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211.
Ethyl acetate removal from an air stream was carried out by using a flat composite membrane bioreactor. The composite membrane consisted of a dense polydimethylsiloxane top layer with an average thickness of 0.3 μm supported in a porous polyacrylonitrile layer (50 μm). The membrane bioreactor (MBR) was operated during 3 months, and a maximum elimination capacity of 225 g m−3 h−1 at an empty bed residence time of 60 s was observed. Removal efficiencies higher than 95% were obtained for inlet loads lower than 200 g m−3 h−1 and empty bed residence times as short as 15 s. The estimated yield coefficient, determined from the carbon dioxide production, resulted in 0.82 g dry biomass synthesized per gram of ethyl acetate degraded. No data of ethyl acetate treatment in MBR have been found in the literature, but the results illustrate that membrane bioreactors can potentially be a good option for its treatment.  相似文献   
212.
Butyl acetate holds great potential as a sustainable biofuel additive. Heterogeneously catalyzed transesterification of biobutanol and bioethylacetate can produce butyl acetate. This route is eco-friendly and offers several advantages over the commonly used Fischer Esterification. The Amberlite IR 120- and Amberlyst 15-catalyzed transesterification is studied in a batch reactor over a range of catalyst loading (6–12 wt.%), alcohol to ester feed ratio (1:3 to 3:1), and temperature (303.15–333.15 K). A butanol mole fraction of 0.2 in the feed is found to be optimum. Amberlite IR 120 promotes faster kinetics under these conditions. The transesterifications studied are slightly exothermic. The moles of solvent sorbed per gram of catalyst decreases (ethanol > butanol > ethyl acetate > butyl acetate) with decrease in solubility parameter. The dual site models, the Langmuir Hinshelwood and Popken models, are the most successful in correlating the kinetics over Amberlite IR 120 and Amberlyst 15, respectively.  相似文献   
213.
Ascorbate is present at high concentrations in neutrophils and becomes oxidized when the cells are stimulated. We have investigated the mechanism of oxidation by studying cultured HL60 cells and isolated neutrophils. Addition of H2O2 to ascorbate-loaded HL60 cells resulted in substantial oxidation of intracellular ascorbate. Oxidation was myeloperoxidase-dependent, but not attributable to hypochlorous acid, and can be explained by myeloperoxidase (MPO) exhibiting direct ascorbate peroxidase activity. When neutrophils were stimulated with phorbol myristate acetate, about 40% of their intracellular ascorbate was oxidized over 20 min. Ascorbate loss required NADPH oxidase activity but in contrast to the HL60 cells did not involve myeloperoxidase. It did not occur when exogenous H2O2 was added, was not inhibited by myeloperoxidase inhibitors, and was the same for normal and myeloperoxidase-deficient cells. Neutrophil ascorbate loss was enhanced when endogenous superoxide dismutase was inhibited by cyanide or diethyldithiocarbamate and appears to be due to oxidation by superoxide. We propose that in HL60 cells, MPO-dependent ascorbate oxidation occurs because cellular ascorbate can access newly synthesized MPO before it becomes packaged in granules: a mechanism not possible in neutrophils. In neutrophils, we estimate that ascorbate is capable of competing with superoxide dismutase for a small fraction of the superoxide they generate and propose that the superoxide responsible is likely to come from previously identified sites of intracellular NADPH oxidase activity. We speculate that ascorbate might protect the neutrophil against intracellular effects of superoxide generated at these sites.  相似文献   
214.
Nox2 B-loop peptide, Nox2ds, specifically inhibits the NADPH oxidase Nox2   总被引:1,自引:0,他引:1  
In recent years, reactive oxygen species (ROS) derived from the vascular isoforms of NADPH oxidase, Nox1, Nox2, and Nox4, have been implicated in many cardiovascular pathologies. As a result, the selective inhibition of these isoforms is an area of intense current investigation. In this study, we postulated that Nox2ds, a peptidic inhibitor that mimics a sequence in the cytosolic B-loop of Nox2, would inhibit ROS production by the Nox2-, but not the Nox1- and Nox4-oxidase systems. To test our hypothesis, the inhibitory activity of Nox2ds was assessed in cell-free assays using reconstituted systems expressing the Nox2-, canonical or hybrid Nox1-, or Nox4-oxidase. Our findings demonstrate that Nox2ds, but not its scrambled control, potently inhibited superoxide (O2•−) production in the Nox2 cell-free system, as assessed by the cytochrome c assay. Electron paramagnetic resonance confirmed that Nox2ds inhibits O2•− production by Nox2 oxidase. In contrast, Nox2ds did not inhibit ROS production by either Nox1- or Nox4-oxidase. These findings demonstrate that Nox2ds is a selective inhibitor of Nox2-oxidase and support its utility to elucidate the role of Nox2 in organ pathophysiology and its potential as a therapeutic agent.  相似文献   
215.
Tritiated opioid radioligands have proven valuable in exploring opioid binding sites. However, tritium has many limitations. Its low specific activity and limited counting efficiency makes it difficult to examine low abundant, high affinity sites and its disposal is problematic due to the need to use organic scintillants and its relatively long half-life. To overcome these issues, we have synthesized both unlabeled and carrier-free radioiodinated iodobenzoyl derivatives of 6β-naltrexamine (125I-BNtxA, 18), 6β-naloxamine (125I-BNalA, 19) and 6β-oxymorphamine (125I-BOxyA, 20) with specific activities of 2100 Ci/mmol. To optimize the utility of the radioligand, we designed a synthesis in which the radiolabel is incorporated in the last synthetic step, which required the selective iodination of the benzoyl moiety without incorporation into the phenolic A ring. Competition studies demonstrated high affinity of the unlabelled compounds for opioid receptors in transfected cell lines, as did the direct binding of the 125I-ligands to the opioid receptors. The radioligand displayed very high sensitivity, enabling a marked reduction in tissue, as well as excellent signal/noise characteristics. These new 125I-radioligands should prove valuable in future studies of opioid binding sites.  相似文献   
216.
新疆蓝刺头化学成分研究   总被引:1,自引:0,他引:1  
以新疆蓝刺头(Echinops ritro L.)全草为研究材料,通过硅胶柱色谱,Sephadex LH-20柱色谱,重结晶等技术对新疆蓝刺头化学成分进行分离纯化,通过理化性质分析及1H-NMR,13C-NMR等技术对化合物结构进行鉴定.结果表明,共分离出5个化合物,分别是三萜类化合物蒲公英甾醇乙酰酯(化合物1)、蒲公英甾醇(化合物2)、黄酮苷类化合物金丝桃苷(化合物3)、胡萝卜苷(化合物4)与β-豆甾醇葡萄糖苷(化合物5).其中化合物1,2,5首次从该种植物中分离,化合物3为首次从该属植物中分离.  相似文献   
217.
植物氮素吸收与转运的研究进展   总被引:1,自引:0,他引:1  
钟开新  王亚琴 《广西植物》2011,31(3):414-417
氮素是植物生长发育所必须的基本营养元素,在植物生长发育和形态建成中起着重要作用.土壤中植物所利用的主要氮素形式是铵态氮和硝态氮,在进化过程中植物形成不同的吸收和转运铵态氮和硝态氮的分子机制.该文对植物吸收与转运氮素的生理学特征、分子机制及涉及的相关基因等研究进行概括性综述,为研究水稻中氮素吸收、转运相关基因提供理论基础...  相似文献   
218.
采用产氢产乙酸/同型产乙酸两相耦合工艺对剩余污泥进行了半连续式厌氧发酵,主要研究了pH值和产甲烷抑制剂2-bromoethanesulphonate(BES)对耦合系统定向产乙酸的影响.结果表明:碱性pH(pH=10.0)和添加BES都能促进A相乙酸的积累,提高乙酸的产率,同时碱性pH比添加BES更有利于污泥的水解.当...  相似文献   
219.
探讨醋酸铅对体外培养的大鼠肾小管上皮细胞系HBZY-1的细胞毒性效应.用不同浓度的醋酸铅(30、40、50 μmol/L)作用HBZY-1细胞24 h、48 h和72 h,采用CellTiter-Glo(R)萤光细胞活性检测盒测定细胞存活情况;用流式细胞仪检测细胞凋亡率.结果显示经30、40、50μmol/L醋酸铅处理...  相似文献   
220.
以MWPM为基本培养基,在总氮浓度不变的前提下比较了铵态氮(NH4+-N)与硝态氮(NO3--N)比例对南方高丛蓝浆果(Vaccinium corymbosum hybrids)品种‘南月’(‘Southmoon’)优选系A47、A119和A167丛生枝增殖和生长的影响.结果表明:与对照[n(NH4+-N)∶n( NO3--N)=4∶10]相比,当培养基中的n(NH4+ -N)∶n(NO3--N)调整为5∶10、6∶10、7∶10、8∶10、9∶10和10∶10时,总体上对优选系A47、A119和A167丛生枝的总增殖倍数、有效增殖倍数、鲜质量、干质量、含水量、总长度以及叶片叶绿素含量有一定的提高作用,具体表现则因优选系的基因型而异.调整培养基中n(NH4 +-N)∶n( NO3- -N)为7∶10,优选系A47丛生枝的总增殖倍数、有效增殖倍数、鲜质量、干质量和总长度均显著提高,叶片叶绿素含量也有所提高.调整培养基中n(NH4 +-N)∶n(NO3--N)为7∶10和9∶10,对优选系A119和A167丛生枝的生长有一定的促进作用,但总体增殖效果与对照无显著差异.研究结果显示:培养基中的铵态氮与硝态氮比例对南方高丛蓝浆果丛生枝的增殖及生长有一定的影响;在离体增殖时应针对不同品种或优选系采用适宜的NH4 +-N与NO3 - -N比例.  相似文献   
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