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Effect of heat treatment temperature of the glaze lager on the structure and the formaldehyde removal performance of an interior wall tile
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作者 Ruqin Gao Yingrui Huang +4 位作者 Enhui Wang Xinmei Hou Lu Pan Guoting Li Bingtao Liu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2022年第11期2079-2085,共7页
With the improvement of people’s living standards,a large number of petroleum products,daily necessities and decorations that can produce volatile organic compounds are used in decoration,which seriously affects the ... With the improvement of people’s living standards,a large number of petroleum products,daily necessities and decorations that can produce volatile organic compounds are used in decoration,which seriously affects the indoor air quality.Interior decoration materials have become a research hotspot in recent years.The purpose of this paper is to develop a kind of interior wall material with good indoor formaldehyde removal effect,easily using,and low cost.In this paper,combining different heat treatment temperatures of the glaze layer,tourmaline/diatomite-based interior wall tiles were prepared by ultrafine grinding,solid sintering,and low temperature calcination.The glaze layer under different heat treatment temperatures was characterized by thermogravimetric-differential thermal analysis,X-ray diffraction,and scanning electron microscope.The influences of heat treatment temperature on the microscopic morphology and structure of the glaze layer were analyzed.Taking formaldehyde as the target degradation product,the effects of tourmaline/diatomite-based interior wall tiles on the removal of formaldehyde under different heat treatment temperatures of the glaze layer were investigated.The results showed that with the increase in heat treatment temperature,the original pores of diatomite decreased,the specific surface area decreased,and the structure of tourmaline changed.At 850℃,the surface structure of the material was slightly damaged,the strength was increased,and the removal effect of formaldehyde was better.In a 1 m^(3) environmental chamber,the formaldehyde removal rate reached 73.6%in 300 min.When the temperature was increased to 950℃ and above,diatomite and the structure of tourmaline were destroyed,and the ability of the material to adsorb and degrade formaldehyde decreased. 展开更多
关键词 diatomite tourmaline/diatomite-based interior wall tiles glaze layer heat treatment temperature FORMALDEHYDE adsorption and degradation
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电气石/硅藻土基内墙砖的制备及室内甲醛净化 被引量:7
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作者 高如琴 黄豆豆 +2 位作者 程萌 全建军 王紫括 《硅酸盐通报》 CAS CSCD 北大核心 2012年第6期1449-1452,1456,共5页
以硅藻土为主要原料,添加适量电气石粉和烧结助剂,采用超细湿式研磨工艺制备釉浆,并浸渍在硅藻土基多孔陶瓷表面及孔道,通过低温煅烧,制备电气石/硅藻土基内墙砖。结合X射线衍射、扫描电子显微镜、傅里叶变换红外光谱仪等手段对材料进... 以硅藻土为主要原料,添加适量电气石粉和烧结助剂,采用超细湿式研磨工艺制备釉浆,并浸渍在硅藻土基多孔陶瓷表面及孔道,通过低温煅烧,制备电气石/硅藻土基内墙砖。结合X射线衍射、扫描电子显微镜、傅里叶变换红外光谱仪等手段对材料进行了表征;以甲醛气体为目标污染物,探讨了材料对其吸附和降解能力。结果表明:所制备的电气石/硅藻土基内墙砖,硅藻土原始孔结构与颗粒堆积形成的孔隙构成了有机整体;材料釉层经870℃煅烧,电气石的结构和性能并未发生改变;电气石/硅藻土基内墙砖对甲醛气体具有很好的吸附和降解能力,1 m3的环境舱内初始浓度为0.303 mg/m3的甲醛经5 h的净化,其浓度降至0.0782 mg/m3。 展开更多
关键词 硅藻土基多孔陶瓷 电气石 内墙砖 甲醛 吸附与降解
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电气石/硅藻土基内墙砖釉层热处理温度对其结构与性能的影响 被引量:4
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作者 高如琴 黄豆豆 郑水林 《硅酸盐学报》 EI CAS CSCD 北大核心 2013年第4期534-539,共6页
采用固相烧结和低温煅烧工艺,制备了硅藻土基多孔陶瓷支承体。以硅藻土为主要原料,在釉料里添加适量电气石和烧结助剂,结合不同的釉层热处理温度,制备了电气石/硅藻土基内墙砖。用热重–差示扫描量热分析、X射线衍射、扫描电子显微镜对... 采用固相烧结和低温煅烧工艺,制备了硅藻土基多孔陶瓷支承体。以硅藻土为主要原料,在釉料里添加适量电气石和烧结助剂,结合不同的釉层热处理温度,制备了电气石/硅藻土基内墙砖。用热重–差示扫描量热分析、X射线衍射、扫描电子显微镜对不同热处理温度下釉层进行了表征,探讨了热处理温度对釉层微观形貌与结构的影响。以甲醛为目标降解物,考察了釉层不同热处理温度下电气石/硅藻土基内墙砖对甲醛去除效果的影响。结果表明:随着热处理温度的提高,硅藻土原始孔洞减少,比表面积和孔隙率下降,电气石结构发生变化。850℃时材料的表面结构稍有破坏,强度较高,对甲醛的去除效果较好,1 m3的环境舱内,300 min甲醛去除率达到73.6%;升温至950℃及以上,硅藻土和电气石结构遭到破坏,材料对甲醛的吸附和降解能力下降。 展开更多
关键词 硅藻土基多孔陶瓷 电气石 硅藻土基内墙砖 釉层 热处理温度 甲醛 吸附与降解
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