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81.
The effect of biochar substituted for anthracite as reductant on magnetizing-roasting pyrite cinder was investigated.The key of magnetizing-roasting is the gasification reaction between reductants and CO2.Since biochar could react with CO2 more rapidly at lower temperature,the reactivity of biochar is better than that of anthracite.The gasification of biochar could produce reducing condition ofφCO/(φCO+φCO2)about 10%-20% between 700-800 ℃,which is in accord with the atmosphere and temperature of Fe2O3 reduction.So it is beneficial to the reduction of iron mineral of pyrite cinder.Compared with anthracite,biochar could decrease the roasting temperature from825 to 750 ℃ and roasting time from 20 to 15min,which shows that a better effect of magnetization could be obtained in the condition of lower temperature and shorter time.Using biochar as reductant,iron concentrate extracted from pyrite cinder as about 64%iron grade could be produced,and the recovery is over 90% under the condition of above 90% grinding particle less than 0.045 mm and magnetic intensity of 0.124-0.194 T. 相似文献
82.
阐述金川集团化工厂530 kt/a铜冶炼烟气制酸系统扩能改造和余热回收前存在的问题,在遵循尽可能保留现有工艺管线和保证余热高效回收的原则上对转化工艺进行改造完善,将转化流程由原设计的“3+1/Ⅳ.Ⅰ-Ⅲ.Ⅱ”四段转化改为“3+2/Ⅴ.Ⅰ-Ⅲ.Ⅱ.Ⅳ”五段转化工艺流程,研发适合冶炼烟气制酸系统的分离型热管余热回收工艺技术.生产实践证明,该工艺在确保转化热平衡的基础上提升转化率,优化系统工艺技术指标,实现回收转化中温位富余热量生产饱和蒸汽,保证制酸系统与铜冶炼系统的匹配化生产,节能减排效益可观. 相似文献
83.
Youngseok Lee Cheolmin Park Nagarajan Balaji Youn-Jung Lee Vinh Ai Dao 《Israel journal of chemistry》2015,55(10):1050-1063
Over the past few decades, crystalline silicon solar cells have been extensively studied due to their high efficiency, high reliability, and low cost. In addition, these types of cells lead the industry and account for more than half of the market. For the foreseeable future, Si will still be a critical material for photovoltaic devices in the solar cell industry. In this paper, we discuss key issues, cell concepts, and the status of recent high-efficiency crystalline silicon solar cells. 相似文献
84.
Feeling thermometer questions are widely used in political science research to estimate people’s attitudes and feelings toward a political object, like a political figure or an organization. Given the popularity of the feeling thermometer question in population surveys, more work is needed to explore the measurement of this question type. This study examines the data collection mode effect on feeling thermometers. Using the 2012 American National Election Studies, we find that the measurement of feeling thermometers is not exactly comparable between face-to-face and Web surveys. Face-to-face respondents tend to provide warmer feelings, while Web respondents give relatively more reliable responses in comparison. In both survey modes, respondents are most likely to select the response options that are verbally labeled although the effect is more striking in face-to-face than Web survey. The item nonresponse between these two modes does not differ in a meaningful way. This study ends by discussing future research directions on feeling thermometer questions. 相似文献
85.
86.
Jiexi Ke Xiaoyun Li Shuai Jiang Chen Liang Junwei Wang Maoqing Kang Qifeng Li Yuhua Zhao 《Polymer International》2019,68(4):651-660
The performances of hybrid non‐isocyanate polyurethane (NIPU) materials were improved by using promising approaches. For the ring‐opening reaction of cyclic carbonate with excess amine, methanol was selected as solvent to increase the molar mass of NH2‐terminated NIPU pre‐polymer but also caused the formation of urea as a result of eliminating hydrogen bonding between NIPU chains. Meanwhile, another approach was carried out to reduce the content of urea by altering the introduction mode of reactants, along with further increasing the molar mass of the NIPU pre‐polymer. The final hybrid materials were prepared by adding bisphenol‐A diglycidyl ether into the pre‐polymer. The results indicated that the introduction of methanol and the change of the introduction mode of reactants could improve the performance of the hybrid materials. The hybrid material derived from the forward method has optimal performance with a tensile strength of 10.8 MPa, elongation at break of 167%, a glass transition temperature of 49.1 °C and a crosslinking density of 450 mol m?3 as well as presentable thermodynamic stability, ascribed to the high molar mass of the NIPU pre‐polymer, the low urea content and the dense crosslinking network. © 2018 Society of Chemical Industry 相似文献
87.
Xixiang Zhu Hengxing Xu Yongtao Liu Jia Zhang Miaosheng Wang Ilia N. Ivanov Olga S. Ovchinnikova Bin Hu 《Advanced materials (Deerfield Beach, Fla.)》2019,31(49)
A new approach to generate a two‐photon up‐conversion photoluminescence (PL) by directly exciting the gap states with continuous‐wave (CW) infrared photoexcitation in solution‐processing quasi‐2D perovskite films [(PEA)2(MA)4Pb5Br16 with n = 5] is reported. Specifically, a visible PL peaked at 520 nm is observed with the quadratic power dependence by exciting the gap states with CW 980 nm laser excitation, indicating a two‐photon up‐conversion PL occurring in quasi‐2D perovskite films. Decreasing the gap states by reducing the n value leads to a dramatic decrease in the two‐photon up‐conversion PL signal. This confirms that the gap states are indeed responsible for generating the two‐photon up‐conversion PL in quasi‐2D perovskites. Furthermore, mechanical scratching indicates that the different‐n‐value nanoplates are essentially uniformly formed in the quasi‐2D perovskite films toward generating multi‐photon up‐conversion light emission. More importantly, the two‐photon up‐conversion PL is found to be sensitive to an external magnetic field, indicating that the gap states are essentially formed as spatially extended states ready for multi‐photon excitation. Polarization‐dependent up‐conversion PL studies reveal that the gap states experience the orbit–orbit interaction through Coulomb polarization to form spatially extended states toward developing multi‐photon up‐conversion light emission in quasi‐2D perovskites. 相似文献
88.
针对现有的基于局部特征的图像匹配算法对光照变化敏感、匹配正确率低等问题,提出一种具有光照鲁棒性的图像匹配算法。首先使用实时对比保留去色(RTCP)算法灰度化图像,然后利用对比拉伸函数模拟不同光照变换对图像的影响从而提取抗光照变换特征点,最后采用局部强度顺序模式建立特征点描述符,根据待匹配图像局部特征点描述符的欧氏距离判断是否为成对匹配点。在公开数据集上,所提算法与尺度不变特征变换(SIFT)算法、加速鲁棒特征(SURF)算法、"风"(KAZE)算法和ORB算法在匹配速度和匹配正确率上进行了对比实验。实验结果表明:随着图像亮度差异的增加,SIFT算法、SURF算法、"风"(KAZE)算法和ORB算法匹配正确率下降迅速,所提算法下降缓慢并且正确率均高于80%;所提算法特征点检测较慢和描述符维数较高,平均耗时为23.47 s,匹配速度不及另外四种算法,但匹配质量却远超过它们。对实时性要求不高的系统中,所提算法可以克服光照变化对图像匹配造成的影响。 相似文献
89.
为解决锅炉水冷壁磨损检测机器人的路径跟踪问题,提出了一种基于指数趋近律的滑模变结构控制的机器人路径跟踪方法。在水冷壁磨损检测机器人运动模型的基础上,进行路径跟踪误差分析,设计一种基于指数趋近律的滑模变结构控制器,再利用Lyapunov定理验证其收敛性,最后通过MATLAB软件模拟仿真,仿真结果表明该控制器可以克服误差,使位姿误差收敛至零。 相似文献
90.
《International Journal of Hydrogen Energy》2019,44(37):20634-20640
Syngas has been produced from carbon dioxide (CO2) and steam using a proton ceramic electrolyser cell. Proton-conducting electrolytes which exhibit high conductivity can suffer from low chemical stability. In this study, to optimize both proton conductivity and chemical stability, barium cerate and doped barium cerate are synthesized using solid state reaction method: BaCeO3 (BC), Ba0.6Sr0.4CeO3-α (BSC), Ba0.6Sr0.4Ce0.9Y0.1O3-α (BSCY), and BaCe0.6Zr0.4O3-α (BCZ). The BC, BSC, and BSCY are calcined at 1100 °C for 2 h and BCZ is calcined at 1300 °C for 12 h, respectively. All samples exhibit 100% perovskite and crystallite sizes equal 37.05, 28.46, 23.65 and 17.46 nm for BC, BSC, BSCY and BCZ, respectively. Proton conductivity during steam electrolysis as well as catalytic activity toward the reverse water gas shift reaction (RWGS) is tested between 400 and 800 °C. The conductivity increases with temperature and the values of activation energy of conduction are 64.69, 100.80, 103.78 and 108.12 kJ mol−1 for BSCY, BC, BSC, and BCZ, respectively. It is found that although BCZ exhibits relatively low conductivity, the material provides the highest CO yield at 550–800 °C, followed by BSCY, BSC, and BC, correlating to the crystallite size and BET surface area of the samples. Catalytic activity toward RWGS of composited Cu and electrolytes is also measured. Additional Cu (60 wt%) significantly increases catalytic activity. The CO yield increases from 3.01% (BCZ) to 43.60% (Cu/BCZ) at 600 °C and CO can be produced at temperature below 400 °C. There is no impurity phase detected in BCZ sample after exposure to CO2-containing gas mixture (600 °C for 5 h) while CeO2 phase is detected in BSC and BSCY and both CeO2 and BaO are observed in BC sample. 相似文献