Free Standard AU & NZ Shipping For All Book Orders Over $80!
Register      Login
Soil Research Soil Research Society
Soil, land care and environmental research
RESEARCH ARTICLE

Sample pre-treatment and the determination of some chemical properties of acid sulfate soil materials

Crystal A. Maher A B , Leigh A. Sullivan A and Nicholas J. Ward A
+ Author Affiliations
- Author Affiliations

A Centre for Acid Sulfate Soil Research, Southern Cross University, Lismore, NSW 2480, Australia.

B Corresponding author; email: cmaher@scu.edu.au

Australian Journal of Soil Research 42(6) 667-670 https://doi.org/10.1071/SR03070
Submitted: 16 May 2003  Accepted: 18 August 2004   Published: 17 September 2004

Abstract

This study provides a systematic analysis of the effect of common acid sulfate soil (ASS) sample pre-treatments (namely freezing, oven drying, and grinding) on chromium-reducible sulfur (SCR) and water-soluble sulfate determinations. The results show that oven drying and hand grinding of the samples prior to analysis resulted in a decrease in SCR (i.e. up to 20% compared to those of frozen samples). This lower SCR value was partly due to the oxidation of sulfides in the oven. For oven-dried ASS materials, more intensive grinding in a ring mill increased SCR values, most likely by abrading coatings from pyrite grains. For oven-dried mineral ASS materials the highest SCR values were obtained with 1 min of ring mill grinding, but for soils with appreciable organic matter (such as peat), 5 min of ring mill grinding gave the highest values. The results indicate that for some ASS materials, oven drying, regardless of the ensuing grinding procedure, results in underestimated SCR values. This study also demonstrates that an artifact of oven drying ASS materials can be greatly increased water-soluble sulfate contents.

Additional keywords: chromium-reducible sulfur, water-soluble sulfate, grinding, freezing, drying, reduced inorganic sulfur.


References


Ahern CR, McElnea AE, Hicks W, Baker DE (1996) A combined routine peroxide method for analysing acid sulfate soils. ‘Proceedings 2nd National Conference on Acid Sulfate Soils’. (Robert J. Smith and Associates/ASSMAC: Australia)


Bush RT, Sullivan LA (1999) Pyrite micromorphology in three Australian Holocene sediments. Australian Journal of Soil Research 37, 301–317. open url image1

Dent DL (2000) An international perspective. ‘Acid sulfate soils: environmental issues, assessment and management.’ Technical papers.,(Eds CR Ahern, KM Hey, KM Watling, VJ Eldershaw) pp. 12–11. (Queensland Department of Natural Resources: Brisbane)

McElnea AE, Ahern CR, Menzies NW (2002) Improvements to peroxide oxidation methods for analysing sulfur in acid sulfate soils. Australian Journal of Soil Research 40, 1115–1132.
Crossref | GoogleScholarGoogle Scholar | open url image1

Rosicky MA, Sullivan LA, Slavich PG (2002) Pyrite concentration and surface reformation in and around acid sulfate soil scalds on the NSW coast. ‘Proceedings 5th International Acid Sulfate Soil Conference’. Tweed Heads, NSW..


Sammut, J ,  and  Lines-Kelly, R (2000). ‘An introduction to acid sulfate soils.’ 2nd edn . (Environment Australia, Natural Heritage Trust, Coastal Acid Sulfate Soils Program and Agriculture, Fisheries and Forestry: NSW)

Stone, Y , Ahern, CR ,  and  Blunden, B (1998). ‘Acid sulfate soils manual.’ (Acid Sulfate Soil Management Advisory Committee: Wollongbar, NSW)

Sullivan LA, Bush RT, McConchie D (2000) A modified chromium reducible sulfur method for reduced inorganic sulfur: optimum reaction time for acid sulfate soils. Australian Journal of Soil Research 38, 729–734. open url image1

Sullivan LA, Bush RT, McConchie D, Lancaster G, Haskins PG, Clark MW (1999) Comparison of peroxide oxidisable sulfur and chromium reducible sulfur methods for determination of reduced inorganic sulfur in soil. Australian Journal of Soil Research 37, 255–265. open url image1

Sullivan LA, Ward NJ, Bush RT (2001) Chemical analysis for acid sulfate soil management. ‘Environmental geotechnics. Proceedings of the 2nd Australia and New Zealand Conference on Environmental Geotechnics’. (Ed.  D Smith , S Fityus , M Allman , VJ Eldershaw ) (Australian Geomechanics Society Incorporated: Newcastle, NSW)


Sundström R, Anström M, Österholm P (2002) Comparison of the metal content in acid sulfate soil runoff and industrial effluents in Finland. Environmental Science and Technology 36, 4269–4272.
Crossref | GoogleScholarGoogle Scholar | PubMed | open url image1

Ward NJ, Sullivan LA, Bush RT (2002) Sulfide oxidation and acidification of acid sulfate soil materials treated with CaCO3 and seawater-neutralised bauxite refinery residue. Australian Journal of Soil Research 40, 1057–1067.
Crossref | GoogleScholarGoogle Scholar | open url image1