(VWT) and V_2O_5/BaSO_4–WO_3–TiO_2(VBWT) catalysts was performed in wet air at 350℃ for 3 hr,and activities for the selective catalytic reduction of NO_x with NH_3 were evaluated for 200–500℃.The VBT catalyst showed higher NO_x conversions after sulfur poisoning than the other two catalysts.The introduction of barium sulfate contributed to strong acid sites for the as-received catalyst,and eliminated the redox cycle of active vanadium oxide to some extent,which resulted in a certain loss of activity.Readily decomposable sulfate species formed on VBT-S instead of inactive sulfates on VWT-S.These decomposable sulfates increased the number of strong acid sites significantly.Some sulfate species escaped during catalyst preparation and barium sulfate was reproduced during sulfur poisoning,which protects vanadia from sulfur oxide attachment to a great extent.Consequently,the VBT catalyst exhibited the best resistance to sulfur poisoning. 相似文献
307.
Yunan Chen Yi Yang Bolong Xu Shunhao Wang Bin Li Juan M Jie Gao Yi Y. Zuo Sijin Liu 《环境科学学报(英文版)》2017,29(12):100-114
Environmental exposure and health risk upon engineered nanomaterials are increasingly concerned. The family of mesoporous carbon nanomaterials(MCNs) is a rising star in nanotechnology for multidisciplinary research with versatile applications in electronics,energy and gas storage, and biomedicine. Meanwhile, there is mounting concern on their environmental health risks due to the growing production and usage of MCNs. The lung is the primary site for particle invasion under environmental exposure to nanomaterials. Here, we studied the comprehensive toxicological profile of MCNs in the lung under the scenario of moderate environmental exposure. It was found that at a low concentration of 10 μg/mL MCNs induced biophysical inhibition of natural pulmonary surfactant. Moreover, MCNs at similar concentrations reduced viability of J774 A.1 macrophages and lung epithelial A549 cells.Incubating with nature pulmonary surfactant effectively reduced the cytotoxicity of MCNs.Regarding the pro-inflammatory responses, MCNs activated macrophages in vitro, and stimulated lung inflammation in mice after inhalation exposure, associated with lung fibrosis.Moreover, we found that the size of MCNs played a significant role in regulating cytotoxicity and pro-inflammatory potential of this nanomaterial. In general, larger MCNs induced more pronounced cytotoxic and pro-inflammatory effects than their smaller counterparts. Our results provided valuable information on the toxicological profile and environmental health risks of MCNs, and suggested that fine-tuning the size of MCNs could be a practical precautionary design strategy to increase safety and biocompatibility of this nanomaterial. 相似文献
308.
Ruyuan Jiao Rolando Fabris Christopher W.K. Chow Mary Drikas John van Leeuwen Dongsheng Wang Zhizhen Xu 《环境科学学报(英文版)》2017,29(7):238-245
Minimizing particles in water is a key goal for improving drinking water quality and safety.The media filtration process,as the last step of the solid–liquid separation process,is largely influenced by the characteristics of flocs,which are formed and controlled within the coagulation process.In a laboratory-based study,the impacts of the physical characteristics of flocs formed using aluminum sulfate on the filtration treatment of two comparative water samples were investigated using a photometric dispersion analyzer and a filterability apparatus.In general,the optimum dosage for maximizing filterability was higher than that for minimizing turbidity under neutral p H conditions.For a monomeric aluminum-based coagulant,the charge neutralization mechanism produced better floc characteristics,including floc growth speed and size,than the sweep flocculation mechanism.In addition,the charge neutralization mechanism showed better performance compared to sweep flocculation in terms of DOC removal and floc filterability improvement for both waters,and showed superiority in turbidity removal only when the raw water had high turbidity.For the different mechanisms,the ways that floc characteristics impacted on floc filterability also differed.The low variation in floc size distribution obtained under the charge neutralization mechanism resulted in the flocs being amenable to removal by filtration processes.For the sweep flocculation mechanism,increasing the floc size improved the settling ability of flocs,resulting in higher filter efficiency. 相似文献
309.
DNTS[二硝基甲苯磺酸盐,主要包括2,4-DNT-3-SO3-(2,4-二硝基甲苯-3-磺酸盐)和2,4-DNT-5-SO3-(2,4-二硝基甲苯-5-磺酸盐]是TNT (2,4,6-三硝基甲苯)红水污染土壤中主要污染物质,为研究堆肥化对土壤中DNTS的降解效果,采用有机废物堆肥方法,探讨堆肥化对TNT红水污染土壤中DNTS降解的可行性,以及温度、含水率和pH变化对降解效果的影响.结果表明,有机废物堆肥能处理TNT红水污染土壤,在堆肥60 d内,5个堆肥体系(猪粪+木屑、猪粪+麦壳、污泥+木屑、污泥+麦壳和马粪+木屑)对2,4-DNT-3-SO3-的降解率为65.5%~88.4%,对2,4-DNT-5-SO3-的降解率为60.9%~100%.在第4天各堆肥体系的高温阶段(29.7~53.6℃),5个堆肥化体系中2,4-DNT-3-SO3-总量的49.5%~67.3%被降解,说明各堆体的中温-高温阶段对有机物的降解起重要作用.堆体含水率随堆肥时间的延长呈下降趋势,在堆肥第8天,外源补水至体系含水率为50%,猪粪+麦壳体系对2,4-DNT-3-SO3-的降解率从70.2%增至88.4%,说明适当的外源补水可提高2,4-DNT-3-SO3-的降解率.5个堆肥体系中pH均呈初期上升、后期下降并趋于稳定的趋势,但在整个堆肥过程中,堆体pH始终保持在7.3~8.3之间.研究显示,5个堆肥体系中猪粪+麦壳体系对DNTS的降解率最高,分别为88.4%和100%. 相似文献
310.