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251.
The experiments were conducted to investigate the tolerance and enrichment capabilities by elucidating the physiological response and cadmium impact on iron and potassium accumulation amounts of brassica rape hairy roots under different cadmium concentrations by using liquid suspension culture method. The results showed the following. (1) The growth of hairy roots was not significantly different under low cadmium concentrations (below 100 μmol/L), whereas it was obviously inhibited under high cadmium concentrations (more than 100 μmol/L). Further, the maximum fresh weight of brassica rape hairy roots reached 4.34 g under 25 μmol/L cadmium stress after 7 days. (2) The content of ROS in brassica rape hairy roots increased with increasing concentrations of cadmium; the antioxidant enzyme activities of brassica rape hairy roots (SOD, POD, and CAT) decreased first and then increased with increasing cadmium concentrations under 1-day stress, whereas showed an opposite trend under 7-day stress. (3) PI staining and MDA content indicated that cellular damage was more serious with increasing cadmium concentrations. (4) With the increase of cadmium concentrations, cadmium content of hairy roots increased and reached maximum of 2.97 mg/g under 400 μmol/L cadmium stress after 7 days. The iron content also increased significantly with the maximal weight of 14.52 mg/g after 1-day cadmium stress, whereas no significant difference was noted under 7-day cadmium stress. The potassium content under 7-day cadmium stress was 1.6 times of that after 1-day stress (15.73 mg/g). The study showed that the physiological response of Brassica rape hairy roots was correlated with the concentration and time of cadmium stress. Moreover, cadmium stress caused metabolic disorders of iron and potassium in the hairy roots, but the hairy roots of Brassica rape had better enrichment effect on cadmium. © 2018 Science Press. All rights reserved.  相似文献   
252.
Fe2O3-CeO2-Bi2O3/γ-Al2O3, an environmental friendly material, was investigated. The catalyst exhibited good catalytic performance in the CWAO of cationic red GTL. The apparent activation energy for the reaction was 79 kJ·mol−1. HO2· and O2· appeared as the main reactive species in the reaction. The Fe2O3-CeO2-Bi2O3/γ-Al2O3 catalyst, a novel environmental-friendly material, was used to investigate the catalytic wet air oxidation (CWAO) of cationic red GTL under mild operating conditions in a batch reactor. The catalyst was prepared by wet impregnation, and characterized by special surface area (BET measurement), X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). The Fe2O3-CeO2-Bi2O3/γ-Al2O3 catalyst exhibited good catalytic activity and stability in the CWAO under atmosphere pressure. The effect of the reaction conditions (catalyst loading, degradation temperature, solution concentration and initial solution pH value) was studied. The result showed that the decolorization efficiency of cationic red GTL was improved with increasing the initial solution pH value and the degradation temperature. The apparent activation energy for the reaction was 79 kJ·mol1. Hydroperoxy radicals (HO2·) and superoxide radicals (O2·) appeared as the main reactive species upon the CWAO of cationic red GTL.  相似文献   
253.
Bentonite clay has been used for the adsorption of Fe(II) from aqueous solutions over a concentration range of 80-200 mg/l, shaking time of 1-60 min, adsorbent dosage from 0.02 to 2 g and pH of 3. The process of uptake follows both the Langmuir and Freundlich isotherm models and also the first-order kinetics. The maximum removal (>98%) was observed at pH of 3 with initial concentration of 100 mg/l and 0.5 g of bentonite. The efficiency of Fe(II) removal was also tested using wastewater from a galvanized pipe manufacturing industry. More than 90% of Fe(II) can be effectively removed from the wastewater by using 2.0 g of the bentonite. The effect of cations (i.e. zinc, manganese, lead, cadmium, nickel, cobalt, chromium and copper) on the removal of Fe(II) was studied in the concentration range of 10-500 mg/l. All the added cations reduced the adsorption of Fe(II) at high concentrations except Zn. Column studies have also been carried out using a certain concentration of wastewater. More than 99% recovery has been achieved by using 5 g of the bentonite with 3M nitric acid solution.  相似文献   
254.
本文研究了火焰原子吸收法测定水中铁的质量控制指标,全国共12个省份的46家实验室参加测定工作,提供了具有全国性指导意义的工作参考数据.研究结果为:标准样品在0.2~4.0mg/L浓度范围内的RSD≤3.0%,RSD'≤10.0%,室间标准偏差≤0.10mg/L;浓度≤2.0mg/L时,RE≤±10.0%,2.0~4.0...  相似文献   
255.
Electron shuttles such cysteine play an important role in Fe cycle and its availability in soils,while the roles of pH and organic ligands in this process are poorly understood.Herein,the reductive dissolution process of goethite by cysteine were explored in the presence of organic ligands.Our results showed that cysteine exhibited a strong reactivity towards goethite-a typical iron minerals in paddy soils with a rate constant ranging from 0.01 to0.1 hr-1.However,a large portion of Fe(Ⅱ) appeare...  相似文献   
256.
本文基于情景分析理论和方法,建立了钢铁工业物质流与价值流协调度模型,对未来一段时期钢铁工业的协调发展状况进行研究.在维持现有发展模式的基准情景下,我国钢铁工业协调发展度将持续下降,2020年将下降到0.73.在环境恶化和经济效益相对脱钩的情景下,直到2020年我国钢铁工业协调发展度将维持在0.85的水平.而在经济与环境出现绝对脱钩的情景下,我国钢铁工业协调发展度将持续上升,2020年将达到0.95的高水平.因此,近期我国钢铁工业应遵循“基准相对脱钩绝对脱钩”的发展路径,降低总物质投入和污染物排放总量,提升经济产出效益,可持续发展才有可能实现.  相似文献   
257.
随着生物技术在水处理工业中的推广应用,人们逐渐认识到生物除铁是将来替代接触氧化法除铁的新一代除铁方法。本文在国内外生物除铁研究的基础上,通过较低pH值条件培养铁细菌,最终检测不同实验条件下的过滤效果,以达到研究不同粒径滤料、pH值、溶解氧等条件对生物除铁的影响。实验结果表明:小粒径滤料有利于过滤过程的进行;生物除铁的效果不明显,尤其在高pH值和溶解氧条件下几乎没有差别;随着pH值和溶解氧浓度的增加,亚铁的氧化效果加强了,但是生物除铁的效果却减弱了。  相似文献   
258.
正A wetland with attractive plants hosting birds and other wildlife is an esthetically pleasing prospect that is gaining popularity as a way of stabilizing or remediating metalcontaminated soils and sediment(Weber and Gagnon,2014;  相似文献   
259.
对2020年10月份某钢铁企业厂区和附近城区环境空气质量自动监测站的数据进行了收集整理,对比分析正常时段厂区和附近城区的空气质量指数(AQI)与SO2、PM10等6个空气质量分指数(IAQI)的差异性和相关性。结果表明:在分析收集数据范围内,附近城区环境空气质量优良率高于某钢铁公司厂区7.1%,附近城区的首要主要污染物为NO2和PM2.5,而某钢铁公司厂区的主要污染物为PM10、PM2.5和O3,说明某钢铁公司污染物排放对附近城区的空气质量不存在高度的线性关系。根据研究结果,提出源头调整产业结构、强化过程控制和实施末端全面超低排放对策建议。  相似文献   
260.
Many problems in drinking water distribution systems (DWDSs) are caused by microbe, such as biofilm formation, biocorrosion and opportunistic pathogens growth. More iron release from corrosion scales may induce red water. Biofilm played great roles on the corrosion. The iron-oxidizing bacteria (IOB) promoted corrosion. However, when iron-reducing bacteria (IRB) and nitrate-reducing bacteria (NRB) became the main bacteria in biofilm, they could induce iron redox cycling in corrosion process. This process enhanced the precipitation of iron oxides and formation of more Fe3O4 in corrosion scales, which inhibited corrosion effectively. Therefore, the IRB and NRB in the biofilm can reduce iron release and red water occurrence. Moreover, there are many opportunistic pathogens in biofilm of DWDSs. The opportunistic pathogens growth in DWDSs related to the bacterial community changes due to the effects of micropollutants. Micropollutants increased the number of bacteria with antibiotic resistance genes (ARGs). Furthermore, extracellular polymeric substances (EPS) production was increased by the antibiotic resistant bacteria, leading to greater bacterial aggregation and adsorption, increasing the chlorine-resistance capability, which was responsible for the enhancement of the particle-associated opportunistic pathogens in DWDSs. Moreover, O3-biological activated carbon filtration-UV-Cl2 treatment could be used to control the iron release, red water occurrence and opportunistic pathogens growth in DWDSs.  相似文献   
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