Literature DB >> 24191483

Phosphorus removal from aqueous solutions using a synthesized adsorbent prepared from mineralized refuse and sewage sludge.

Kaining Chen1, Keqiang Zhao, Houhu Zhang, Qinfang Sun, Zhilin Wu, Yongmin Zhou, Yongchao Zhong, Fan Ke.   

Abstract

Mineralized refuse and sewage sludge generated from solid waste from municipal landfills and sewage treatment plants were sintered as a cost-effective adsorbent for the removal of phosphorus. Compared with the Freundlich model, phosphorus adsorption on the synthesized adsorbent, zeolite and ironstone was best described by the Langmuir model. Based on the Langmuir model, the maximum adsorption capacity of the synthesized adsorbent (9718 mg kg(-1)) was 13.7 and 25.4 times greater than those of zeolite and ironstone, respectively. The desorbability of phosphorus from the synthesized adsorbent was significantly lower than that of zeolite. Moreover, phosphorus removal using the synthesized adsorbent was more tolerant to pH fluctuations than zeolite and ironstone for the removal of phosphorus from aqueous solutions. The immobilization of phosphorus onto the synthesized adsorbent was attributed to the formation of insoluble calcium, aluminium and iron phosphorus. The heavy metal ion concentrations of the leachate of the synthesized adsorbent were negligible. The synthesized adsorbent prepared from mineralized refuse and sewage sludge was cost-effective and possessed a high adsorptive capacity for phosphorus removal from aqueous solutions.

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Year:  2013        PMID: 24191483     DOI: 10.1080/09593330.2012.758659

Source DB:  PubMed          Journal:  Environ Technol        ISSN: 0959-3330            Impact factor:   3.247


  2 in total

1.  Study on the adsorption of nitrogen and phosphorus from biogas slurry by NaCl-modified zeolite.

Authors:  Qunpeng Cheng; Hongxia Li; Yilu Xu; Song Chen; Yuhua Liao; Fang Deng; Jianfen Li
Journal:  PLoS One       Date:  2017-05-19       Impact factor: 3.240

2.  Preparation of Sorbents Containing Straetlingite Phase from Zeolitic By-Product and Their Performance for Ammonium Ion Removal.

Authors:  Agnė Mikelionienė; Danutė Vaičiukynienė; Aras Kantautas; Algirdas Radzevičius; Katarzyna Zarębska
Journal:  Molecules       Date:  2021-05-19       Impact factor: 4.411

  2 in total

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