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应用哈密顿公式研究傍轴光学系统
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作者 刘铁安 《应用光学》 CAS CSCD 1996年第4期16-20,共5页
论述用L定义光学的哈密顿H,并给出哈密顿公式的基本方程式。利用哈密顿方程式,在旋转对称的光学系统里追这光线,并利用哈密顿公式得出折射面和透镜的简单结果。最后通过举例说明这个方法是可行的。
关键词 哈密顿公式 透镜光学 旋转对称 光学系统
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Enhancing flotation recovery of residual carbon from gasification waste by mixing hydrophobic powder with diesel as collector 被引量:4
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作者 Rui Han Ningning Zhang +3 位作者 Anning Zhou Zhen Li Jinzhou Qu Hong Wang 《Particuology》 SCIE EI CAS CSCD 2024年第6期211-217,共7页
Coal gasification fine slag(CGFS)is a solid waste containing residual carbon and ash generated during the coal gasification process,and the separation of the two components is the essential way to realize its environm... Coal gasification fine slag(CGFS)is a solid waste containing residual carbon and ash generated during the coal gasification process,and the separation of the two components is the essential way to realize its environmental pollution reduction and resource value increase.Froth flotation is the preferred method for separating CGFS,but there is a barrier of low carbon recovery in this process due to the extensive adsorption of collector by the well-developed pores on residual carbon.In this study,a sufficiently simple yet innovative collector,a mixture of hydrophobic powder and diesel,was proposed in an attempt to break the bottleneck.Flotation experiments with common diesel and this novel collector were performed respectively,and FTIR,XPS,and SEM-EDX were employed to analyze the collector action mechanism.Flotation results revealed that the novel collector could significantly improve the residual carbon recovery;test results demonstrated that the novel collector could increase the hydrophobic functional group content on the fine slag surface,and the hydrophobic powders in this novel collector mainly appeared at the pore openings of the flotation concentrate.The essence of the mechanism is that the hydrophobic powders play a dual role of blocking pores and providing adsorption sites,thus facilitating the spreading of diesel on the carbon surface and promoting its floatability.The study can provide creative ideas for the efficient disposal of coal gasification waste. 展开更多
关键词 Coal gasification fine slag Carbon recovery COLLECTOR fotation Hydrophobic powder
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