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951.
电弧离子镀TiN涂层沉积工艺研究   总被引:2,自引:2,他引:0       下载免费PDF全文
目的优化电弧离子镀沉积TiN涂层的制备工艺,分析不同N_2/Ar条件对涂层微观结构和力学性能的影响机制,进一步强化和研究TiN涂层的优异性能。方法采用带有附加线圈磁场的电弧离子镀技术在不同N_2/Ar条件下制备TiN涂层,利用扫描电子显微镜、X射线衍射仪、超景深显微镜、维氏硬度计、薄膜应力仪和高温摩擦机观察涂层微观结构、测试力学性能。结果随着N_2/Ar流量比的增加,涂层表面形貌得到改善,大颗粒的数量和尺寸明显减少,表面变得光滑致密。TiN涂层的生长取向由沿(110)晶面择优生长,逐渐转变为沿(111)晶面择优生长。涂层显微硬度呈上升趋势,硬度最高为2260HV;当N_2/Ar流量比为2:1时,摩擦系数最低为0.71,磨损率最低为1.5×10~(-2)μm~3/(N·μm),磨痕边界清晰,大颗粒和磨屑较少。结论当N_2/Ar流量比为2:1时,TiN涂层结构致密,且具有最佳的各项力学性能。  相似文献   
952.
目的研究不同钎料对冷板与硅酸盐体系乙二醇冷却液的腐蚀相容性影响。方法以铝合金3A21为基材,以不同铝硅镁箔4004为钎料,采用真空焊接的方法制备不同的铝合金冷板,将乙二醇冷却液加注在冷板中,在40℃开展压力测试。利用金相分析、扫描电子显微镜对冷板内部微观形貌和结构进行研究。结果铝硅镁箔4004中硅元素质量分数为13.29%时,焊接的冷板在3个月时间范围压力升高800 kPa;而硅元素质量分数为10.99%时,冷板在同样的条件下压力未见明显改变。两种冷板在焊接部位和翅片部位显示出截然不同的硅偏析现象。结论这种硅偏析现象可能导致了冷板在乙二醇冷却液不同的产气现象。  相似文献   
953.
目的对锡铋合金表面粗糙度特征进行研究分析,提高表面加工质量。方法采用正交试验设计方法,以最小表面粗糙度作为优化指标,以主轴转速、铣削深度、进给速度、铣削宽度作为影响因素,进行精密铣削试验研究。结果利用方差分析确定了进给速度是锡铋合金铣削表面粗糙度最重要的影响因素,并基于田口方法优化分析得到了锡铋合金铣削加工工艺最优组合。结论采用田口法对锡铋合金铣削工艺参数优化,有效地减少了加工表面粗糙度,提高了工件表面质量。  相似文献   
954.
随着煤炭行业的萧条,废弃煤矿逐渐增加。为有效管理和改善矿区废弃地环境生态系统,采集废弃22年的重庆中梁山马家沟煤矿区内18个表层土壤样品和1个煤矸石样品,以及矿区之外的2个背景土壤样品,分析样品中多环芳烃(USEPA 16 PAHs)、正构烷烃(n-alkanes)、汞(Hg)和有机质(OM)含量水平。结果表明,表层土壤中PAHs的平均含量为170.3 ng/g,低于我国正在运行的煤矿区土壤PAHs含量水平,高于山区背景土壤PAHs含量水平。主成分分析(PCA)结果表明煤燃烧释放和原煤残渣分别贡献78.3%和17.6%,是表层土壤中PAHs的主要来源。PAHs与n-alkanes的相关系数r=0.83(P<0.01),表明土壤中两者具有类似的输入途径和富集行为。PAHs与Hg之间不存在相关性,表明煤矿长期废弃后,这两种与矿区活动释放有关的污染物的环境归趋有显著差异。PAHs和OM之间也不存在相关性,表明与煤矿相关的有机质来源已经被植物、微生物的分泌物质及其残体的有机质替代,生态环境正逐步恢复。风险评价结果表明PAHs含量水平相对安全。值得注意的是,Hg含量超过农用地土壤污染风险筛选值。因此,政府对矿区旧址的土地利用应当基于多污染参数的叠加结果,避免单一指标的片面性评价与诊断。  相似文献   
955.
Because of its high adsorption capacity, biochar has been used to stabilize metals when remediating contaminated soils; to date, however, it has seldom been used to remediate contaminated sediment. A biochar was used as a stabilization agent to remediate Cu- and Pb-contaminated sediments, collected from three locations in or close to Beijing. The sediments were mixed with a palm sawdust gasified biochar at a range of weight ratios (2.5%, 5%, and 10%) and incubated for 10, 30, or 60?days. The performance of the different treatments and the heavy metal fractions in the sediments were assessed using four extraction methods, including diffusive gradients in thin films, the porewater concentration, a sequential extraction, and the toxicity characteristic leaching procedure. The results showed that biochar could enhance the stability of heavy metals in contaminated sediments. The degree of stability increased as both the dose of biochar and the incubation time increased. The sediment pH and the morphology of the metal crystals adsorbed onto the biochar changed as the contact time increased. Our results showed that adsorption, metal crystallization, and the pH were the main controls on the stabilization of metals in contaminated sediment by biochar.  相似文献   
956.
The prevalence and persistence of antibiotics in soils has become an emerging environmental issue and an increasing threat to soil security and global public health. The problem is more severe in areas undergoing rapid urbanization; however, the ecological risks of antibiotics, seasonal variability, and associated soil microbial responses in peri-urban soils have not been well-explored. The seasonal soil sampling campaigns were conducted in a typical peri-urban watershed in eastern China to investigate distribution of antibiotics. The results demonstrated higher mean concentrations of most antibiotic compounds in winter than in summer in peri-urban soils. The seasonal variations of norfloxacin, enrofloxacin, and ciprofloxacin were more significant than those of other antibiotics, due to their higher migration ability and bioavailability. An ecological risk assessment demonstrated that chlortetracycline, ciprofloxacin, doxycycline, and ofloxacin can pose high risks to soil microorganisms. Furthermore, the coexistence of multiple antibiotics obviously poses higher risks than individual compounds. A redundancy analysis demonstrated that tetracyclines mainly showed negative correlations with Firmicutes and Chloroflexi, and quinolones showed obviously negative correlations with Acidobacteria, Gemmatimonadetes, and Nitrospirae, suggesting potential inhibition from antibiotics on biological activities or biodegradation processes. However, the persistence of antibiotics in soil results in a significant decrease in bacterial diversity and a change in dominant species. Our results provide an overview of the seasonal variability of antibiotics and the associated effects on bacterial communities in peri-urban soils. The results can provide scientific guidance on decreasing soil contamination with antibiotics to enhance soil security in similar areas.  相似文献   
957.
汉江中下游干流水质状况时空分布特征及变化规律   总被引:4,自引:0,他引:4       下载免费PDF全文
汉江是南水北调中线工程的水源区,其中下游水质状况是国家和湖北省政府重点关注的饮用水安全问题.研究南水北调中线工程影响区汉江中下游干流的水质状况和特征,为进一步分析工程运行对汉江中下游水质的影响奠定基础.收集了汉江中下游干流11个水质监测站2011—2014年pH、ρ(DO)、ρ(CODMn)、ρ(BOD5)、ρ(NH3-N)、ρ(TP)、ρ(TN)等7项水质指标,应用水污染指数法和层次聚类分析法,综合辨识2011—2014年汉江中下游干流的水环境时空变化特征.结果表明:①2011—2014年汉江中下游干流水质整体上为GB 3838—2002《地表水环境质量标准》的Ⅳ类~劣Ⅴ类水体,超标指标为ρ(TN)、ρ(TP)、ρ(BOD5),其中ρ(TN)超标最严重.②为深入辨识TN负荷对研究区域水质的影响,通过情景分析发现控制ρ(TN)可有效改善汉江中下游干流水质状况.③汉江中下游干流水质状况层次聚类分析表明,在时间上将研究时段分为2类,基本对应于汉江中下游的汛期和非汛期;在空间上将水质监测断面(沈湾、泽口、新沟、宗关、转斗、皇庄、汉南村、石剅、白家湾、余家湖、罗汉闸)分为3类,其中第3类可细分为3个子类,各子类所对应的水质监测断面与其空间分布基本对应.④汉江中下游干流富营养化严重,其中ρ(TP)和ρ(TN)在非汛期分别呈显著降低和增加趋势,汛期无明显变化.研究显示,江汉中下游污染严重,营养盐尤其丰富且ρ(TN)为主要影响因素.   相似文献   
958.
香溪河大型底栖动物24 h漂流规律研究   总被引:1,自引:1,他引:0       下载免费PDF全文
漂流行为是大型底栖动物适应河流水文过程的重要生物行为,也是研究河流底栖动物时空分布过程的重要依据,研究底栖动物的漂流规律对了解河流生态系统纵向格局的形成过程和演变机制具有重要意义.2017年8月选择湖北省香溪河的2条支流(九冲河与高岚河)研究大型底栖动物的漂流种类、昼夜节律和功能摄食类群构成.结果表明:①九冲河与高岚河漂流底栖动物均以蜉蝣目(Ephemeroptera)占绝对优势,相对丰度分别为76.9%、96.1%.九冲河的漂流物种数(35种)远高于高岚河(14种).②优势物种分析表明,九冲河的优势物种为高翔蜉(Epeorus sp.)、弯握蜉(Drunella sp.)、四节蜉(Baetis sp.)、花翅蜉(Baetiella sp.)、扁蚴蜉(Ecdyonurus sp.)、沼石蛾(Limnophilidae sp.)、等翅石蛾(Philopotamidae sp.)和蚋(Simulium sp.),高岚河的优势物种为花翅蜉和高翔蜉.③2条河流大型底栖动物的漂流均为显著的夜漂流类型,且漂流高峰期均出现在06:00.九冲河的夜漂者以襀翅目(Plecoptera)为主,高岚河以蜉蝣目为主.不同物种漂流的昼夜节律不同,高翔蜉、弯握蜉、扁蚴蜉、沼石蛾、等翅石蛾和蚋的第1个漂流密度高峰期均出现在20:00-22:00;四节蜉的第1个漂流密度高峰期出现在04:00-06:00;而花翅蜉的第1个漂流密度高峰期在九冲河出现的时间为04:00-06:00,在高岚河为02:00-04:00.④昼夜间漂流底栖动物的功能摄食类群和生活类型群落组成也有一定差异,但总体来看,漂流者的功能摄食类群均以收集者为主,以游泳生活者占主要优势.研究显示,九冲河与高岚河底栖动物的漂流节律表现出明显的差异性,其人为活动强度的差异是造成漂流规律差异的主要原因.   相似文献   
959.
Schwertmannite is an amorphous iron(III)-oxyhydroxysulfate that forms in acid mine drainage(AMD) environments. The characteristic of high heavy metal adsorption capability makes schwertmannite a potentially useful, environmentally friendly material in wastewater treatment. Unstable schwertmannite is prone to recrystallization.Understanding the mechanisms that induce schwertmannite labilization and affect its capacity to remove heavy metals are of great environmental and geochemical significance.Thiocyanate(SCNˉ) is a hazardous pseudohalide that is also normally found in AMD.However, little is known about the impact of Fe(III)-binding ligand SCNˉ on schwertmannite stability and its subsequent capacity to bind trace elements. Here, we investigated the adsorption of SCNˉ on schwertmannite and subsequent mineral transformation to characterize this little-known process. The appearance of Fe2+indicated that the interactions between schwertmannite and SCNˉ may involve complexation and reduction reactions. Results showed that the majority of the adsorbed-SCNˉ was immobilized on schwertmannite during the 60-days transformation. The transformation rates of schwertmannite increased with increasing concentrations of SCNˉ. Goethite was detected as the dominant transformation product with or without SCNˉ. The mechanisms of SCNˉ-promoted dissolution of schwertmannite can be described as follows:(1) formation of Fe(III)–NCS complexes on the schwertmannite surface and in solution, a process which increases the reactivity of solid phase Fe(III);(2) the extraction of Fe(III) from schwertmannite by SCNˉ and subsequent schwertmannite dissolution; and(3) the formation of secondary minerals from extracted Fe(III). These findings may improve AMD treatment strategies and provide insight into the use and potential reuse of schwertmannite as a trace element sorbent.  相似文献   
960.
A novel struvite crystallization method induced by bioelectrochemical acidolysis of magnesia(MgO) was investigated to recover phosphorus(P) from aqueous solution using a dual-chamber microbial electrolysis cell(DMEC). Magnesium ion(Mg~(2+)) in the anolyte was firstly confirmed to automatically migrate from the anode chamber to the cathode chamber, and then react with ammonium(NH+4) and phosphate(PO_4~(3-)) in the catholyte to form struvite. Recovery efficiency of 17.8%–60.2% was obtained with the various N/P ratios in the catholyte. When MgO(low solubility under alkali conditions) was added into the anolyte, the bioelectrochemical acidolysis of MgO naturally took place and the released Mg~(2+)induced struvite crystallization in the cathode chamber for P recovery likewise.Besides, there was a strong linear positive correlation between the recovery efficiency and the MgO dosage(R~2= 0.935), applied voltage(R~2= 0.969) and N/P ratio(R~2= 0.905). Increasing the applied voltage was found to enhance the P recovery via promoting the MgO acidolysis and the released Mg~(2+)migration, while increasing the N/P ratio in the catholyte enhanced the P recovery via promoting the struvite crystallization. Moreover, the electrochemical performance of the system was promoted due to more stable anolyte pH and lower pH gradient between the two chambers. Current density was promoted by 10%, while the COD removal efficiency was improved from 78.2% to 91.8% in the anode chamber.  相似文献   
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