Methods for Chemical Analysis of Water and Wastes

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Methods for Chemical Analysis of Water and Wastes ( methods-chemical-analysis-water-and-wastes )

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10 1 2 3 4 5 6", PrecIsIOn and Accuracy 10 I Accuracy data on actual samples cannot be obtained 10 2 PrecIsion data are not avatlable at this time BIblIography Standard Methods for the ExaminatIon ofWater and Wastewater, 14th Edition (1975), p 64 J Soc Dyers and Colonsts, 86, No 8,354 (1970) WysL.eckl and Sttles, Color SCience, Wtley, N Y , 1967, Tables 64 A, Band C Judd and Wyszeckt, Color In BUSiness, SCience and Industry, 2nd EditIon, Wtley, N Y (1963) Tables A, Band C In AppendiX J Opt Soc Am, Volume 53, page 499, Apnl1963 Dyes and the EnVironment-Report on Selected Dyes and Their Effects, Volume 1, Sept 1973 AppendiX, Amencan Dye Manufacturers Institute, Inc 92 93 Convert tnstlmulus values to the corresponding Munsell values Vx, Vy and Vz by the use 25 9 4 where Vxs> VyS and Vzs = the Munsell values for X s, Ys and Z s respectively and Vxc, VyC and Vzc = the Munsell values for a blank solutIOn whose tnstlmulus values are Xc, Yc and~ , NOTE 1: If the photometer used IS set at 100% transmittance with dlsttlled water, the tnstlmulus values for the blank are 9809, 10000 and 11835 for Xc, Yc and Zc respectively If necessary, tnstlmulus values for the blank are determined as In calculation (9 1) Report ADMI color values at pH 7 6 and at the ongInal pH NOTE 2: The Intermediate tnstlmulus values calculated under 9 1, USing the three tnstImulus filters, are used only to calculate the ADMI color value They should not be reported as tnstlmulus values or used to determine dominant wavelength, luminance and punty T3 =transmittancevalueIn%USingfilternumber3 ofpubltshed tables ,3,4, or the equatIOn suggested by Bndgeman Calculate DE values for samples and standards, construct a caltbratlOn curve by plotting DE against ADMI umts ofstandards and determine ADMI color umts ofsamples from the caltbratlon curve 110 1-3

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