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91.
为了强化水中溶解性有机物的去除效果,采用载银粉末活性炭与超滤( ultrafiltraction,UF)组合工艺处理微污染原水,研究了溶解性有机炭( dissolved organic carbon,DOC)和紫外吸光度( ultraviolet absorbance,UV254)的去除效果、三维荧光特性、影响因素以及膜污染控制的影响.研究结果表明:与常规粉末活性炭相比,载银活性炭对DOC和UV254的去除效果有较显著改善;在载银量0.10%、0.50%、1.00%和投炭量50、60、80、100 mg/L的条件下,随着活性炭载银量和投炭量的增加, DOC和UV254去除率呈现增加的趋势;单位质量的载银活性炭对UV254和DOC的去除率随投炭量的增加而下降,投炭量80 mg/L、载银量0.50%符合出水水质要求;载银粉末活性炭可以更有效地去除紫外区类腐殖质物质;吸附时间20 min时达到吸附平衡,活性炭在酸性条件下更有利于对有机物的吸附.载银活性炭对膜污染的控制较好,超滤膜经反洗后膜通量恢复较好,膜污染指数增长缓慢. 相似文献
92.
采用2011年1月-2014年6月在云南省第一人民医院确诊并行手术治疗的58例胰腺癌患者,切除部分肿瘤组织作为实验标本,癌旁组织作为对照,利用免疫组化及Western blot检测晚期胰腺癌组织内神经生长因子(nerve growth factor,NGF)及神经生长因子前体(precursor of nerve growth factor,pro NGF)的表达,Gel-Pro analyzer 4图像分析系统分析Western条带密度.试验重复3次,取3次IOD值行统计学分析.免疫组化及Western blot结果显示肿瘤组织NGF的表达较癌旁组织明显增高,而pro NGF的表达较癌旁组织明显降低.半定量Western blot显示癌旁组织和肿瘤组织NGF表达的IOD值分别为113.33±8.54和285.00±15.13,pro NGF表达的IOD值分别为245.00±7.55和86.33±7.37,差异有统计学意义(P0.05).因此,晚期胰腺癌患者肿瘤组织内NGF/pro NGF的比例发生改变,组织内NGF蓄积,而pro NGF减少,这可能是导致胰腺癌肿瘤细胞凋亡减少,生长、浸润和迁徙功能增强的重要机制之一. 相似文献
93.
为了强化甲醇制氢反应,分别以酚醛树脂和间苯二酚-甲醛为前驱体,制备了炭膜及复合炭膜.采用扫描电镜和氮气物理吸附等手段对炭膜及复合炭膜的微观形貌与孔径分布进行了分析.考察了原料粒度及固化剂用量对炭膜孔结构以及涂膜次数对复合膜分离性能的影响,并将所制备的炭膜与复合炭膜耦合在反应器内用于强化甲醇水蒸汽重整制氢反应.结果表明,当固化剂质量分数为6%时,炭膜孔径分布最窄,且平均孔径为0.16μm.随涂膜次数从1次增至3次,复合炭膜的透气性先降低后增大.对于甲醇水蒸汽重整制氢反应的转化率而言,炭膜与复合炭膜反应器分别比传统固定床提高了1.6倍和1.9倍. 相似文献
94.
为了开发新型高性能炭膜前驱体材料,研究了ODPA-ODA型聚醚酰亚胺膜经430~530℃空气氛围的预氧化机理.借助热重分析、红外光谱、元素分析及x-射线衍射等手段,分析了预氧化温度对预氧化膜的溶解度、柔韧度、表面官能团、元素质量分数及微观结构的影响.结果表明:优化预氧化过程是制备无缺陷高质量炭膜的关键.预氧化可提高热稳定性,形成的交联结构有利于提高残炭量和成膜性.随预处理温度的提高,交联程度提高,但当温度高于490℃时会发生过渡氧化. 相似文献
95.
Preparation of fibrous nickel oxide particles 总被引:7,自引:0,他引:7
1 INTRODUCTIONThenickeloxide (abbreviatedasNiOthereafter)isaversatilematerialwhichhasbeenfoundmanyap plicationsinindustrialfields .Itisusedasthekeymaterialinmanufactureofbatteryelectrode ,cata lyst,thermalsensitiveelement ,gassensitiveele ment,functionalceramics ,glass ,electroniccompo nentsandsoon[18] .At present,theapproachesavailableforultrafineNiOparticlesproductionincludecarbonylmethod ,laserchemicalmethod ,pyrolysisbymicrowave ,sol gelmethod ,pyrolysisbyultrason ic ,precipitation … 相似文献
96.
Zemin He Ping Yu Haiyang Wang Jianjing Gao Yang Zhao Haiquan Zhang Yuzhen Zhao Zongcheng Miao 《Journal of the American Ceramic Society》2021,104(9):4389-4397
Ferroelectric BaTiO3 was combined with Ag nanoparticles for piezocatalytic and photocatalytic viewpoints. Microstructural characterization (X-ray diffraction and electron microscopy images) revealed that the Ag was successfully bounded with BaTiO3. X-ray photoelectron spectrum also confirmed the presence of Ag. Further, its performance was examined for dye degradation under visible light (for photocatalysis) and ultrasonication (for piezocatalysis). In both the catalysis processes, there was a significant improvement in Ag-loaded BaTiO3 sample-based catalytic reactions. Catalytic performance was evaluated for multiple cycles and was found consistent. Scavenger tests were also performed to understand catalytic reactions. 相似文献
97.
In this work, one step process of synthesis of silver nanoparticles (Agnp) embedded in insitu formed calcium alginate (CA) beads is stated. CA, formed from the reaction between sodium alginate and calcium hydroxide, acts as reducing and stabilizing agent as well as support for nanoparticles. The reaction mechanism for the formation and stabilization of Agnp is proposed where the vicinal dihydroxy groups of alginate are assumed to act as the reducing agent for Ag+ to Ag°. Transmission electron microscopy (TEM), x‐ray diffraction (XRD), UV‐vis spectroscopy, field emission scanning electron microscopy (FESEM), and atomic absorption spectroscopy (AAS) were used to characterize the Agnp. The formation of spherical nanoparticles with average size range of 4‐5 nm was confirmed by TEM. Catalytic activity of this nano silver‐calcium alginate (Agnp‐CA) composite was evaluated in the reduction of p‐nitrophenol. Concentrations of sodium alginate, calcium hydroxide, and AgNO3 are found to be the parameters that critically affect the synthesis of Agnp. The efficacy of the catalyst is expressed on the basis of suitable reaction parameters. Both pseudo‐homogeneous and heterogeneous kinetic models are proposed for the reaction to find the best model and the Eley‐Riedel model is found to fit well with the experimental data. The novelty of this work is that the tandem process of CA bead formation, Agnp formation, and Agnp entrapment in CA have been transformed into a single‐step process. Moreover, elaborations of each step of the ionic mechanisms of Agnp formation and p‐NP reduction with Agnp and the establishment of a heterogeneous kinetic model for the reaction are reported for the first time here. 相似文献
98.
Yifan Liu Ruihan Pei Yuancai Lv Chunxiang Lin Jianhui Huang Minghua Liu 《应用聚合物科学杂志》2021,138(42):51226
Due to the low concentration of silver in water, most of the cellulose adsorbents exhibited low removal efficiency, which greatly limited their practical applications. Herein, a cellulose aerogel modified by thiosemicarbamide (CAT) was fabricated for reducing and adsorbing silver ions from low concentration wastewater. The characterization results concluded that CAT owned a three-dimensional spongy structure with many circular microspheres and a better specific surface area (19.37 m2 g−1), as well as the functional groups of ─C═N+─H and ─(C═S)─N. The static batch adsorption experiments demonstrated that CAT could reached the maximum removal percentage of 94.94% and adsorption capacity of 42.12 mg g−1 under the initial concentration of Ag(I) was 15 mg L−1 and the pH value was 7. Meanwhile, the adsorption of Ag(I) on CAT was second-order reaction, and the Langmuir model could better fit the adsorption process. In addition, CAT exhibited wide pH values (1–9) adaptability and excellent adsorption performance for silver through electrostatic interaction, chelation, and reduction. This study probably provides a new method as well as important experimental data and theoretical reference for the removal of silver ions and other metals. 相似文献
99.
直流电弧等离子体法制备超细Ag粉研究 总被引:2,自引:2,他引:2
采用自行研制的高真空双枪直流电弧金属纳米粉连续制备设备,制备了高纯度的超细银粉,并采用正交试验的方法研究了各工艺参数对粉体产率及粒径分布的影响。利用X射线衍射(XRD)、透射电子显微镜(TEM)和相应选区电子衍射(SAED)以及Simple PCI软件对样品的成分、形貌、晶体结构和粒径分布进行了分析。结果表明:所得银粉纯净无污染,属多晶型结构,平均粒径在38-220nm范围内,粒径分布窄;最大产率比同类研究结果提高了近17倍;电流和充气压力分别是影响产率和粒径分布的显著性因素。 相似文献
100.