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41.
海底深部生物圈是科学大洋钻探的最大发现之一,已证明以厌氧、高压、贫营养、温度跨幅大为特点的海底深部生物圈中存在大量微生物类群,其中研究较多的是细菌和古菌,而对真菌的研究则很少。本文重点综述目前有关海底深部生物圈真菌的研究进展,为我国从事海底深部生物圈真菌研究提供参考。 相似文献
42.
Metal ions and fiber are common compounds in the livestock and poultry manure,which will affect the fate of organic compounds in aqueous environment. However,limited research has addressed the effect of coexisting metal ions and fiber on the biodegradation of sulfonamide antibiotics. Accordingly, a compositing study was performed to assess the effect of metal ions(Fe3+and Cu2+) on the biodegradation of sulfadimethoxine sodium salt(SDM) in the presence of fiber. The enhanced adsorption of SDM onto fiber in the presence of metal ions can be attributed to the π+–π electron donor acceptor(EDA) interaction. The microbial(Phanerochaete chrysosprium) could easily attach onto fiber forming attached microbial, and the degradation rates of SDM of immobilized bacteria in the presence of Fe3 +were 100%, which were significantly higher than those of free bacteria(45%). This study indicates that Fe3 +and fiber could enhance the biodegradation of SDM. Fiber acts as adsorbent, carrier, and substrate which enhanced the removal of SDM. 相似文献
43.
Hui Xie Lusheng Zhu Tingting M Jun Wang Jinhua Wang Jun Su Bo Shao 《环境科学学报(英文版)》2010,22(12):1930-1935
The free enzyme extracted from WZ-I,which was identified as Fusarium LK.ex Fx,could effectively degrade chlorpyrifos,an organophosphate insecticide.The methods of immobilizing this free enzyme and determined its degradation-related characteristics were investigated.The properties of the immobilized enzyme were compared with those of the free enzyme.The optimal immobilization of the enzyme was achieved in a solution of 30 g/L sodium alginate at 4°C for 4-12 hr.The immobilized enzyme showed the maximal activity at pH 8.0,45°C.The maximum initial rate and the substrate concentration of the immobilized enzyme were less than that of the free enzyme.The immobilized enzyme,therefore,had a higher capacity to withstand a broader range of temperatures and pH conditions than the free enzyme.With varying pH and temperatures,the immobilized enzyme was more active than the free enzyme in the degradation reaction.In addition,the immobilized enzyme exhibited only a slight loss in its initial activity,even after three repeated uses.The results showed that the immobilized enzyme was more resistant to different environmental conditions,suggesting that it was viable for future practical use. 相似文献
44.
Natarajan Velmurugan Grim Hwang Muthuswamy Sathishkumar Tae Kie Choi Kui-Jae Lee Byung-Taek Oh Yang-Soo Lee 《环境科学学报(英文版)》2010,22(7):1049-1056
A heavy metal contaminated soil sample collected from a mine in Chonnam Province of South Korea was found to be a source
of heavy metal adsorbing biosorbents. Chemical analyses showed high contents of lead (Pb) at 357 mg/kg and cyanide (CN) at 14.6
mg/kg in the soil. The experimental results showed that Penicillium sp. MRF-1 was the best lead resistant fungus among the four
individual metal tolerant fungal species isolated from the soil. Molecular characterization of Penicillium sp. MRF-1 was determined
using ITS regions sequences. E ects of pH, temperature and contact time on adsorption of Pb(II) by Penicillium sp. MRF-1 were
studied. Favorable conditions for maximum biosportion were found at pH 4 with 3 hr contact time. Biosorption of Pb(II) gradually
increased with increasing temperature. E cient performance of the biosorbent was described using Langmuir and Freundlich isotherms.
Adsorption kinetics was studied using pseudo first-order and pseudo second-order models. Biosorbent Penicillium sp. MRF-1 showed
the maximum desorption in alkali conditions. Consistent adsorption/desorption potential of the biosorbent in repetitive cycles validated
the e cacy of it in large scale. SEM studies given notes on surface modification of fungal biomass under metal stress and FT-IR results
showed the presence of amino groups in the surface structure of the biosorbent. In conclusion, the new biosorbent Penicillium sp.
MRF-1 may potentially be used as an inexpensive, easily cultivatable material for the removal of lead from aqueous solution. 相似文献
45.
白腐真菌细胞色素P450的诱导及检测方法研究 总被引:1,自引:0,他引:1
以CO结合差光谱为基本检测法,研究了白腐真菌黄孢原毛平革菌中细胞色素P450的诱导和适宜的分离检测方法.结果表明,正己烷对该真菌P450有显著的诱导作用,P450诱导量受正己烷浓度和诱导时间的影响,每小时投加正己烷2μL/mL、诱导6 h可使该真菌微粒体P450比浓度高达140~160 pmol/mg.在此基础上,本研究优化了分离P450时破碎细胞的方法以及光谱法检测P450的条件.破碎细胞时,采用高速分散结合玻璃研磨,比采用玻璃研磨、超声破碎和珠磨等方法分离的微粒体P450含量高1~5倍,是更为适宜的破碎方法.检测CO结合差光谱时,通气和还原条件对P450检测值有显著影响,较适宜的条件为:样品池和对照池分别通入等量的CO和N2,通气流量为3 mL/min(300μL样本),通气时间40 s;通气后投加还原剂低亚硫酸钠,投加浓度为0.4 mol/L. 相似文献
46.
47.
霉菌吸附水体中Cr(Ⅵ)Cd(Ⅱ)离子研究 总被引:1,自引:5,他引:1
采用从活性污泥中筛选的ZYL霉菌,进行吸附水体中Cr(Ⅵ)、Cd(Ⅱ)离子研究。研究结果表明:在Cr(Ⅵ)、Cd(Ⅱ)浓度分别为300mg/L时,菌种生长良好。吸附水体中[Cr(Ⅵ)、Cd(Ⅱ)]的最佳条件是pH=5.0,时间1h,温度为10℃。吸附规律符合Langm uir等温吸附模型,由回归方程得到Cr(Ⅵ)的表观最大吸附量为14m g/g;Cd(Ⅱ)的表观最大吸附量为52m g/g,说明该霉菌可以很好的去除低温水体(地下水)中Cr(Ⅵ)、Cd(Ⅱ)离子。 相似文献
48.
从天然矿山酸性废水中富集制备了3种嗜酸性细菌混培物,开展了污泥生物沥浸实验,研究了沥浸去除污泥重金属(Cu、Zn、Cd)同时改善脱水性能的效果.结果表明,3种嗜酸性细菌混培物均可有效去除污泥中的重金属(P<0.01).沥浸12d后,改进型Starkey培养基富集的嗜酸性细菌混培物对Cu和Cd的去除率分别达到82.0%和82.9%,9K培养基富集的嗜酸性细菌混培物进行生物沥浸处理对Zn的去除率可达到87.5%.同时,生物沥浸还可以显著改善污泥的脱水性能(P<0.01).经过12d沥浸,污泥的离心脱水率可由73.1%上升到90.0%.显微观察和能谱分析结果显示,污泥脱水性能的改善是因为生物沥浸能使污泥结构由絮体状变成明显的颗粒状,并可形成以铁、氧和硫为主要元素组成的次生矿物规则晶体. 相似文献
49.
在液体体系下,筛选了5株白腐菌,对六氯苯进行了降解研究,并优化了白腐菌Trametes hirsute TH对六氯苯的降解条件.结果表明,不同白腐菌均能降解六氯苯,其中白腐菌Trametes sp.TR对六氯苯降解率最高,达90.21%;而白腐菌T.hirsute TH对六氯苯降解率为87.08%,但生物量最高,达3.33 g/L.通过响应面法优化白腐菌T.hirsute TH降解六氯苯的条件,结果显示,转速、接种量和培养时间是影响六氯苯降解的主要因素.优化后的最佳条件为:转速125 r/min,菌丝接种量8%(V/V),培养时间2 d,温度28 ℃,pH为7.在优化条件下,2 d内白腐菌T.hirsute TH对浓度为10 mg/L的六氯苯降解率和降解量分别可达91.52%和2.288 mg L-1 d-1.图2表7参17 相似文献
50.
为提高中国东北土著白腐真菌偏肿拟栓菌(Pseudotrametes gibbosa)对高分子量多环芳烃芘的共代谢降解效果,通过正交试验研究了共代谢基质、接种量、装液量及2,2¢-连氮-二(3-乙基苯并噻唑-6-磺酸)(ABTS)的最佳配比,同时采用浓度梯度法考察芘的初始浓度对偏肿拟栓菌共代谢降解芘的影响.结果表明,偏肿拟栓菌Pseudotrametes gibbosa共代谢降解芘的最佳培养基为:麸皮浓度为20g/L,接种量为3片直径为10mm的菌片,装液量为50mL,不加ABTS,在该培养条件下,酶活可达53.41U/mL,对芘的降解率达到88.8%.初始浓度小于10mg/L的芘对菌体产酶有一定的促进作用,大于10mg/L时抑制漆酶的分泌,同时菌体对初始浓度小于90mg/L芘的降解率在22.24%~93.54%之间. 相似文献