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271.
由共聚法制得的铁铝复合交联剂交换钠基蒙脱石层间的水合钠离子,再经SO42-改性处理制备了铁铝复合层柱粘土固体超强酸催化剂.利用xRD、FT-IR和BET法对催化剂的结构进行了表征.以乙酸正丁酯的合成反应为探针反应对催化剂的活性进行了测试.通过正交实验确定了铁铝复合交联粘土SO42-改性最佳工艺条件.研究了催化剂对探针反应的选择性及重复使用情况.结果表明:在由实验确定的最佳改性工艺条件下,乙酸的转化率达92.2%,反应中无副产物产生,催化剂具有较好的重复使用性能.  相似文献   
272.
The effect of phosphate and glutamic acid on adsorption of aluminium onto a latosol was investigated as a function of pH and ligand concentrations through batch equilibrium experiments. The results showed that adsorption of aluminium by the soil was enhanced after addition of phosphate at low pH, and this promotive effect was gradually eliminated with the increase in pH. The positive effect of phosphate on aluminium adsorption onto latosol was attributed to phosphate-induced surface negative charge and formation of ternary surface complexes involving aluminium and phosphate. While using silica as adsorbent, the inactive surfaces for phosphate, promotion of adsorption of aluminium by phosphate was also found. Then it was proposed that additional aluminium might bind to the phosphate adsorbed onto the silica in the form of surface complexes silica–aluminium–phosphate again, and the mechanism might operate in the soil systems as well. Glutamic acid exhibited no influence on the adsorption of aluminium by the soil at low pH. After increasing the pH, adsorption of aluminium was inhibited especially with the highest addition of glutamic acid, probably owing to weak affinity of complexes between glutamic acid and aluminium to the soil.  相似文献   
273.
Coexisting melt (MI), fluid-melt (FMI) and fluid (FI) inclusions in quartz from the Oktaybrskaya pegmatite, central Transbaikalia, have been studied and the thermodynamic modeling of PVTX-properties of aqueous orthoboric-acid fluids has been carried out to define the conditions of pocket formation. At room temperature, FMI in early pocket quartz and in quartz from the coarse-grained quartz–oligoclase host pegmatite contain crystalline aggregates and an orthoboric-acid fluid. The portion of FMI in inclusion assemblages decreases and the volume of fluid in inclusions increases from the early to the late growth zones in the pocket quartz. No FMI have been found in the late growth zones. Significant variations of solid/fluid ratios in the neighboring FMI result from heterogeneous entrapment of coexisting melts and fluids by a host mineral. Raman spectroscopy, SEM EDS and EMPA indicate that the crystalline aggregates in FMI are dominated by mica minerals of the boron-rich muscovite–nanpingite CsAl2[AlSi3O10](OH,F)2 series as well as lepidolite. Topaz, quartz, potassium feldspar and several unidentified minerals occur in much lower amounts. Fluid isolations in FMI and FI have similar total salinity (4–8 wt.% NaCl eq.) and H3BO3 contents (12–16 wt.%). The melt inclusions in host-pegmatite quartz homogenize at 570–600 °C. The silicate crystalline aggregates in large inclusions in pocket quartz completely melt at 615 °C. However, even after those inclusions were significantly overheated at 650±10 °C and 2.5 kbar during 24 h they remained non-homogeneous and displayed two types: (i) glass+unmelted crystals and (ii) fluid+glass. The FMI glasses contain 1.94–2.73 wt.% F, 2.51 wt.% B2O3, 3.64–5.20 wt.% Cs2O, 0.54 wt.% Li2O, 0.57 wt.% Ta2O5, 0.10 wt.% Nb2O5, 0.12 wt.% BeO. The H2O content of the glass could exceed 12 wt.%. Such compositions suggest that the residual melts of the latest magmatic stage were strongly enriched in H2O, B, F, Cs and contained elevated concentrations of Li, Be, Ta, and Nb. FMI microthermometry showed that those melts could have crystallized at 615–550 °C.

Crystallization of quartz–feldspar pegmatite matrix leads to the formation of H2O-, B- and F-enriched residual melts and associated fluids (prototypes of pockets). Fluids of different compositions and residual melts of different liquidus–solidus PT-conditions would form pockets with various internal fluid pressures. During crystallization, those melts release more aqueous fluids resulting in a further increase of the fluid pressure in pockets. A significant overpressure and a possible pressure gradient between the neighboring pockets would induce fracturing of pockets and “fluid explosions”. The fracturing commonly results in the crushing of pocket walls, formation of new fractures connecting adjacent pockets, heterogenization and mixing of pocket fluids. Such newly formed fluids would interact with a primary pegmatite matrix along the fractures and cause autometasomatic alteration, recrystallization, leaching and formation of “primary–secondary” pockets.  相似文献   

274.
实验选择了最佳仪器工作条件,比较了不同载流酸对荧光强度的影响,用L-半胱氨酸-硫脲-酒石酸混合溶液消除干扰.本法检出限0.08μg/g(n=12),8个土壤标样的RSD为4.8%~9.6%(n=12),ΔtgC为0.002~0.015,此法可满足化探分析的要求.  相似文献   
275.
水溶液中草酸漂白高岭土细尾矿的研究   总被引:5,自引:0,他引:5  
研究了用草酸在不同溶液中漂白高土细尾矿的反应动力学。考察了PH值,温度、浸出液初始浓度等因素对反应的影响。结果表明,PH值的降低、反应温度和浸出液浓度的提高有利于高岭土中氧化铁的浸出,该反应是草酸根与铁的摩尔比为3:1的络合反应,在草酸溶液中铁的溶出符合一级反应动力学。  相似文献   
276.
全球硫资源特征及国内硫资源供需现状表明,国内硫资源贫乏,硫资源生产与消费逐年增加,尤其磷肥生产对硫资源的需求越来越迫切,预计到2020~2025年磷肥用硫量将达到峰值1620万t左右,不包括出口磷肥耗硫量。因此,加强硫资源的综合利用、加大硫铁矿找矿及矿山设计是非常有必要的。  相似文献   
277.
The low-grade vanadium-containing stone coal used in this experiment was collected from Wuxi Coun- try, Chongqing City, China. The experiment focused on the vanadium recovery from roasted residue through opti- mizing the process conditions of an effective and environmentally-friendly technology, named calcified roast- ing-sulfuric acid leaching technology. By single-factor experiments and orthogonal experiments, the effects of roast- ing temperature, roasting time, sulfuric acid concentration and leaching time on the leaching ratio of vanadium were analyzed. The results showed that the leaching ratio of vanadium reached 85.5% under the proper technological con- ditions of roasting temperature=950℃, roasting time=4 h, 40% concentration of sulfuric acid and leaching time=6 h.  相似文献   
278.
麦饭石对腐殖酸及重金属离子的吸附作用   总被引:4,自引:0,他引:4  
研究了麦饭石对腐殖酸和重金属离子(Hg2+,Pb2+,Cu2+,Zn2+,Cd2+)的吸附作用,实验结果表明麦饭石对腐殖酸和重金属离子都具有较好的吸附性能,且腐殖酸的存在有利于麦饭石对重金属离子的吸附。pH值是影响吸附的重要因素,当pH值为5.0~6.0时,麦饭石同时吸附腐殖酸和重金属离子的效果最好,麦饭石在吸附腐殖酸和重金属离子的同时能溶出微量元素硒,这对于大骨节病的防治有重要意义。  相似文献   
279.
坡缕石粘土的酸化机理及其影响因素   总被引:3,自引:1,他引:3  
酸化生产活性坡缕石粘土,对于提高其品位和高效利用有重要意义。坡缕石粘土酸化机理及影响因素研究对其高效利用具有重要理论意义和实践价值。本文综述了酸化坡缕石粘土矿物组分、矿物学、比表面和孔道变化的特征以及酸化的主要影响因素等,并就坡缕石粘土酸化过程中存在的问题及研究方向做了简要论述。  相似文献   
280.
钙贝塔石发现于四川西昌的霓辉石-钠铁闪石脉中,与之共生的矿物是霓辉石,钠铁闪石,钠长石,铈磷灰石,硅钛铈矿,沥青铀矿,重晶石,方解石和彩钼铅矿等。钙贝塔石呈黑色,黑褐色,具八面体晶形,大小为2mm~8mm,条痕为黑色或黄褐色,油脂到沥青光泽,贝壳状断口。摩氏硬度为6.05~6.44(Hv=570.08kg/mm^2~689.06kg/mm^2);无解理,比重4.51(扭力天平法测定),反射率从406nm(13.53%)到659nm(11.87%)。经计算钙贝塔石的化学式为:(Ca,Na,U)2(Nb,Ti)2(0,OH),。钙贝塔石的强X射线:2.975(10.222),2.570(5.400),1.816(9.440),1.549(8.622),1.050(6.844),等轴晶系,α=1.029nm。  相似文献   
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