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21.
Uptake of polycyclic aromatic hydrocarbons (PAHs) by the freshwater bivalve mollusc Anodonta californiensis was examined in the presence and absence of surfactant in order to gain further insight into mixture toxicity and to predict whether certain mixtures have negative and/or positive effects on aquatic organisms. In the presence of surfactant, the uptake of anthracene or chrysene was higher than that of naphthalene, given the same concentration in the solution. In the absence of surfactant, the trend was similar, but the uptakes were increased by approximately 100% compared to those in the presence of surfactant. On the uptake of naphthalene, the presence of anthracene showed only minor influence. The uptake of anthracene was affected by both naphthalene and chrysene. The uptake of chrysene was influenced by neither naphthalene nor anthracene. There was no observable displacement of divalent cations from the surface of the gill membrane by any of the PAHs studied.  相似文献   
22.
Dong L  Gao J  Xie X  Zhou Q 《Chemosphere》2012,89(1):44-51
DNA damage and changes in enzyme activities were used as biomarkers to evaluate the genotoxicity and oxidative stress of tetracycline and chlortetracycline on the earthworm Eisenia fetida. The results showed that both antibiotics induced significant genotoxicity on earthworms in a dose-dependent manner (< 0.01) with chlortetracycline having a stronger effect than tetracycline in the short term. The tests on the activities of superoxide dismutase (SOD) and catalase (CAT) enzymes further indicated biochemical stresses induced by the antibiotics. An N-shaped activity pattern was noted with the enzyme activities being stimulated first, then inhibited, and stimulated again with increasing concentration. The induced activity of SOD or CAT could scavenge oxygen free radicals and protect the organisms against oxidative stress by alleviating the corresponding DNA damage. Compared to enzyme activities, DNA damage as a biomarker was more sensitive and is thus more suitable for detecting low concentration exposure and diagnosing the genotoxicity of contaminants in terrestrial environment.  相似文献   
23.
The management of dewatered wastewater sludge is a major issue worldwide. Sludge disposal to landfills is not sustainable and thus alternative treatment techniques are being sought. The objective of this work was to determine optimal mixing ratios of dewatered sludge with other organic amendments in order to maximize the degradability of the mixtures during composting. This objective was achieved using mixture experimental design principles. An additional objective was to study the impact of the initial C/N ratio and moisture contents on the co-composting process of dewatered sludge. The composting process was monitored through measurements of O(2) uptake rates, CO(2) evolution, temperature profile and solids reduction. Eight (8) runs were performed in 100 L insulated air-tight bioreactors under a dynamic air flow regime. The initial mixtures were prepared using dewatered wastewater sludge, mixed paper wastes, food wastes, tree branches and sawdust at various initial C/N ratios and moisture contents. According to empirical modeling, mixtures of sludge and food waste mixtures at 1:1 ratio (ww, wet weight) maximize degradability. Structural amendments should be maintained below 30% to reach thermophilic temperatures. The initial C/N ratio and initial moisture content of the mixture were not found to influence the decomposition process. The bio C/bio N ratio started from around 10, for all runs, decreased during the middle of the process and increased to up to 20 at the end of the process. The solid carbon reduction of the mixtures without the branches ranged from 28% to 62%, whilst solid N reductions ranged from 30% to 63%. Respiratory quotients had a decreasing trend throughout the composting process.  相似文献   
24.
The problem of estimating a classification rule with partially classified observations, which often occurs in biological and ecological modelling, and which is of major interest in pattern recognition, is discussed. Radial basis function networks for classification problems are presented and compared with the discriminant analysis with partially classified data, in situations where some observations in the training set are unclassified. An application on a set of morphometric data obtained from the skulls of 288 specimens of Microtus subterraneus and Microtus multiplex is performed. This example illustrates how the use of both classified and unclassified observations in the estimate of the hidden layer parameters has the potential to greatly improve the network performances.  相似文献   
25.
生活与工业污水混合处理系统中关键毒物追踪   总被引:8,自引:0,他引:8  
以常州市城北污水处理厂的进水和A^2O出水为研究对象,采用毒性鉴别评价(T IE)程序,对关键毒物进行了追踪。结果表明,进水对大型蚤(Daphnia magna)具 有24h急性毒性,经过A^2O系统的处理,出水已不显示24h急性毒性;因曝气可去除废水毒性,C18固相提取亦可去除废水毒性,据此判断进水中存在的主要毒物 为挥发性非极性有机化合物。进出水的GC/MS图谱显示,处理前后有机物浓度大大降低,关键毒物基本去除。  相似文献   
26.
尽管有很多复杂的模型预测了未来温度对变温动物的影响,广泛分布的亚致命性污染物对变温动物的热应激反应产生的影响却少有模型提及。由不断上升的温度所带来更高的代谢率可以让变温动物获利地加快代谢与发育,但在长期亚致命性污染物的存在下,因清除或解毒而导致的对生存资源的额外需求很可能使得生物难以跟上温度上升的步伐,即毒物诱导的气候敏感性假说。在以自然湖水为背景的室外生物鉴定中,我们调查了一种模式变温动物在6个不同浓度的镉、铜和铅混合物以及3个热动态下(环境温度,高于环境温度1.5摄氏度以及高于环境温度2.5摄氏度)的日周期性温度变化。金属浓度在大约10倍生物可利用性慢性标准单位 (BCCU,慢性标准浓度的生物可利用性比例总和)之下时,升温对于寇普氏树蛙(Hyla chrysoscelis)没有显著作用。在高于10倍BCCU以及高于环境温度1.5摄氏度的处理条件下,生长受到促进。相反地,在28倍BCCU以及升温2.5摄氏度的条件下,不仅生长情况收到抑制,变态后20 d未成年树蛙的身体状况指标相比于背景环境(环境温度下的湖水)中的未成年树蛙也要低34%。这些发现认为毒物诱导的气候敏感性是通过对青少年阶段的生物产生长期潜在的影响而实现的。在22世纪,即使在最保守的全球变暖预测模型下,亚致命性污染物依然会加剧变温动物所遭受的来自升温的影响。
精选自Tyler A. Hallman, Marjorie L. Brooks. Metals-mediated climate susceptibility in a warming world: larval and latent effects on a model amphibian. Environmental Toxicology and Chemistry: Volume 35, Issue 7, pages 1872–1882, July 2016. DOI: 10.1002/etc.3337
详情请见http://onlinelibrary.wiley.com/doi/10.1002/etc.3337/full
  相似文献   
27.
水煤浆技术应用现状及对策分析   总被引:1,自引:0,他引:1  
文章对水煤浆技术在工业化应用过程中出现的技术问题进行了分析并提出了相应的对策。  相似文献   
28.
• Toxicity-oriented water quality monitoring was proposed. • Toxicity-oriented water quality engineering control was proposed. • Future issues to the proposition were discussed. The fundamental goal of water quality engineering is to ensure water safety to humans and the environment. Traditional water quality engineering consists of monitoring, evaluation, and control of key water quality parameters. This approach provides some vital insights into water quality, however, most of these parameters do not account for pollutant mixtures – a reality that terminal water users face, nor do most of these parameters have a direct connection with the human health safety of waters. This puts the real health-specific effects of targeted water pollutant monitoring and engineering control in question. To focus our attention to one of the original goals of water quality engineering – human health and environmental protection, we advocate here the toxicity-oriented water quality monitoring and control. This article presents some of our efforts toward such goal. Specifically, complementary to traditional water quality parameters, we evaluated the water toxicity using high sensitivity toxicological endpoints, and subsequently investigated the performance of some of the water treatment strategies in modulating the water toxicity. Moreover, we implemented the toxicity concept into existing water treatment design theory to facilitate toxicity-oriented water quality control designs. Suggestions for the next steps are also discussed. We hope our work will intrigue water quality scientists and engineers to improve and embrace the mixture water pollutant and toxicological evaluation and engineering control.  相似文献   
29.
The objective of this study was to understand toxicity of mixture of nanoparticles (NPs) (ZnO and TiO2) and their ions to Escherichia coli. Results indicated the decrease in percentage growth of E. coli with the increase in concentration of NPs both in single and mixture setups. Even a small concentration of 1 mg/L was observed to be significantly toxic to E. coli in binary mixture setup (exposure concentration: 1 mg/L ZnO and 1 mg/L TiO2; 21.15% decrease in plate count concentration with respect to control). Exposure of E. coli to mixture of NPs at 1000 mg/L (i.e., 1000 mg/L ZnO and 1000 mg/L TiO2) resulted in 99.63% decrease in plate count concentration with respect to control. Toxic effects of ions to E. coli were found to be lesser than their corresponding NPs. The percentage growth reduction was found to be 36% for binary mixture of zinc and titanium ions at the highest concentration (i.e., 803.0 mg/L Zn and 593.3 mg/L Ti where ion concentrations are equal to the Zn ions present in 1000 mg/L ZnO NP solution and Ti+ 4 ions present in 1000 mg/L TiO2 NP solution). Nature of mixture toxicity of the two NPs to E. coli was found to be antagonistic. The alkaline phosphatase (Alp) assay indicated that the maximum damage was observed when E. coli was exposed to 1000 mg/L of mixture of NPs. This study tries to fill the knowledge gap on information of toxicity of mixture of NPs to bacteria which has not been reported earlier.  相似文献   
30.
飞灰及其混合脱硫剂浆液脱硫特性的实验研究   总被引:3,自引:0,他引:3  
从碱性物溶出率和脱硫容量两个方面,对杭州地区3种电厂飞灰和飞灰-大理石混合脱硫剂进行了实验研究。结果表明,降低pH值有利于飞灰中碱性物的溶出,pH为5-8时,飞灰中碱性物溶出率约为30%。不同电厂飞灰的脱硫容量差异较大,为0.12-0.25gSO2/g飞灰,相当于石灰石脱硫容量的23%-48%。飞灰-大理石混合脱硫剂中飞灰与大理石之间具有相互协同促进作用,对飞灰:大理石为1:1的混合脱硫剂,其脱硫容量Ws60比大理石提高了30%。当脱硫率要求不太高时,可考虑使用飞灰-大理石混合脱硫剂,以部分或全部取代石灰石脱硫剂,从而大大降低脱硫剂成本。  相似文献   
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