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501.
微生物燃料电池(microbial fuel cell,MFC)阳极微生物的种类和作用机制对MFC的产电性能有着重要的影响.从已稳定运行1 a的MFC的阳极室分离得到1株电化学活性革兰氏阴性细菌——菌株RE7,其16S rRNA基因序列与Pseudomonas aeruginosa strain CMG 587有99%同源性,属于假单胞菌属(Pseudomonas sp.).利用菌株RE7构建的MFC的稳定产电和循环伏安曲线测定结果都表明,菌株RE7具有较强的电化学活性,利用菌株RE7构建的MFC的最大输出电压为352 mV,相应的最大面积功率密度为69.2 mW/m2,体积最大功率密度为6.2 W/m3.由不同稀释比例的MFC排出液的产电效果比较可知,菌株RE7极有可能是通过自身分泌的氧化还原类物质进行电子传递. 相似文献
502.
燃料空气混合物爆炸威力准确预测研究是学术界的一个难题。针对燃料空气混合物爆炸威力有效预测问题,采用神经网络方法,设计多层神经网络模型,进行实际预测应用。应用结果表明,采用的预测方法简便、可行,可以为燃料空气混合物爆炸威力预测提供一种新途径。相比3层BP模型,设计的预测模型可以减少训练次数,缩短训练时间,提高预测正确率,应用优势较明显。 相似文献
503.
自然状态下树木排放N2O的研究 总被引:7,自引:3,他引:7
大气中主要温室气体之一N2O的部分来源尚不清楚,以前认为只有土壤微生物过程是N2O的生物源,本文则旨在证明自然状态下植物也是N2O的排放源.采用同步空气样品采集装置和气相色谱仪观测了长白山阔叶红松林内空气N2O的垂直分布特征,发现林冠或其附近处出现高N2O浓度,高N2O浓度比同一时刻其他高度处的正常N2O浓度高3.03%~64.9%,差异显著或极显著.在林冠高度处的高N2O浓度和树干高度处的正常N2O浓度同时存在的现象证明了植物向外排放N2O,即植物自身在自然状态下是N2O的一个排放源. 相似文献
504.
鼎湖山针阔叶混交林生态系统水文过程研究 总被引:4,自引:0,他引:4
以鼎湖山针阔叶混交林(以下简称混交林)生态系统为研究对象,探讨了不同降水特征下森林生态系统水文过程,主要研究结果如下:(1)不同的降雨特征决定了不同的降雨过程和穿透雨过程,混交林生态系统穿透雨累积增加曲线与降水量的累积增加曲线变化是同步的;(2)2002年7月27日-28日特大暴雨最大降水量、最大穿透雨量分别为122.8nn和104.9mm,且穿透雨最大值出现的时间滞后于降水强度最大值出现的时间1h;(3)8月18日-20日特大暴雨,穿透雨量累积增加曲线与大气降水的累积增加曲线非常相似,且穿透雨最大值出现的时间略滞后与大气降水最大值出现的时间;(4)中雨时降水累积量达到最大值(59.6mm)与穿透雨累积量达到最大值(43.6mm)的时间一致;(5)树干流和地表径流量与大气降水量的累积变化曲线并不是完全同步的,在一定的降水量范围内,树干流量和地表径流量随着大气降水量的增加而增加;(6)无论是特大暴雨还是中雨发生时,即使在特大暴雨影响下,树干流(2.3~16.4mm)和地表径流(1.6~8.8mm)量都很小,系统具有很强的保水保墒能力;(7)混交林穿透雨强度变化过程基本取决于大气降水强度变化,树干流强度和地表径流强度数值很小且变化过程不明显。 相似文献
505.
根据各地区生物质燃料消耗状况和SO2、NOx排放因子,估算了20世纪90年代中国生物质能源利用过程中的SO2、NOx排放量,并给出了分省区,分生物质燃料类型的排放清单,研究表明,中国生物质燃料消耗及其排放的SO2,NOx量分别从1991年的38.1万t和54.9万下降为1999年的33.2万t和45.3万t,在地区,燃料类型上分布不平衡;SO2和NOx排放量均较大的包括山东,江苏、河北,内蒙古,湖北等,其中,内蒙古SO2排放量最大而山东省NOx排放量最 ;秸杆是SO2和NOx排放的最主要来源,薪柴次之;牲畜粪便对SO2贡献率接近30%,而对NOx贡献率仅3%-4%。 相似文献
506.
Khamphe Phoungthong Surajit Tekasakul Perapong Tekasakul Gumpon Prateepchaikul Naret Jindapetch Masami Furuuchi Mitsuhiko Hata 《环境科学学报(英文版)》2013,25(4):751-757
Mixed crude palm oil(MCPO),the mixture of palm fiber oil and palm kernel oil,has become of great interest as a renewable energy source.It can be easily extracted from whole dried palm fruits.In the present work,the degummed,deacidified MCPO was blended in petroleum diesel at portions of 30% and 40% by volume and then tested in agricultural diesel engines for long term usage.The particulates from the exhaust of the engines were collected every 500 hr using a four-stage cascade air sampler.The 50% cut-off aerodynamic diameters for the first three stages were 10,2.5 and 1μm,while the last stage collected all particles smaller than 1μm.Sixteen particle bounded polycyclic aromatic hydrocarbons(PAHs) were analyzed using a high performance liquid chromatography.The results indicated that the size distribution of particulate matter was in the accumulation mode and the pattern of total PAHs associated with fine-particles(< 1μm) showed a dominance of larger molecular weight PAHs(4-6 aromatic rings),especially pyrene.The mass median diameter,PM and total PAH concentrations decreased when increasing the palm oil content,but increased when the running hours of the engine were increased.In addition,Commercial petroleum diesel(PB0) gave the highest value of carcinogenic potency equivalent(BaP eq) for all particle size ranges.As the palm oil was increased,the BaP eq decreased gradually.Therefore the degummed-deacidified MCPO blends are recommended for diesel substitute. 相似文献
507.
好氧颗粒污泥的形成过程、形成机理及相关研究 总被引:5,自引:2,他引:5
利用SBR和优势混合菌对造纸废水进行处理,在此过程中驯化出好氧颗粒污泥,对好氧颗粒污泥的形成过程、形成机制等进行研究发现,好氧颗粒污泥的形成经历了细菌增殖、絮状体形成、絮状体聚合、凝絮体形成和好氧颗粒污泥形成五个阶段;其形成至少有菌丝缠绕、小块污泥互相联合、吸附和连接四种机制。优势混合菌的加入,是好氧颗粒污泥之所以能够形成的关键因素。 相似文献
508.
Yangyang Gao Sha Wang Fengjun Yin Pin Hu Xingzu Wang Yuan Liu Hong Liu 《环境科学学报(英文版)》2021,33(3):227-235
The relatively low sensitivity is an important reason for restricting the microbial fuel cell (MFC) sensors’ application in low concentration biodegradable organic matter (BOM) detection. The startup parameters, including substrate concentration, anode area and external resistance, were regulated to enhance the sensitivity of MFC sensors. The results demonstrated that both the substrate concentration and anode area were positively correlated with the sensitivity of MFC sensors, and an external resistance of 210 Ω was found to be optimal in terms of sensitivity of MFC sensors. Optimized MFC sensors had lower detection limit (1 mg/L) and higher sensitivity (Slope value of the linear regression curve was 1.02), which effectively overcome the limitation of low concentration BOM detection. The essential reason is that optimized MFC sensors had higher coulombic efficiency, which was beneficial to improve the sensitivity of MFC sensors. The main impact of the substrate concentration and anode area was to regulate the proportion between electrogens and nonelectrogens, biomass and living cells of the anode biofilm. The external resistance mainly affected the morphology structure and the proportion of living cells of the anode. This study demonstrated an effective way to improve the sensitivity of MFC sensors for low concentration BOM detection. 相似文献
509.
510.
Effects of white‐nose syndrome on regional population patterns of 3 hibernating bat species
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Hibernating bats have undergone severe recent declines across the eastern United States, but the cause of these regional‐scale declines has not been systematically evaluated. We assessed the influence of white‐nose syndrome (an emerging bat disease caused by the fungus Pseudogymnoascus destructans, formerly Geomyces destructans) on large‐scale, long‐term population patterns in the little brown myotis (Myotis lucifugus), the northern myotis (Myotis septentrionalis), and the tricolored bat (Perimyotis subflavus). We modeled population trajectories for each species on the basis of an extensive data set of winter hibernacula counts of more than 1 million individual bats from a 4‐state region over 13 years and with data on locations of hibernacula and first detections of white‐nose syndrome at each hibernaculum. We used generalized additive mixed models to determine population change relative to expectations, that is, how population trajectories differed with a colony's infection status, how trajectories differed with distance from the point of introduction of white‐nose syndrome, and whether declines were concordant with first local observation of the disease. Population trajectories in all species met at least one of the 3 expectations, but none met all 3. Our results suggest, therefore, that white‐nose syndrome has affected regional populations differently than was previously understood and has not been the sole cause of declines. Specifically, our results suggest that in some areas and species, threats other than white‐nose syndrome are also contributing to population declines, declines linked to white‐nose syndrome have spread across large geographic areas with unexpected speed, and the disease or other threats led to declines in bat populations for years prior to disease detection. Effective conservation will require further research to mitigate impacts of white‐nose syndrome, renewed attention to other threats to bats, and improved surveillance efforts to ensure early detection of white‐nose syndrome. 相似文献