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By using optical microscope, the microstructures of 5083/6082 friction stir welding (FSW) weld and parent materials were analyzed. Meanwhile, at ambient temperature and in 0.2 mol/L NaHS03 and 0.6 mol/L NaCl solutionby gravimetric test, potentiodynamic polarization curve test, electrochemical impedance spectra (EIS) and scanning electron microscope (SEM) observation, the electrochemical behavior of 5083/6082 friction stir welding weld and parent materials were comparatively investigated by gravimetric test, potentiodynamic polarization curve test, electrochemical impedance spectra (EIS) and scanning electron microscope (SEM) observation. The results indicated that at given processing parameters, the anti-corrosion property of the dissimilar weld was superior to those of the 5083 and 6082 parent materials. 相似文献
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Hong Zhao Yunshan Ge Tiezhu Zhang Jipeng Zhang Jianwei Tan Hongxin Zhang 《环境科学学报(英文版)》2014,26(10):2027-2033
The alteration and formation of toxic compounds and potential changes in the toxicity of emissions when using after-treatment technologies have gained wide attention. Volatile organic compound(VOC), carbonyl compound and particle-phase polycyclic aromatic hydrocarbon(PAH) emissions were tested at European Steady State Cycle(ESC) to study unregulated emissions from a diesel engine with a fuel-borne catalyst and diesel particulate filter(FBC–DPF). An Fe-based fuel-borne catalyst was used for this study. According to the results, brake specific emissions of total VOCs without and with DPF were 4.7 and4.9 mg/kWh, respectively, showing a 4.3% increase. Benzene and n-undecane emissions increased and toluene emission decreased, while other individual VOC emissions basically had no change. When retrofitted with the FBC–DPF, total carbonyl compound emission decreased 15.7%, from 25.8 to 21.8 mg/kWh. The two highest carbonyls, formaldehyde and acetaldehyde, were reduced from 20.0 and 3.7 to 16.5 and 3.3 mg/kWh respectively. The specific reactivity(SR) with DPF was reduced from 6.68 to 6.64 mg/kWh. Total particle-phase PAH emissions decreased 66.4% with DPF compared to that without DPF. However, the Benzo[a]pyrene equivalent(BaPeq) with DPF had increased from 0.016 to 0.030 mg/kWh.Fluoranthene and Pyrene had the greatest decrease, 91.1% and 88.4% respectively. The increase of two- and three-ring PAHs with DPF indicates that the fuel-borne catalyst caused some gas-phase PAHs to adsorb on particles. The results of this study expand the knowledge of the effects of using a particulate filter and a Fe-based fuel-borne catalyst on diesel engine unregulated emissions. 相似文献
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饮用水源地的水华现象近年来在世界各地不断爆发,给人类饮水安全造成极大的威胁。本文通过检测微囊藻毒素和三卤甲烷类物质,利用急性暴露安全阈值(浓度)计算模型,计算出了各自的急性暴露安全阅值,并对健康风险进行了评价。 相似文献
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两种喹诺酮类抗生素对亚心形扁藻的毒性效应研究 总被引:1,自引:0,他引:1
研究了恩诺沙星和盐酸环丙沙星两种喹诺酮类抗生素对亚心形扁藻的毒理学效应。经多组不同浓度的两种抗生素处理后,分别对扁藻的96EC50、叶绿素和胞外聚合物(EPS)进行分析。结果表明,两种抗生素在低浓度时对扁藻生长具有促进作用,而在高浓度时体现抑制毒性作用。高浓度时,抗生素浓度越高对扁藻的生长、叶绿素和胞外聚合物抑制效果越明显,但当浓度达到一定高度后,抑制会达到其阈值。恩诺沙星和盐酸环丙沙星对扁藻的半生长抑制率分别为19.8 mg/L和28.7 mg/L。 相似文献
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选取4种溶剂(水、乙醇、正己烷、水-乙醇共溶济)作为污泥热液化制取生物质油的溶剂,分析溶剂种类和反应温度对热液化效果和生物质油性质的影响.结果表明:相同温度下,生物质油产率随溶剂种类变化趋势为:乙醇水-乙醇共溶剂正己烷水,最高产率为54.82%(乙醇溶剂,240℃).污泥有机物转化率随溶剂种类变化趋势为:水-乙醇共溶剂乙醇水正己烷,最高有机物转化率为96.40%(水-乙醇共溶剂,330℃).污泥经热液化处理后,碳、氢、氮、硫元素在生物质油中富集,氧含量下降,热值36 MJ·kg-1(乙醇、240℃除外).不同溶剂油成分差别较大,采用水或正己烷,产物主要是脂肪酸类、烷烃及部分酰胺和腈类,采用乙醇或水-乙醇共溶剂,产物主要是酯类、烷烃类.生物质油沸点集中分布在250~500℃,添加乙醇溶剂可显著提高生物质油轻组分含量. 相似文献
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通过外观检查、硬度、金相等检测方法,从金属管壁超温运行、蒸汽侧氧化行为、析出相及冷弯变形对组织性能影响等方面分析了某电厂1 000 MW超超临界机组屏式过热器弯头开裂原因,得出TP347HFG弯头开裂的主要原因是弯头组织富含较多的σ相、NbC等硬脆析出相,同时冷弯加工导致管子内部产生残余应力,加剧了弯头脆性开裂的倾向。 相似文献
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Hyperspectral Characteristics of Canopy Components and Structure for Phenological Assessment of an Invasive Weed 总被引:1,自引:0,他引:1
Ge S Everitt J Carruthers R Gong P Anderson G 《Environmental monitoring and assessment》2006,120(1-3):109-126
Spectral reflectance values of four canopy components (stems, buds, opening flowers, and postflowers of yellow starthistle (Centaurea solstitialis)) were measured to describe their spectral characteristics. We then physically combined these canopy components to simulate the flowering stage indicated by accumulated flower ratios (AFR) 10%, 40%, 70%, and 90%, respectively. Spectral dissimilarity and spectral angles were calculated to quantitatively identify spectral differences among canopy components and characteristic patterns of these flowering stages. This study demonstrated the ability of hyperspectral data to characterize canopy components, and identify different flowering stages. Stems had a typical spectral profile of green vegetation, which produced a spectral dissimilarity with three reproduction organs (buds, opening flowers, and postflowers). Quantitative differences between simulated flower stages depended on spectral regions and phenological stages examined. Using full-range canopy spectra, the initial flowering stage could be separated from the early peak, peak, and late flowering stages by three spectral regions, i.e. the blue absorption (around 480 nm) and red absorption (around 650 nm) regions and NIR plateau from 730 nm to 950 nm. For airborne CASI data, only the red absorption region and NIR plateau could be used to identify the flowering stages in the field. This study also revealed that the peak flowering stage was more easily recognized than any of the other three stages. 相似文献
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