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1.
In the present work we compared the biological activity of DCF, 4′-OHDCF and 5-OHDCF as molecules of most biodegradation pathways of DCF and selected transformation products (2-hydroxyphenylacetic acid; 2,5-dihydroxyphenylacetic acid and 2,6-dichloroaniline) which are produced during AOPs, such as ozonation and UV/H2O2. We also examined the interaction of DCF with chlorogenic acid (CGA). CGA is commonly used in human diet and entering the environment along with waste mainly from the processing and brewing of coffee and it can be toxic for microorganisms included in activated sludge. In the present experiment the evaluation of following parameters was performed: E. coli K-12 cells viability, growth inhibition of E. coli K-12 culture, LC50 and mortality of Chironomus aprilinus, genotoxicity, sodA promoter induction and ROS generation. In addition the reactivity of E. coli SM recA:luxCDABE biosensor strain in wastewater matrices was measured. The results showed the influence of DCF, 4′-OHDCF and 5-OHDCF on E. coli K-12 cells viability and bacteria growth, comparable to AOPs by-products. The highest toxicity was observed for selected, tested AOPs by-products, in comparison to the DCF, 4′-OHDCF and 5-OHDCF. Genotoxicity assay indicated that 2,6-dichloroaniline (AOPs by-product) had the highest toxic effect. The oxidative stress assays revealed that the highest level of ROS generation and sodA promoter induction were obtained for DCF, 4′-OHDCF and 5-OHDCF, compared to other tested compounds. We have also found that there is an interaction between chlorogenic acid and DCF, which resulted in increased toxicity of the mixture of the both compounds to E. coli K-12, comparable to parent chemicals. The strongest response of E. coli SM biosensor strain with recA:luxCDABE genetic construct in filtered treated wastewaters, comparable to control sample was noticed. It indicates, that E. coli SM recA:luxCDABE biosensor strains is a good tool for bacteria monitoring in wastewater environment. Due to toxicity and biological activity of tested DCF transformation products, there is a need to use additional wastewater treatment systems for wastewater contaminated with pharmaceutical residues.  相似文献   
2.
The degradation of several biodegradable polymers was measured as a result of exposure to an anaerobic medium. The polymers investigated included materials based upon polylactic acid, polylactone, and poly(hydroxy butyrate/valerate) as well as those incorporating starch-based materials. The degradation was monitored by methane and carbon dioxide evolution. In addition, the physical and chemical changes were noted as a result of exposure. These measurements included changes in mass, dimension, and molecular weight. FTIR, UV-vis, proton, and13C NMR spectra were also recorded prior to and after exposure. The results clearly indicated that several biological and chemical degradation processes were occurring with the biodegradable polymers studied.Paper presented at the Bio/Environmentally Degradable Polymer Society—Second National Meeting, August 19–21, 1993, Chicago, Illinois.Issued as NRCC No. 37549.  相似文献   
3.
跨界融合子处理含酚废水的实验研究   总被引:5,自引:0,他引:5  
以白腐真菌和北京燕山石油化工公司炼油厂污水厂的活性污泥经驯化筛选后分离获得的降酚细菌进行跨界融合 ,经筛选获得 2株降酚融合子。应用此融合子对燕山石化炼油厂含酚废水进行降解实验 ,结果表明 ,该融合子具有较好的降酚效果  相似文献   
4.
木质素降解酶及其调控机理研究的进展   总被引:11,自引:0,他引:11  
近年来有关木质素降解微生物和木质素降解酶的产与调控机理的研究表明,腐霉和细菌在木质自然降解中起着重要作用,腐霉的降解作用发生在次级代谢阶段,而细菌发生在初级代谢阶段,影响木质素降解酶的产生酶活力高低的因素有碳氮的选择与限制;诱导物的添加;表面活性剂的使用;某些金属离子浓度水平的改变;菌丝的固定化,温度和摇床转速的变换等。  相似文献   
5.
小诺霉素发酵废水好氧生物处理试验研究   总被引:4,自引:0,他引:4  
陈一申  朱敏 《上海环境科学》1997,16(4):26-29,35
对具有强抑制性污染物的抗生素小诺霉素发酵废水,选择活性污泥、粉末活性炭(PACT)、纯氧曝气等3种好氧生物处理法进行了比较试验。根据实验结果,小诺霉素发酵废水的生物降解呈抑制动力学,采用Marquart方法对动力学模式进行参数估计。PACT能够有效地降低降解过程中微生物受到的抑制作用,从而明显地改善了生物处理过程动力学。  相似文献   
6.
活性炭厌氧流不处理毒性有机废水存在问题,对含有活性炭能吸附而生物难降解成份的废水,通过定期替换少量活性炭、能维持工艺的稳定运行。  相似文献   
7.
氯氰菊酯降解菌的筛选及其降解特性的初步研究   总被引:4,自引:0,他引:4  
以氯氰菊酯为唯一碳源从土壤中分离筛选得到22株氯氰菊酯降解菌,其中G201和G203降解活性较高且稳定性较好,选择这2株菌进一步研究了培养条件对降解率及降解速率的影响。结果表明,2株菌在中性培养液中降解率达到最大;菌株G201当氯氰菊酯的质量浓度不超过200mg·L-1时降解速率与浓度成正比;外加少量碳、氮源如淀粉、葡萄糖、牛肉膏、蛋白胨淀粉等,可以显著提高菌株的降解能力。  相似文献   
8.
赵兵  杨为群 《交通环保》1999,20(4):25-27
通过能生物滤池挂膜的工程实践的论述,阐述了生物膜法处理工艺挂膜的机理,并深入分析了在挂膜过程中的一些影响因素,取得了一些相关的运行数据,很好的指导了生产。  相似文献   
9.
应用线性和非线性法求解有机物生物降解动力学参数   总被引:1,自引:0,他引:1  
根据苯甲酸类化合物在水体中不同时间的生化需氧量,用线性和非线性合法对化合物生物降解随时间变化的动力学过程进行曲线拟合,得到各化合物2个数值不同的安全生化需氧量、生物降解速率常数和生物降解滞后期。根据各化合物2种不同的生物降解动力学模型所得到的生化需氧量拟合值与实测值的误差相比较,发现用非线性法拟合得到的有机物生物降解动力学模型,更符合化合物真实生物降解规律,因此用非线性法拟合化合物的生物降解动态变化,比用线性方法更精确。  相似文献   
10.
Most native polymers used in processing and application technologies are admittedly disposable from the environment in a biologic manner, but products possess low mechanical strength. One of the paths to increasing this attribute (if feasible) is their cross-linking, which may, however, affect their readiness to biodegradation. In the presented work this condition was observed on the example of waste protein (Hykol B) cross-linking by means of glutardialdehyde and glyoxal. Degree and course of cross-linking were determined through impedance spectroscopy. The objective of this work also was to obtain data for constructing a sensor capable of following the cross-linking course in real time, for potential industrial application of Hykol in continuous production. Impedance spectroscopy proved to be applicable even to this kind of material marked by considerable water content and exhibiting relatively high electric conductivity; so far it had been used only for materials of low conductivity. An aqueous environment inoculated with digested anaerobic sludge from a municipal wastewater treatment plant was selected for modeling anaerobic conditions. The relation was studied between cross-linking degree given by content of cross-linking agent (determined by impedance spectroscopy) and biodegradation degree under anaerobic conditions. It was confirmed that network density as given by quantity of added agent not only reduced breakdown degree but also slowed the course of the process. This fact is particularly obvious with cross-linking by means of glyoxal; network density is thus dependent on type of employed substance, which affect type and structure of created network. That not merely forms an obstacle during polymer swelling and dissolution but also prevents access of bacteria to source of metabolized organic carbon.  相似文献   
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