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为了研究氯氧镁水泥的长期耐久性机理,用XRD分析了我国实际使用12~16a的氯氧镁水泥材料的物相组成,探讨了氯氧镁水泥在自然环境下的长期水化产物与转变规律。结果表明,氯氧镁水泥的长期水化产物,在室内大气环境下主要是氯氧化镁5Mg(OH)2.MgCl2.8H2O(5.1.8)和氢氧化镁Mg(OH)2,在室外露天环境下主要是Mg(OH)2、5.1.8、碳化氯氧化镁[Mg(OH)2.MgCl2.2MgCO3.6H2O(1.1.2.6)]和水菱镁矿[4MgCO3.Mg(OH)2.4H2O(4.1.4)]。在露天的使用环境中,没有经过改性、或者改性效果不佳的氯氧镁水泥材料中的主要水化产物5.1.8,同时发生了分解-碳化作用和碳化-分解作用,其初级分解产物是Mg(OH)2,初级碳化产物是1.1.2.6,终极碳化产物是4.1.4和MgCO3。氯氧镁水泥材料结构中大量形成4.1.4,是导致其耐久性失效的根本原因。 相似文献
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合成了3种单核配合物,通过元素分析、摩尔电导和红外光谱进行了表征。在动态空气下,采用热重和差热技术研究了N,N′-双氨烷基草酰胺合铜(Ⅱ)配合物热分解动力学。用Achar法和Coats-Redfen法分析了非等温动力学数据,并对比动力学参数提出了最合适的热分解动力学模型。由热重曲线计算出了热分解反应的活化能、热焓和指前因子。对比配合物N,N′-双-2氨乙基草酰胺合铜(Ⅱ)、N,N′-双-2氨丙基草酰胺合铜(Ⅱ)和N,N′-双-3-氨丙基草酰胺合铜(Ⅱ)初始分解温度,配合物的热稳定性排序为:Cu(oxpn)>Cu(oxap)>Cu(oxen) 相似文献
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氯氧镁水泥(Magnesium oxychloride cement, MOC)具有快凝、早强、高强、防火和不腐蚀玻璃纤维等优点,非常适合于制作玻璃纤维增强薄壁制品,在农业灌溉工程中具有良好的应用前景。采用XRD和TOPAS分析了新型抗水氯氧镁水泥制成内蒙古防渗渠的物相组成,探讨了氯氧镁水泥制品在自然环境的水化产物与相转变规律、以及相组成对强度的影响。结果表明,在水分缺少的条件下,氯氧镁水泥的水化产物主要为5Mg(OH)_2·MgCl_2·8H_2O(5·1·8)和Mg(OH)_2;在水分充足的条件下,水化产物主要为Mg(OH)_2和5·1·8,碳化产物为碳化氯氧化镁Mg(OH)_2·MgCl_2·2MgCO_3·6H_2O(1·1·2·6)和水菱镁矿4MgCO_3·Mg(OH)_2·4H_2O(4·1·4)。水化产物对强度有促进作用,而碳化产物会降低强度。通过10年的工程环境考验,证明新型氯氧镁水泥制品在环境中能够保持主要强度相5·1·8的稳定性,具有良好的长期力学性能。 相似文献
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在槽式太阳能热发电领域,硝酸镁基熔盐逐渐引起关注。通过六水硝酸镁煅烧法制备无水硝酸镁,采用拉曼、DSC与XRD表征脱水产物,系统研究了环境压力、脱水温度与时间对六水硝酸镁脱水和水解的影响。结果表明,六水硝酸镁在煅烧过程中水解为碱式硝酸镁Mg_3(OH)_4(NO_3)_2,在水溶液中进一步分解为Mg(OH)_2。随着煅烧温度和时间的增加,脱水产物中的含水量逐渐减少,同时水解产物Mg_3(OH)_4(NO_3)_2含量逐渐增加。真空环境下煅烧,可显著降低硝酸镁的水解反应。六水硝酸镁在真空环境下230℃煅烧1.5 h,所制备的无水硝酸镁中水解产物含量为3.63%。制备的硝酸镁可进一步用于硝酸镁基熔盐的研究。 相似文献
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The crystal structure of metal borates has been extensively investigated by X-ray and neutron diffraction,but,the structure of aqueous polyborate solutions are still largely unknown.Over the last decade,our group has focused on studying the structure of complex aqueous polyborate solutions of Li,Na,K,Rb,Cs,and Mg using synchrotron radiation X-ray scattering(XRS),EXAFS,Raman,NMR,and DFT,as well as determining the density,conductivity and pH of such solutions.Polyborate species distributions were calculated using pH measurements,and the main species in the solution have been confirmed by NMR and Raman spectra.For alkali-metal metaborates,the dominant species is always B(OH)-4in a wide range of concentration,while the presence of others species is negligible.For alkali metal tetraborates,when concentration is in the extreme low range,only B(OH)3 and B(OH)-4 are present in these solutions.As the total boron concentration increases,B(OH)3 and B(OH)-4 polycondensated to form more complex oligomers.Of them,while B4O5(OH)2-4 in the tetraborate solutions is the main species,B(OH)3,B(OH)-4,and B3O3(OH)-4 are minor species,and B3O3(OH)2-5 and B5O6OH)-4 are present only in negligible amounts.As solution continues to concentrate,B4O5(OH)2-4 eventually becomes the dominant species,which is consistent with the congruent compound M2B4O7·nH2O(M=Li,Na,K,Rb,Cs) in the system M2O-B2O3-H2O(M=Li,Na,K,Rb,Cs).For alkali metal pentaborates,B(OH)3 and B(OH)-4 are the main species at low concentrations.The species distribution,Raman and NMR spectroscopy results verified that the dominant species in concentrated pentaborate solutions with Li and Na is pentaborate B5O6OH)-4,but it is surprising that the main species with K,Rb,and Cs is always the triborate monoanion B3O3(OH)-4.Although all M[B5O6OH)4]·nH2O(M=Li,Na,K,Rb,Cs) are all congruent compounds in the system M2O-B2O3-H2O(M=Li,Na,K,Rb,Cs) ,the main species in aqueous solutions are quite different because of various cation hydration distance(d),hydration number(CN),and configuration,especially charge(Z).For bivalent Mg2+,three borate minerals,namely,Inderite(2MgO·3B2O3·15H2O),Hungchaoite(MgO·2B2O3·9H2O),and Mcallisterite(MgO·3B2O3·7.5H2O),exist in the system MgO-B2O3-H2O at 298K.Inderite is a congruent compound,but Hungchaoite and Mcallisterite are incongruent compounds.The species distribution and Raman spectra demonstrat that the predominant species in all the solutions with magnesium borates is bivalent triborate B3O3(OH)2-5,while the subordinate species are B(OH)-4 at a low B2O3/MgO ratio and B(OH)3at a high B2O3/MgO ratio,and the other anions are negligible,as the high Z of the borate anion must match that of Mg2+.The disappearance of divalent B4O5(OH)2-4 is in agreement with its incongruent nature.The DFT and XRS results showed that tetrahedral Li(H2O)+4(d=0.20 nm,CN=4),octahedral Na(H2O)6+(d=0.236 nm,CN=6),and Mg(H2O)2+6(d=0.210 nm,CN=6) in the first hydration shell belong to Platonic polyhedra.However,K(H2O)+8(d=0.28 nm,CN=8,XRS and DFT),Rb(H2O)+8(d=0.293 nm,CN=7.7-8.2,EXAFS),and Cs(H2O)+8(d=0.320-0.326 nm,CN=7.6-7.9,EXAFS) are inclined Voronoi polyhedra.Therefore,the effects of cation Z and d on the structure of polyborates in aqueous solutions are deterministic,while the effect of hydrated-cation symmetry is secondary.Their hydrolysis order was:Mg>Li>Na>K>Rb>Cs,in step with hydration power.Among them,Mg2+ and Li+have a strong tendency towards hydrolysis,but Na+ scarcely hydrolyzes,especially Rb+ and Cs+ have a little protonation.X-ray scattering of aqueous alkaline sodium borohydride solutions confirmed that dihydrogen bonds exist in an aqueous solution.The four distinct features of dihydrogen bonds in aqueous solution-unidirectionality,divaricativity,multicentricity,and multidentativity have been also described here in brief. 相似文献
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研究了不同浓度MgCl2(1.998、3.867、5.735%)溶液,在不同温度(25、55℃)下,对软钾镁矾在K+,Mg2+/SO_4 ̄2-,Cl-H2O四元体系中溶解转化过程的影响,采用龙格-库塔微分数值法拟合其溶解过程和结晶过程动力学方程。结果表明在一定浓度MgCl2溶液中软钾镁矾是不相称溶解,K2SO4先于MgSO4溶解进入溶液中,MgCl2溶液浓度越大,温度越高,溶解速度越快,K2SO4结晶速度也越快.溶解受扩散和表面反应控制,K2SO4结晶受扩散控制. 相似文献
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Boron resources are abundant in the Da Qaidam Salt Lake of the Qaidamu basin in China,which has generated significant attention due to the presence of polyborate species in brine from this lake. In this study,Raman spectroscopy was used to investigate the existing form of boron in brine during evaporation. MgO·2 B_2 O_3-H_2 O,MgO·2 B_2 O_3-MgCl_2-H_2 O,and MgO·2 B_2 O_3-MgSO_4~-H_2 O solutions were also studied to determine the influence of boron concentration,pH,and electrolytes on the borate speciation from brine. The mononborates B( OH)_3 and B( OH)_4~-were found to be the only forms present in natural salt lake brine. Brine evaporation promoted the formation of the polyborate anions B_3 O_3( OH)_4~-,B_5 O_6( OH)_4~-,and B_6 O_7( OH)_6~(2-)and also promoted the disappearance of the B( OH)_4~-ion from brine at boron concentrations of more than 11 g/L B_2 O_3. The pentaborate ion B_5 O_6( OH)_4~-was sensitive to the solution pH and appeared only at p H values less than 8. 0. Meanwhile,the hexaborate ion B_6 O_7( OH)_6~(2-)was observed to be more dependent on the electrolyte magnesium chloride due to its special properties,such as promoting boron accumulation,lowering solution pH,and also its strong affinity for water molecules,which were all beneficial for the polymerization of borate ions in brine. Interaction mechanisms between polyborate anions during evaporation are also proposed herein. ake; evaporation; polyborate species; interaction mechanism. 相似文献