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111.
利用生物电化学系统处理地表水时,弱电压不但会刺激电活性菌的呼吸作用,而且会引起氧化胁迫导致胞外聚合物(Extracellular Polymeric Substance,EPS)过量分泌.为确认在地表水处理中弱电压对膜污染和净水效率的影响,本研究设置了外加1.0 V直流电压(记为"BES系统")和无外加电压(记为"CK系统")的两组平行对照生物活性炭-超滤系统.经过50 d的运行,BES系统(36.1 kPa)相比CK系统(19.1 kPa)跨膜压差(Trans Membrane Pressure,TMP)增加更为显著,膜污染更严重.电路电流、电极电势和循环伏安(Cyclic Voltammetry,CV)曲线显示,随着装置运行,两系统生物膜逐渐稳定,并且产生具有氧化还原活性的EPS导致阳极电容增加.相比之下,BES系统产生了更多EPS,具有更高的阳极电容.水质指标显示,BES系统中比紫外吸光度(Specific Ultraviolet Absorbance,SUVA)、NH4+-N和PO43--P的去除增强但总有机碳(Total Organic Carbon,TOC)去除减弱;三维荧光光谱(Excitation-Emission-Matrix,EEM)和尺寸排阻色谱(Size Exclusion Chromatography,SEC)分析结果表明,BES系统膜池中产生了更多的生物聚合物,但腐殖质类有机物明显减少.活性炭表面EPS含量和腺嘌呤核苷三磷酸(Adenosine Triphosphate,ATP)含量的测试结果证实,弱电压刺激了生物膜的生长,同时增加了氧化还原活性EPS的含量.对膜表面累积多糖、蛋白质含量的测试分析进一步揭示了多糖类大分子生物聚合物在膜表面的累积是导致严重膜污染的直接原因.研究可为生物电化学系统在微污染水处理的研究和应用提供新的见解.  相似文献   
112.
河流枯水流量特征研究   总被引:19,自引:0,他引:19  
本文以泾、洛、渭三河流干流在陕西境内的主要控制断面为例,分析了14个时段枯水流量的概率分布特征,选定了理论分布线型,揭示了各枯水序列的时段平均流量均值、变差系数和偏态系数的变化规律,建立了推求不同频率不同时段的枯水流量的经验公式。绘制了相应的关系曲线,应用十分方便。  相似文献   
113.
Size-resolved biogenic secondary organic aerosols(BSOA) derived from isoprene and monoterpene photooxidation in Qinghai Lake, Tibetan Plateau(a continental background site) and five cities of China were measured using gas chromatography/mass spectrometry(GC/MS). Concentrations of the determined BSOA are higher in the cities than in the background and are also higher in summer than in winter. Moreover, strong positive correlations(R2= 0.44–0.90) between BSOA and sulfate were found at the six sites,suggesting that anthropogenic pollution(i.e., sulfate) could enhance SOA formation,because sulfate provides a surface favorable for acid-catalyzed formation of BSOA. Size distribution measurements showed that most of the determined SOA tracers are enriched in the fine mode( 3.3 μm) except for cis-pinic and cis-pinonic acids, both presented a comparable mass in the fine and coarse( 3.3 μm) modes, respectively. Mass ratio of oxidation products derived from isoprene to those from monoterpene in the five urban regions during summer are much less than those in Qinghai Lake region. In addition, in the five urban regions relative abundances of monoterpene oxidation products to SOA are much higher than those of isoprene. Such phenomena suggest that BSOA derived from monoterpenes are more abundant than those from isoprene in Chinese urban areas.  相似文献   
114.
In the global campaign against biodiversity loss in forest ecosystems, land managers need to know the status of forest biodiversity, but practical guidelines for conserving biodiversity in forest management are lacking. A major obstacle is the incomplete understanding of the relationship between site primary productivity and plant diversity, due to insufficient ecosystem‐wide data, especially for taxonomically and structurally diverse forest ecosystems. We investigated the effects of site productivity (the site's inherent capacity to grow timber) on tree species richness across 19 types of forest ecosystems in North America and China through 3 ground‐sourced forest inventory data sets (U.S. Forest Inventory and Analysis, Cooperative Alaska Forest Inventory, and Chinese Forest Management Planning Inventory). All forest types conformed to a consistent and highly significant (P < 0.001) hump‐shaped unimodal relationship, of which the generalized coefficients of determination averaged 20.5% over all the forest types. That is, tree species richness first increased as productivity increased at a progressively slower rate, and, after reaching a maximum, richness started to decline. Our consistent findings suggest that forests of high productivity would sustain few species because they consist mostly of flat homogeneous areas lacking an environmental gradient along which a diversity of species with different habitats can coexist. The consistency of the productivity–biodiversity relationship among the 3 data sets we examined makes it possible to quantify the expected tree species richness that a forest stand is capable of sustaining, and a comparison between the actual species richness and the sustainable values can be useful in prioritizing conservation efforts.  相似文献   
115.
ABSTRACT

The present study was carried out to investigate the effect of three organic matters (stalk powder, microbial fertilizer, and manure) on Leymus chinensis germination, growth, and urease activity and available nitrogen (N) in coastal saline soil. The study was conducted in a completely randomized design with eight treatments: J0V0Y0, J1V0Y0, J0V1Y0, J0V0Y1, J1V1Y0, J1V0Y1, J0V1Y1, J1V1Y1. The notations were based on the quantities of each agent added to 1 kg of coastal saline soil: J0 – no straw powder, J1 – 0.2 kg straw powder, Y0 – no manure, Y1 – 0.3 kg manure, V0 – no microbial fertilizer, V1 – 0.2 L microbial fertilizer, each in quantic repeat. L. chinensis was sown as 50 seeds per pot. Results indicated that addition of organic agents exerted a significantly enhanced germination, increase in fresh weight and elevated soil urease activity. Soil available N levels were significantly positively correlated with soil urease activity and fresh weight, but not with germination rate. It is noteworthy that the halophyte L. chinensis showed improved characteristics when grown in coastal saline soil with addition of organic amendments.  相似文献   
116.
城市电力供应系统与城市公共安全关系紧密,文章分析了导致城市电力供应系统故障或事故的主要风险因素、事故类型及其风险程度,建立了城市电力供应系统公共安全风险评估体系。利用建立的风险评估体系,对某市电力供应系统的安全性进行了风险评估,同时验证了该体系在城市电力供应系统风险评估中的良好适用性。  相似文献   
117.
主要介绍了电梯的意外轿厢移动保护功能。轿厢意外移动对乘客安全存在巨大隐患,为实现意外移动保护,利用门区及辅助轿门触点构成检测单元;AGSR及BCR检测继电器组合控制UCMR继电器,形成控制单元;UCMR继电器分别控制安全回路及抱闸回路,形成执行单元。  相似文献   
118.
MnO2 microspheres with various surface structures were prepared using the hydrothermal method, and Au/MnO2 catalysts were synthesized using the sol-gel method. We obtained three MnO2 microspheres and Au/MnO2 samples: coherent solid spheres covered with wire-like nanostructures, solid spheres with nanosheets, and hierarchical hollow microspheres with nanoplatelets and nanorods. We investigated the properties and catalytic activities of formaldehyde oxidation at room temperature. Crystalline structures of MnO2 are the main factor affecting the catalytic activities of these samples, and γ-MnO2 shows high catalytic performance. The excellent redox properties are responsible for the catalytic ability of γ-MnO2. The gold-supported interaction can change the redox properties of catalysts and accelerate surface oxygen species transition, which can account for the catalytic activity enhancement of Au/MnO2. We also studied intermediate species. The dioxymethylene (DOM) and formate species formed on the catalyst surface were considered intermediates, and were ultimately transformed into hydrocarbonate and carbonate and then decomposed into CO2. A proposed mechanism of formaldehyde oxidation over Au/MnO2 catalysts was also obtained.  相似文献   
119.
Environmental Science and Pollution Research - Microfaunal identification and analysis are very complex; thus, an image analysis method was utilized in this paper to overcome the shortcomings of...  相似文献   
120.

Nanoplastics are widely distributed in freshwater environments, but few studies have addressed their effects on freshwater algae, especially on harmful algae. In this study, the effects of polystyrene (PS) nanoplastics on Microcystis aeruginosa (M. aeruginosa) growth, as well as microcystin (MC) production and release, were investigated over the whole growth period. The results show that PS nanoplastics caused a dose-dependent inhibitory effect on M. aeruginosa growth and a dose-dependent increase in the aggregation rate peaking at 60.16% and 46.34%, respectively, when the PS nanoplastic concentration was 100 mg/L. This caused significant growth of M. aeruginosa with a specific growth rate up to 0.41 d?1 (50 mg/L PS nanoplastics). After a brief period of rapid growth, the tested algal cells steadily grew. In addition, the increase in PS nanoplastics concentration promoted the production and release of MC. When the PS nanoplastic concentration was 100 mg/L, the content of the intracellular (intra-) and extracellular (extra-) MC increased to 199.1 and 166.5 μg/L, respectively, on day 26, which was 31.4% and 31.1% higher, respectively, than the control. Our results provide insights into the action mechanism of nanoplastics on harmful algae and the potential risks to freshwater environments.

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