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101.
Immobilization of trace elements in contaminated soils by zero-valent iron (ZVI) is a promising remediation method, but questions about its long-term performance remain unanswered. To quantify immobilization and predict possible contaminant remobilization on long timescales detailed knowledge about immobilization mechanisms is needed. This study aimed at assessing the long-term effect of ZVI amendments on dissolved copper and arsenic in contaminated soils, at exploring the immobilization mechanism(s), and at setting up a geochemical model able to estimate dissolved copper and arsenic under different scenarios. Samples from untreated and ZVI-treated plots in two field experiments where ZVI had been added 6 and 15 years ago were investigated by a combination of batch experiments, geochemical modeling and extended X-ray absorption fine structure (EXAFS) spectroscopy. Dissolved copper and arsenic concentrations were described by a multisurface geochemical model with surface complexation reactions, verified by EXAFS. The ZVI remained “reactive” after 6–15 years, i.e. the dissolved concentrations of copper and arsenic were lower in the ZVI-treated than in the untreated soils. There was a shift in copper speciation from organic matter complexes in the untreated soil to surface complexes with iron (hydr)oxides in the ZVI-treated soil. The pH value was important for copper immobilization and ZVI did not have a stabilizing effect if pH was lower than about 6. Immobilization of arsenic was slightly pH-dependent and sensitive to the competition with phosphate. If phosphate was ignored in the modeling, the dissolution of arsenate was greatly underestimated.  相似文献   
102.
Understanding the mechanisms responsible for long-term storage of organic carbon (OC) in marine environment is important for studying the marine carbon cycling and predicting how the global carbon cycle will respond to climate change. It is estimated that more than 20% of the OC in marine sediments is associated with iron oxides and thus these complexes are one of the most important factors in the long-term storage of OC. The OC-iron oxide (OC-Fe) association can be formed through either adsorption or co-precipitation, but the dominant mechanism of OC-Fe association in marine environments is co-precipitation. The combination of OC from different sources with iron oxides is selective. Iron oxides preferentially combine with marine OC in most marine environments, but in estuarine delta regions they prefer terrestrial OC. Due to large inputs of terrestrial materials, high primary production and frequent re-suspension, estuarine and marginal seas are suitable sites for OC-Fe association studies, which should be emphasized in the future.  相似文献   
103.
Denitrification influences the nitrogen budget in estuaries by removing fixed nitrogen from the inorganic pool; rates are dependent on both geological and geographic conditions as well as increasing anthropogenic impacts. In this study the effects of copper (Cu), chromium (Cr), zinc (Zn), cadmium (Cd) and lead (Pb), on the denitrification pathway were evaluated in subtidal and intertidal sediments of the Douro River estuary. Dinitrogen, N2O and NO2 production rates were measured in triplicate slurries of field samples under different treatments of metal concentrations. Results demonstrated that similar metal amendments led to different site responses for denitrification, suggesting that variations in sediment properties (metal concentrations, grain size, organic matter content, etc.) and/or differences in denitrifying community tolerance modulate the level of metal toxicity. Denitrifying communities in subtidal muddy sediments were not affected by increasing concentrations of metals. In contrast, intertidal sandy sites revealed high sensitivity to almost all trace metals tested; almost complete inhibition by Cr (95%) and Cu (85%) was observed for 98 and 79 μg per gram of wet sediment respectively, and by Zn (92%) at the highest concentration added (490 μg per gram of wet sediment). Moreover, the addition of trace metals stimulated N2O and NO2 accumulation in intertidal sandy (Zn, Cu, Cr and Cd) and muddy sediments (Cu and Zn), demonstrating a pronounced inhibitory effect on specific steps within the denitrification enzymatic system. In summary, the results obtained suggest that, according to the type of estuarine sediment, trace metals cannot only reduce total N removal from an estuary via denitrification but also can enhance the release of N2O, a powerful greenhouse gas.  相似文献   
104.
掺铝氧化锌厚膜制备及其对三甲胺和海产品鲜度的敏感性   总被引:2,自引:0,他引:2  
用烧结法制备掺铝氧化锌厚膜,把氧化锌粉末分别同0%,1%,3%,5%的Al2O3粉末机械研磨混合均匀,在1100℃下烧3h,再同粘合剂,有机溶剂混合制成浆料,用刮刀法在氧化铝基片上浆料制成膜,在100℃下烘干后再经1100℃烧结2h。膜的灵敏度的测量方法是将膜放在玻璃管内加热到测量温度,测量膜暴露在一定浓度TMA气体或由牡蛎放出的气体时电阻值的变化。测量温度为200,250,300℃和400℃,T  相似文献   
105.
详细地研究了硼在水合氧化锆吸附剂上的吸附行为。研究结果表明,水合氧化锆的吸硼速率较快,2h可完全达平衡,且吸附可用Freundlich等温吸附线很好地拟合。被吸附的硼易被碱液洗脱,通过水合氧化锆上硼的“吸附-脱附循环”研究,表明该吸附剂的吸附性能好,再生能力强,循环使用寿命长,是一种很有价值的高效脱硼吸附剂。  相似文献   
106.
分光光度法测定用于废氧化铝载体铂催化剂中铂含量。铂被还原成铂黑从杂质中分离出,用王水溶解形成六氯铂酸盐酸溶液,加入氯化亚锡形成橙黄色络合物溶液在403nm进行测定。对该方法的回收率,钼存在对测定的影响进行了研究,方法回收率98~102%,在10-6数量级,即使钼浓度与铂浓度相等并不影响铂的测定  相似文献   
107.
采用组织化学、免疫组化和生物化学方法对栉孔扇贝外套膜中的一氧化氮合酶(EC1.14.13.39,NOS)活性进行了研究。组织化学显示结果表明,帆状部上皮细胞呈NOS强阳性,血细胞和神经纤维呈阳性;外套触手内有较多近圆形细胞和大量波浪形神经纤维呈NOS强阳性;边缘膜内有大量神经细胞和神经纤维分别呈NOS强阳性和阳性,外套环走肌束附近和血管内皮周围均有大量近圆形的强阳性细胞分布;中央膜有大量近圆形阳性细胞聚集成团块或分散分布。免疫组化显示表明,血细胞、帆状部和边缘膜上皮细胞呈神经型NOS(nNOS)和内皮型NOS(eNOS)弱阳性,而呈诱导型NOS(iNOS)阳性。生化测定结果表明,总NOS(tNOS)活力和一氧化氮(NO)含量均为中央膜最高,边缘膜次之,外套触手较低,帆状部最低,其中结构型NOS(cNOS)活力也是帆状部的最低,而iNOS活力则是外套触手的最低。栉孔扇贝外套膜可能是其神经系统中NOS的发生中心,NO-NOS体系可在其免疫防御和调节等方面发挥重要的作用。  相似文献   
108.
一氧化氮和铁对海洋微藻生长的交互影响   总被引:1,自引:0,他引:1  
在实验室进行了一氧化氮(NO)和铁对海洋微藻中肋骨条藻(Skeletonema costatum)生长影响实验.实验结果如下:在铁限制情况下,外源NO能明显提高微藻的生长速率,增加生物量,但NO和铁对浮游植物生长影响是一个复杂的过程,它受到NO的浓度、培养液的营养水平、铁的浓度等因素的影响,同时培养液中铁的浓度也直接影响到微藻的生长和NO的释放量.因此,一氧化氮与铁在浮游植物生长过程中是交互影响的.  相似文献   
109.
基于全球变暖的背景,研究了温度对三角褐指藻(Phaeodactylumtricornutum)、小新月菱形藻(Nitzschiaclosteriumf.minutissima)和中肋骨条藻(Skeletonemacostatum)生长的影响,并初步探讨了温度对海洋硅藻生长过程中吸收或释放一氧化氮(NO)的影响。培养温度分别为20℃和25℃。结果显示,温度升高,中肋骨条藻的比生长速率降低(P0.05),而对三角褐指藻和小新月菱形藻的生长没有明显影响。不同种类硅藻对高温的适应能力不同,且在不同生长阶段对NO呈现不同的吸收或释放规律。与20℃培养条件相比,25℃条件下三角褐指藻对NO的净吸收速率在指数生长期、生长平台期和衰亡期分别升高了40.2%、98.2%和16.0%;小新月菱形藻对NO的净吸收速率在生长的平台期升高了5.7倍;中肋骨条藻对NO的净释放速率在生长的平台期升高幅度最大,为11.5倍。结果表明全球变暖对不同种类的硅藻代谢NO的促进程度不同。  相似文献   
110.
采用电感耦合等离子体发射光谱法(ICP-OES)法测定氧化钕中杂质氧化镍的含量,得到氧化镍含量为0.002 7%,分析了检测过程中的各个影响因素,并对测量结果的可靠性以相对扩展不确定度表示(Urel=12%,k=2)。相对不确定度分量计算结果表明,标准曲线拟合时引入的相对不确定度分量最大,urel(c2)=5.639%,其次为标准溶液配制过程中引入的相对不确定度分量urel(c1)=0.879%。本文可为相关检测人员的结果不确定度分析提供参考。  相似文献   
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