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特殊鋼渣超微粉改性廢棄核桃殼制備鋼渣基生物質活性炭及其吸收氯氣的性能

Chlorine gas absorption performance of steel-slag-based biomass-activated carbon prepared via modified discarded walnut shell

  • 摘要: 以特殊鋼渣超微粉與廢棄核桃殼為研究對象,利用特殊鋼渣超微粉的化學成分對廢棄核桃殼進行改性處理制備鋼渣基生物質活性炭。研究廢棄核桃殼超微粉與特殊鋼渣超微粉的質量比、特殊鋼渣超微粉細度和吸附環境溫度對鋼渣基生物質活性炭吸收氯氣性能的影響。結果表明:廢棄核桃殼超微粉與特殊鋼渣超微粉的質量比為100∶6,特殊鋼渣超微粉的細度為600目,吸附環境溫度為30 ℃時鋼渣基生物質活性炭吸收氯氣性能較好。特殊鋼渣超微粉中Fe2O3具有磁性有利于氯氣在鋼渣基生物質活性炭表面形成富集,提高其吸附能力,CuO和MnO具有催化性可以協助促進鋼渣基生物質活性炭的吸附能力。特殊鋼渣超微粉細度過大,會造成小粒徑顆粒團聚,從而影響鋼渣基生物質活性炭對氯氣的吸附能力進一步提高;在特殊鋼渣超微粉粒徑較小時,均勻性較好的特殊鋼渣超微粉對提高鋼渣基生物質活性炭吸附氯氣較小。較高的吸附環境溫度可能導致鋼渣基生物質活性炭對氯氣出現解析現象;同時鋼渣基生物質活性炭表面沒有出現特殊鋼渣超微粉團聚與沉積的現象,具有層狀結構特征,為吸附氯氣提供了空間。

     

    Abstract: Discarded walnut shells were modified by the chemical composition of special steel slag ultrafine powder to obtain steel-slag-based biomass-activated carbon. The influences of the mass ratio of discarded walnut shell ultrafine powder and special steel slag ultrafine powder, the fineness of special steel slag ultrafine powder, and adsorption ambient temperature on the absorbed chlorine gas performance of steel-slag-based biomass-activated carbon were studied. Results show good chlorine gas absorption performance when the mass ratio of discarded walnut shell ultrafine powder and special steel slag ultrafine powder is 100∶6, the fineness of special steel slag ultrafine powder is 600 mesh, and adsorption ambient temperature is 30 ℃. The magnetic property of Fe2O3 in special steel slag ultrafine powder is conducive to the formation and enrichment of chlorine gas on the surface of steel-slag-based biomass-activated carbon, improving its absorption performance. Catalytic performance of CuO and MnO helps promote the absorbing performance of steel-slag-based biomass-activated carbon. When the fineness of special steel slag ultrafine powder is excessively large, agglomeration of small particle size occurs and affects the adsorption capacity of steel-slag-based biomass-activated carbon to chlorine gas. When the particle size of special steel slag ultrafine powder is small, the special steel slag ultrafine powder with good uniformity is less effective in improving the adsorption of chlorine on the steel-slag-based biomass-activated carbon. The higher adsorption ambient temperature may lead to the analytical phenomenon of chlorine gas from steel-slag-based biomass-activated carbon. Moreover, no superfine agglomeration and deposition of special steel slag ultrafine powder on the surface of steel-slag-based biomass-activated carbon are observed. The obtained carbon exhibits the layered structure characteristics and provides space for chlorine gas adsorption.

     

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