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101.
纳米银与石墨烯对土壤微生物及土壤酶的影响   总被引:2,自引:0,他引:2  
采用室内暗培养试验分别探究了纳米银与石墨烯对土壤微生物及土壤酶的不同影响.将不同剂量的纳米银(0、10、100、150 mg·kg~(-1))与高纯石墨烯(0、10、100、1000 mg·kg~(-1))分别与等量棕壤充分混匀,然后进行暗培养.在第3、7、15、30和60 d时取样,测定土壤脲酶、土壤碱性磷酸酶、土壤脱氢酶和土壤过氧化氢酶的活性及土壤细菌、真菌和放线菌的数量,并在培养期间测定土壤呼吸速率及CO2累积量.结果表明,所有纳米银处理均抑制土壤的呼吸作用,并且剂量越高,抑制作用越明显;而石墨烯处理未对土壤呼吸产生显著影响.10 mg·kg~(-1)纳米银处理下,土壤真菌数量在整个培养期内均显著低于对照,土壤细菌在第60 d时也被显著抑制,但土壤放线菌数量无变化;与对照相比,100和150 mg·kg~(-1)的纳米银处理显著降低了土壤细菌、真菌、放线菌的数量.10和100 mg·kg~(-1)的石墨烯处理下,土壤细菌、真菌、放线菌数量则均无显著变化.1000 mg·kg~(-1)的石墨烯显著增加了土壤中细菌与真菌的数量,却对土壤放线菌数量无影响.纳米银处理显著抑制土壤脲酶、脱氢酶活性,却对土壤过氧化氢酶与磷酸酶活性基本无影响.10和100 mg·kg~(-1)石墨烯处理对土壤脲酶有一定的促进作用,1000 mg·kg~(-1)石墨烯处理对土壤过氧化氢酶和脱氢酶有一定的促进作用,而不同剂量的石墨烯在培养后期均对碱性磷酸酶产生抑制作用.总体来说,纳米银在一定程度上对土壤酶及土壤微生物结构产生了负面影响,而石墨烯对土壤酶及土壤微生物结构的影响不明显.  相似文献   
102.
波流式生态滤床氨氮去除效果及其微生物群落结构分析   总被引:1,自引:0,他引:1  
利用波流式生态滤床处理受污染的河水,考察了其对氨氮的去除效果和沿程污染物转化情况,并采用扫描电镜、高通量测序手段解析了波流式生态滤床不同时间和位置基质上生物膜的细菌群落组成,分析了波流式生态滤床小试反应器中硝化细菌和反硝化细菌的分布特点,以探讨其去除氨氮的机理.结果表明,反应器稳定运行以后,对氨氮平均去除率为74.83%,基质表面可以观察到大量微生物,不同时期优势细菌有较大不同.反应器前部主要发挥硝化作用,中部发挥反硝化作用,硝化菌的分布呈现上多下少、前多后少的特点,使得氨氮在前端被快速去除;中部以黄杆菌属(Flavobacterium)为代表的反硝化菌丰度较高,促进了反硝化作用的发挥,降低了出水中总氮浓度;不同部位样品中细菌多样性差别不大,微生物种群多样性随着水流方向呈现先增加,到后段减少的趋势.  相似文献   
103.
微生物燃料电池恒电流预培养阳极生物膜分析表征   总被引:1,自引:1,他引:0  
阳极性能是影响微生物燃料电池(Microbial Fuel Cells,MFCs)性能的关键因素之一,同时阳极的接种挂膜过程是影响微生物燃料电池启动效率的关键因素.因此,本课题组提出了预培养阳极作为微生物燃料电池的一种新型阳极的概念,在三电极体系下,通过外加恒定电流预培养阳极,在不同条件下对阳极表面进行电化学选择和生物膜驯化以丰富生物膜结构和厚度.结果表明,阳极的性能与预培养电流大小密切相关,预培养阳极CF-4i(外加4 A·m-2电流密度)通过循环伏安法、塔菲尔曲线、电化学阻抗谱测试,性能好于其他测试组及对照组,装配阳极CF-4i的微生物燃料电池能实现最大功率密度968.20 m W·m-2,是对照组的2.53倍.同时,通过共聚焦显微镜观察发现,生物膜大体分两层,外层的活细胞及内层的死细胞,外层活细胞长在内层死细胞之上.这种结构分布表明,阳极生物膜中的活细胞部分绝大多数都分布于生物膜的外侧,而不是均布于整个阳极生物膜中;同时这也表明不是整个阳极生物膜都具有新陈代谢活性,但死亡的细胞可以继续积累在电极表面附近,活的外层膜负责电流的产生,而内层的死细胞作为一种导电基质.  相似文献   
104.
This paper examines the development of aerobic granular sludge in the presence of a synthetic chelating agent, nitrilotriacetic acid (NTA), in sequencing batch reactors (SBR). The growth of seed sludge at 0.26 mM, 0.52 mM and 1.05 mM of NTA was found to be significantly lower as compared to that in the absence of NTA. Aerobic granulation was significantly enhanced in the three SBRs (R2, R3 and R4), which were fed with 0.26 mM, 0.52 mM and 1.05 mM of NTA as a co-substrate, in comparison to the acetate-alone fed SBR (R1). After 2 months of operation, the mean diameter of the biomass stabilized at 0.35 mm in R1 (acetate alone), as compared to 2.18 mm in R4 (1.05 mM NTA+acetate). NTA degradation was established in SBRs, with almost complete removal during the SBR cycle. Batch experiments also showed efficient degradation of NTA by the aerobic granules.  相似文献   
105.
BACKGROUND, AIM, AND SCOPE: The presence of a variety of pollutants in the aquatic environment that can potentially interfere with the production of sex steroid hormones in wildlife and humans has been of increasing concern. The aim of the present study was to investigate the effects of extracts from Hong Kong marine waters, and influents and effluents from wastewater treatment plants on steroidogenesis using the H295R cell bioassay. After exposing H295R cells to extracts of water, the expression of four steroidogenic genes and the production of three steroid hormones were measured. MATERIALS AND METHODS: Water samples were collected during the summer of 2005 from 24 coastal marine areas and from the influents and effluents of two major waste water treatment plants (WWTPs) in Hong Kong, China. Samples were extracted by solid phase extraction (SPE). H295R cells were exposed for 48 h to dilutions of these extracts. Modulations of the expression of the steroidogenic genes CYP19, CYP17, 3betaHSD2, and CYP11beta2 were determined by measuring mRNA concentrations by real-time polymerase chain reaction (Q-RT-PCR). Production of the hormones progesterone (P), estradiol (E2), and testosterone (T) was quantified using enzyme linked immunosorbent assays (ELISA). RESULTS: Extracts from samples collected in two fish culture areas inhibited growth and proliferation of H295R cells at concentrations greater or equal to 10(5) L equivalents. The cells were exposed to the equivalent concentration of active substances in 10,000 L of water. Thus, to observe the same level of effect as observed in vitro on aquatic organisms would require a bioaccumulation factor of this same magnitude. None of the other 22 marine samples affected growth of the cells at any dilution tested. Twelve of the marine water samples completely inhibited the expression of CYP19 without affecting E2 production; inhibition of CYP17 expression was observed only in one of the samples while expression of CYP11beta2 was induced as much as five- and ninefold after exposure of cells to extracts from two locations. The expression of the progesterone gene 3betaHSD2 was not affected by any of the samples; only one sample induced approximately fourfold the production of E2. Although more than twofold inductions were observed for P and T production, none of these values were statistically significant to conclude effects on the production of these two hormones. While influents from WWTPs did not affect gene expression, an approximately 30% inhibition in the production of E2 and a 40% increase in P occurred for the exposure with influents from the Sha Tin and Stonecutters WWTPs, respectively. Effluents from WWTPs did not affect the production of any of the studied hormones, but a decrement in the expression of the aldosterone gene CYP11beta2 was observed for the Sha Tin WWTP exposure. No direct correlation could be established between gene expression and hormone production. DISCUSSION: Observed cytotoxicity in the two samples from fish culture areas suggest the presence of toxic compounds; chemical analysis is required for their full identification. Although effluents from WWTPs did not affect hormone production, other types of endocrine activity such as receptor-mediated effects cannot be ruled out. Interactions due to the complexity of the samples and alternative steroidogenic pathways might explain the lack of correlation between gene expression and hormone production results. CONCLUSIONS: Changes observed in gene expression and hormone production suggest the presence in Hong Kong coastal waters of pollutants with endocrine disruption potential and others of significant toxic effects. The aromatase and aldosterone genes seem to be the most affected by the exposures, while E2 and P are the hormones with more significant changes observed. Results also suggest effectiveness in the removing of compounds with endocrine activity by the WWTPs studied, as effluent samples did not significantly affect hormone production. The H295R cell showed to be a valuable toll in the battery required for the analysis of endocrine disrupting activities of complex environmental samples. RECOMMENDATIONS AND PERSPECTIVES: Due to the intrinsic complexity of environmental samples, a combination of analytical tools is required to realistically assess environmental conditions, especially in aquatic systems. In the evaluation of endocrine disrupting activities, the H295R cell bioassay should be used in combination with other genomic, biological, chemical, and hydrological tests to establish viable modes for endocrine disruption and identify compounds responsible for the observed effects.  相似文献   
106.
微生物絮凝剂PF-2的成分分析及絮凝机制研究   总被引:5,自引:0,他引:5  
筛选得到的荧光假单胞菌(Pseudomonas fluorescens)产生的絮凝剂——PF-2在处理高岭土悬浊液时,具有用量少、絮凝效果好等优点,对高岭土悬浊液的絮凝率可达96.5%.呈色反应和紫外扫描的测定结果表明,PF-2大部分为胞外分泌的多糖,含有少量的核酸,提取后每升发酵液可制得絮凝剂粗品2.3 g;ζ电位测定及氢键和离子键检验结果表明,PF-2与高岭土颗粒之间的作用力为离子键;红外光谱扫描分析PF-2中含有O-H、C-H、C=C和C-O-C等多糖的特征吸收峰;利用扫描电镜观察絮体形态表明,絮体结构密实,其絮凝机制为PF-2和高岭土以离子键的形式结合,之后通过架桥作用絮凝沉淀.  相似文献   
107.
Fe0/厌氧微生物联合体系处理2,4,6-三氯酚影响因素的研究   总被引:1,自引:0,他引:1  
利用Fe0/厌氧微生物联合体系对2,4,6-三氯酚(2,4,6-TCP)进行降解研究。结果表明,Fe0/厌氧微生物联合体系可以有效降解2,4,6-TCP,Fe0与厌氧微生物之间存在明显的协同效应。Fe0/厌氧微生物联合体系处理2,4,6-TCP的最优条件为:微生物接种量0.434 g VSS/L,Fe0投加量15 g/L,体系初始pH值7.0~8.0。  相似文献   
108.
玉兰油细胞的发育及其与器官结构发育的关系   总被引:1,自引:0,他引:1  
利用石蜡切片法及半薄切片法对玉兰茎、叶、花和种子中油细胞的发育进行了研究,结果表明:在所研究的各器官中油细胞以相同的方式发生。油细胞原始细胞因其细胞质染色较深、细胞核大明显及液泡化程度低而易与周围组织细胞分辨,以后,原始细胞逐渐液泡化,最终形成一个中央大液泡,其细胞质及细胞核呈一薄层,当油细胞成熟时,其细胞质和细胞核解体,而大液泡充满整个油细胞腔,成为储油的囊,在一些油细胞中,可观察到怀形构造,但  相似文献   
109.
纤维藻(Ankistrodesmussp.)对镍毒作用反应敏感,对Ni  相似文献   
110.
研究了2.5L小罐培养过程中控制温度为25℃~35℃时对细胞生长和MTG合成的影响.结果表明当控制相对较低的温度时,细胞生长的延滞期较长,当控制温度较高时,细胞生长的延滞期较短,达到最大DCW和最高MTG酶活的时间均较短;通过研究各种不同模型对细胞生长的影响得到最适合描述S.mobaraense生长与温度之间的关系方程为Schoolfield方程;通过对最大DCW和最大MTG酶活进行数学模拟,发现方程X(U)=-a  相似文献   
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