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111.
Aging activity of DDE in dissimilar rice soils in a greenhouse experiment   总被引:2,自引:0,他引:2  
Yao FX  Yu GF  Wang F  Yang XL  Jiang X 《Chemosphere》2008,71(6):1188-1195
A green-house study was conducted in late 2005 to investigate the aging behavior of p,p'-DDE in two types of soil, Hydragric Anthrosols (An) and Hydragric Acrisols (Ac), according to the World Reference Base (WRB) [FAO/ISRIC/ISSS. 1998. World reference base for soil resources. World soil resources reports, Rome. p. 87]. Paddy rice and dry rice were grown in submerged paddy soils and non-submerged upland soils, respectively. The concentration of extractable p,p'-DDE in fresh DDE-spiked soils was 746.2ngg(-1). During the first few weeks of the experiment, the extractability of p,p'-DDE became increasingly low as the aging period prolonged. However, certain amount of p,p'-DDE that had been captured by soil minerals and organic matter (OM) could be released and became extractable in the later period. The extractability of p,p'-DDE in submerged soils was significantly lower than that in non-submerged soil, because flooding could increase the binding of pollutants to soil particles. The plantation of both dry rice and paddy rice slowed down the aging process of p,p'-DDE. After one month's growth of rice, p,p'-DDE bound to soil particles was released and became extractable. The OM and silt content of An are higher than that of Ac, resulting in more bound residues and relative lower extractability of p,p'-DDE in An. In addition, the extractability of p,p'-DDE could be reduced by the addition of rice straw to soils.  相似文献   
112.
A passive air sampler was developed for collecting polycyclic aromatic hydrocarbons (PAHs) in air mass from various directions. The airflow velocity within the sampler was assessed for its responses to ambient wind speed and direction. The sampler was examined for trapped particles, evaluated quantitatively for influence of airflow velocity and temperature on PAH uptake, examined for PAH uptake kinetics, calibrated against active sampling, and finally tested in the field. The airflow volume passing the sampler was linearly proportional to ambient wind speed and sensitive to wind direction. The uptake rate for an individual PAH was a function of airflow velocity, temperature and the octanol-air partitioning coefficient of the PAH. For all PAHs with more than two rings, the passive sampler operated in a linear uptake phase for three weeks. Different PAH concentrations were obtained in air masses from different directions in the field test.  相似文献   
113.
Fossil fuels are currently the major energy source and are rapidly consumed to supply the increasing energy demands of mankind. CO2, a product of fossil fuel combustion, leads to climate change and will have a serious impact on our environment. There is an increasing need to mitigate CO2 emissions using carbon–neutral energy sources. Therefore, research activities are devoted to CO2 capture, storage and utilization. For instance, photocatalytic reduction of CO2 into hydrocarbon fuels is a promising avenue to recycle carbon dioxide. Here we review the present status of the emission and utilization of CO2. Then we review the photocatalytic conversion of CO2 by TiO2, modified TiO2 and non-titanium metal oxides. Finally, the challenges and prospects for further development of CO2 photocatalytic reduction are presented.  相似文献   
114.
This study described the use of clay impregnated by KI in gas phase elemental mercury (Hgo) removal in flue gas. The effects of KI loading, temperature, O2, SO2 and H2O on Hgo removal were investigated using a fixed bed reactor. The Hgo removal efficiency of KI-clay with 3% KI loading could maintain at a high level (approximately 80 %) after 3 h. The KI-clay demonstrated to be a potential adsorbent for Hgo removal when compared with activated carbon based adsorbent. O2 was found to be an important factor in improving the Hgo removal. O2 was demonstrated to assist the transfer of KI to I2 on the surface of KI-clay, which could react with Hgo directly. NO and SO2 could slightly improve Hgo removal, while H2O inhibited it greatly. The results indicated that after adsorption, most of the mercury escaped from the surface again. Some of the mercury may have been oxidized as it left the surface. The results demonstrated that the chemical reaction primarily occurred between KI and mercury on the surface of the KI-clay.  相似文献   
115.
Membrane modification is one of the most feasible and effective solutions to membrane fouling problem which tenaciously hampers the further augmentation of membrane separation technology. Blending modification with nanoparticles (NPs), owing to the convenience of being incorporated in established membrane production lines, possesses an advantageous viability in practical applications. However, the existing blending strategy suffers from a low utilization efficiency due to NP encasement by membrane matrix. The current study proposed an improved blending modification approach with amphiphilic NPs (aNPs), which were prepared through silanization using 3-(Trimethoxysilyl)propyl methacrylate (TMSPMA) as coupling agents and ZnO or SiO2 as pristine NPs (pNPs), respectively. The Fourier transform infrared and X-ray photoelectron spectroscopy analyses revealed the presence of appropriate organic components in both the ZnO and SiO2 aNPs, which verified the success of the silanization process. As compared with the pristine and conventional pNP-blended membranes, both the ZnO aNP-blended and SiO2 aNP-blended membranes with proper silanization (100% and 200%w/w) achieved a significantly increased blending efficiency with more NPs scattering on the internal and external membrane surfaces under scanning electron microscope observation. This improvement contributed to the increase of membrane hydrophilicity. Nevertheless, an extra dosage of the TMSPMA led to an encasement of NPs, thereby adversely affecting the properties of the resultant membranes. On the basis of all the tests, 100% (w/w) was selected as the optimum TMSPMA dosage for blending modification for both the ZnO and SiO2 types.
  相似文献   
116.
We implemented the online coupled WRF-Chem model to reproduce the 2013 January haze event in North China, and evaluated simulated meteorological and chemical fields using multiple observations. The comparisons suggest that temperature and relative humidity (RH) were simulated well (mean biases are–0.2K and 2.7%, respectively), but wind speeds were overestimated (mean bias is 0.5 m?s–1). At the Beijing station, sulfur dioxide (SO2) concentrations were overpredicted and sulfate concentrations were largely underpredicted, which may result from uncertainties in SO2 emissions and missing heterogeneous oxidation in current model. We conducted three parallel experiments to examine the impacts of doubling SO2 emissions and incorporating heterogeneous oxidation of dissolved SO2 by nitrogen dioxide (NO2) on sulfate formation during winter haze. The results suggest that doubling SO2 emissions do not significantly affect sulfate concentrations, but adding heterogeneous oxidation of dissolved SO2 by NO2 substantially improve simulations of sulfate and other inorganic aerosols. Although the enhanced SO2 to sulfate conversion in the HetS (heterogeneous oxidation by NO2) case reduces SO2 concentrations, it is still largely overestimated by the model, indicating the overestimations of SO2 concentrations in the North China Plain (NCP) are mostly due to errors in SO2 emission inventory.
  相似文献   
117.
二噁英及类二噁英物质(dioxin-like compounds,DLCs)是一类高毒性化合物的统称,对其毒理学的研究一直都是备受关注的焦点。已有证据表明,高毒二噁英及DLCs主要通过激活芳香烃受体(aryl hydrocarbon receptor,AhR),进而导致一系列生物毒性。近年来越来越多的新型有机污染物被发现具有类二噁英分子结构并存在潜在生物毒性或活性。与此同时,如何评估二噁英及DLCs对本土生态生物的危害及其风险也受到更多关注。本文综述了近几年发现的新型二噁英物质、二噁英及DLCs的AhR致毒机制、相应的有害结局路径(adverse outcome pathway,AOP)及AOP在指导探索新型物质及物种敏感性方面上的新观点和发现,同时也展望了二噁英及DLCs在生态毒理及风险评估领域的未来研究方向。  相似文献   
118.
采用多溴联苯醚(PBDEs)对我国广泛分布生物物种的生态毒性数据,根据欧盟现有化学物质风险评价技术指导文件,对不同环境介质中PBDEs预测无效应浓度(PNEC)进行了推导。结果表明:我国淡水环境PBDEs(四溴、五溴、八溴)的PNEC水分别为50μg·L~(-1)、0.53μg·L~(-1)、0.017μg·L~(-1)。沉积物环境PBDEs(四溴、五溴、八溴和十溴)的PNEC沉积物分别为823.35 mg·kg~(-1)wt、1.55 mg·kg~(-1)dw、12.72 mg·kg~(-1)dw、38.41 mg·kg~(-1)dw。土壤环境PBDEs(四溴、五溴、八溴和十溴)的PNEC土壤分别为668.3mg·kg~(-1)wt、0.38 mg·kg~(-1)dw、147 mg·kg~(-1)dw、98 mg·kg~(-1)dw。次生毒性PBDEs(五溴、八溴和十溴)的PNEC经口分别为0.3~0.7 mg·kg~(-1)、0.56 mg·kg~(-1)、2 500 mg·kg~(-1)。该数值期为我国PBDEs的环境风险评价提供科学基础。  相似文献   
119.
分析重金属在"环境-牛肝菌-人体"系统中的迁移、富集规律,为牛肝菌重金属污染防治及食用安全评价提供依据。采用ICP-AES法测定云南野生牛肝菌及其生长土壤中Cd和Hg含量,分析牛肝菌对重金属的富集特征及牛肝菌的重金属含量与土壤的联系,推测云南野生牛肝菌中重金属Cd和Hg的来源;根据FAO/WHO规定的每周Cd或Hg的允许摄入量(provisional tolerable weekly intake,PTWI)评估牛肝菌的重金属暴露风险。结果显示,(1)不同种类、产地牛肝菌中Hg和Cd含量具有差异,菌盖中Hg、Cd的含量分别在0.92~16.00 mg·kg~(-1)dw,4.97~24.07 mg·kg~(-1)dw之间,菌柄的Hg、Cd含量分别介于0.46~8.2mg·kg~(-1)dw和2.11~22.08 mg·kg~(-1)dw之间。同一种牛肝菌菌盖中Hg或Cd的含量均高于菌柄(Q(C/S)1),表明牛肝菌菌盖对Hg和Cd的富集能力强于菌柄。(2)牛肝菌菌盖和菌柄对Hg的富集系数(bioaccumulation factor,BCF)分别在1.72~19.12和1.30~6.40之间,菌盖、菌柄的Hg含量均高于相应生长土壤的含量,其中采自楚雄永仁县的铜色牛肝菌菌盖的Hg含量是土壤的19.12倍,表明牛肝菌中的Hg不仅来自土壤,根据山地"Hg诱捕效应"及云南大气Hg升高的相关报道,可以推测云南野生牛肝菌中的Hg主要来源于大气沉降。(3)牛肝菌菌盖、菌柄对Cd的富集系数分别在0.16~1.82和0.07~1.67之间,多数牛肝菌的Cd含量低于土壤含量,表明牛肝菌中的Cd主要来自生长土壤。(4)假设成年人(60 kg)毎周食用300 g新鲜牛肝菌则多数牛肝菌菌盖、菌柄的Hg摄入量低于PTWI(Hg)标准,Hg的暴露风险较低(假设未通过其他途径摄入Hg);食用300 g黑粉孢牛肝菌菌盖或菌柄摄入的Cd达到0.722 mg和0.662 mg,超过PTWI(Cd)标准,食用有Cd暴露风险。  相似文献   
120.
为了明确内质网应激(endoplasmic reticulum stress,ERS)介导的凋亡在2,2’,4,4’-四溴联苯醚(2,2’,4,4’-tetrabromodiphenylether,PBDE-47)致大鼠神经毒性中的作用,在脑发育的突增期(出生第10天),分别用0 mg·kg~(-1)、1 mg·kg~(-1)、5 mg·kg~(-1)和10mg·kg~(-1)PBDE-47进行单次灌胃染毒,并从出生第8天开始每天给予150 mg·kg~(-1)ERS抑制剂4-苯基丁酸(phenylbutyric acid,PBA),持续3周。仔鼠出生第8周末,从对照组、10 mg·kg~(-1)PBDE-47处理组、150 mg·kg~(-1)PBA处理组和150 mg·kg~(-1)PBA+10mg·kg~(-1)PBDE处理组中随机选取8只大鼠进行水迷宫实验。然后将所有动物断头处死,分离大鼠海马组织,观察其海马组织形态学改变、测定ERS标志分子(GRP78、IRE1和CHOP)和凋亡相关蛋白Cyt c的表达水平。结果显示,10 mg·kg~(-1)PBDE-47处理可导致雌性大鼠海马CA4区细胞排列紊乱、锥形神经细胞数量减少甚至消失,尼氏小体数量减少,大鼠逃避潜伏期延长(P0.05)。5和10 mg·kg~(-1)PBDE-47处理可显著上调ERS相关蛋白IRE1和CHOP的表达水平(P0.05),并明显增强海马组织凋亡相关蛋白Cyt c的表达。PBA干预可明显降低PBDE-47诱导的IRE1和CHOP以及Cyt c蛋白的表达水平,提示PBDE-47可通过ERS介导凋亡,导致大鼠海马组织损伤,从而影响大鼠学习记忆功能。  相似文献   
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