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Effects of pyrolysis temperature, time and leaf litter and powder coal ash addition
on sludge-derived adsorbents for nitrogen oxide
Xiaoli Ren Baohong Liang, Min Liu, Xiaoyuan Xu, Meihua Cui
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²»¶Ô£¬ÓÖ²éÁËһϠEffects of pyrolysis temperature, time and leaf litter and powder coal ash addition on sludge-derived adsorbents for nitrogen oxide.
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Effects of pyrolysis temperature, time and leaf litter and powder coal ash addition on sludge-derived adsorbents for nitrogen oxide.
×÷Õß: Ren, Xiaoli; Liang, Baohong; Liu, Min; Xu, Xiaoyuan; Cui, Meihua
À´Ô´³ö°æÎï: Bioresource technology  ¾í: 125   Ò³: 300-4   DOI: 10.1016/j.biortech.2012.08.123   ³ö°æÄê: 2012-Dec (Epub 2012 Sep 07)
[ PubMed Ïà¹ØÂÛÎÄ]
ÕªÒª: The objective of this research was to seek a cost effective solution to prepare adsorbents for nitrogen oxide from surplus sludge. Leaf litter and powder coal ash were used as cheap and easily available additives. An adsorbent for nitrogen oxide was prepared by pyrolysis of dried sludge mixed with zinc chloride. Under optimum pyrolysis conditions of 375¡ãC for 90min and a zinc chloride content of 30%, the surface area of the adsorbent with leaf litter was 514.41m(2)/g, the surface area of the adsorbent with powder coal ash was 432.34m(2)/g, respectively, corresponding to an increase of 90.70% and 60.27% when compared to the adsorbent without the additives. The saturated adsorption quantity of the adsorbent with leaf litter reached 271mg/g at 20¡ãC. The results indicated that the sludge-derived adsorbent was quite promising for nitrogen oxide removal. Copyright 2012 Elsevier Ltd. All rights reserved.
PubMed ID: 23063747
ÎÄÏ×ÀàÐÍ: Journal Article
ÓïÖÖ: English
µØÖ·: Department of Environmental and Safety Engineering, Taiyuan Institute of Technology, Taiyuan 030008, PR China. Electronic address: renxiaoli4915@126.com.
·ÖÖ÷Ìâ×Ó¿â: Index Medicus
ISSN: 1873-2976
NLM Ψһ ID: 9889523
¹ú¼Ò/µØÇø: England
״̬: In-Data-Review
´´½¨ÈÕÆÚ: 07 Nov 2012
µç×Ó³ö°æ: 07 Sep 2012
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