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991.
Ferretti M Bussotti F Calatayud V Schaub M Kräuchi N Petriccione B Sanchez-Peña G Sanz MJ Ulrich E 《Environmental pollution (Barking, Essex : 1987)》2007,145(3):652-655
Monitoring of forest condition and ozone (O3) at 83 sites in France, Italy, Luxenbourg, Spain and Switzerland resulted in a number of findings in relation to the knowledge of O3 exposure (concentration and cumulative AOT40), feasibility of the assessment of stomatal O3 flux and relationships between O3 and crown defoliation of beech and visible symptoms on native vegetation. However, the project provides evidence of issues to be addressed within the current monitoring system (data quality, validation sites and response indicators) and indications as to how the monitoring of O3 risk in the context of an effect-oriented monitoring program can be improved. 相似文献
992.
García R Rubio V Vegas I Frías M 《Environmental science and pollution research international》2009,16(3):274-277
Background, aim and scope One of the problems to affect Portland cement matrices is low resistance to aggressive agents, due principally to the presence
of a high content of portlandite in the hydrated cements. Pozzolanic materials have played an important role in the improving
the durability of cement-based materials for decades. This work studies the behaviour of cement mortar matrices blended with
10% calcined paper sludge (source for metakaolinite) and exposed to different environmental conditions (saline and non-saline
environments) after 6 and 12 months of exposure.
Materials and methods Two cements were studied: an ordinary Portland cement (CEM 1, 42.5R), acting as reference cement, and a blended cement formulated
by mixing 90% (by mass) of CEM 1, 42.5R with 10% (by mass) of paper sludge calcined at 700°C for 2 h. The specimens were exposed
1 year to saline and non-saline environments. All the mineralogy samples were studied through X-ray diffraction and scanning
electron microscopy (SEM) equipped with an energy dispersive X-ray analyser. The in-depth study on ionic mobility was performed
on samples subjected to natural exposure (coast and tableland) for 6 and 12 months.
Results Portland cement was composed of quartz, calcite, calcium hydroxide and tobermorite gels. The pozzolanic cement (10% calcined
paper sludge) is of the same composition but a high calcite concentration and barium carbonate. SEM analysis from coastline
show deposits of variable composition. The deposits are identified on the surface of different mineral components. The minerals
from tableland are much fractured, i.e. calcite and feldspars. Inside the fractures, the deposits and the ions are located
and trapped superficially.
Discussion SEM analysis of control cement Portland and 10% calcined paper sludge shows deposits on quartz and calcite with a very high
concentration of Pb, Zn, Cl and barium sulphate. A very porous aspect is due to the presence of the different aggregate types.
This porous configuration permits retention of the ion environment. The pozzolanic cement in environments subject to the saline
mist favours the retention and transport of ions observed. Something similar also happens with the increase in exposure to
outdoor weather. Non-saline samples show temperature changes (ice or thaw cycles). Barium retention is kept on the surface
in fracture lines by the gelification processes. In general, it may be inferred that an increase in exposure time increases
the diffusion of ions towards test piece interiors. The chemical composition profiles show that the ions present different
penetration speeds.
Conclusions The results indicate the better vulnerability of pozzolanic cements from calcined paper sludge in saline and non-saline environments.
The cements with a 10% addition of calcined paper sludge favour retention and transport of ion has been observed.
Recommendations and perspectives Today, projects are centred on a new recycling line for industrial waste of this kind, with special attention on its incorporation
in cement manufacture as a pozzolanic material, setting the most appropriate activation conditions of the mineralogical compound
in this waste (kaolinite and metakaolinite) and taking them as a starting point for this project. The use of pozzolanic cement
with 10% addition of calcined paper sludge is a system which favours ionic retention. 相似文献
993.
Dumitru Ristoiu Urs von Gunten Aurel Mocan Romeo Chira Barbara Siegfried Melinda Haydee Kovacs Sidonia Vancea 《Environmental science and pollution research international》2009,16(Z1):55-65
Background, aim and scope
After the discovery of chloroform in drinking water, an extensive amount of work has been dedicated to the factors influencing the formation of halogenated disinfections by-products (DBPs). The disinfection practice can vary significantly from one country to another. Whereas no disinfectant is added to many water supplies in Switzerland or no disinfectant residual is maintained in the distribution system, high disinfectant doses are applied together with high residual concentrations in the distribution system in other countries such as the USA or some southern European countries and Romania. In the present study, several treatment plants in the Somes river basin in Romania were investigated with regard to chlorine practice and DBP formation (trihalomethanes (THMs)). Laboratory kinetic studies were also performed to investigate whether there is a relationship between raw water dissolved organic matter, residual chlorine, water temperature and THM formation. 相似文献994.
Observation-based methods are useful tools to explore the sensitivity of ozone concentrations to precursor controls. With the aim of assessing the ozone precursor sensitivity in two locations: Paterna (suburban) and Villar del Arzobispo (rural) of the Turia river basin in the east of Spain, the photochemical indicator O3/NOy and the Extent-of-Reaction (EOR) parameter have been calculated from field measurements. In Paterna, the O3/NOy ratio varied from 0 to 13 with an average value of 5.1 (SD 3.2), whereas the averaged value for the EOR was 0.43 (SD 0.14). In Villar del Arzobispo, the O3/NOy ratio changed from 5 to 30 with a mean value of 13.6 (SD 4.7) and the EOR gave an averaged value of 0.72 (SD 0.11). The results show two different patterns of ozone production as a function of the location. The suburban area shows a VOC-sensitive regime whereas the rural one shows a transition regime close to NOx-sensitive conditions. No seasonal differences in these regimes are observed along the monitoring campaigns. Finally, an analysis of the influence of the measurement quality of NOy, NOx and O3 on the uncertainty of the O3/NOy ratio and the EOR was performed showing that the uncertainty of O3/NOy is not dependent on either its value or the individual values of O3 and NOy but just on the quality of O3 and NOy measurements. The maximum uncertainty is 26% as long as the combined uncertainties of O3 and NOy remain below the 7.5%. The case of the EOR is different and its uncertainty depends on both the value of the EOR parameter and the individual concentration values of NOy and NOx. The uncertainty of the EOR estimation can be very high (>200%) if the combined uncertainties of both NOy and NOx are high (>7.5%), or especially, if u(NOy) and u(NOx) differ considerably from each other (>3.5%). 相似文献
995.
Miao Li Guo-ping Sheng Yue-jin Wu Zeng-liang Yu Gary S. Bañuelos Han-qing Yu 《Environmental science and pollution research international》2014,21(16):9617-9625
Severe eutrophication of surface water has been a major problem of increasing environmental concern worldwide. In the present study, economic plant annual ryegrass (Lolium multiflorum) was grown in floating mats as an economic plant-based treatment system to evaluate its potential after ion implantation for removing nutrients in simulated eutrophic water. The specific weight growth rate of L. multiflorum with ion implantation was significantly greater than that of the control, and the peroxidase, nitrate reductase, and acid phosphatase activities of the irradiated L. multiflorum were found to be greater than those plants without ion implantation. Higher total nitrogen (TN) and total phosphorus (TP) removal efficiencies were obtained for the L. multiflorum irradiated with 25 keV 5.2?×?1016 N+ ions/cm2 and 30 keV 4.16?×?1016 N+ ions/cm2, respectively (p?0.05). Furthermore, the nitrogen and phosphorus contents in the plant biomass with ion implantation were also greater than those in the control and were positively correlated with TN and TP supplied. L. multiflorum itself was directly responsible for 39–49 and 47–58 % of the overall N and P removal in the experiment, respectively. The research results suggested that ion implantation could become a promising approach for increasing phytoremediation efficiency of nutrients from eutrophic water by L. multiflorum. 相似文献
996.
Jaime Carbajo Patricia García-Muñoz Alvaro Tolosana-Moranchel Marisol Faraldos Ana Bahamonde 《Environmental science and pollution research international》2014,21(21):12233-12240
The objective of this work is double—firstly to explore the photocatalytic efficiency of five different commercial TiO2 catalysts in the photodegradation of a mixture of pesticides classified by the EU as priority pollutants and secondly to analyze the correlation between their physicochemical properties and the inhibition of the studied photocatalytic process when natural water was employed. Photocatalytic efficiencies when ultrapure water was used seem to point out that surface area was not a prerequisite for the photodegradation of the selected mixture of pesticides. On the other hand, significant differences in total organic carbon (TOC) conversions were obtained with the two studied water compositions. On one side, Evonik materials appear to be mostly inhibited when natural water was employed, whereas on the other, it should be remarked that anatase Sigma-Aldrich (SA) and, particularly, Hombikat UV100 (HBK) materials presented a very limited photo-efficiency inhibition or even a higher initial rate of TOC removal when a natural water matrix was used, probably due to their specific surface properties (PZC, S BET). Therefore, heterogeneous photocatalysis has proved to be a promising technology for the degradation of the selected mixture of pesticides where the final photo-efficiency of the five commercial titania catalysts studied here responds to a complex balance between its surface and structural properties. 相似文献
997.
Verónica C. Mora Laura Madueño Marina Peluffo Janina A. Rosso María T. Del Panno Irma S. Morelli 《Environmental science and pollution research international》2014,21(12):7548-7556
Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous compounds with carcinogenic and/or mutagenic potential. To address the limitations of individual remediation techniques and to achieve better PAH removal efficiencies, the combination of chemical and biological treatments can be used. The degradation of phenanthrene (chosen as a model of PAH) by persulfate in freshly contaminated soil microcosms was studied to assess its impact on the biodegradation process and on soil properties. Soil microcosms contaminated with 140 mg/kgDRY SOIL of phenanthrene were treated with different persulfate (PS) concentrations 0.86–41.7 g/kgDRY SOIL and incubated for 28 days. Analyses of phenanthrene and persulfate concentrations and soil pH were performed. Cultivable heterotrophic bacterial count was carried out after 28 days of treatment. Genetic diversity analysis of the soil microcosm bacterial community was performed by PCR amplification of bacterial 16S rDNA fragments followed by denaturing gradient gel electrophoresis (DGGE). The addition of PS in low concentrations could be an interesting biostimulatory strategy that managed to shorten the lag phase of the phenanthrene biological elimination, without negative effects on the physicochemical and biological soil properties, improving the remediation treatment. 相似文献
998.
999.
Zhou Nicolette A. Fagnant-Sperati Christine S. Komen Evans Mwangi Benlick Mukubi Johnstone Nyangao James Hassan Joanne Chepkurui Agnes Maina Caroline van Zyl Walda B. Matsapola Peter N. Wolfaardt Marianne Ngwana Fhatuwani B. Jeffries-Miles Stacey Coulliette-Salmond Angela Peñaranda Silvia Shirai Jeffry H. Kossik Alexandra L. Beck Nicola K. Wilmouth Robyn Boyle David S. Burns Cara C. Taylor Maureen B. Borus Peter Meschke John Scott 《Food and environmental virology》2020,12(1):35-47
1000.
针对农村饮用水工程运行管理模式的多样化和复杂化,选择一种新型的动态可拓评价模型,以浙江省为例选择典型的3种运行管理模式,即村集体管理模式、承包管理模式和用水户协会管理模式进行比较评价,旨在通过评价找出它们的适应条件及优劣,以便在全省范围内推广应用。评价过程中创新性地将可拓评价模型和离差分析法相结合,建立了可拓评价的物元模型、过程元模型和事元模型,通过确定衡量条件、离差分析法确定权系数、建立关联函数与计算合格度、计算规范合格度、计算优度等一系列步骤,选取了浙江省丽水市莲都区15个不同运行管理模式的农村饮用水工程进行评价,得出评价结果。评价结果与实际基本一致,验证了模型和方法的可行性,这为下一步模型的推广应用及信息化提供了基础,同时也为决策部门开展农村饮用水工程运行管理的模式应用提供了技术支撑。 相似文献