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Production and characterization of activated carbons from pumpkin seed shell by chemical activation with ZnCl sub(2)
In this study, an activated carbon with high surface area was prepared from pumpkin seed shell by chemical activation with ZnCl sub(2). The effects of impregnation ratio (IR) and activation temperature on the pore structure of the activated carbon were investigated. The activation temperatures and I...
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Published in: | Desalination and water treatment 2016-02, Vol.57 (6), p.2446-2454 |
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container_title | Desalination and water treatment |
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creator | Demiral, Ilknur Aydin Samdan, Canan Demiral, Hakan |
description | In this study, an activated carbon with high surface area was prepared from pumpkin seed shell by chemical activation with ZnCl sub(2). The effects of impregnation ratio (IR) and activation temperature on the pore structure of the activated carbon were investigated. The activation temperatures and IRs were in the range of 400-600 degree C and 1:1-4:1, respectively. The chemical and physical properties of the obtained activated carbons were determined. Elemental analysis was applied to determine the C, H, N, and O contents, and Fourier transform infrared spectrophotometry was used to analyze the functional groups. The surface area, pore volumes, pore size distribution, and average pore diameter of the activated carbons were characterized by N sub(2) adsorption at 77 K using the Brunauer-Emmett-Teller (BET), t-plot, and density functional theory methods. The surface morphologies of the pumpkin seed shell and the activated carbon were investigated by scanning electron microscope. The highest BET surface area and total pore volume of the activated carbon were obtained as 1,564 m super(2)/g and 0.965 cm super(3)/g, respectively, at 500 degree C and with an IR of 3:1. According to the experimental results, pumpkin seed shell is a suitable raw material for activated carbon production. |
doi_str_mv | 10.1080/19443994.2015.1027276 |
format | article |
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The effects of impregnation ratio (IR) and activation temperature on the pore structure of the activated carbon were investigated. The activation temperatures and IRs were in the range of 400-600 degree C and 1:1-4:1, respectively. The chemical and physical properties of the obtained activated carbons were determined. Elemental analysis was applied to determine the C, H, N, and O contents, and Fourier transform infrared spectrophotometry was used to analyze the functional groups. The surface area, pore volumes, pore size distribution, and average pore diameter of the activated carbons were characterized by N sub(2) adsorption at 77 K using the Brunauer-Emmett-Teller (BET), t-plot, and density functional theory methods. The surface morphologies of the pumpkin seed shell and the activated carbon were investigated by scanning electron microscope. The highest BET surface area and total pore volume of the activated carbon were obtained as 1,564 m super(2)/g and 0.965 cm super(3)/g, respectively, at 500 degree C and with an IR of 3:1. 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The effects of impregnation ratio (IR) and activation temperature on the pore structure of the activated carbon were investigated. The activation temperatures and IRs were in the range of 400-600 degree C and 1:1-4:1, respectively. The chemical and physical properties of the obtained activated carbons were determined. Elemental analysis was applied to determine the C, H, N, and O contents, and Fourier transform infrared spectrophotometry was used to analyze the functional groups. The surface area, pore volumes, pore size distribution, and average pore diameter of the activated carbons were characterized by N sub(2) adsorption at 77 K using the Brunauer-Emmett-Teller (BET), t-plot, and density functional theory methods. The surface morphologies of the pumpkin seed shell and the activated carbon were investigated by scanning electron microscope. The highest BET surface area and total pore volume of the activated carbon were obtained as 1,564 m super(2)/g and 0.965 cm super(3)/g, respectively, at 500 degree C and with an IR of 3:1. According to the experimental results, pumpkin seed shell is a suitable raw material for activated carbon production.</description><subject>Activated carbon</subject><subject>Activation</subject><subject>Activation analysis</subject><subject>Porosity</subject><subject>Pumpkins</subject><subject>Seeds</subject><subject>Surface area</subject><subject>Surface chemistry</subject><issn>1944-3994</issn><issn>1944-3986</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2016</creationdate><recordtype>article</recordtype><recordid>eNqNjslOwzAQhi0EElXpIyD5WA4pXsbbEVVsEhIceuJSOYmtGpI4xAkInh6X7cxcZub_Z74ZhE4pWVGiyTk1ANwYWDFCRZaYYkoeoNleL7jR8vCvNnCMFik9kRwClAA2Q-PDEOupGkPssO1qXO3sYKvRDeHDfonR49yHVzu67NqhjF3Cfogt7qe2fw4dTi47aeeaBpfvGeDaUNnmd2vPeAvjDj926wanqVyysxN05G2T3OInz9Hm6nKzvinu7q9v1xd3RS-lKUogNeFQU1556kRpa1AgNPUGVK2J0cQzLq2j1GhrgYOomLBGau1L7qXic7T8xvZDfJlcGrdtSFX-03YuTmlLlZZUAkjzj1GZbxmlgH8C_eFu4g</recordid><startdate>20160201</startdate><enddate>20160201</enddate><creator>Demiral, Ilknur</creator><creator>Aydin Samdan, Canan</creator><creator>Demiral, Hakan</creator><scope>7QH</scope><scope>7ST</scope><scope>7UA</scope><scope>C1K</scope><scope>F1W</scope><scope>H97</scope><scope>L.G</scope><scope>SOI</scope><scope>8FD</scope><scope>FR3</scope><scope>KR7</scope></search><sort><creationdate>20160201</creationdate><title>Production and characterization of activated carbons from pumpkin seed shell by chemical activation with ZnCl sub(2)</title><author>Demiral, Ilknur ; Aydin Samdan, Canan ; Demiral, Hakan</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-p669-b40d034d13cf1e5bad474581f947d80980f236ae1198aa4345c25a9688fb3f673</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2016</creationdate><topic>Activated carbon</topic><topic>Activation</topic><topic>Activation analysis</topic><topic>Porosity</topic><topic>Pumpkins</topic><topic>Seeds</topic><topic>Surface area</topic><topic>Surface chemistry</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Demiral, Ilknur</creatorcontrib><creatorcontrib>Aydin Samdan, Canan</creatorcontrib><creatorcontrib>Demiral, Hakan</creatorcontrib><collection>Aqualine</collection><collection>Environment Abstracts</collection><collection>Water Resources Abstracts</collection><collection>Environmental Sciences and Pollution Management</collection><collection>ASFA: Aquatic Sciences and Fisheries Abstracts</collection><collection>Aquatic Science & Fisheries Abstracts (ASFA) 3: Aquatic Pollution & Environmental Quality</collection><collection>Aquatic Science & Fisheries Abstracts (ASFA) Professional</collection><collection>Environment Abstracts</collection><collection>Technology Research Database</collection><collection>Engineering Research Database</collection><collection>Civil Engineering Abstracts</collection><jtitle>Desalination and water treatment</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Demiral, Ilknur</au><au>Aydin Samdan, Canan</au><au>Demiral, Hakan</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Production and characterization of activated carbons from pumpkin seed shell by chemical activation with ZnCl sub(2)</atitle><jtitle>Desalination and water treatment</jtitle><date>2016-02-01</date><risdate>2016</risdate><volume>57</volume><issue>6</issue><spage>2446</spage><epage>2454</epage><pages>2446-2454</pages><issn>1944-3994</issn><eissn>1944-3986</eissn><abstract>In this study, an activated carbon with high surface area was prepared from pumpkin seed shell by chemical activation with ZnCl sub(2). The effects of impregnation ratio (IR) and activation temperature on the pore structure of the activated carbon were investigated. The activation temperatures and IRs were in the range of 400-600 degree C and 1:1-4:1, respectively. The chemical and physical properties of the obtained activated carbons were determined. Elemental analysis was applied to determine the C, H, N, and O contents, and Fourier transform infrared spectrophotometry was used to analyze the functional groups. The surface area, pore volumes, pore size distribution, and average pore diameter of the activated carbons were characterized by N sub(2) adsorption at 77 K using the Brunauer-Emmett-Teller (BET), t-plot, and density functional theory methods. The surface morphologies of the pumpkin seed shell and the activated carbon were investigated by scanning electron microscope. The highest BET surface area and total pore volume of the activated carbon were obtained as 1,564 m super(2)/g and 0.965 cm super(3)/g, respectively, at 500 degree C and with an IR of 3:1. According to the experimental results, pumpkin seed shell is a suitable raw material for activated carbon production.</abstract><doi>10.1080/19443994.2015.1027276</doi><tpages>9</tpages></addata></record> |
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source | ScienceDirect |
subjects | Activated carbon Activation Activation analysis Porosity Pumpkins Seeds Surface area Surface chemistry |
title | Production and characterization of activated carbons from pumpkin seed shell by chemical activation with ZnCl sub(2) |
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