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介绍一种新型的废水处理接触氧化充填材料——网状蜂窝填料 被引量:4
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作者 邬象牟 《煤矿设计》 北大核心 1997年第11期44-48,共5页
本文根据日本新光尼龙股份有限公司开发和生产的废水处理接触氧化充填材料—网状蜂窝填料的产品样本说明书及其生产和试验资料,对网状蜂窝填料的特点、性能、产品规格、应用范围、注意事项等进行分析介绍,目的在于改进我国现有的充填... 本文根据日本新光尼龙股份有限公司开发和生产的废水处理接触氧化充填材料—网状蜂窝填料的产品样本说明书及其生产和试验资料,对网状蜂窝填料的特点、性能、产品规格、应用范围、注意事项等进行分析介绍,目的在于改进我国现有的充填材料,以提高污水处理的效能。 展开更多
关键词 废水处理 氧化充填材料 网状蜂窝
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Effect of treatment process on consolidation efficiency of fugitive dust cemented by bio-activated cementitious material based on CO2 capture
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作者 ZHAN QiWei QIAN ChunXiang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第8期1194-1200,共7页
As a new green and environmental material, bio-activated cementitious material is attracting extensive attention. This study confirmed that the bio-activated cementitious material could mineralize and cement fugitive ... As a new green and environmental material, bio-activated cementitious material is attracting extensive attention. This study confirmed that the bio-activated cementitious material could mineralize and cement fugitive dust into the cal- cite-consolidation-layer based on CO2 capture and utilization. The results illustrated that treatment processes (non-pressure spraying, pressure spraying, non-pressure blending and pressure blending) had a strong effect on the microstructure and prop- erties of calcite-consolidation-layer. According to the analysis of X-ray diffraction (XRD) and Fourier transform infrared (FTIR), calcite was prepared by bio-activated cementitious material during the cementation process. Meanwhile, scanning electron microscopy (SEM) and thermogravimetric-differenfial scanning calorimetry (TG-DSC) were adopted to measure the corresponding variation of porous characteristics and calcite content caused by different treatment processes. The results indi- cated that the microstructure of calcite-consolidation-layer from the spraying process had lower porosity and higher content of calcite than from blending processes. In addition, the mechanical properties of calcite-consolidation-layer were also tested. The hardness and compressive strength, which reached 19.5 GPa and 0.6 MPa, respectively, of calcite-consolidation-layer from the pressure spraying process were higher than those from the other three treatment processes. Compared with the non-treatment process, the four treatment processes had superior wind erosion resistance. Under the wind speed of 12 m/s, the mass loss of calcite-consolidation-layer from the pressure spraying process decreased from 2150.2 to 23.8 g/(m^2 h). 展开更多
关键词 bio-activated cementitious material treatment process MINERALIZATION CEMENTATION fugitive dust
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