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81.
采用批量实验方法,研究了菲(Phe)在渤海湾入海河流与河口沉积物上的吸附-解吸过程,以及吸附参数与沉积物有机质性质之间的相关关系.结果表明,Phe在所有沉积物上的吸附和解吸等温线均能由线性分配模型和Freundlich模型很好地拟合.其中,线性分配系数KD值变化在58~743L·kg-1之间,与TOC、TN、DOC、Phe、C/N和DOC/TOC之间呈现显著正相关关系.Freundlich吸附能力参数KF和KFOC值分别在75~367μg1-N·kg-1·LN和2253~34743μg1-N·kg-1·LN之间,均与DOC/TOC呈现显著负相关关系,而与其它有机质参数之间相关性不显著.相比较而言,大多数沉积物的解吸等温线用Freundlich模型拟合的效果更好,并且具有明显的解吸滞后现象.有机质的含量和性质均是影响Phe在沉积物上吸附-解吸的重要因素.对于频繁受到人类活动影响的河流沉积物,溶解性有机质的影响就更为重要. 相似文献
82.
As the biggest inter-basin water transfer scheme in the world,the South-to-North Water Diversion Project(SNWD) was designed to alleviate the water crisis in North China.The main channel of the middle route of the SNWD is of great concern in terms of the drinking water quality.In this study,we tested the hypothesis that the dissolved organic matter(DOM) derived from the planktonic algae causes the rising levels of CODMn along the middle route by monitoring data on water quality(2015-20... 相似文献
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Determination of ammonium on an integrated microchip with LED-induced fluorescence detection 总被引:1,自引:0,他引:1
A simply fabricated microfluidic device integrated with a fluorescence detection system has been developed for on-line determination of ammonium in aqueous samples. A 365-nm light-emitting diode (LED) as an excitation source and a minor band pass filter were mounted into a polydimethylsiloxane (PDMS)-based microchip for the purpose of miniaturization of the entire analytical system. The ammonium sample reacted with o-phthaldialdehyde (OPA) on-chip with sodium sulfite as reducing reagent to produce a fluorescent isoindole derivative, which can emit fluorescence signal at about 425 nm when excited at 365 nm. Effects of pH, flow rate of solutions, concentrations of OPA-reagent, phosphate and sulfite salt were investigated. The calibration curve of ammonium in the range of 0.018-1.8 μupg/mL showed a good linear relationship with R2 = 0.9985, and the detection limit was (S/N = 3) 3.6 × 10-4 μupg/mL. The relative standard deviation was 2.8% (n = 11) by calculating at 0.18 μupg/mL ammonium for repeated detection. The system was applied to determine the ammonium concentration in rain and river waters, even extent to other analytes fluorescence detection by the presented device. 相似文献
85.
WU Yu-qiong WANG Chong-gang WANG Yun ZHAO Yang CHEN Yi-xin ZUO Zheng-hong 《环境科学学报(英文版)》2007,19(9):1129-1135
It has been reported that there is an interaction between Benzo[a]pyrene (BaP), a widespread carcinogenic polycyclic aromatic hydrocarbon, and tributyltin (TBT), an organometal used as an antifouling biocide. This study was therefore designed to examine the potential in vivo influence of BaP, TBT and their mixture on splenic antioxidant defense systems of Sebastiscus marmoratus. The fish were exposed to water containing environmentally relevant concentrations of BaP, TBT and their mixture. Spleens were collected for biochemical analysis after exposure for 7, 25, 50 d and after recovery for 7, 20 d. Cotreatment with BaP and TBT for 7 d potentiated the induction of glutathione peroxidase (GPx) activity by BaP or TBT alone. The cotreatment for 25 and 50 d resulted in inhibition of GPx activity, which was similar to the effect of TBT. Splenic glutathione S-transferase (GST) activities were significantly elevated in S. marmoratus exposed to BaP starting from 7 d and remained high up to 25 d. However, no further activity change was found with prolonged exposure. Cotreatment of BaP and TBT primarily inhibited the GST activity, which was similar to the effect of TBT. Cotreatment with BaP and TBT for 25 or 50 d potentiated the depletion of GSH (glutathione) by BaP or TBT alone. MDA (malondialdehyde) contents in spleen of S. marmoratus were not significantly altered compared with the control during the test period. Spleen, as an immune organ, is sensitive to exposure of BaP or TBT. It should have an effective mechanism to counteract oxidative damage. Antioxidative defense systems in spleen of S. marmoratus should be considered as potential biomarkers. Short-term exposure of BaP or TBT could result in induction of antioxidant defense system. A significant decrease of these indices, such as GSH, GST, GPx might indicate more severe contamination. 相似文献
86.
纳米ZnO颗粒是应用最为广泛金属型纳米颗粒(nanoparticles,NPs)之一,对作物和土壤微生物的影响值得关注.丛枝菌根(arbuscular mycorrhizal,AM)是自然界中普遍存在的植物-真菌共生体,对各种环境胁迫具有一定的抵御能力,但菌根效应受土壤和植物磷含量的影响.分别设置0、20、50、100 mg·kg~(-1)这4个磷水平,在接种或不接种AM真菌Funneliformis mosseae、添加或不添加纳米ZnO(500 mg·kg~(-1))条件下在温室中利用玉米进行土壤盆栽试验.结果表明,纳米ZnO没有显著影响玉米生长,但不利于菌根侵染和磷素吸收,并引起锌在植物体内的积累.纳米ZnO和高磷降低玉米菌根侵染,但AM真菌在所有磷水平下均显著促进植物生长.施磷和接菌均可使土壤p H升高、降低纳米ZnO源锌的生物有效性,从而降低锌向玉米地上部分的转运和积累,体现出一定保护作用.接菌在多数情况下显示出积极的菌根效应,尤其在低磷、添加纳米ZnO条件下更为显著.结果首次表明,AM真菌、磷肥均有助于减轻纳米ZnO引起的土壤污染及其所产生的生态和健康风险. 相似文献
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90.
多环芳烃在土壤-蔬菜界面上的迁移与积累特征 总被引:5,自引:4,他引:5
研究了南京市工业区周边污染农田土壤中16种优先控制的多环芳烃(PAHs)污染物由土壤向蔬菜迁移的特征及其在蔬菜体内的积累规律.结果表明,蔬菜体内PAHs的浓度与其生长土壤环境中PAHs的浓度呈正相关关系,且土壤中PAHs的浓度显著高于生长在该土壤上的蔬菜根和茎叶组织中的浓度(p<0.05),根中PAHs的浓度显著高于茎叶组织中的浓度(p<0.05).蔬菜根中低环PAHs与PAHs总浓度的比值(∑LMW-PAHs∑PAHs)显著高于其土壤中相应的比例(p<0.05).与高环PAHs(HMW-PAHs)相比,LMW-PAHs易被蔬菜根部吸收,表现出较高的生物有效性.生长在同种污染土壤中的4种叶菜类蔬菜体内PAHs的浓度差异不显著,即这4种蔬菜吸收积累PAHs的差异较小. 相似文献