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Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent
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Zeitschriftentitel: | Advanced Materials Research |
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Personen und Körperschaften: | , |
In: | Advanced Materials Research, 803, 2013, S. 127-130 |
Format: | E-Article |
Sprache: | Unbestimmt |
veröffentlicht: |
Trans Tech Publications, Ltd.
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Schlagwörter: |
author_facet |
Yuan, Xiao Li Xia, Wen Tang Yuan, Xiao Li Xia, Wen Tang |
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author |
Yuan, Xiao Li Xia, Wen Tang |
spellingShingle |
Yuan, Xiao Li Xia, Wen Tang Advanced Materials Research Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent General Engineering |
author_sort |
yuan, xiao li |
spelling |
Yuan, Xiao Li Xia, Wen Tang 1662-8985 Trans Tech Publications, Ltd. General Engineering http://dx.doi.org/10.4028/www.scientific.net/amr.803.127 <jats:p>Low grade ore iron with high phosphorus(LGIOWHP), an industrial solid waste is used as an adsorbent to remove phosphate anions from wastewater. The effects of initial pH, stirring speed, reaction time, reaction temperature and adsorbent dosage on the phosphate removal rate were investigated. The results show that the phosphate removal rate exceed 99% under the optimal conditions. After phosphate removal reaction, the phosphate concentrations completely meet the requirement of national discharge standards of the second category pollution (GB 8978- 1996).</jats:p> Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent Advanced Materials Research |
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2013 |
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Trans Tech Publications, Ltd. |
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Advanced Materials Research |
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title |
Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_unstemmed |
Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_full |
Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_fullStr |
Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_full_unstemmed |
Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_short |
Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_sort |
removal of phosphate anions from wastewater by wasted low grade iron ore with high phosphorus adsorbent |
topic |
General Engineering |
url |
http://dx.doi.org/10.4028/www.scientific.net/amr.803.127 |
publishDate |
2013 |
physical |
127-130 |
description |
<jats:p>Low grade ore iron with high phosphorus(LGIOWHP), an industrial solid waste is used as an adsorbent to remove phosphate anions from wastewater. The effects of initial pH, stirring speed, reaction time, reaction temperature and adsorbent dosage on the phosphate removal rate were investigated. The results show that the phosphate removal rate exceed 99% under the optimal conditions. After phosphate removal reaction, the phosphate concentrations completely meet the requirement of national discharge standards of the second category pollution (GB 8978- 1996).</jats:p> |
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author | Yuan, Xiao Li, Xia, Wen Tang |
author_facet | Yuan, Xiao Li, Xia, Wen Tang, Yuan, Xiao Li, Xia, Wen Tang |
author_sort | yuan, xiao li |
container_start_page | 127 |
container_title | Advanced Materials Research |
container_volume | 803 |
description | <jats:p>Low grade ore iron with high phosphorus(LGIOWHP), an industrial solid waste is used as an adsorbent to remove phosphate anions from wastewater. The effects of initial pH, stirring speed, reaction time, reaction temperature and adsorbent dosage on the phosphate removal rate were investigated. The results show that the phosphate removal rate exceed 99% under the optimal conditions. After phosphate removal reaction, the phosphate concentrations completely meet the requirement of national discharge standards of the second category pollution (GB 8978- 1996).</jats:p> |
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physical | 127-130 |
publishDate | 2013 |
publishDateSort | 2013 |
publisher | Trans Tech Publications, Ltd. |
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series | Advanced Materials Research |
source_id | 49 |
spelling | Yuan, Xiao Li Xia, Wen Tang 1662-8985 Trans Tech Publications, Ltd. General Engineering http://dx.doi.org/10.4028/www.scientific.net/amr.803.127 <jats:p>Low grade ore iron with high phosphorus(LGIOWHP), an industrial solid waste is used as an adsorbent to remove phosphate anions from wastewater. The effects of initial pH, stirring speed, reaction time, reaction temperature and adsorbent dosage on the phosphate removal rate were investigated. The results show that the phosphate removal rate exceed 99% under the optimal conditions. After phosphate removal reaction, the phosphate concentrations completely meet the requirement of national discharge standards of the second category pollution (GB 8978- 1996).</jats:p> Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent Advanced Materials Research |
spellingShingle | Yuan, Xiao Li, Xia, Wen Tang, Advanced Materials Research, Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent, General Engineering |
title | Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_full | Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_fullStr | Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_full_unstemmed | Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_short | Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
title_sort | removal of phosphate anions from wastewater by wasted low grade iron ore with high phosphorus adsorbent |
title_unstemmed | Removal of Phosphate Anions from Wastewater by Wasted Low Grade Iron Ore with High Phosphorus Adsorbent |
topic | General Engineering |
url | http://dx.doi.org/10.4028/www.scientific.net/amr.803.127 |