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121.
Conversion of sulphur compounds in reduced, contaminated sediments that are brought in upland conditions may largely affect the potential mobility of heavy metal contaminants. We applied selected methods for the determination of total sulphur and sulphur fractions in a contaminated sediment in the reduced state and after gradual drying and oxidation during 1 month. Dry ashing, followed by ion chromatographic detection, was reliable for the determination of total sulphur. Good recoveries were obtained in both reference samples and spiked samples. Total sulphur was 14.5±0.6 g kg−1 relative to dry sediment. Wet chemical methods that involve the determination of acid-volatile, Zn–HCl-reducible, chromium-reducible, acetone-soluble and HI-reducible sulphur were used to estimate specific sulphur forms. Results for acetone-soluble sulphur were to high and not consistent with results for other fractions. Major part of sulphur in the sediment (90%) was inorganic. Sulphides were converted partially to sulphate and to intermediary oxidised sulphur compounds upon oxidation of the sediment. The results suggested that the intermediary oxidised sulphur pool in the reduced sediment (2.5 g kg−1) mainly consisted of pyrite, that was not converted during drying and oxidation. No significant changes in organic sulphur were detected. 相似文献
122.
分散法制备的CuCl/MCM-41上C3H6选择催化还原NO反应的研究 总被引:3,自引:0,他引:3
研究了由分散法制备的两种CuCl/MCM-41催化剂上丙烯在过量氧存在下选择催化还原NO反应, 发现所制备的CuCl/AlMCM-41催化剂的反应活性明显高于CuCl/SiMCM-41. XRD, IR, TPR及ESR的研究结果表明, CuCl/AlMCM-41催化剂上的主要活性中心是与骨架铝配位的铜离子(Cu2+/Cu+). 相似文献
123.
以钛氧有机物为前驱物制备具有高光催化活性的纳米二氧化钛晶体 总被引:9,自引:0,他引:9
纳米二氧化钛的制备方法及前驱物的差别影响其光催化活性.将20ml钛酸丁酯及30ml乙酐在密闭容器中与50ml环己烷混合,在70~85℃反应30min,生成微细的非晶钛氧有机物;经FT-IR和TGA分析,该物质被确认为计量式是TiOOOCCH3)2和TiO(OC4H9)(OOCCH3)的混合体.该钛氧有机物前驱物经焙烧后得到具有高光催化活性的纳米二氧化钛晶体.表征结果表明,钛氧有机物在焙烧过程中,其表面的吸附物及键合有机基团在400℃以前发生脱附和氧化分解;在389~405℃间形成锐钛矿型晶体,在600℃出现金红石晶型;600℃焙烧3h所得样品的比表面积为86m2/g,其二次粒子呈200~300nm条形体,孔隙大于20nm;单分散粒子为球形单晶,粒径为22nm;表面物理吸附水量为1.21%,加热至800℃时失重1.48%,粉体稳定纯净.光催化实验结果表明,以钛氧有机物为前驱物制备的纳米二氧化钛晶体具有高的光催化活性,光降解丁基罗丹明溶液的反应速率常数约为溶胶-凝胶法制备的催化剂样品的4倍.表面氧空缺和一定量的表面羟基可能是粉体具有高光催化活性的重要因素. 相似文献
124.
Activation of CO2 at Transition Metal Centres: The Route of the CO2 Reduction at Nikel(0) Moieties A competing reaction in the catalytic cyclooligomerization of hex-3-yne and CO2 at the (TMED)Ni(0)-fragment (TMED = N,N,N′,N′-tetramethylethylendiamine) is the formation of carbon monoxide and (TMED)Ni(CO3). So it is possible to explain the generation of II (TMED)Ni(diethylmalicacidanhydride) and III (a nickel trimer with two (TMED)Ni(CO3) units). Both complexes are characterized by X-ray analysis. The reduction of CO2 to CO most likely proceeds via an intermediate in which two molecules of carbon dioxide are coupled head-to-tail to form a metallacycle. An ab initio scf geometry optimization supports the existence of such an intermediate. 相似文献
125.
Zhiming Liu Jiming Hao Lixin Fu Tianle Zhu Junhua Li Xiangyu Cui 《Reaction Kinetics and Catalysis Letters》2003,80(1):45-52
SnO2/Al2O3 catalyst prepared by sol-gel method showed higher activity than those prepared by impregnation method, and their activity
was significantly improved by pre-treatment in the reaction gas. The increased activity is closely related to the agglomeration
of SnO2 species and the re-exposure of Al2O3, which was previously covered by dispersed SnO2 species.
This revised version was published online in June 2006 with corrections to the Cover Date. 相似文献
126.
甲烷氧化细菌催化二氧化碳生物合成甲醇的研究 总被引:2,自引:0,他引:2
甲烷氧化细菌中包含的甲烷单加氧酶(MMO)、甲醇脱氢酶(ADH)、甲醛脱氢酶(FaldDH)、甲酸脱氢酶(FateDH)经过一系列反应能够把甲烷深度氧化生成二氧化碳,并生成一定的能量物质.把二氧化碳还原为甲醇是一个需要能量的过程,目前还没有已知的有机体在温和条件下完成这一反应.研究发现,甲基弯菌Methylosi-nus trichosporium IMV 3011可以催化二氧化碳生物转化生成甲醇.在休眠的悬浮细胞中充人二氧化碳后,反应一段时间在反应液中检测到了甲醇.二氧化碳转化成甲醇是一个需要能量推动的反应,为了补充反应所消耗的能量.反应一段时间后需要用甲烷进行再生,以恢复细胞中的还原当量NADH.我们进行了反应再生的交替连续批式反应,甲醇积累量能够维持在一个比较稳定的水平.理论上,反应不会增加温室效应,这是一个有效的、环境友好的、可恢复的反应过程. 相似文献
127.
Inorganic electrides are a novel kind of ionic compounds in which the anions are electrons confined in a complex array of cavities or channels and the cations are nanoscale arrays of alkali metal ions that provide charge balance. In electrides the donated electron behaves like a low-density correlated electron gas, whereby the dimensionality of the electron gas and its electronic and magnetic properties are determined by the topology of the cavities in the host matrix. Unlike traditional electrides, in which alkali cations are encapsulated within an organic cage, inorganic electrides are thermally stable. The current inorganic electrides based on alkali metal loaded zeolites can be designed as useful reduced-dimensionality materials. Inorganic electrides are powerful reducing agents, and they are able to reduce small aromatic molecules to the radical anions within the channels of the zeolite. 相似文献
128.
Juan M. Quintana-Melgoza Antonio Gómez-cortés Miguel Avalos-Borja 《Reaction Kinetics and Catalysis Letters》2002,76(1):131-140
We present a comparative study of NiWO4, NiO, and WO3 catalysts for simultaneous conversion of NO and CO. Samples were synthesized by reacting ammonium metatungstate and/or nickel nitrate at high temperature (773 K to 903 K) under an oxygen stream. Catalysts were characterized by X-ray diffraction, surface area measurements, energy dispersive spectroscopy and scanning electron microscopy. The catalytic reduction of NO by CO took place in the temperature range (523 to 973) K under highly reductive conditions (NO:CO= 1:5) over NiWO4NiO, and WO3, respectively. The 100 % NO conversion at GHSV of 11460 h-1 was achieved at 773 K over NiWO4 and at 848 K over NiO. The WO3 was deactivated at 898 K. However, in the range (523 to 723) K NiO was more active than NiWO4 and WO3 catalysts. 相似文献
129.
130.
Zbigniew Grobelny Adalbert Maercker Janusz Kasperczyk Holger Frey 《Journal of organometallic chemistry》2004,689(14):2361-2367
The course of the reaction of alkalide K−, K+(15-crown-5)21 with selected alcohols depends on the kind of alcohol and the mode of substrate delivery. In the case of methanol, potassium methoxide formed initially undergoes destruction at the excess of 1. It results in potassium oxide and methylpotassium. The latter opens the crown ether ring giving potassium tetraethylene glycoxide vinyl ether and methane. A similar course of the process is observed for propanol. Potassium glycidoxide is the main product formed in the reaction of 1 with glycidol. Its oxirane ring is opened at the excess of 1. Organopotassium alkoxides, i.e., potassium potassiomethoxide and dipotassium potassiopropane-1,2-dioxide are intermediate products of this reaction. They react then with the crown ether. Potassium methoxide, potassium enolate of acetaldehyde, dipotassium propane-1,2-dioxide and potassium tetraethylene glycoxide vinyl ether are the final products of this process. 相似文献