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351.
In order to efficiently remove volatile organic compounds (VOCs) from indoor air, onedimensional titanate nanotubes (TiNTs) were hydrothermally treated to prepare TiO2 nanocrystals with different crystalline phases, shapes and sizes. The influences of various acids such as CH3COOH, HNO3, HCl, HF and H2SO4 used in the treatment were separately compared to optimize the performance of the TiO2 nanocrystals. Comparedwith the strong and corrosive inorganic acids, CH3COOH was not only safer andmore environmentally friendly, but also more efficient in promoting the photocatalytic activity of the obtained TiO2. Itwasobserved that the anatase TiO2 synthesized in 15 mol/L CH3COOH solution exhibited the highest photodegradation rate of gaseous toluene (94%), exceeding that of P25 (44%) by a factor ofmore than two. The improved photocatalytic activity was attributed to the small crystallite size and surface modification by CH3COOH. The influence of relative humidity (20%-80%) on the performance of TiO2 nanocrystals was also studied. The anatase TiO2 synthesized in 15 mol/L CH3COOH solution was more tolerant tomoisture than the other TiO2 nanocrystals and P25.  相似文献   
352.
To assess the responses of the soil microbial community to chronic ozone (O3), wheat seedlings (Triticum aestivum Linn.) were planted in the field and exposed to elevated O3 (eO3) concentration. Three treatments were employed: (1) Control treatment (CK), AOT40 = 0; (2) O3-1, AOT40 = 1.59 ppm•h; (3) O3-2, AOT40 = 9.17 ppm•h. Soil samples were collected for the assessment of microbial biomass C, community-level physiological profiles (CLPPs), and phospholipid fatty acids (PLFAs). EO3 concentration significantly reduced soil microbial carbon and changed microbial CLPPs in rhizosphere soil, but not in non-rhizosphere soil. The results of the PLFAs showed that eO3 concentrations had significant effects on soil community structure in both rhizosphere and non-rhizosphere soils. The relative abundances of fungal and actinomycetous indicator PLFAs decreased in both rhizosphere and non-rhizosphere soils, while those of bacterial PLFAs increased. Thus the results proved that eO3 concentration significantly changed the soil microbial community function and composition, which would influence the soil nutrient supply and carbon dynamics under O3 exposure.  相似文献   
353.
Na+ doped WO3 nanowire photocatalysts were prepared by using post-treatment (surface doping) and in situ (bulk doping) doping methods. Photocatalytic degradation of Methyl Blue was tested under visible light irradiation, the results showed that 1 wt.% Na+ bulk-doped WO3 performed better, with higher photoactivity than surface-doped WO3. Photoelectrochemical characterization revealed the differences in the photocatalytic process for surface doping and bulk doping. Uniform bulk doping could generate more electron–hole pairs, while minimizing the chance of electron–hole recombination. Some bulk properties such as the bandgap, Fermi level and band position could also be adjusted by bulk doping, but not by surface doping.  相似文献   
354.
In recent years, engineered nanoparticles, as a new group of contaminants emerging in natural water, have been given more attention. In order to understand the behavior of nanoparticles in the conventional water treatment process, three kinds of nanoparticle suspensions, namely multi-walled carbon nanotube-humic acid (MWCNT-HA), multi-walled carbon nanotube-N,N-dimethylformamide (MWCNT-DMF) and nanoTiO2-humic acid (TiO2-HA) were employed to investigate their coagulation removal efficiencies with varying aluminum chloride (AlCl3) concentrations. Results showed that nanoparticle removal rate curves had a reverse “U” shape with increasing concentration of aluminum ion (Al3 +). More than 90% of nanoparticles could be effectively removed by an appropriate Al3 + concentration. At higher Al3 + concentration, nanoparticles would be restabilized. The hydrodynamic particle size of nanoparticles was found to be the crucial factor influencing the effective concentration range (ECR) of Al3 + for nanoparticle removal. The ECR of Al3 + followed the order MWCNT-DMF > MWCNT-HA > TiO2-HA, which is the reverse of the nanoparticle size trend. At a given concentration, smaller nanoparticles carry more surface charges, and thus consume more coagulants for neutralization. Therefore, over-saturation occurred at relatively higher Al3 + concentration and a wider ECR was obtained. The ECR became broader with increasing pH because of the smaller hydrodynamic particle size of nanoparticles at higher pH values. A high ionic strength of NaCl can also widen the ECR due to its strong potential to compress the electric double layer. It was concluded that it is important to adjust the dose of Al3 + in the ECR for nanoparticle removal in water treatment.  相似文献   
355.
安徽运漕地区隐伏地质体三维模型构建及应用   总被引:1,自引:0,他引:1  
以安徽运漕地区为例,从地层与岩体特征入手,结合地质—地球物理信息,开展浅覆盖区隐伏地质体三维建模研究。介绍了划分建模单元及建立地质—地球物理模型和构建最终地质体模型的过程,针对区内侵入岩、浅成侵入岩发育情况,提出采用地层与岩体并行建模的思路,通过"先分后合"的方式构建地质体三维模型。最终的成果模型反映了研究区隐伏地质体的主要物性层(建模单元)、主要断裂与褶皱构造、岩浆隆起构造的空间展布特征,模型将区域重磁、断层展布、已知矿点与闪长岩类及三叠世周冲村组叠加显示,以三维可视化的方式标识了成矿有利地段的空间位置。  相似文献   
356.
以Cu-TEPA为模板剂原位水热合成一系列具有优良deNOx特性的Cu-SSZ-13/堇青石整体式催化剂.为进一步改善其氨的选择性催化还原氮氧化物的活性,在制备过程中添加HF对原位制备Cu-SSZ-13/堇青石整体式催化剂进行改性.利用XRD、SEM、XPS、BET、ICP-AES等对样品进行了表征.结果表明,当nHF/nAl在0.015—0.0375时,晶化72 h的Cu-SSZ-13/堇青石表现出了优异的脱硝性能和抗老化性能,其最大转化率为99.8%,NOx转化率保持在90%以上的最宽活性温度窗口为280—640℃,而无HF的新鲜样品的NOx转化率保持在90%以上的活性温度窗口为300—580℃;720℃老化50 h处理后,nHF/nAl=0.015—0.0375样品的NOx转化率保持在90%以上的最宽活性温度窗口为360—520℃,未添加HF的老化样品相应的活性温度窗口为400—500℃.无论新鲜还是老化,nHF/nAl=0.015—0.0375样品在低温段200—300℃和高温段500—700℃的NOx转化率基本都大于未添加HF的样品.结合表征结果,在催化剂原位水热合成过程中HF的加入既提高了样品的相对结晶度和负载量,又增大了样品的比表面积和比孔容,且提高了Cu-SSZ-13/堇青石骨架结构的稳定性,进而在一定程度上改善了Cu-SSZ-13/堇青石的高温脱硝活性和水热稳定性.  相似文献   
357.
利用紫外及红外吸收光谱等分析手段对365 nm光照下HNO3在气相与SiO2表面的光解反应进行了研究.考察了HNO3浓度、光照时间、相对湿度等条件对反应的影响.结果表明:随着HNO3浓度及光照时间的增加,光解产生的NO2和NO浓度均呈指数增加;无水汽情况下,400 Pa的HNO3光解45 min后,产生NO2及NO浓度比气相光解产生的分别高约3及1.7倍.HNO3光解产生的HONO的浓度随相对湿度的增加而呈线性增加,在SiO2颗粒物表面光解产生的NO2浓度随着相对湿度的增加而减少,而NO浓度则随之增大.400 Pa的HNO3光照45 min后,SiO2表面光解产生的HONO浓度是气相光解的3倍、SiO2表面暗反应的约30倍.  相似文献   
358.
Geographic range size is often conceptualized as a fixed attribute of a species and treated as such for the purposes of quantification of extinction risk; species occupying smaller geographic ranges are assumed to have a higher risk of extinction, all else being equal. However many species are mobile, and their movements range from relatively predictable to‐and‐fro migrations to complex irregular movements shown by nomadic species. These movements can lead to substantial temporary expansion and contraction of geographic ranges, potentially to levels which may pose an extinction risk. By linking occurrence data with environmental conditions at the time of observations of nomadic species, we modeled the dynamic distributions of 43 arid‐zone nomadic bird species across the Australian continent for each month over 11 years and calculated minimum range size and extent of fluctuation in geographic range size from these models. There was enormous variability in predicted spatial distribution over time; 10 species varied in estimated geographic range size by more than an order of magnitude, and 2 species varied by >2 orders of magnitude. During times of poor environmental conditions, several species not currently classified as globally threatened contracted their ranges to very small areas, despite their normally large geographic range size. This finding raises questions about the adequacy of conventional assessments of extinction risk based on static geographic range size (e.g., IUCN Red Listing). Climate change is predicted to affect the pattern of resource fluctuations across much of the southern hemisphere, where nomadism is the dominant form of animal movement, so it is critical we begin to understand the consequences of this for accurate threat assessment of nomadic species. Our approach provides a tool for discovering spatial dynamics in highly mobile species and can be used to unlock valuable information for improved extinction risk assessment and conservation planning.  相似文献   
359.
Previous studies show that conservation actions have prevented extinctions, recovered populations, and reduced declining trends in global biodiversity. However, all studies to date have substantially underestimated the difference conservation action makes because they failed to account fully for what would have happened in the absence thereof. We undertook a scenario‐based thought experiment to better quantify the effect conservation actions have had on the extinction risk of the world's 235 recognized ungulate species. We did so by comparing species’ observed conservation status in 2008 with their estimated status under counterfactual scenarios in which conservation efforts ceased in 1996. We estimated that without conservation at least 148 species would have deteriorated by one International Union for Conservation of Nature (IUCN) Red List category, including 6 species that now would be listed as extinct or extinct in the wild. The overall decline in the conservation status of ungulates would have been nearly 8 times worse than observed. This trend would have been greater still if not for conservation on private lands. While some species have benefited from highly targeted interventions, such as reintroduction, most benefited collaterally from conservation such as habitat protection. We found that the difference conservation action makes to the conservation status of the world's ungulate species is likely to be higher than previously estimated. Increased, and sustained, investment could help achieve further improvements.  相似文献   
360.
研究环境内分泌干扰物3-甲基-4-硝基酚(3-methyl-4-nitrophenol,PNMC)对公鸡睾丸早期发育的影响。48只1 d龄白羽公鸡随机分成3个组,分别为对照组、10和100 mg·L-1PNMC处理组,连续饮水42 d。检测公鸡的生长性能、睾丸重量和指数、睾丸的结构变化、血清激素水平和睾丸中CYP17A1及其相关基因的表达情况。结果显示:与对照组相比,10 mg·L-1PNMC处理组显著降低公鸡的生长性能;睾丸重量和睾丸指数均无显著性变化;睾丸细精管生精细胞均有不同程度的空泡兼或脱落;血清孕酮和雌二醇水平均无显著性差异,睾酮水平随饮水中PNMC浓度的升高呈递减的趋势;公鸡睾丸中CYP17A1、HSD3B2和CYP19A1有升高的趋势,HSD17B4在10 mg·L-1PNMC组呈降低的趋势,在100 mg·L-1PNMC组呈升高的趋势。结果表明:饮水中添加10 mg·L-1PNMC显著影响了公鸡的生长性能;饮水中添加100 mg·L-1PNMC引起公鸡睾丸细精管生精细胞变性、坏死,造成结构病理损伤,从而对生殖系统造成损伤。  相似文献   
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