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11.
以海藻酸铝为主要包埋材料、纳米Al_2O_3为添加剂,包埋固定红平红球菌,制得纳米Al_2O_3固定化红平红球菌菌球,并将其用于苯酚的降解。表征结果显示:菌球内部包含丰富的菌丝体;内部孔径以中孔居多。实验结果表明:菌球的最优制备方案为0.05 g纳米Al_2O_3加入3 m L海藻酸钠溶液中、海藻酸钠质量分数6%、微生物包埋量0.5 m L/m L(以海藻酸钠溶液计)、Al_2(SO_4)_3质量分数3%;在初始苯酚质量浓度为400 mg/L、反应时间为24h、菌球加入量为8 g/L、反应p H为8.0、反应温度为30℃的条件下,菌球首次使用时可使苯酚完全降解,使用5次后的苯酚降解率仍达93%以上,具有良好的循环使用性。  相似文献   
12.
从石油污染土壤筛选出一株高效石油降解菌JC-106,经细菌形态学、生理生化及16S r DNA序列分析鉴定为赤红球菌(Rhodococcus rubber).在温度15~40℃、初始p H 6~8、盐度0~4%条件下培养生长良好.该菌能利用十二烷、二十四烷、正辛烷、邻苯二酚、蒽、萘为唯一碳源生长.在较低温度下能有效降解原油,在15和35℃培养15 d对原油降解率分别为41.61%和58.18%,GC-MS分析发现原油组分中正构烷烃(C14~C44)降解率达到96.13%.在含1000 mg·L~(-1)原油的人工废水中加入2%(V/V)赤红球菌JC-106菌悬液,采用SBR间歇式活性污泥法处理含油废水,15 d后出水COD、NH_4+-N、TP平均去除率分别为96.49%、96.88%、99.15%,原油去除率为92.43%,对照组原油去除率仅为53.80%.JC-106在含油废水中稳定生长,数量维持在4.8×1010~1.0×1011cfu·mL~(-1)左右.  相似文献   
13.
研究了红球菌(Rhodococcus)Chr-9菌株在基础盐培养基中降解吡啶和苯酚的特性,分析了菌株降解苯酚和吡啶间的差异.结果表明,菌株Chr-9能够在72 h内将基础盐培养基中的吡啶(200 mg L-1)和苯酚(200 mg L-1)完全降解,同时利用吡啶和苯酚进行生长.菌株降解吡啶的最适温度为35℃,最适pH为8.0.菌株降解吡啶和苯酚的速度与底物的初始浓度呈负相关;在无其它氮源的基础盐培养基中,菌株能够利用吡啶和苯酚协同生长.图7参12  相似文献   
14.
分离到一株能以苯酚、苯甲酸、对甲酚、萘为唯一碳源和能源生长、具有同时降解单环和双环芳烃能力的细菌菌株,经生理生化、16SrRNA基因序列分析等鉴定为红球菌PNAN5菌株(Rhodococcussp.strainPNAN5).在实验条件下和在温度为20~40℃、pH7 0~9 0范围内菌株PNAN5降解苯酚的效率保持在80%~100%之间,苯酚浓度在2~10mmol·L-1范围内变化对降解效率没有明显的影响.该菌株通过邻苯二酚1,2 双加氧酶催化的开环途径降解芳烃,不同于已知的浑浊红球菌(R.opacus)是通过邻苯二酚2,3 双加氧酶催化芳烃降解.以细胞裂解液测定该酶的酶促反应动力学常数Km值为35 94μmol·L-1,Vmax为0 84μmol·L-1·min-1·mg-1.  相似文献   
15.
Rhodococcus erythropolis USTB-03 is a promising bacterial strain for the biodesulfurization of dibenzothiophene (DBT) via a sulfurspecific pathway in which DBT is converted to 2-hydroxybiphenyl (2HBP) as an end product. The effects of nicotinamide and riboflavin on the sulfur specific activity (SA) of DBT biodesulfurization by R. erythropolis USTB-03 were investigated. Both nicotinamide and riboflavin were found to enhance the expression of SA, which was not previously reported. When R. erythropolis USTB-03 was grown on a medium containing nicotinamide of 10. 0 mmol or riboflavin of 50. 0 μnol, SA was raised from 68. 0 or so to more than 130 mmol 2HBP/(kg dry cells. h). When R. erythropolis USTB-03 was grown in the presence of both nicotinamide of 5. 0 mmol and riboflavin of 25. 0 μmol, SA was further increased to 159. 0 mmol 2HBP/(kg dry cells. h). It is suggested that the biological synthesis of reduced form of flavin mononucleotide (FMNH2), an essential coenzyme for the activities of biodesulfurization enzyme Dsz C and A, might be enhanced by nicotinamide and riboflavin, which was responsible for the increased SA of R. erythropolis USTB-03.  相似文献   
16.
Oil pollution is one of the major factors causing environmental deterioration. Bioremediation of oil contaminated environments by microorganisms attracts much research attention. This study aimed to screen efficient oil-degrading bacteria from oil contaminated soil and analyze their characteristics and catabolic genes. Oil-degrading bacteria were screened from oil contaminated soil in minimal medium containing crude oil and identified by morphological, physiological and biochemical characteristics and 16S rDNA sequence analysis. Their growth and degradation characteristics were studied with ultraviolet spectroscopy and GC-MS analysis. The surfactant production was studied by adopting culture method. The major oil-degrading related genes were detected by t he PCR a mplification. As a result, t hree oil-degrading bacteria strains named KB1, 2182 and JC3-47 were isolated from the oil contaminated soil samples. The strains could use crude oil as the sole carbon source to degrade oil with a degrading rate of 41.02%, 32.26% and 55.90%, respectively, when cultured in minimal medium containing crude oil for 3 days. The bacteria were identified to belong to genus Rhodococcus. With 100% similarity of 16S rDNA sequences of the three strains with known ones of Rhodococcus, KB1 was preliminarily identified as Rhodococcus erythropolis, 2182 as Rhodococcus equi, and JC3-47 as Rhodococcus qingshengii. They grew well at 10-50 °C, with the initial pH of 3-9 and the NaCl concentration of 0-5%. The optimal temperature for bacterial growth was 35 °C, 35 °C and 30 °C respectively. KB1 and 2182 could grow at pH 2 and 9.0% of NaCl. The bacteria grew well in broth containing different organic substrates as sole carbon source, such as n-dodecane, n-octadecane, benzene, methylbenzene, xylene and naphthaline. KB1 and JC3-47 could grow well in broth containing pyrene. GC-MS analysis revealed that the bacteria could effectively degrade medium- and long-chain alkane components in crude oil. The bacteria produced biosurfactants and decreased the surface tension of the culture broth. They also showed adhesion activities to n-hexadecane. The oil-degrading related genes such as alkane monooxygenase, aromatic-ring-hydroxylating dioxygenase and catechol dioxygenase genes were detected in all the three strains. Besides, biphenyl dioxygenase genes were detected in KB1 and 2182. The isolated Rhodococcus spp. strains could effectively degrade petroleum hydrocarbons with high adaptabilities to extreme environments such as high salt and low temperature. They are supposed to be applied broadly in the bioremediation of oil contaminated soil in such environments.  相似文献   
17.
不同硫源对红串红球菌生长和脱硫比活性的效应   总被引:4,自引:0,他引:4  
阎海 《环境化学》2000,19(3):244-249
本文牛磺酸、硫酸镁和二苯噻吩(DBT)分别作为唯一硫源以及DBT不同供给量对红串红球菌生长和脱硫比活性的效应进行了研究,结果表明,红串红球菌肯 利用有机和无机硫化合物作为硫源的能力。与牛磺酸和到镁相比,DBT是促进红串红球菌生长和提高其脱硫比活红串红球菌的最大脱硫比活性达79.1mmol2HBP.kg^-1.h^-1。影响红串红球菌脱硫比活性的因素主要是其生长的不同阶段、DBT供给量和羟基二苯生产  相似文献   
18.
以赭曲霉死菌丝体为载体,吸附红平红球菌(Rhodococcus erythropo lisNG0402)和白腐菌(Phanerochaete chrysosporiumM E-446)的混合物,用聚乙烯醇作包埋剂进行共固定化。用制备好的共固定化细胞处理增塑剂废水,连续运行19d的结果表明,共固定化处理增塑剂废水的效果远好于单一菌的效果。在pH7.0、溶解氧质量浓度3.0m g/L、水力停留时间25h的条件下,废水中苯酚、COD和色度的去除率连续15d达到了90%以上,对苯酚的去除能力为2.16kg/(m3.d)。  相似文献   
19.
红球菌CDT3降解氯氰菊酯的特性及途径   总被引:12,自引:0,他引:12       下载免费PDF全文
以一株降解氯氰菊酯的红球菌(Rhodococcussp.)CDT3为材料,研究了CDT3降解氯氰菊酯的最适条件(温度、pH值、接种量、培养时间、添加营养物).结果表明,在温度30℃,pH8.0时,CDT3对氯氰菊酯的降解率最高,添加少量葡萄糖、蛋白胨、酵母汁均能促进它对氯氰菊酯的降解.研究了CDT3降解氯氰菊酯的代谢途径,通过GC-MS分析,证实氯氰菊酯被CDT3降解后的产物是3-苯氧基苯甲酸(3-PBA)和二氯菊酸(DCVA),推测氯氰菊酯是由CDT3产生的羧酸酯酶降解的,作为验证,提取了CDT3的粗酶液,并且通过聚丙烯酰胺凝胶电泳(PAGE)检测了羧酸酯酶.  相似文献   
20.
侯颖  王飞  董维亮  崔中利 《中国环境科学》2013,33(10):1785-1790
以乙草胺为唯一碳源,通过摇瓶培养研究了Rhodococcus sp.T3-1对乙草胺的降解特性.结果表明,菌株T3-1降解乙草胺的最适温度为37℃,且其在pH值6~10的范围内对100mg/L乙草胺的降解率均在96%~97%之间.该菌株在接种量为5%条件下,14h内可将200mg/L的乙草胺降解95.5%;乙草胺的降解速率与乙草胺初始浓度呈负相关,与菌株T3-1的初始接种量呈正相关.菌株T3-1还可以降解丁草胺,但不能降解丙草胺、异丙草胺和吡草胺.  相似文献   
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