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The cumulative ash curve: a best tool to evaluate complete mill performance

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Abstract

Slick test is carried out by a flour miller to qualitatively segregate the flour from different streams in a roller flour mill. This test is done manually by pressing flour samples on tray using thin bladed paddle (the slick) and inspecting color or dress of the sample. However, the test is subjective and totally depends on human judgment. Cumulative ash curve relates to cumulative flour ash content and cumulative flour yield, which could help a flour miller to be more precise while selecting flour streams for different needs. In this study, cleaning and conditioning of wheat was carried out in the pilot plant of International School of Milling Technology (ISMT). Further, roller flour milling of wheat was done. Flour from different streams (four breaks, five reductions) was collected. Each flour stream was analyzed for ash content using standard AACC methods. The analytical values of ash content were used to plot the cumulative ash curve. It was found that ash content increased in the break passages from first to last break, with exception of first break (ash content 0.71%). An increase in percentage of ash was observed in the reduction passages (C1 to C5), however, C3 ash (0.76%) was slightly higher than that of C4 (0.65%). Higher yield of flour with minimum ash content was obtained from the front reduction passages C1 and C2; whereas, the break passages and the tail end reduction passages produce less flour with higher ash content.

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References

  • AACC (2000) American association of cereal chemists. Approved methods. AACC, St. Paul

    Google Scholar 

  • Dexter JE, Wood PJ (1996) Recent application of debranning before milling. Trends Food Sci Technol 7:35–41

    Article  CAS  Google Scholar 

  • Farrell EP, Ward AB (1965) Flow rates and analysis for ash and protein of all streams in the Kansas State University pilot flour mill. Assoc Oper Millers Tech Bull, Mar., pp 2842–2847

  • Hinton JJC (1959) The distribution of the ash in wheat kernel. Cereal Chem 36:19–31

    CAS  Google Scholar 

  • Kim YS, Flores RA (1999) Determination of bran contamination in wheat flours using ash content, color, and bran specks counts. Cereal Chem 76(6):957–961

    Article  CAS  Google Scholar 

  • Peterson WL (1949) Controlled break extraction. Assoc Oper Millers Tech Bull, Jan., pp 1722–1723

  • Pomeranz Y (1961) The problem involved in peeling of the wheat kernels. Cereal Science Today 6:76–79

    Google Scholar 

  • Pomeranz (1998) In: Wheat chemistry and technology Vol. 1. St. Paul, MN, USA: American of Association of Cereal Chemists, pp 17–21

  • Posner ES (1991) Wheat and flour ash as a measure of malleability. Cereal Food World 36:626–629

    Google Scholar 

  • Shellenberger JA (1965) Fifty years of milling advances. Cereal Sci Today 9:260–262

    Google Scholar 

  • Steel RGD, Torrie JH (1960) Principles and procedures of statistics. McGraw-Hill, New York

    Google Scholar 

  • Ziegler E, Greer EN (1971) Principle of flour milling. In: Pomeranz Y (ed) Wheat: chemistry and technology, 2nd edn. American Association of Cereal Chemists, St. Paul, pp 115–199

    Google Scholar 

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Correspondence to Suresh D. Sakhare.

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Sakhare, S.D., Inamdar, A.A. The cumulative ash curve: a best tool to evaluate complete mill performance. J Food Sci Technol 51, 795–799 (2014). https://doi.org/10.1007/s13197-011-0549-z

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  • DOI: https://doi.org/10.1007/s13197-011-0549-z

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