.......
~
'i?>
II
f
~
;lo.l
/1)
S!:
:;
/1)
0
...
:E
"'
>< c.
.,
"'
II
~
><
n·
""
.,
.,II
7'
~
-<
II
-<
8
~
3
"' ~· ~
~ n
,x
0
g·
.g
II t::
if
7'
-'
"
?
>t
.., II ~
~
3
0
P~ ~
"'
n
~·
"'
[ V>
"
~
.,
§
fir
.___
N
.___
Component
....
I
j
I
Proceu
1
I Aerobic
growth
of
heterotroph•
2
I
Anoxic
growth
of
hctcrotrophs
3
I
Ac:robac
growth
or
autotrophs
4
I 'Dee~y'
of hc:tc:rotrophs
5
I
'Decay'
of autotrophs
6
I Ammoni6cauon
of
soluble: or~tamc
mtrogen
7
I 'Hydrolysis'
of
entrapped
orgamcs
8
I
'Hydrolysas'
of
entrapped
orgamc
natrogen
Observed
Convc:r11ion
Rates[ML-JT- 1 }
Stoichwmetnc
Parameters:
Heterotrophic
yacld:
YH Autotrophic
yield:
Y,.
Fractton
of
baomau
yaclding particulate
products:
fp
Mass
N/Mau
COD an
biomass:
ix 8
Mass
S/Mau
COD
in
products
from
biomau:
ixp
s,
.~
7
c .J
~§ t~
c:s;:
-'t'
l ~
s, I
x, I X,
I x,,H
I x
•.•
I X,
I
So I
S.o
k
I
I
I I
I
I
I -~~~H
k
I
I
I 1
I
I
I
I -;.~~:
:E~
-ao
•
0
f~
~i
11
"' ;
lf""
~.J
~Q
58
!;i
~i
~
e
1J,
l -I
I
I J,
1J,
1
1 -I
I
/,
-I
r,=7 ",,P,
.!<.J
~Q
~~
"8~
li ~
fj
Cii ~
-ts ~s
eo c:~-o
o u
e
u
~
~
~!
~
I ~
~
~ j
~]
;;~
Q
~o
~~
. ~
~~
a 5
~
§
H
-4.57YA
I _I_
y"
y"
§
u i~
!§
~u
g~
~~
~~
~
~
i ·~
-·-~··--_J___-~
10
Ill
I 12
~H
S:«~o
XNu
-ixa
-'xa
1
-axa-y"
t < £.:;- z~ +
-
X~
z~
-I
~
. ..,
~!
ro"
if :o
a ~ll J! ~
ixafriu
axa/rixp
-1
~£
~:i ~;;,_
i ~ -e ~ ~
c
11 ~
:s
13 SALK
_
_!y
14
~
14.
2.86
YH
-ixa/14
-~-__!__
14 7YA
I 14
• '§ j
' ~
j
<
Proccu
Rate, p 1
(ML
_,
T-1]
-
(
S. )(
So
)x
~H Ks+Ss Ko.H+So a.H
,
(
S, )( Ko.H
)
I'H
Ks+Ss
Ka.H+So
x(
S,o
)
K .,. 0
+ S!'<"o
11, Xa.H
~.(~)(-So
)x
•.•
K:-.H+S!'<;H
Ka,A+So
bHXa.H
bAX8.A
A.S.,.0 Xa.H
X,/X1 H
[
(
S0 ) Ah Kx.+(Xs/Xa.H)
Ka.H+So
+
(~)(~)]x '1h
Ka.H+So
K,.a+SNo
I.H
p,(X~o/Xs)
Kanetac
Parameters: Heterotrophic
growth
and
decay: J,lH,
Ka. Ko.H• K!>'o•
b" Autotrophic
growth
and
decay: /l,., KNH•
Ko.A•
bA Correction
factor
for
anoxic growth
of
hctcrotrophs:
111 Ammonification:
A:. H
ydrolyais:
llh,
K x Correction
factor
for
anoxac hydrolysis: '1h
q
'"0
~
0
"'+>
'"0
6>
::3
[Z ~ n
~·
[ fJJ
2"
0..
~
'"0
~
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