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(1) Alk 2 10 6e2.34 pH, lg(Alk)-pH. :

pH 3.7 0.6 n, n Alkclass : 2.. (2) Alk 2 10 6 e2.34 (3,7 0.6 n), n Alkclass : 2..,, lg(Alk)-pH,.. 2 7 (.1).

pH_cur:=4.9;L1:=1e10;L0:=1e10;l:=2;

l:=l+1; pH_Cur:= pH_Cur+0.6 l > Alk Class L0 (2.34 pH pH _ cur)2 (lg(Alk) lg(2 10 6 e2.34 pH _ cur )) L1:=L0;

Alk_Class:=l L1>=L. 1. -.

Alk_Class, pH_cur - pH. pH, Alk pH ( HCO3/ ).

l, L0,L1, pH 0,6 (, 2006), 7 (.1).

pH, Alk (lg(Alk)) 1 4.3, 0 (-) 2 4.9, 0.19 (-0.72) 3 5.5, 0.78 (-0.11) 4 6.1, 3.16 (0.50) 5 6.7, 12.88 (1.11) 6 7.3, 52.44 (1.72) 7 7.9, 213.5 (2.33),.

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min Humn 795,97 e 0.834 n n HumClass : 2.. (3) max Humn 1085,5 e 0.844 n n HumClass : 2.., :

min Humn min Fe n HumClass : 2..n (4) 28,max Humn max Fe n HumClass : 2..n 200.,, (3) (4), Hum Fe 5, .

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Hum 540.63 e 0,824 n, n HumClass : 2..n (5) 540.63 e 0,824 n Fen, n HumClass : 2..54,, . 2.

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Hum, Fe.

2 104.04, 1.3 45.64, 0.4 20.02, 0.5 8.78, 0.6 3.85, 0.,, Hum-Fe.

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L0:=1e10; l:=2;

l:=l+1; l > Hum Class 540.63 e 0.824 l L0 (Hum 540.63 e 0.824 l )2 Fe 54. L1:=L0;

Hum_Class=l;

L1>=L. 2. -.

Hum_Class. Hum, Fe ( / ).

l, L0,L1 :

HumClass 5,6 Pn 765.7 e 0.959 n, n TrophClass :1.. (6) HumClass 4 Pn 999.8 e 0.938 n, n TrophClass :1..HumClass 3 Pn 1236.7 e 0.925 n, n TrophClass :1..HumClass 2Pn 1473.6 e 0.916 n, n TrophClass :1.. P 6, : (1), (2), (3), (4), (5), (6).,,, 1,, 3. : -1 -2., CASE-OF, ( ) (5 6 ).

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D_Pcom:=1e10; l:=2;

l:=l+1; l > Troph Class Troph _ Pcom 765.7 e 0.959 n L1:=L0;

D_Pcom >= ABS(Troph_Pcom-Pcom) Troph_Class=l;

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(80-105%) 5, <60 >120% - 4, (60%-20%) 3, (<20%) (140% ) 2.

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O2% O2% O2% O _ class -6,1 ( )3 + 7,5 ( )2 + 1,4 ( ) + 2, O2% 0..140 (7) 100 100 1 O _ class 2, O2% 140..

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(8) f (x) ln cos( x ) ; x (0,1) f(x),. HCO3 +A, Ca2+ Mg2+. N :

(9) f (x) th(x),, ,., 1,, 0.,,. (8) (9) :

1 (10) 1 / (x,C) ln cos xlog C ; x (0,1) A 4 A th 8 xlog 0,316 4 (11) A (x, A) (10),,.

( = 0.44, CCa CA CMg =0.32, HCO = 0.72) 2 (, 2006).,,,. > 1. 1.

(11), 0 1. A, 0.05 : = 0.20, = 0.04, ANa AK = 0.01, = 0.17, = 0.005 = 0.11.

ACl ANH ASO ANO 4 4, (, 2009):

N NO2 << N NH4+< N NO3 N (12) <0.005 <0.05 0.05 0.3 0.2 0.7 N/.

N,.

(12) N :

N NO2 << N NH4+< N NO3 N (13) 0.4 1.6% 4 16% 6 54% 36 87%.

(9) NO2, NH4+ NO3, 0.. N.

.,, 1 0, N (833 ). :

N NO : A-NO (x) th(160 (x 0.016)) 2 N NH : A-NH (x) th(16 (x 0.16)) (14) 4 N NO3 : A-NO (x) th(12 (x 0.54)) N N : A-N (x) th(16 ( x 0.36)),,,.

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N. I :

m, (15) I 1 (1 1)(1 2 )...(1 m ) 1 m.

(15), k=1 (k=1..m) 1, k =0 k <<1.,,. I = 1,, I = 0,.

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a b / (16) m n / a = ( / ), b = ( / ), m = ( / ), n = ( / ).

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13. Zobkov M.B. Automatic water objects classification and natural water quality assessment // Proceedings of the 7th International Scientific and Practical Conference Enviroment.Tecnology.Resources., Latvia, Rezekne, 2009. P.56-63.

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.. 2010612351 ( ) 31.04.2010/..//. RU, 2010. 2 (71)..563.

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