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Adsorption Of Naphthalene From Aqueous Solution On Activated Carbons Obtained From Bean Pods

机译:豆荚制活性炭对水溶液中萘的吸附

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The preparation of activated carbons from bean pods waste by chemical (K_2CO_3) and physical (water vapor) activation was investigated. The carbon prepared by chemical activation presented a more developed porous structure (surface area 1580 m~2 g~(-1) and pore volume 0.809 cm~3 g~(-1)) than the one obtained by water vapor activation (258 m~2 g~(-1) and 0.206 cm~3 g~(-1)). These carbons were explored as adsorbents for the adsorption of naphthalene from water solutions at low concentration and room temperature and their properties are compared with those of commercial activated carbons. Naphthalene adsorption on the carbons obtained from agricultural waste was stronger than that of carbon adsorbents reported in the literature. This seems to be due to the presence of large amounts of basic groups on the bean-pod-based carbons. The adsorption capacity evaluated from Freundlich equation was found to depend on both the textural and chemical properties of the carbons. Naphthalene uptake on biomass-derived carbons was 300 and 85 mg g~(-1) for the carbon prepared by chemical and physical activation, respectively. Moreover, when the uptake is normalized per unit area of adsorbent, the least porous carbon displays enhanced naphthalene removal. The results suggest an important role of the carbon composition including mineral matter in naphthalene retention. This issue remains under investigation.
机译:研究了通过化学(K_2CO_3)和物理(水蒸气)活化从豆荚废料中制备活性炭的方法。化学活化的碳比水蒸气活化的碳(258 m)具有更发达的多孔结构(表面积1580 m〜2 g〜(-1)和孔容0.809 cm〜3 g〜(-1))。 〜2 g〜(-1)和0.206 cm〜3 g〜(-1))。研究了这些碳作为在低浓度和室温下从水溶液中吸附萘的吸附剂,并将其性质与市售活性炭进行了比较。从农业废弃物中获得的碳对萘的吸附作用强于文献中报道的碳吸附剂。这似乎是由于豆荚型碳上存在大量碱性基团所致。从弗氏方程评估的吸附能力被发现取决于碳的质地和化学性质。通过化学活化和物理活化制备的碳中,萘在生物质衍生的碳上的摄取量分别为300和85 mg g〜(-1)。此外,当将吸附剂的每单位面积吸收量归一化时,最不多孔的碳显示出提高的萘去除率。结果表明包括矿物物质在内的碳组合物在萘保留中的重要作用。此问题仍在调查中。

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