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31.
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It was shown that activities and isoenzyme patterns of x-L-fucosidase and hexosaminidase were similar in biopsy specimens of chorion obtained immediately before induced abortion in normal pregnancy and in chorion tissue itself. A comparative study of isoenzyme patterns of these glycosidases showed their similarity in chorion and human fetal kidney, liver and lungs. The data obtained may be applied to the investigation of the multiple forms of α-L-fucosidase and hexosaminidase in chorion biopsy specimens for the prenatal diagnosis of fucosidosis (α-L-fucosidase deficiency). Tay-Sachs diseases (hexosaminidase A deficiency) and Sandhoff disease (deficiency of hexosaminidase A and B).  相似文献   
33.
The use of abundant waste materials with high carbohydrate content may contribute substantially to reduction of biofuels production cost. The present study aimed at optimizing the combined effect of thermo-chemical pretreatment and enzymatic hydrolysis of kitchen wastes (KW) for maximizing the production of fermentable soluble sugars. To this end, acid pretreatment of KW samples was performed with hydrochloric acid (0–3% HCl) at 30–100 °C for 0–120 min treatment time. Alternatively, alkaline pretreatment of KW samples was performed with potassium hydroxide solution (0–11%) at constant temperature and time (0 °C and 20 min, respectively). KOH pretreatment at such conditions targets to degrade the resistant starch of KW samples. Both acid and alkaline pretreatments were followed by addition of variable levels of enzyme dosage (0–3.6% v/v α-amylase and 0–3.2% v/v amyloglucosidase-AMG) at constant pH, temperature and time (pH = 5, T = 50 °C and t = 30 min, respectively). Based on our results, glucose concentration increased by ~300% after pretreatment with either acid or KOH in combination with enzymatic hydrolysis (2% HCl, 85 °C, 80 min, 0.1% α-amylase, AMG, and 1% KOH, 0 °C, 20 min, 1.1% α-amylase, 0.4% AMG) compared to raw (untreated) KW. Estimating the different YG yields at KW loading of 5%, an increase of 192% and 121% for total soluble monosugars and total soluble sugars, respectively, was succeeded compared to untreated KW. The effect of solids loading on the obtained sugar yields using the optimum conditions for thermo-chemical pretreatment followed by enzymatic hydrolysis was also tested resulting to 27.5% increase of the soluble glucose yield when half of the solids loading (2.5%) was used. A decrease of total soluble sugars yield by 32.2% was observed when solely acid hydrolysis at optimum conditions from our previous study was applied at 30% solids loading.  相似文献   
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35.
α-FeOOH类Fenton可见光光催化降解有毒有机污染物   总被引:1,自引:0,他引:1  
用氨水滴定法制备了针铁矿α-FH,以α-FeOOH作为光催化剂,橙Ⅱ(Orange-Ⅱ)和2,4-二氯苯酚(2,4-dichlorophenol,DCP)为目标化合物,研究了可见光照射下(λ>420 nm) α-FeOOH对其光催化降解的催化特性.结果表明:在可见光照射下,pH为7.02,H2O2浓度为1.5×10-2...  相似文献   
36.
17α-雌二醇在土壤样品中的吸附特性研究   总被引:2,自引:1,他引:1  
研究了pH值、温度、离子强度和土壤粒径等因素对17α-雌二醇(17α-E2)在土壤样品中吸附特性的影响。结果表明:17α-E2在土壤中的等温吸附浓度呈现先显著升高后保持相对稳定的趋势,等温吸附平衡时间约为0.5 h;土壤对17α-E2的吸附率随着环境温度的升高而显著降低。随着17α-E2溶液pH值的升高,土壤样品对17α-E2的吸附则逐渐降低;随着离子浓度的升高,土壤样品对17α-E2的吸附呈现先显著升高后保持相对稳定的趋势;随着土壤粒径的增大,土壤样品对于17α-E2的吸附作用则显著降低。  相似文献   
37.
聚γ-谷氨酸(γ-PGA)是一种应用前景良好的生物高分子材料.比较了蔗糖诱导的枯草芽胞杆菌果聚糖蔗糖酶基因(SacB)启动子和地衣芽胞杆菌α-淀粉酶基因启动子对γ-PGA降解酶基因ywtD在地衣芽胞杆菌中加强表达的影响.分别用SacB基因启动子和α-淀粉酶启动子构建了穿梭表达载体pHY300-SYT和pHY300-PYT,通过电转化地衣芽胞杆菌WX-02获得重组子SYT和PYT.酶活测定结果显示SYT和PYT中γ-PGA降解酶基因ywtD得到加强表达,摇瓶发酵结果显示两个重组菌株的γ-PGA相对分子质量都由1 000 000~1 200 000降低为800 000~900 000,PYT的γ-PGA产量较对照菌株PLK提高了33%,由13.50 g L-1提高到17.97 g L-1,而SYT的γ-PGA产量则降低为10.85 g L-1.因此,α-淀粉酶启动子更适合于在地衣芽胞杆菌WX-02菌株中表达γ-PGA降解酶基因,从而获得高产低分子量γ-PGA的工程菌.  相似文献   
38.
1株α-蒎烯降解菌的分离鉴定及降解特性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
从处理废气的生物滤塔内筛选到1株能高效降解α-蒎烯的菌株PT.通过菌落形态、生理生化特征、16SrRNA基因序列相似性分析及Biolog鉴定等方法,确定该菌株属于荧光假单胞菌(Pseudomonas fluorescens).菌株PT最佳生长条件为: NaCl浓度0.00%、pH7.13、温度25.5℃,降解速率达到最大值5.22mg/(L×h).降解过程符合Haldane’s抑制生长动力学模型,最大比降解速率为0.0364h-1.菌株PT能不同程度地降解一些分子结构较为简单或与α-蒎烯结构相似的工业有机污染物.代谢产物分析表明,菌株PT在降解α-蒎烯的过程中产生柠檬油精、紫苏酸等结构较为简单的物质,它们最终被完全矿化为CO2或合成细胞自身组成物质.碳平衡分析表明,底物有机碳含量完全矿化和转化为细胞生物量的比例分别为64.83%和30.37%.  相似文献   
39.
Natural estrogens such as estrone, 17β-estradiol, estriol, and the particularly recalcitrant synthetic estrogen 17α-ethinylestradiol used as oral contraceptive, accumulate in the environment and may give rise to health problems. The processes participating in their removal from soil, wastewater, water-sediments, groundwater-aquifer material, and wastewater or sewage treatment plant effluents may involve the action of bacterial and microbial consortia, and in some cases fungi and algae. This review discusses the different efficiencies of bacterial degradation of 17α-ethinylestradiol under aerobic and anaerobic conditions, the role of sulfate-, nitrate-, and iron-reducing conditions in anaerobic degradation, and the role of sorption. The participation of autotrophic ammonia oxidizing bacteria and heterotrophic bacteria in cometabolic degradation of estrogens, the estrogen-degrading action of ligninolytic fungi and their extracellular enzymes (lignin peroxidase, manganese-dependent peroxidase, versatile peroxidase, laccase), and of algae are discussed in detail.  相似文献   
40.
● EE2 photodegradation behavior in the presence of four WWTPs’ DOM was explored. ● The 3DOM* played a major role in the EE2 photodegradation mediated by WWTPs’ DOM. ● The A2/O process DOM contained more aromatic and oxygen-containing substances. ● Possible photosensitivity sources of DOM in the A2/O process were proposed. Dissolved organic matter (DOM) from each treatment process of wastewater treatment plants (WWTPs) contains abundant photosensitive substances, which could significantly affect the photodegradation of 17α-ethinylestradiol (EE2). Nevertheless, information about EE2 photodegradation behavior mediated by DOM from diverse WWTPs and the photosensitivity sources of such DOM are inadequate. This study explored the photodegradation behavior of EE2 mediated by four typical WWTPs’ DOM solutions and investigated the photosensitivity sources of DOM in the anaerobic-anoxic-oxic (A2/O) process. The parallel factor analysis identified three varying fluorescing components of these DOM, tryptophan-like substances or protein-like substances, microbial humus-like substances, and humic-like components. The photodegradation rate constants of EE2 were positively associated with the humification degree of DOM (P < 0.05). The triplet state substances were responsible for the degradation of EE2. DOM extracted from the A2/O process, especially in the secondary treatment process had the fastest EE2 photodegradation rate compared to that of the other three processes. Four types of components (water-soluble organic matter (WSOM), extracellular polymeric substance, humic acid, and fulvic acid) were separated from the A2/O process DOM. WSOM had the highest promotion effect on EE2 photodegradation. Fulvic acid-like components and humic acid-like organic compounds in WSOM were speculated to be important photosensitivity substances that can generate triplet state substances. This research explored the physicochemical properties and photosensitive sources of DOM in WWTPs, and explained the fate of estrogens photodegradation in natural waters.  相似文献   
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