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21.
以草酸青霉(Penicillium oxalicum)D1为出发菌株,经过紫外线、亚硝酸以及紫外与亚硝酸复合诱变处理,选育出1株高产纤维素酶突变株NU-H,与出发菌株相比,CMCase酶活提高69.8%,滤纸酶活提高75.28%,另外木聚糖酶活,还原糖得率也有显著地提高。通过单因子及正交实验,研究了突变株纤维素酶对稻草粉水解的最适宜条件。结果表明,该菌株酶解糖化的最佳条件为:温度50℃,时间28 h,纤维素酶浓度为60%,底物浓度3%,pH 4.8,还原糖得率为23.25%。  相似文献   
22.
铬渣无序堆存造成的铬污染土壤迫切需要修复治理.本文以新筛选的功能微生物草酸青霉SL2(Penicillium oxalicum SL2)为材料,以重度铬污染土壤为研究对象,进行生物淋洗技术优化,并利用软X射线扫描透射显微光谱技术(STXM)及同步辐射X射线近边吸收结构谱学(XANES)分析淋洗后的草酸青霉SL2胞内铬空间分布化学形态.结果表明:分步处理并进行水洗预处理可明显提高草酸青霉SL2对高浓度铬污染土壤的总铬TCr淋出率(49.4%),淋出液中Cr(VI)在3 d内全部被还原;生物淋洗后,草酸青霉SL2胞内吸收累积了Cr(VI),部分被还原为Cr(III),两个价态的Cr在空间分布上具有一定的一致性;胞内铬形态主要为磷酸铬、草酸铬钾及半胱氨酸铬类化合物,其含量分别为46.9%、33.0%和20.1%.  相似文献   
23.
青霉菌对活性艳蓝 KN-R的吸附作用   总被引:3,自引:0,他引:3  
研究了青霉菌(Penicillium X5)对活性艳蓝KN—R的吸附作用.通过对培养液的波谱分析和宏观现象的观察,结果表明,在72h内,脱色是由吸附引起的.当染料的浓度为100mg/L时,活菌体对染料的吸附率可达88.66%.本实验还研究了对实际应用和吸附过程有影响的几个因素,包括葡萄糖、NaCl、温度和pH.结果表明:葡萄糖浓度在0-20g/L时,随着葡萄糖浓度的增加,菌体的干重相应增加,说明对活性艳蓝KN—R的吸附具有促进作用,但浓度在10-20g/L时,吸附作用不显著;而随着NaCl浓度(0-2%)的增加,吸附率却显著降低.最佳脱色温度为25℃,pH为4.0.活菌体与死菌体的生物吸附均符合Langmuir方程,活菌体比死菌体具有更好的吸附性能.吸附在菌丝体上的染料可以用甲酵进行洗脱,菌丝球在下次使用前用蒸馏水冲洗至pH中性,此菌丝球可重复使用3次.固8表2参11  相似文献   
24.
Screening of flocculant-producing strains by NTG mutagenesis   总被引:4,自引:1,他引:3  
Screening of new microorganism being able to produce efficiently flocculants was carried out. A new model for screening efficient flocculant-producing strains was designed and tested. The results showed that this model for screening efficient flocculant-producing strains is very reliable and can greatly shorten the screening period. 13 flocculant-producing strains were isolated from activated sludge by conventional method. A strain, designated as HHE6, produced the bioflocculant with the turbidity removal 98% for kaolin suspension. Six of 13 strains selected as the original strains were treated with NTG as mutagen, and five mutant strains(HHE-P7, HHE-A8, HHE-P21,HHE-P24, HHE-A26) with high flocculation efficiency was obtained by selection, which exhibited the flocculation rate for kaolin suspension above 90%. Strains HHE6, HHE-P7, and HHE-P24 were classified as Penicillium purpurogenum, HHE-P21 as Penicillium cyclopium,HHE-A26 as Aspergillus versicolor and HHE-A8 as Aspergillus fumigatus, and it is hitherto unreported for biofloccutant-producing strains of Penicillium. The growth of the six strains(HHE6, HHE-P7, HHE-A8, HHE-P21, HHE-P24, HHE-A26) had similar curves, i.e. firstly increasing rapidly, keeping relatively constant then and finally decreasing gradually with cultivation time. The production of bioflocculants by strains showed the similar pattern to strain growth.  相似文献   
25.
The study focused on the analysis of the chemical constituents of ethyl acetate extracts of Penicillium herquei, an endophyte of Cordyceps sinensis. The compounds were isolated and purified by chromatographic procedures and identified on the basis of spectral methods. Eleven compounds were identified: 2′,4′-dihydroxy-3′,5′-dimethylacetophenone (1), vanillin (2), 3-oxo-α-ionone (3), 3,3,5-trimethyl-4-(3-oxo-1-butenyl)cyclohexan-1-one (4), p-hydroxybenzaldehyde (5), p-hydroxyacetophenone (6), methyl p-hydroxyphenylacetate (7), cyclo-(Pro-Ile) (8), cyclo-(Pro-Val) (9), 4-methoxyphenylacetic acid (10), and cyclo-(4-methyl-Pro-Val) (11). Benzaldehydes, ionones, and cyclodipeptides are the major metabolites of the P. herquei from C. sinensis. © 2018 Science Press. All rights reserved.  相似文献   
26.
The optimization of process parameters for the bioconversion of activated sludge by Penicillium corylophilum was investigated using response surface methodology (RSM). The three parameters namely temperature of 33℃, agitation of 150 r/min, and pH of 5 were chosen as center point from the previous study of fungal treatment. The experimental data on chemical oxygen demand (COD) removal (%) were fitted into a quadratic polynomial model using multiple regression analysis. The optimum process conditions were determined by analyzing response surface three-dimensional surface plot and contour plot and by solving the regression model equation with Design Expert software. Box-Behnken design technique under RSM was used to optimize their interactions, which showed that an incubation temperature of 32.5℃, agitation of 105 r/min, and pH of 5.5 were the best conditions. Under these conditions, the maximum predicted yield of COD removal was 98.43%. These optimum conditions were used to evaluate the trail experiment, and the maximum yield of COD removal was recorded as 98.5%.  相似文献   
27.
固定化产黄青霉废菌体吸附铅与脱附平衡   总被引:18,自引:0,他引:18  
研究固定化产黄青霉废菌体对Pb2+的吸附与脱附平衡的结果表明,Pb2+的生物吸附受pH值的影响很大,温度的影响则很小.EDTA是洗脱固定化产黄青霉废菌体上所吸附Pb2+的最佳脱附剂.在保持脱附率为100%的条件下,EDTA的初浓度、固定化废菌颗粒的吸附量与最大固液比之间存在正相关关系.0.1mol/L的EDTA在脱附Pb2+时终浓度最高可达20700mg/L,最大固液比可达290以上,浓缩因子可达113,对废水中的Pb2+有很好的回收作用  相似文献   
28.
利用青霉菌P 1(Penicilliumsp )对 2种染浴废水中的染料进行吸附去除 ,研究结果表明 ,吸附处理 3h ,黑色和红色染浴废水色度基本被去除 ,去除率分别达 98 0 %和 74 5 % ,但去色处理后废水的CODCr值仍偏高。对去除色度的废水进一步用活性污泥进行深度处理 ,黑色和红色废水的CODCr去除率分别为 75 9%和 89 7%。青霉菌菌丝通过吸附作用从废水中抽提出的染料分子在有染料降解细菌L 1和L 2的降解池中脱色降解 ,菌丝吸附脱色能力得到再生。  相似文献   
29.
本研究利用Zeta电位和酸碱滴定技术对Penicillium oxalicum菌体的表面性质进行了表征,应用线性规划法求解出菌体表面在表面反应中起主要作用的4种基团酸度常数分别为4.0、7.0、8.8和10.0.与文献中数据的比较推断这些基团为羧基、磷酸基团、胺基及羟基,菌体的FTIR红外光谱解析初步验证了这一结果,上述结论为进一步研究生物吸附中菌体与吸附质之间的作用提供了必要的依据.  相似文献   
30.
Abstract

Little is known about the fungal metabolism of nC10 and nC11 fatty acids and their conversion into lipids. A mixed batch culture of soil fungi, T. koningii and P. janthinellum, was grown on undecanoic acid (UDA), a mixture of UDA and potato dextrose broth (UDA+PDB), and PDB alone to examine their metabolic conversion during growth. We quantified seven intracellular and extracellular lipid classes using Iatroscan thin-layer chromatography with flame ionization detection (TLC-FID). Gas chromatography with flame ionization detection (GC-FID) was used to quantify 42 individual fatty acids. Per 150 mL culture, the mixed fungal culture grown on UDA+PDB produced the highest amount of intracellular (531 mg) and extracellular (14.7 mg) lipids during the exponential phase. The content of total intracellular lipids represented 25% of the total biomass-carbon, or 10% of the total biomass dry weight produced. Fatty acids made up the largest class of intracellular lipids (457 mg/150 mL culture) and they were synthesized at a rate of 2.4 mg/h during the exponential phase, and decomposed at a rate of 1.8 mg/h during the stationary phase, when UDA+PDB was the carbon source. Palmitic acid (C16:0), stearic acid (C18:0), oleic acid (C18:1), linoleic acid (C18:2) and vaccenic acid (C18:1) accounted for >80% of the total intracellular fatty acids. During exponential growth on UDA+PDB, hydrocarbons were the largest pool of all extracellular lipids (6.5 mg), and intracellularly they were synthesized at a rate of 64 μg/h. The mixed fungal species culture of T. koningii and P. janthinellum produced many lipids for potential use as industrial feedstocks or bioproducts in biorefineries.  相似文献   
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