Literature DB >> 16239021

Effect of pH, competitive anions and NOM on the leaching of arsenic from solid residuals.

Amlan Ghosh1, A Eduardo Sáez, Wendell Ela.   

Abstract

Implementation of the new arsenic MCL in 2006 will lead to the generation of an estimated 6 million pounds of arsenic-bearing solid residuals (ABSRs) every year, which will be disposed predominantly in non-hazardous landfills. The Toxicity Characteristic Leaching Procedure (TCLP) is typically used to assess whether a waste is hazardous and most solid residuals pass the TCLP. However, recent research shows the TCLP significantly underestimates arsenic mobilization in landfills. A variety of compositional dissimilarities between landfill leachates and the TCLP extractant solution likely play a role. Among the abiotic factors likely to play a key role in arsenic remobilization/leaching from solid sorbents are pH, and the concentrations of natural organic matter (NOM) and anions like phosphate, bicarbonate, sulfate and silicate. This study evaluates the desorption of arsenic from actual treatment sorbents, activated alumina (AA) and granular ferric hydroxide (GFH), which are representative of those predicted for use in arsenic removal processes, and as a function of the specific range of pH and concentrations of the competitive anions and NOM found in landfills. The influence of pH is much more significant than that of competing anions or NOM. An increase in one unit of pH may increase the fraction of arsenic leached by 3-4 times. NOM and phosphate replace arsenic from sorbent surface sites up to three orders of magnitude more than bicarbonate, sulfate and silicate, on a per mole basis. Effects of anions are neither additive nor purely competitive. Leaching tests, which compare the fraction of arsenic mobilized by the TCLP vis-a-vis an actual or more realistic synthetic landfill leachate, indicate that higher pH, and greater concentrations of anions and NOM are all factors, but of varying significance, in causing higher extraction in landfill and synthetic leachates than the TCLP.

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Year:  2005        PMID: 16239021     DOI: 10.1016/j.scitotenv.2005.06.018

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  6 in total

1.  Leaching of arsenic from granular ferric hydroxide residuals under mature landfill conditions.

Authors:  Amlan Ghosh; Muhammed Mukiibi; A Eduardo Sáez; Wendell P Ela
Journal:  Environ Sci Technol       Date:  2006-10-01       Impact factor: 9.028

2.  Enhanced adsorption of arsenic through the oxidative treatment of reduced aquifer solids.

Authors:  Jenna R Huling; Scott G Huling; Ralph Ludwig
Journal:  Water Res       Date:  2017-06-22       Impact factor: 11.236

3.  Adsorption of Sb(III) and Sb(V) on Freshly Prepared Ferric Hydroxide (FeOxHy).

Authors:  Zan He; Ruiping Liu; Huijuan Liu; Jiuhui Qu
Journal:  Environ Eng Sci       Date:  2015-02-01       Impact factor: 1.907

4.  Evaluating the Mobility of Arsenic in Synthetic Iron-containing Solids Using a Modified Sequential Extraction Method.

Authors:  Jilei Shan; A Eduardo Sáez; Wendell P Ela
Journal:  J Environ Eng (New York)       Date:  2010-02       Impact factor: 1.860

5.  Microscale speciation of arsenic and iron in ferric-based sorbents subjected to simulated landfill conditions.

Authors:  Robert A Root; Sahar Fathordoobadi; Fernando Alday; Wendell Ela; Jon Chorover
Journal:  Environ Sci Technol       Date:  2013-10-30       Impact factor: 9.028

6.  Meeting report: threats to human health and environmental sustainability in the pacific basin.

Authors:  Robert G Arnold; David O Carpenter; Donald Kirk; David Koh; Margaret-Ann Armour; Mariano Cebrian; Luis Cifuentes; Mahmood Khwaja; Bo Ling; Irma Makalinao; César Paz-Y-Miño; Genandrialine Peralta; Rajendra Prasad; Kirpal Singh; Peter Sly; Chiharu Tohyama; Alistair Woodward; Baoshan Zheng; Todd Maiden
Journal:  Environ Health Perspect       Date:  2007-12       Impact factor: 9.031

  6 in total

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