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排序方式: 共有366条查询结果,搜索用时 31 毫秒
61.
持久性有机污染物(POPs)生物修复研究进展   总被引:12,自引:2,他引:12  
持久性有机污染物(POPs)具有高毒性和低可降解性的特征,通过先进的生物修复技术来治理POPs污染正受到公众普遍的关注.而提高生物可利用性则可以突破原位生物修复的瓶颈;宏基因组技术可以获得大量的降解基因资源;利用生物工程手段,可以大幅度提高降解菌的能力这3个方面是目前POPs生物修复领域的研究热点.  相似文献   
62.
城区富营养化景观水体的生物修复技术   总被引:12,自引:3,他引:9  
生物修复技术在富营养化景观水体中有其独特的应用价值,本文综述了生物操纵控藻技术、植物控藻技术和微生物控藻技术的研究现状,讨论和展望了不同生物修复技术相互结合在水体修复中的作用.  相似文献   
63.
Stable isotope probing (SIP) was used to identify microbes stimulated by ethanol addition in microcosms containing two sediments collected from the bioremediation test zone at the US Department of Energy Oak Ridge site, TN, USA. One sample was highly bioreduced with ethanol while another was less reduced. Microcosms with the respective sediments were amended with 13C labeled ethanol and incubated for 7 days for SIP. Ethanol was rapidly converted to acetate within 24 h accompanied with the reduction of nitrate and sulfate. The accumulation of acetate persisted beyond the 7 d period. Aqueous U did not decline in the microcosm with the reduced sediment due to desorption of U but continuously declined in the less reduced sample. Microbial growth and concomitant 13C-DNA production was detected when ethanol was exhausted and abundant acetate had accumulated in both microcosms. This coincided with U(VI) reduction in the less reduced sample. 13C originating from ethanol was ultimately utilized for growth, either directly or indirectly, by the dominant microbial community members within 7 days of incubation. The microbial community was comprised predominantly of known denitrifiers, sulfate-reducing bacteria and iron (III) reducing bacteria including Desulfovibrio, Sphingomonas, Ferribacterium, Rhodanobacter, Geothrix, Thiobacillus and others, including the known U(VI)-reducing bacteria Acidovorax, Anaeromyxobacter, Desulfovibrio, Geobacter and Desulfosporosinus. The findings suggest that ethanol biostimulates the U(VI)-reducing microbial community by first serving as an electron donor for nitrate, sulfate, iron (III) and U(VI) reduction, and acetate which then functions as electron donor for U(VI) reduction and carbon source for microbial growth.  相似文献   
64.
辽河油田石油污染土壤的2阶段生物修复   总被引:16,自引:2,他引:14  
建立了污染土壤预制床处理工程,对不同类型原油污染土壤分别进行堆腐处理,历时2个阶段,共运行210d.当稀油、稠油、特稠油和高凝油污染土壤中石油烃总量(TPH)为25.8~77.2g·kg-1时,经过53d(为第1阶段)的运行,TPH去除率38.37%~56.74%.第2年(为第2阶段)继续处理156d,TPH降解率达到66.59%~80.96%.连续运行结果表明,污染土壤中易分解的石油烃污染物大部分在第1阶段得到降解,第二阶段降解率明显降低.  相似文献   
65.
地下水除草剂阿特拉津污染微生物治理的实验研究   总被引:4,自引:0,他引:4  
采用了从农药厂阿特拉津生产车间排污口污泥中分离出的菌种AT菌,进行了农药阿特拉津的静态降解实验及其污染地下水的微生物治理模拟实验研究结果表明,AT菌在pH值为5.0~10.0时对农药污染质阿特拉津均具有降解能力,且适宜的pH值范围为6.5~8.0;在实验条件(t=10℃,pH=7.5)与野外含水层的条件基本一致情况下,难于生物降解的污染质阿特拉津的一次投菌降解率达到31.08%;同时环境因素也随着AT菌作用的变化而变化,其中,DO、pH随AT菌作用加强而其值减小.另外,设计了细菌的投放方式以模拟野外条件下的菌种投加条件.并且AT菌的作用会造成被治理含水层的渗透性能降低,实验后含水层的渗透系数下降60.54%.清水冲洗10d的渗透性恢复率为48.96%,说明清水渗透恢复的方法效果明显.  相似文献   
66.
Isolated Trichoderma atroviride from Cu-polluted river sediment at the Serdang Industrial Area was studied under in vitro conditions to understand the mechanisms that allowed the fungi to thrive in the Cu-polluted freshwater ecosystem. From this study, adsorption was recognized as the main mechanism of Cu tolerance with 50–85% adsorption during the in vitro experiment. The uptake capacity of the isolate in liquid medium ranged from 0.8 to 11.2 mg g?1 in the potato dextrose broth medium with increasing Cu concentrations from 25 to 300 mg L?1. It was found that 2.7–5.0% of Cu was lost due to washing. The high percentage of Cu adsorption and the high uptake capacity of Cu by T. atroviride suggest that it is a potential bioremediator of Cu. However, further studies are needed to confirm its practical use as a bioremediating agent for Cu under field conditions.  相似文献   
67.
The contamination of soils by toxic and/or hazardous organic pollutants, especially with crude oil, is a widespread problem. This study was conducted in a petroleum-contaminated area in a Tehran oil refinery to find petroleum-resistant plants and their rhizospheral fungal strains with bioremediation potency. The plants growing in the oil-polluted area were collected and determined taxonomically. Root samples of the plant species were collected from a polluted area and fungal strains determined by laboratory methods and taxonomical keys. The growth ability of the isolated fungal strains was studied in media containing 1%–15% crude oil. Results showed that seven plant species were of the highest density in the contaminated area: Alhagi persarum, Hordeum marinum, Peganum harmala, Phragmites australis, Prosopis farcta, Salsola kali, and Senecio glaucus. The root-associated fungi were isolated and showed that the fungal variation in the oil-polluted area is higher than that in a non-polluted area. The growth assay of isolated fungal strains showed that all studied fungal strains were able to form colonies at the applied concentrations but Alternaria sp. and Rhizopus sp. were the most resistant ones. Some plants were resistant to oil pollution, which also had positive effects on the fungal strains.  相似文献   
68.
The following areas are discussed in this paper: immobilisation of bacterial consortium in sol-gel; methyl parathion degradation and bioremediation applications; evaluation of indigenous bacterial isolates of contaminated soils. Bacterial strains were isolated from agricultural areas of Pakistan which were contaminated with methyl parathion. A bacterial consortium of seven (out of 64) Enterobacteriaceae isolates including Citrobacter, Enterobacter and Proteus vulgaris capable of degrading methyl parathion (enzyme activity ranging 410–675 mU mL?1 for individual isolates and 982 mU/mL for consortium) was selected and subsequently immobilised in tetraethyl orthosilicate (TEOS) and sodium-silicate-based sol-gel matrices. Cell viability of suspended and immobilised bacterial consortium was monitored using a minimal salt medium supplemented with methyl parathion. The results indicate that sol-gel immobilisation can be helpful to increase the shelf life of methyl parathion degrading bacterial strains along with preservation of biological activity for bioremediation applications in field.  相似文献   
69.
为研发酸化土壤的生物修复技术,采用水培试验和自动电位滴定装置研究酸性条件下氮素形态对小麦幼苗根系释放氢氧根及培养液pH变化的影响。结果表明,小麦幼苗在初始pH值为4.0,n(NO3-)∶n(NH4+)比值(以下简称硝/铵比)分别为15∶1、3∶1和1∶1的营养液中培养6 d后营养液pH升高,且增幅随硝/铵比的增加而增大,小麦对硝态氮的吸收量和氢氧根释放量呈相同的变化趋势,说明小麦对硝态氮的吸收偏好导致根系释放氢氧根,进而使得培养液pH升高。小麦幼苗在硝/铵比为3∶1,初始pH值分别为4.0、4.5和5.0的营养液中培养6d后,培养液pH和氢氧根释放量的增幅随初始pH的升高而降低,说明低pH条件有利于小麦幼苗对硝态氮的吸收,可促进小麦根系释放更多的氢氧根。10 h的恒定pH试验结果表明,恒定pH条件下小麦根系释放的氢氧根数量大于非恒定pH条件,且硝态氮比例越大,差值越大。因此,可以根据小麦在酸性条件下对硝态氮的吸收偏好建立酸化土壤的生物修复方法,即调节硝态氮含量以加大小麦根系的氢氧根释放量,进而提高土壤pH。  相似文献   
70.
为有效治理呋喃丹的污染,从受呋喃丹长期污染的土壤中分离筛选到一株高效降解呋喃丹的菌株CFDS-1,经形态、生理生化、16S rDNA(GenBank accession No.AY702969)同源性及系统发育地位等分析,将其初步鉴定为Sphingomonas sp.当接种量为5%时,CFDS-1能在48 h内降解100 mg L-1的呋喃丹,对于高达300 mg L-1的呋喃丹依然有降解效果;CFDS-1对呋喃丹的降解率与起始接种量呈正相关;降解呋喃丹的最适pH是8.0~9.0;在20~42℃范围内,温度对CFDS-1降解呋喃丹没有显著影响;该菌在250 mL三角瓶中装液量为100 mL时,对呋喃丹的降解效果最好.土壤实验表明,该菌株同样能有效地降解土壤中的呋喃丹残留.  相似文献   
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