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排序方式: 共有1435条查询结果,搜索用时 31 毫秒
201.
Natalia Yoshida Mariano Castro Cecile du Mortier Alicia Fernández Cirelli 《Environmental Chemistry Letters》2007,5(3):157-160
The increase of intensive bovine production systems in Argentina involves the use of therapeutic agents and growth promoters
that reach the environment through animal excreta. The growth promoter most widely used in Argentina is monensin, an ionophore
polyether antibiotic produced by Streptomyces cinnamoniensis. Here, the behavior of monensin in different solid environmental matrices is analyzed, and preliminary results that suggest
a strong dependence of monensin retention with the organic matter content of the matrix are discussed. 相似文献
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广州李坑垃圾填埋场水环境污染调查 总被引:7,自引:1,他引:7
通过现场采样与历史资料统计,分析了广州市李坑垃圾填埋场垃圾渗滤液的水质特征,及其对地睛水和地表水的影响强度及范围,结果表明,该场对环境产生影响的主要污染物是以NH3-N、CODCr为代表的高浓度有机物、垃圾渗滤液对地下水的影响强度不大,对作为农业灌溉用水的地表水影响不超过2000m,对10km上的饮用水源不造成影响 相似文献
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This study explored the effects of H2O2 on Cyanobacteria and non-target microbes using fluorometry, microscopy, flow cytometry, and high throughput DNA sequencing of the 16S rRNA gene during a series of mesocosm and whole-ecosystem experiments in a eutrophic pond in NY, USA. The addition of H2O2 (8 mg/L) significantly reduced Cyanobacteria concentrations during a majority of experiments (66%; 6 of 9) and significantly increased eukaryotic green and unicellular brown algae in 78% and 45% of experiments, respectively. While heterotrophic bacteria declined significantly following H2O2 addition in all experiments, bacteria indicative of potential fecal contamination (Escherichia coli, Enterococcus, fecal coliform bacteria) consistently and significantly increased in response to H2O2, evidencing a form of ‘pollution swapping’. H2O2 more effectively reduced Cyanobacteria in enclosed mesocosms compared to whole-ecosystem applications. Ten whole-pond H2O2 applications over a two-year period temporarily reduced cyanobacterial levels but never reduced concentrations below bloom thresholds and populations always rebounded in two weeks or less. The bacterial phyla of Cyanobacteria, Actinobacteria, and Planctomycetes were the most negatively impacted by H2O2. Microcystis was always reduced by H2O2, as was the toxin microcystin, but Microcystis remained dominant even after repeated H2O2 treatments. Although H2O2 favored the growth of eukaryotic algae over potentially harmful Cyanobacteria, the inability of H2O2 to end cyanobacterial blooms in this eutrophic waterbody suggests it is a non-ideal mitigation approach in high biomass ecosystems and should be used judiciously due to potential negative impacts on non-target organisms and promotion of bacteria indicative of fecal contamination. 相似文献
207.
本文以抚顺市1996年2005年的噪声监测资料为依据,分析了抚顺市的环境噪声污染现状、特征,指出存在的主要问题是:社会生活噪声突出、交通噪声污染显著。并据此探索合理的防治措施——噪声控制规划纳入城市发展规划及强化城市环境噪声管理。 相似文献
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讨论了城市污水经过A/O工艺处理时活性污泥的二次污染问题。将原水、处理后的出水及活性污泥用甲苯萃取,萃取相经过真空浓缩后,采用GC/MS测定了样品中的有机化合物,结果表明,在A/O工艺处理城市污水过程中,活性污泥的吸附作用是主要的,降解作用是次要的;A/O工艺所排放的活性污泥仍然是一种危险的污染物。 相似文献
210.
Euglena gracilis as a model for the study of Cu and Zn toxicity and accumulation in eukaryotic cells
Marcelo Einicker-Lamas Gustavo Antunes Mezian Thiago Benevides Fernandes Fabio Leandro S. Silva Flvio Guerra Kildare Miranda Marcia Attias Mecia M. Oliveira 《Environmental pollution (Barking, Essex : 1987)》2002,120(3)
We have observed the effect of copper and zinc on the biology of Euglena gracilis. The cells displayed different sensitivities to these metals, as the apparent LC50 for Cu2+ was 0.22 mM, and for Zn2+ it was 0.88 mM. While Zn2+ was able to increase cell proliferation even at 0.1 mM, the minimal CuCl2 concentration tested (0.02 mM) was sufficient to impair cell division. Higher concentrations of these metals not only inhibited cell division in a concentration-dependent manner, but also interfered with the metabolism of E. gracilis. A higher accumulation of proteins and lipids per cell was observed at the DI50 concentration for metal-treated cells. These results suggest that the test concentration of both metals leads to a failure in completing cell division. Ultrastructural analysis indicated a chloroplast disorganization in copper-treated cells, as well as the presence of electron dense granules with different shapes and sizes inside vacuoles. Microanalysis of these granules indicated an accumulation of copper, thus suggesting a detoxification role played by the vacuoles. These results indicate that E. gracilis is an efficient biological model for the study of metal poisoning in eukaryotic cells. They also indicate that copper and zinc (copper being more poisonous) had an overall toxic effect on E. gracilis and that part of the effect can be ascribed to defects in the structure of chloroplast membranes. 相似文献