Four kinds of SiC fibers with different specific resistivities were prepared by the pyrolysis of cured polycarbosilane fiber. The results show that SiC fibers with different specific resistivities can be obtained by c...Four kinds of SiC fibers with different specific resistivities were prepared by the pyrolysis of cured polycarbosilane fiber. The results show that SiC fibers with different specific resistivities can be obtained by changing the curing and pyrolysis conditions. And the free carbon content and the ability to crystallize no longer affect the specific resistivities notably with the time when the fiber is covered with an excess carbon layer, and the fiber has a low specific resistivity. The excess carbon layer in the circular outer part is originated from the re-pyrolysis and deposition of hydrocarbon volatiles. The removal of the carbon by oxidative treatment may affect the surface property and also promote the magnitude of specific resistivity. The influence of the surface property on the specific resistivity can be considerable and should not be neglected.展开更多
文摘通过在污泥生物炭中添加不同含量的碳酸钙(CaCO_(3)),不同碳酸钙掺量污泥生物炭(Sludge biochar of calcium carbonate,SBC-Ca)在相同条件下得到制备,对其去除废水中化学需氧量(chemical oxygen demand,COD)的效果进行了评估。结果表明:CaCO_(3)比例为9%的污泥生物炭为最佳掺量;通过正交试验,最佳设计组合为A_(1)B_(2)C_(1)D_(3)E_(1),即吸附时间为60min,生物炭投加量为4.0g/L,pH6.0,温度为25℃,COD初始质量浓度为689.09mg/L;在最佳碳酸钙掺量下,SBC-Ca对废水中COD的去除量为166.08mg/g,去除率高达97.83%;比表面积和孔径分析显示SBC-Ca比表面积为39.86m^(2)/g,中孔量较多;红外光谱图表明含有-OH、C=O、C-O、Si-H等官能团;X射线衍射(X-Ray diffraction,XRD)谱图和扫描电子显微镜(scanning electron microscope,SEM)图显示SBC-Ca负载了CaCO_(3)。
文摘Four kinds of SiC fibers with different specific resistivities were prepared by the pyrolysis of cured polycarbosilane fiber. The results show that SiC fibers with different specific resistivities can be obtained by changing the curing and pyrolysis conditions. And the free carbon content and the ability to crystallize no longer affect the specific resistivities notably with the time when the fiber is covered with an excess carbon layer, and the fiber has a low specific resistivity. The excess carbon layer in the circular outer part is originated from the re-pyrolysis and deposition of hydrocarbon volatiles. The removal of the carbon by oxidative treatment may affect the surface property and also promote the magnitude of specific resistivity. The influence of the surface property on the specific resistivity can be considerable and should not be neglected.