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61.
Oxidative stress and DNA damages induced by cadmium accumulation 总被引:22,自引:0,他引:22
Experimental evidence shows that cadmium (Cd) could induce oxidative stress and then causes DNA damage in animal cells, however, whether such effect exists in plants is still unclear. In the present study, Vicia faba plants was exposed to 5 and 10 mg/L Cd for 4 d to investigate the distribution of Cd in plant, the metal effects on the cell lipids, antioxidative enzymes and DNA damages in leaves. Cd induced an increase in Cd concentrations in plants. An enhanced level of lipid peroxidation in leaves and an enhanced concentration of H2O2 in root tissues suggested that Cd caused oxidative stress in Vicia faba. Compared with control, Cd-induced enhancement in superoxide dismutase activity was significant at 5 mg/L than at 10 mg/kg in leaves, by contrast, catalase and peroxidaseactivities were significantly suppressed by Cd addition. DNA damage was detected by neutral/neutral, alkaline/neutral and alkaline/alkaline Comet assay. Increased levels of DNA damages induced by Cd occurred with reference to oxidative stress in leaves, therefore, oxidative stress induced by Cd accumulation in plants contributed to DNA damages and was possibly an important mechanism of Cd-phytotoxicity in Vicia faba plants. 相似文献
62.
Thermodynamics and kinetics of cadmium adsorption onto
oxidized granular activated carbon 总被引:3,自引:0,他引:3
Cadmium sorption behavior of granular activated carbon oxidized with nitric acid was systematically studied by sets of the equilibrium and time-based experiments under various conditions.The cadmium adsorption capacity of oxidized granular activated carbon enlarged with an increase in pH,and reduced with an increase in ionic strength.Experimental data were evaluated to find out kinetic characteristics.Adsorption processes were found to follow pseudo-second order rate equation.Adsorption isotherms correlate well with the Langmuir isotherm model and the maximum sorption capacity of cadmium evaluated is 51.02μmol/g.Thermodynamic parameters were calculated based on Van't Hoff equation.Equilibrium constant Kd was evaluated from Freundlich isotherm model constants,Langmnir isotherm model constants,and isotherms,respectively.The average change of standard adsorption heatΔH~0 was -25.29 kJ/mol.NegativeΔH~0 andΔG~0 values indicate the adsorption process for cadmium onto the studied activated carbon is exothermic and spontaneous.The standard entropyΔS~0 was also negative,which suggests a decrease in the freedom of the system. 相似文献
63.
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65.
Xinxin Wang Zhen Han Zhihui Bai Jingchun Tang Anzhou M Jizheng He Guoqiang Zhuang 《环境科学学报(英文版)》2011,23(11):1858-1864
The impact of petroleum on archaeal community in salinealkali soils was investigated, which will expand the knowledge of the archaeal population involved in the natural attenuation of hydrocarbons in extreme environments. 相似文献
66.
Jian Zhou Zegang Wang Zhiwei Huang Chao Lu Zhuo Han Jianfeng Zhang Huimin Jiang Cailin Ge Juncheng Yang 《环境科学学报(英文版)》2014,26(3):650-661
The responses of sulfur (S) uptake assimilation-related genes' expression in roots of two rice cultivars to cadmium (Cd), bensulfuron-methyl (BSM) and their co-contamination (Cd+BSM) were investigated by gene-chip microarray analysis and quantitative real-time PCR (QRT-PCR) technology. Treatments of Cd and Cd+BSM induced expression of sulfate transporter and permease genes, and promoted sulfate uptake in rice roots. Cd+BSM could alleviate Cd toxicity to cv. Fengmeizhan seedlings, probably due to Cd+BSM promoting greater S absorption by seedlings. Cd and Cd+BSM induced expression of sulfate assimilation-related genes, and thus activated the sulfur assimilation pathway. Cd and Cd+BSM induced expression of phytochelatin synthase and metallothionein genes, and induced expression of glutathione S-transferases (GSTs), glutathione synthase (GS) and S- containing antioxidation enzyme genes, which detoxified Cd2+. It is suggested that (to cope with the toxicity of Cd, BSM and their co-contamination) the S uptake and assimilation pathway was activated in rice roots by increased expression of related genes, thus enhancing the supply of organic S for synthesis of Cd or BSM resistance-related substances. 相似文献
67.
孙大鹏 《辽宁城乡环境科技》2014,(3):53-55
我国农业土壤重金属污染十分严重,在所有的重金属污染中,Cd以其移动性大、毒性高成为最受关注的重金属污染之一。修复Cd污染的土壤,已成为我国农业可持续发展亟待解决的问题。与传统环境修复技术相比,植物修复技术治理成本低廉,土壤破坏力小,安全性高,是目前发展最快的环境友好、经济、高效的治理技术。介绍了Cd污染现状、超积累植物的概念和特征、土壤重金属污染植物修复国内外研究进展,并对其发展趋势进行了分析。 相似文献
68.
石灰干化污泥稳定后土壤中Pb、Cd和Zn浸出行为的研究 总被引:9,自引:4,他引:5
以人工制备Zn、Pb、Cd污染土壤为研究对象,采用城市污水处理石灰干化污泥作为稳定剂,对污染土壤进行稳定化处理,并采用TCLP、SPLP、去离子水浸提和优化的BCR连续提取法对稳定化效果进行分析和评价.结果表明,单独使用石灰干化污泥,TCLP浸出浓度随着干化污泥质量分数的增加而显著减少,干化污泥的质量分数为40%时,稳定化率最大为Zn-99.54%、Pb-99.60%、Cd-99.85%.SPLP和去离子水浸出评价稳定效果时,Pb和Zn在加入质量分数10%和20%的干化污泥时浸出明显降低,但在加入30%和40%时由于在强碱条件Pb和Zn会再溶出,导致稳定效果变差.为了恢复植物生长功能,经过FeSO4和H3PO4调节pH后,石灰干化污泥稳定过的土壤pH有效降低,同时FeSO4和H3PO4有利于促进Pb和Zn的稳定效果.经稳定化后,土壤中的重金属可交换态降低,限制了土壤重金属的迁移.该研究结果表明石灰干化污泥可以再利用,应用于重金属污染土壤的稳定化修复中,并能改善稳定后土壤适宜植物生长的理化性质. 相似文献
69.
黏土矿物原位修复镉污染稻田及其对土壤氮磷和酶活性的影响 总被引:19,自引:0,他引:19
分别以黏土矿物坡缕石和海泡石作为钝化材料,对重金属镉污染的酸性水稻土壤进行原位钝化修复田间示范试验,考察了两种黏土矿物在不同添加剂量下对稻谷产量、糙米镉含量及土壤中有效态镉含量等变化的影响,用以表征修复效果.同时,深入研究了两种黏土矿物对土壤pH、土壤水解氮、有效磷含量及相关酶活性的影响以表征其对土壤环境质量的影响,并对各项理化指标之间的相关性进行分析.结果表明,田间示范条件下两种黏土均提高了土壤pH,降低了土壤中镉的生物有效性,明显降低了糙米中镉含量.其中,经2.00 kg·m-2坡缕石和2.25 kg·m-2海泡石处理后,糙米镉含量最大降幅分别为54.6%和73.5%,分别降低至0.32和0.18 mg·kg-1.土壤过氧化氢酶、脲酶、酸性磷酸酶及蔗糖酶的活性均得到不同程度的提高,表明经钝化修复后土壤中相关代谢反应得到恢复;两种黏土矿物对土壤中水解氮含量无明显影响,但降低了土壤有效磷含量.综合总体表现,两种黏土矿物可被推荐作为镉污染酸性稻田土壤的原位钝化修复材料. 相似文献
70.
2,2',4,4'-四溴联苯醚对赤子爱胜蚓的抗氧化酶、代谢酶及其基因表达的影响 总被引:6,自引:5,他引:1
多溴联苯醚(PBDEs)是广泛存在于环境中的一种新型持久性有机污染物.四溴联苯醚同分异构体中的BDE-47是多溴联苯醚中最重要的单体之一.试验采用人工土壤培养法,通过亚急性试验,研究了在不同暴露时间阶段下,不同BDE-47剂量对赤子爱胜蚓(Eisenia fetida)抗氧化酶(过氧化氢酶CAT)、代谢酶(谷胱甘肽转移酶GST)以及二者基因表达的影响.结果表明,在暴露14 d和28 d时,CAT活性被诱导上升并且差异显著;GST活性变化差异不显著;CAT基因表达水平在第14 d时呈现抑制效应,在后续的第28 d和第42 d基因表达水平上调;GST基因表达水平整体呈现诱导效应,并且差异显著,随着暴露时间的增加,低毒处理组(10、50 mg·kg-1)的基因表达水平逐渐下调至低于对照组的水平,高毒处理组(100、200 mg·kg-1)的基因表达量仍高于对照组水平;在BDE-47的暴露试验中,CAT与GST活性及其基因表达水平两项指标对低毒处理组较高毒处理组更为敏感. 相似文献