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681.
682.
某厂电炉分厂发生一起起重机钩头坠落事故。经分析 ,该事故是由电气故障引起的。提出了防范措施 相似文献
683.
卤代烃毒性的化学评价法:鸟嘌呤卤代烃加合物FTIR、UV光谱表征 总被引:4,自引:0,他引:4
研究鸟嘌呤与一系列卤代烃反应的加合产物 ,利用HPLC二极管阵列检测器得到的特征紫外光谱 (UV)对加合产物样品进行了鉴定 ,然后加合产物经薄层 (TLC)分离 ,再进一步做红外 (FTIR)鉴定 ,从而得到鸟嘌呤 卤代烃氧位和氮位加合物的红外光谱表征 .研究表明 ,鸟嘌呤卤代烃的氮位加合物异构体的紫外光谱吸收峰的波长在 240~250nm之间 ,氧位加合物UV波长在 260~270nm附近 .鸟嘌呤与本文涉及的各卤代烃的加合物的红外光谱之间差别不大 :其氮位加合物在 1700cm-1处 ,均有CO的特征吸收峰 ;其氧位加合物的红外光谱亦相近 . 相似文献
684.
Sodium hypochlorite (NaClO) is a commonly applied cleaning agent for ultrafiltration membranes in water and wastewater treatment. Long-term exposure to NaClO might change the properties and performance of polymeric membranes, and ultimately shorten membrane lifespan. Active species in NaClO solution vary with solution pH, and the aging effects can change depending on the membrane material. In this study, the aging of polyvinylidene fluoride (PVDF) and polyethersulfone (PES) membranes by NaClO at pH 3–11 was investigated by examining variations in chemical composition, surface charge, surface morphology, mechanical strength, permeability, and retention ability. Polyvinyl pyrrolidone (PVP), which was blended in both membranes, was oxidized and dislodged due to NaClO aging at all investigated pH values, but the oxidation products and dislodgement ratio of PVP varied with solution pH. For the PVDF membrane, NaClO aging at pH 3–11 caused a moderate increase in permeability and decreased retention due to the oxidation and release of PVP. The tensile strength decreased only at pH 11 because of the defluorination of PVDF molecules. For the PES membrane, NaClO aging at all investigated pH resulted in chain scission of PES molecules, which was favored at pH 7 and 9, potentially due to the formation of free radicals. Therefore, a decrease in tensile strength and retention ability, as well as an increase in permeability, occurred in the PES membrane for NaClO aging at pH 3–11. Overall, the results can provide a basis for selecting chemical cleaning conditions for PVDF and PES membranes. 相似文献
685.
686.
采用大肠杆菌吸附-化学还原法,以大肠杆菌(ECCs)为模板、十六烷基三甲基溴化铵为保护剂、抗坏血酸为还原剂,由废含金催化剂制备金纳米线(AuNWs)。采用XRD,SEM,TEM等技术对AuNWs进行表征。研究了AuNWs对罗丹明6G(R6G)和4-巯基苯甲酸(4-MBA)的拉曼散射信号的增强效果。实验结果表明:在制备过程中加入微生物ECCs,可使金回收率提高约20百分点;当溶液pH小于4时,反应2 h后,有大量呈线状的AuNWs聚集沉降,金回收率可达99%1以上。表征结果显示,AuNWs呈多晶结构,晶格间距为0.23 nm。表面增强拉曼散射分析表明,AuNWs对R6G和4-MBA具有良好的拉曼光谱增强性能。 相似文献
687.
Black carbons(e.g.,charcoal) have a great impact on the transport of organic contaminants in soil and water because of its strong affnity and ubiquity in the environment.To further elucidate their interaction mechanism,sorption of polar(p-nitrotoluene,m-dinitrobenzene and nitrobenzene) and nonpolar(naphthalene) aromatic contaminants to burned straw ash charcoal under different de-ashed treatments were investigated.The sorption isotherms fitted well with Freundlich equation,and the Freundlich N values were all around 0.31-0.38,being independent of the sorbate properties and sorbent types.After sequential removal of ashes by acid treatments(HCl and HCl-HF) ,both adsorption and partition were enhanced due to the enrichment of charcoal component.The separated contribution of adsorption and partition to total sorption were quantified.The effective carbon content in ash charcoal functioned as adsorption sites,partition phases,and hybrid regions with adsorption and partition were conceptualized and calculated.The hybrid regions increased obviously after de-ashed treatment.The linear relationships of Freundlich N values with the charring-temperature of charcoal or biochar(the charred byproduct in biomass pyrolysis) were observed based on the current study and the cited publications which included 15 different temperatures(100-850°C) ,10 kinds of precursors of charcoal/biochar,and 10 organic sorbates. 相似文献
688.
种植密度和降水对冬小麦田N2O排放的影响 总被引:4,自引:2,他引:4
为研究种植密度对农田N2O排放的影响和探讨N2O排放季节性波动的原因,于1999~2000年小麦生长季在南京市郊江宁县进行了不同播种量(0、90、180和270kg/hm2)的大田试验.观测分析结果表明:在相同的气象条件和田间管理下,播种~越冬阶段的N2O排放不受播种量的影响,返青~成熟阶段的N2O排放通量与播种量成正比.裸地条件下的N2O排放与播量为90kg/hm2下的排放无明显差异.造成该生长季内N2O排放季节性波动的主要原因是降水,返青~成熟阶段的N2O排放通量随观测日前6d的加权平均降水量呈指数增加. 相似文献
689.
Solid phase reactions of Cr(Ⅵ) with Fe(0) were investigated with spherical-aberration-corrected scanning transmission electron microscopy(Cs-STEM) integrated with X-ray energy-dispersive spectroscopy(XEDS). Near-atomic resolution elemental mappings of Cr(Ⅵ)–Fe(0) reactions were acquired. Experimental results show that rate and extent of Cr(Ⅵ) encapsulation are strongly dependent on the initial concentration of Cr(Ⅵ) in solution. Low Cr loading in nZⅥ(1.0 wt%) promotes the electrochemical oxidation and continuous corrosion of n ZⅥ while high Cr loading(1.0 wt%) can quickly shut down the Cr uptake. With the progress of iron oxidation and dissolution, elements of Cr and O counter-diffuse into the nanoparticles and accumulate in the core region at low levels of Cr(Ⅵ)(e.g., 10 mg/L). Whereas the reacted n ZⅥ is quickly coated with a newly-formed layer of 2–4 nm in the presence of concentrated Cr(Ⅵ)(e.g., 100 mg/L). The passivation structure is stable over a wide range of pH unless pH is low enough to dissolve the passivation layer. X-ray photoelectron spectroscopy(XPS) depth profiling reconfirms that the composition of the newly-formed surface layer consists of Fe(Ⅲ)–Cr(Ⅲ)(oxy)hydroxides with Cr(Ⅵ) adsorbed on the outside surface. The insoluble and insulating Fe(Ⅲ)–Cr(Ⅲ)(oxy)hydroxide layer can completely cover the n ZⅥ surface above the critical Cr loading and shield the electron transfer. Thus, the fast passivation of nZⅥ in high Cr(Ⅵ) solution is detrimental to the performance of nZⅥ for Cr(Ⅵ) treatment and remediation. 相似文献
690.