电导率是稀土矿渣玻璃陶瓷熔融过程中最重要的物性参数之一,研究电导率对玻璃熔体熔炼工艺优化有指导作用。为了研究尾矿玻璃陶瓷生产制造的熔融过程中稀土对熔体电导率的作用,使用分析纯试剂根据玻璃陶瓷主要化学成分制备玻璃陶瓷熔体...电导率是稀土矿渣玻璃陶瓷熔融过程中最重要的物性参数之一,研究电导率对玻璃熔体熔炼工艺优化有指导作用。为了研究尾矿玻璃陶瓷生产制造的熔融过程中稀土对熔体电导率的作用,使用分析纯试剂根据玻璃陶瓷主要化学成分制备玻璃陶瓷熔体样品,采用交流四电极法研究稀土对玻璃熔体电导率的影响规律,并结合红外光谱技术分析解释熔体电导率的变化机理。研究结果表明,硅酸盐熔体中添加La_(2)O_(3)或提高CaO/SiO_(2)比值会使熔体网络结构解聚,有效提高熔体电导率,且电导率的活化能(Activation energy of electrical conductivity)与La_(2)O_(3)含量和CaO/SiO_(2)比呈负相关关系;CaO/SiO_(2)比值较低时,La_(2)O_(3)含量对活化能影响更加显著,且红外光谱曲线硅酸盐结构带高波数段变化更明显,说明熔体结构发生更强烈的解聚效应;La_(2)O_(3)在CaO/SiO_(2)比值较低时对熔体网络结构和电导率的影响更大。展开更多
CaO-based heat carriers have shown great prospects for thermochemical energy storage in concentrated solar power systems due to the features such as rich reserves,environmental safety,high energy storage densities and...CaO-based heat carriers have shown great prospects for thermochemical energy storage in concentrated solar power systems due to the features such as rich reserves,environmental safety,high energy storage densities and high operation temperatures.However,the density decay because of sintering and poor direct solar absorption of white CaO based heat carriers are the two main obstacles lying on the way to the realistic applications.This work introduced dark Mn-based inert support into calcium heat carriers,attempting to solve the above problems simultaneously.As an inert support,the finely dispersed Ca_(2)MnO_(4) functioned as the metal framework to resist CaCO_(3)/CaO sintering.Consequently,the cyclic stability of CaO-based heat carriers,resulting in the high energy storage densities of~2000 kJ/kg even over 20 cycles.As a dark material,Ca_(2)MnO_(4) successfully darkened CaO-based heat carriers,thereby greatly enhanced the direct solar absorption.In addition,the granulation of CaO-based heat carriers was also studied.The pellets showed satisfactory attrition resistance with only 9.85 wt% mass loss over 3200 cycles.In general,good physicochemical performance of Mn-doped CaO-based heat carrier endows it with great prospects for solar energy storage.展开更多
The high-carbon ferrochrome is an essential raw material for producing stainless steel,and the demand of it increases with the increase of stainless steel.So increasing Cr recovery rate from chromite is essential for ...The high-carbon ferrochrome is an essential raw material for producing stainless steel,and the demand of it increases with the increase of stainless steel.So increasing Cr recovery rate from chromite is essential for lower costs and higher economic benefits in high-carbon ferrochrome production process.This study calculated the activity of CrO_(x)in slag and investigated the distribution behavior of Cr between slag and alloy.Theω(MgO)/ω(Al_(2)O_(3))was 1.0,and the w(CaO)/w(SiO_(2))was from 0.2 to 0.6 in this study.The calculation and experimental results showed that the main phases of the slag were chrome-containing spinel,magnesium-aluminum spinel,olivine and melilite.The content of spinel in slag decreased with the increasing w(CaO)/w(SiO_(2)),and the w(CrO_(x))in spinel also reduced,but the content of melilite increased.The distribution ratio of Cr between slag and alloy decreased with the increase of slag basicity at 1600℃,meansning that increasing the w(CaO)/w(SiO_(2))of slag can improve the recovery of Cr in chromite smelting process.展开更多
文摘电导率是稀土矿渣玻璃陶瓷熔融过程中最重要的物性参数之一,研究电导率对玻璃熔体熔炼工艺优化有指导作用。为了研究尾矿玻璃陶瓷生产制造的熔融过程中稀土对熔体电导率的作用,使用分析纯试剂根据玻璃陶瓷主要化学成分制备玻璃陶瓷熔体样品,采用交流四电极法研究稀土对玻璃熔体电导率的影响规律,并结合红外光谱技术分析解释熔体电导率的变化机理。研究结果表明,硅酸盐熔体中添加La_(2)O_(3)或提高CaO/SiO_(2)比值会使熔体网络结构解聚,有效提高熔体电导率,且电导率的活化能(Activation energy of electrical conductivity)与La_(2)O_(3)含量和CaO/SiO_(2)比呈负相关关系;CaO/SiO_(2)比值较低时,La_(2)O_(3)含量对活化能影响更加显著,且红外光谱曲线硅酸盐结构带高波数段变化更明显,说明熔体结构发生更强烈的解聚效应;La_(2)O_(3)在CaO/SiO_(2)比值较低时对熔体网络结构和电导率的影响更大。
基金Project(2024BAB094)supported by the Key Research and Development Program of Hubei Province,ChinaProject(2024040801020296)supported by the Natural Science Foundation of Wuhan City,ChinaProject(52276113)supported by the National Natural Science Foundation of China。
文摘CaO-based heat carriers have shown great prospects for thermochemical energy storage in concentrated solar power systems due to the features such as rich reserves,environmental safety,high energy storage densities and high operation temperatures.However,the density decay because of sintering and poor direct solar absorption of white CaO based heat carriers are the two main obstacles lying on the way to the realistic applications.This work introduced dark Mn-based inert support into calcium heat carriers,attempting to solve the above problems simultaneously.As an inert support,the finely dispersed Ca_(2)MnO_(4) functioned as the metal framework to resist CaCO_(3)/CaO sintering.Consequently,the cyclic stability of CaO-based heat carriers,resulting in the high energy storage densities of~2000 kJ/kg even over 20 cycles.As a dark material,Ca_(2)MnO_(4) successfully darkened CaO-based heat carriers,thereby greatly enhanced the direct solar absorption.In addition,the granulation of CaO-based heat carriers was also studied.The pellets showed satisfactory attrition resistance with only 9.85 wt% mass loss over 3200 cycles.In general,good physicochemical performance of Mn-doped CaO-based heat carrier endows it with great prospects for solar energy storage.
基金Project(2023XQLH055)supported by Central South University Graduate Research Innovation Project(University-Enterprise Joint Project),China。
文摘The high-carbon ferrochrome is an essential raw material for producing stainless steel,and the demand of it increases with the increase of stainless steel.So increasing Cr recovery rate from chromite is essential for lower costs and higher economic benefits in high-carbon ferrochrome production process.This study calculated the activity of CrO_(x)in slag and investigated the distribution behavior of Cr between slag and alloy.Theω(MgO)/ω(Al_(2)O_(3))was 1.0,and the w(CaO)/w(SiO_(2))was from 0.2 to 0.6 in this study.The calculation and experimental results showed that the main phases of the slag were chrome-containing spinel,magnesium-aluminum spinel,olivine and melilite.The content of spinel in slag decreased with the increasing w(CaO)/w(SiO_(2)),and the w(CrO_(x))in spinel also reduced,but the content of melilite increased.The distribution ratio of Cr between slag and alloy decreased with the increase of slag basicity at 1600℃,meansning that increasing the w(CaO)/w(SiO_(2))of slag can improve the recovery of Cr in chromite smelting process.