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高炉水渣微粉处理技术分析 被引量:3
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作者 孙永宁 《现代冶金》 CAS 2013年第5期36-38,共3页
介绍了高炉水渣在水泥工业中的应用,分析了高炉水渣特性微粉的特性、生产工艺、应用前景。
关键词 高炉 工业废 水渣微粉
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某钢厂年产120万t高炉水渣微粉项目设计特点探究
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作者 王磊 肖红涛 《山西冶金》 CAS 2023年第7期135-137,174,共4页
系统介绍了某钢厂年产120万t高炉水渣微粉项目的设计特点,具体对该项目的水渣储运系统、水渣立磨系统、成品系统、烟气系统进行描述说明,并介绍了其核心设备选型和技术特点。
关键词 高炉 水渣微粉 设计
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安钢钢铁渣循环利用方案探讨 被引量:10
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作者 马忠民 翟国营 刘三军 《河南冶金》 2010年第5期26-29,共4页
介绍了安钢及国内钢铁渣的处理工艺和利用现状,对国内钢铁渣的循环利用技术发展方向进行了对比分析,提出了安钢钢铁渣高价值循环利用工艺路线及实施方案。
关键词 热闷 水渣微粉 微粉 循环利用
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梅山铁矿东南风井管道输送新型胶凝材料混凝土技术
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作者 许志逞 《现代矿业》 CAS 2020年第5期29-32,36,共5页
由于梅山矿业公司的地面东南井至井下-303 m水平有接近350 m的垂直落差,如此高落差的输送成品混凝土,极易造成混凝土发生离析问题,直接影响成品混凝土的抗压强度、坍落度和喷浆支护的回弹率等指标,造成管道输送的混凝土达不到井下采矿... 由于梅山矿业公司的地面东南井至井下-303 m水平有接近350 m的垂直落差,如此高落差的输送成品混凝土,极易造成混凝土发生离析问题,直接影响成品混凝土的抗压强度、坍落度和喷浆支护的回弹率等指标,造成管道输送的混凝土达不到井下采矿生产的安全要求。为了进一步为了更好地提高巷道支护的安全强度,梅山铁矿引入了新型胶凝材料水渣微粉,在喷浆支护中水渣微粉替代部分水泥,以求改进混凝土的技术指标,通过探索优化东南井的管道材质、管道的安装方案、管道的布置形式、管道的直径、一次下料量控制等技术要求,以求解决先期解决混凝土的离析问题,确定东南井管道的管道材质、管道的安装方案、管道的布置形式、管道的直径、一次下料量的详细参数,再探索优化新型胶凝材料的配比技术参数,使管道输送新型胶凝材料混凝土的抗压强度、坍落度和喷浆支护的回弹率指标达到设计要求,管道输送的混凝土达到井下采矿生产作业的安全要求。 展开更多
关键词 管道 混凝土 离析 新型胶凝材料 水渣微粉 安全生产
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Optimum Level of Replacement Slag in OPC-Slag Mortars 被引量:1
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作者 Fathollah Sajedi Payam Shafigh 《Journal of Civil Engineering and Architecture》 2010年第1期11-19,共9页
The present paper reports the testing of 14 OPC-slag mortars and 2 controls OPC and slag mortars. The main aim is to determine the optimum level of replacement slag for achievement to the highest early strength with r... The present paper reports the testing of 14 OPC-slag mortars and 2 controls OPC and slag mortars. The main aim is to determine the optimum level of replacement slag for achievement to the highest early strength with reasonable flow. Variable was the level of GGBFS in the binder. In this experimental work, two types of sands were used that are: silica and mining sands. It is determined that the optimum level of replacement slag is 40% and use of silica sand in OPC is preferable to mining sand and reversely, use of mining sand is preferred in GG100 to silica sand. All mortars had W/B and S/B 0.33 and 2.25, respectively. 展开更多
关键词 Ground granulated blast furnace slag (GGBFS) high early strength optimum level OPC-slag mortar flow
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Sulfuric Acid Resistance of Concrete with Blast Furnace Slag Fine Aggregate
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作者 Paweena Jariyathitipong Kazuyoshi Hosotani +1 位作者 Takashi Fujii Toshiki Ayano 《Journal of Civil Engineering and Architecture》 2014年第11期1403-1413,共11页
The deterioration of concrete by sulfuric acid attack in sewage environments has become a serious problem for many existing sewage structures. In this study, the properties of concrete using the blast furnace slag hav... The deterioration of concrete by sulfuric acid attack in sewage environments has become a serious problem for many existing sewage structures. In this study, the properties of concrete using the blast furnace slag have been examined. It was shown that by using the blast furnace slag fine aggregate and blast furnace slag fine powder, it is possible to enhance the resistance of mortar and concrete to sulfuric acid. The resistance to sulfuric acid of mortar and concrete can be improved by using a blast-furnace slag fine aggregate in the total amount of fine aggregate. When mortar or concrete reacts to sulfuric acid, dihydrated gypsum film is formed around the particulate of the fine aggregate. This dihydrated gypsum film could retard the penetration of sulfuric acid, thus, improving the resistance to sulfuric acid. Furthermore, it has been proved that the relationship between the erosion depth by sulfuric acid attack and the product of immersion period and concentration of sulfuric acid can be expressed linearly. However, this relationship is dependent on the type of materials of concrete. 展开更多
关键词 Sulfuric acid attack blast furnace slag sand ground granulated blast fumace slag GYPSUM sewerage.
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