Literature DB >> 25150468

Biochar produced from oak sawdust by Lanthanum (La)-involved pyrolysis for adsorption of ammonium (NH4(+)), nitrate (NO3(-)), and phosphate (PO4(3-)).

Zhanghong Wang1, Haiyan Guo1, Fei Shen2, Gang Yang3, Yanzong Zhang3, Yongmei Zeng4, Lilin Wang3, Hong Xiao3, Shihuai Deng1.   

Abstract

A series of biochars were prepared by pyrolyzing oak sawdust with/without LaCl3 involvement at temperature of 300-600 °C, and approximate and ultimate analyses were carried out to check their basic characteristics. Meanwhile, the releases of readily soluble NH4(+), NO3(-) and PO4(3-) from biochars and the adsorption of NH4(+), NO3(-) and PO4(3-) by biochars were investigated. Results indicated that the involvement of LaCl3 in pyrolysis could advance the temperature of maximum mass loss by 10 °C compared with oak sawdust (CK), and potentially promoted biochar yield. Overall, the releases of readily soluble NH4(+), NO3(-) and PO4(3-) from biochars were negatively related to pyrolysis temperature, and the releases were greatly weakened by La-biochars. Additionally, the adsorption to NH4(+) can be promoted by the biochars produced at low temperature. On the contrary, the NO3(-) adsorption can be improved by increasing pyrolysis temperature. The highest PO4(3-) adsorption was achieved by the biochars produced at 500 °C. According to the results of adsorption isotherms, the maximum adsorption capacity of NH4(+), NO3(-) and PO4(3-) can be significantly promoted by 1.9, 11.2, and 4.5 folds using La-biochars. Based on the observations of FT-IR, SEM-EDS, and surface functional groups, the improvement of NH4(+) adsorption was potentially associated with the existing acidic function groups (phenolic-OH and carboxyl C=O). The increased basic functional groups on La-biochars were beneficial to improve NO3(-) and PO4(3-) adsorption. Besides, PO4(3-) adsorption was also potentially related to the formed La2O3.
Copyright © 2014 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Biochar; Lanthanum; N & P adsorption; Pyrolytic temperature

Mesh:

Substances:

Year:  2014        PMID: 25150468     DOI: 10.1016/j.chemosphere.2014.07.084

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  21 in total

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6.  Adsorption of ammonium in aqueous solutions by pine sawdust and wheat straw biochars.

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8.  Enhanced removal of phosphate and ammonium by MgO-biochar composites with NH3·H2O hydrolysis pretreatment.

Authors:  Ran Xiao; Han Zhang; Zhineng Tu; Ronghua Li; Songling Li; Zhongyang Xu; Zengqiang Zhang
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9.  A comparative study on phosphate removal from water using Phragmites australis biochars loaded with different metal oxides.

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10.  Emissions intensity and carbon stocks of a tropical Ultisol after amendment with Tithonia green manure, urea and biochar.

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Journal:  Field Crops Res       Date:  2017-08-01       Impact factor: 5.224

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