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Material to which functional material is attached and its manufacturing method, water purifier and its manufacturing method, water purifier cartridge and its manufacturing method, air cleaner and its manufacturing method, filter member and its manufacturing method, support member and its manufacturing method, Polyurethane foam and its manufacturing method, bottle and its manufacturing method, container and its manufacturing method, member consisting of cap or lid and its manufacturing method, solidified porous carbon material or crushed product of said porous carbon material Material consistin
专利权人:
ソニー株式会社
发明人:
山ノ井 俊,田畑 誠一郎,飯田 広範
申请号:
JP2020077155
公开号:
JP2020124710A
申请日:
2020.04.24
申请国别(地区):
JP
年份:
2020
代理人:
摘要:
PROBLEM TO BE SOLVED: To provide a material in which a functional material is attached to a porous carbon material which is less likely to cause problems in transportation and handling of raw materials and porous carbon materials, treatment of carbonization, and treatment with acid or alkali. The material of the present disclosure is a solidified porous carbon material or a material obtained by adhering a functional material to a pulverized product of the porous carbon material, and the porous carbon material is a plant-derived material. The bulk density of the solidified porous carbon material is 0.2 g/cm3 to 0.4 g/cm3, and the pores based on the mercury intrusion method of the solidified porous carbon material The cumulative pore volume value in the size range of 0.05 μm to 5 μm is 0.4 cm 3 to 1.2 cm 3 per gram, and the pore volume value of the solidified porous carbon material based on the MP method is It is 0.04 cm3 to 0.09 cm3 per cm3. [Selection diagram]【課題】原料や多孔質炭素材料の輸送やハンドリング、炭素化の処理、酸又はアルカリでの処理に問題が生じ難い多孔質炭素材料に機能性材料が付着された材料を提供する。【解決手段】本開示の材料は、固形化された多孔質炭素材料又は該多孔質炭素材料の粉砕品に機能性材料が付着された材料であって、多孔質炭素材料は、植物由来の材料を原料としており、固形化された多孔質炭素材料の嵩密度は、0.2グラム/cm3乃至0.4グラム/cm3であり、固形化された多孔質炭素材料の水銀圧入法に基づく細孔サイズ0.05μm乃至5μmの範囲における累積細孔容積の値は、1グラム当たり0.4cm3乃至1.2cm3であり、固形化された多孔質炭素材料のMP法に基づく細孔容積の値は、1cm3当たり0.04cm3乃至0.09cm3である。【選択図】 図1
来源网站:
中国工程科技知识中心
来源网址:
http://www.ckcest.cn/home/

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