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61.
Laboratory experiments have been carried out to investigate the uptake of sulfur dioxide by water drops containing heavy metal ions where the metal ions serve as catalysts to oxidise the taken up S(IV) into S(VI). During the gas uptake the drops were freely suspended at their terminal velocity in the airstream of the Mainz vertical wind tunnel. Two series of experiments were carried out, one with large millimeter size water drops containing manganese or iron ions, and the other with small water drops containing manganese ions and having radii in hundreds of micron size range. The experimental results were compared against model computations using the Kronig–Brink model and the fully mixed model, modified for the case that heavy metal ions present in the liquid phase act as catalysts for the oxidising process. The results of the model calculations show that there are only small differences between the predicted gas uptake according to the two models. In addition it was found that the experimental obtained results from the uptake of SO2 by water drops containing heavy metal ions for both, large and small water drops did agree with the model results.  相似文献   
62.
The effect of elevated nitric acid concentrations on cloud particle number concentrations and sizes of mixed phase cirrus cloud (containing both supercooled liquid and frozen ice particles) is studied using a detailed multicomponent condensation model. Our model calculations suggest that high nitric acid volume mixing ratios (VMRs), corresponding to upper tropospheric measurements, can increase the ice crystal number concentrations substantially especially in the case of freezing of non-activated solution droplets (as opposed to freezing of supercooled cloud droplets). This is due to increased droplet sizes caused by nitric acid absorption and the resulting uptake of water.  相似文献   
63.
临安地区强酸雨的特点   总被引:3,自引:0,他引:3       下载免费PDF全文
洪盛茂 《大气科学》1997,21(1):31-38
本文对1985年至1994年监测的强酸雨资料进行研究和分析,并与一般酸雨进行对比。结果表明,本地的一般酸雨出现较为频繁;强酸雨出现增多;四季中强酸雨频率各不相同,秋季最高,夏季最低;强酸雨的酸沉降量正在逐年增加;强酸雨的电导率较高,电导率和pH间呈现高度显著的负相关;强酸雨的降水量一般较小,并与pH间显现非常显著的正相关;强酸雨中各离子浓度均高于一般酸雨。  相似文献   
64.
张淑云  何平 《岩矿测试》1997,16(4):313-315
在030mol/LHAc介质中,Pb(Ⅱ)与7_碘_8_羟基喹啉_5_磺酸(试铁灵,Feron)的络合物于-054V(vs.SCE)产生一尖锐的极谱波,加入溴化十六烷基三甲基铵(CTMAB)显著增敏,可使极谱波增高约4倍。峰电流与Pb(Ⅱ)浓度在96×10-9~48×10-6mol/L呈良好的线性关系,检出限为48×10-9mol/L。用多种电化学方法研究了该极谱波的性质及电极反应机理表明,络合物组成比为nPb(Ⅱ)∶nFeron=1∶1,极谱波为吸附波,峰电流由中心离子Pb(Ⅱ)还原产生,电子转移数为2。试验了多种离子对峰电流的影响,拟定的方法用于矿样分析,结果与原结果相符。  相似文献   
65.
催化分光光度法测定痕量钛   总被引:2,自引:0,他引:2  
周之荣  吴伟 《岩矿测试》1996,15(3):235-237
催化分光光度法测定痕量钛周之荣1吴伟华东地质学院应化系江西临川344000催化褪色光度法测定钛的报道较少[1],本文研究了痕量Ti(Ⅳ)催化过氧化氢氧化酸性铬蓝K褪色反应的影响因素,建立了测定痕量Ti(Ⅳ)的催化光度法,并用于测定植物及人发中钛。方法...  相似文献   
66.
水/岩作用实验研究表明,在低温条件下柠檬酸、草酸和酒石酸对岩石中的铁、铜都有很高的淋滤率。这表明,在表生地质作用过程中有机酸对成矿元素有很强的活化能力。实验研究同时发现,有机酸对成矿元素的活化能力受其分解温度的限制,由于大部分有机酸的分解温度都在250℃以下,因而有机酸对成矿元素的活化仅限于低温条件。本次研究还显示,判断一种岩石能否成为矿源层,不能简单的以其中成矿元素的含量高低作为标准,其中更关键的因素是元素在岩石中的存在形式,如果成矿元素在岩石中难以活化的形式存在,那么含量再高也无法提供成矿物质  相似文献   
67.
用天冬氨酸和谷氨酸化学吸附在纳米四氧化三铁粒子表面,制备得到强生物亲合性的水基磁流体。这种磁流体在磁性药物载体、磁共振造影剂和磁高热治疗肿瘤等领域有良好的应用前景。用体系的电导和旋光度参数表征了两种氨基酸化学吸附在磁粒子表面的过程,研究了酸度、氧化钠浓度、天冬氨酸和谷氨酸的吸附等因素对磁流体的磁性和稳定性的影响。磁测量表明,该磁流体对空气较敏感,60天后饱和磁化强度衰减17%;若保存在磨口瓶中,60天后饱和磁化强度基本不变,可应用于生物医药中。  相似文献   
68.
研究了2-[2-(6-氯苯并噻唑)偶氮]-5-二乙氨基苯甲酸(6-Cl-BTAEB)与Ni2+的显色反应。结果表明:在pH4.5~7.6的HAc-NaAc缓冲溶液中及十二烷基硫酸钠存在下,试剂与Ni2+形成稳定的蓝紫色配合物,组成为n(Ni2+)∶n(6-Cl-BTAEB)=1∶2,最大吸收波长650nm,表观摩尔吸光系数为1.59×105L·mol-1·cm-1,Ni2+浓度在0~400μg/L内符合比尔定律。用铝合金和合金钢中的微量镍验证该分析方法,所得结果与推荐值相符,6次测定的RSD<2%。  相似文献   
69.
药用滑石粉酸中可溶物测定方法考察   总被引:1,自引:0,他引:1  
考察药用滑石粉酸中可溶物测定方法的重复性、耐用性 ,分析主要影响因素。比较酸溶物提取液滤过介质对测定结果差异的影响 ;采用重量法随机测定酸溶物含量和室间差异。两种滤过介质处理对测定结果没有显著差异 ;室间测定结果没有显著差异 ;30批样品平行测定结果的 RSD值范围为 0 %~ 18.2 %。酸中可溶物测定法存在重复性和耐用性不佳的问题 ,应相应调整酸中可溶物含量限度  相似文献   
70.
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   

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