Cikuda
1.
Nama Badan Air
|
:
|
Sungai
|
2.
Lokasi
|
:
|
Cikuda, Jatinangor
|
3.
Tanggal dan Waktu
|
:
|
13 Oktober
2012 , 09.00 WIB
|
4.
Nomor dan Jenis sampel air
|
:
|
Stasiun 1,
Stasiun 2, Stasiun 3
|
5.
Temperatur Air dan Udara
|
:
|
Stasiun 1
- Air : 25,1o C
- Udara : 29,6o C
Stasiun 2
-
Air : 23,6o
C
-
Udara : 29,25o
C
Stasiun 3
-
Air : 24,45o
C
-
Udara : 26,1o
C
Rata-rata air :24.3 o C ; udara:28.31 o C
|
6.
Tinggi muka air / debit kedalaman air
|
:
|
-
|
7.
Keadaan Cuaca
|
:
|
Cerah
|
8.
Keadaan fisisk sumber air
|
:
|
Tercemar, keruh
|
9.
Vegetasi disekitar lokasi
|
:
|
-
Stasiun 1 :
Ilalang dan Species A
-
Stasiun 2 : -
-
Stasiun 3 : jukut
jamping, Amaranthus sp, Galingsoga sp, Mikania sp.
|
10.
Keadaan lingkungan lokasi
|
:
|
Kotor, air tercemar
|
11.
Keadaan lokasi sampling
|
:
|
Kotor, keruh, banyak sampah
|
12.
Hasil peeriksaan lapangan
|
:
|
Di bawah
|
13.
Nama Pengambil Sampel
|
:
|
Kelompok
7 dan 8
|
Foto Sungai Cikuda


Hasil
perhitungan Parameter Fisika-Kimia
Parameter
|
Ulangan
|
Rata-rata
|
||
1
|
2
|
3
|
||
1.
Kedalaman (m)
|
31
|
59
|
44
|
44,67
|
2.
Kecerahan
|
24
|
27,5
|
33
|
28,2
|
3.
Suhu air (oC)
|
24,1
|
23,6
|
24,45
|
24,05
|
4.
Suhu udara (oC)
|
29,6
|
29,25
|
26,1
|
28,31
|
5.
V arus (m/dtk)
|
0,14
|
0,13
|
0,07
|
0,11
|
6.
Debit air (m/dtk2)
|
-
|
-
|
-
|
-
|
7.
pH
|
7,78
|
7,68
|
7,63
|
7,69
|
8.
DHL
|
260
|
235
|
225
|
240
|
9.
Salinitas
|
0%
|
0%
|
0%
|
0%
|
10.
DO
|
|
|
|
|
11.
BOD
|
4,22
|
-
|
-
|
-
|
12.
CO2
|
8.8
|
8.8
|
8.8
|
8.8
|
13.
HCO3-
|
115,9
|
109,8
|
109,8
|
111.8
|
14.
Tipe Substrat
|
lumpur
|
Proses perhitungan
1.
Kedalaman
Stasiun
|
Kedalaman (m)
|
Rata-rata
|
1
|
31
|
44,67
|
2
|
59
|
|
3
|
44
|
2.
Kecerahan
Stasiun
|
Kecerahan (cm)
|
Rata-rata
|
1
|
24
|
28,2
|
2
|
27,5
|
|
3
|
33
|
3.
Kadar CO2
Kadar CO2 (mg/L)

Stasiun
|
ml NaOH
|
Kadar CO2 (mg/L)
|
1
|
0,1
|
8,8
|
2
|
0,1
|
8,8
|
3
|
0,1
|
8,8
|
Rata-rata
|
8,8
|
4.
Kadar HCO3-
Kadar HCO3- (mg/L)


Stasiun
|
ml HCL – ml NaOH
|
Kadar HCO3- (mg/l)
|
HCO3- rata rata
|
1
|
0,95
|
115,9
|
111,8
|
2
|
0.9
|
109,8
|
|
3
|
0,9
|
109,8
|
5.
DO (Dissolve
Oxygen)
DO



Diketahui : N na Tiolsulfat = 0.01 ; V =
125
Stasiun 1
|
ml Na Tiolsulfat
|
DO
|
||
Pengulangan
1
|
Pengulangan
2
|
Pengulangan
1
|
Pengulangan 2
|
|
DO o
|
5,4
|
4
|
8,78
|
6,50
|
DO 5
|
1,9
|
2,3
|
3,09
|
3,74
|
Perhitungan :
DO o (I)


DO o (II) 

DO 5 (I)

DO5 (II)

6.
BOD (Biochemical
Oxygen Demand) ( Stasiun 1 )
Kadar BOD (mg/L)
Faktor pengenceran
(DO0hari –DO5hari)


BOD1
= 1 X (8,78
– 3,09) = 5,69
BOD2 = 1 X (6,50 – 3,74) = 2,76
Rata-rata
=
mg/L


Parameter Biologi
a.
Plankton
Photo
|
spesies
|
jumlah / ulangan
|
Jumlah
|
||
1
|
2
|
3
|
|
||
![]() |
Zygnema
sp.
|
|
Stasiun 3
|
|
1
|
![]() |
diatome
|
|
Stasiun 3
|
|
2
|
![]() |
Spirulina
sp.
|
|
Stasiun 2
|
|
1
|
![]() |
Dunaliela
sp.
|
Stasiun 2
|
|
|
1
|
![]() |
Spirogyra
sp.
|
Stasiun 1
Stasiun 2
Stasiun 3
|
Stasiun 1
Stasiun 2
|
|
5
|
![]() |
volvox
|
Stasiun 1
|
|
|
1
|
![]() |
Meridion
sp.
|
Stasiun 3
|
|
|
5
|
Jumlah
|
12
|
Perhitungan Indeks Diversitas Simpson
I = 1- D
D = ⅀(ni/N)2
Dimana
:
I = Indeks diversitas Simpson
D = resiprok Indeks Diversitas Simpson
Ni
= jumlah Individu jenis ke 1
N =
Jumlah total Individu
No
|
Spesies
|
(ni/N)2
|
|
1
|
Spirogyra sp
|
5/19 = 0,42
|
0,17
|
2
|
Spirulina sp
|
1/19 = 0.083
|
0,0068
|
3
|
Volvox sp
|
1/19 = 0.083
|
0,0068
|
3
|
Zugnema sp
|
1/19 = 0.083
|
0,0068
|
4
|
Dunaliella sp
|
1/19 = 0.083
|
0,0068
|
5
|
Meridion sp
|
2/19 = 0.16
|
0,027
|
6
|
Diatome sp
|
1/19 = 0.083
|
0,0068
|
|
Total
(D)
|
|
0,231
|
I
= 1 - D
I
= 1 – 0.231
I
= 0,769
Apabila
:
I
> 0,8 = tercemar ringan
0,6>I>0.8
= tercemar sedang
I
< 0.6 = tercemar berat
Maka,
sungai Cikuda tercemar sedang
b.
Benthos
Gambar
|
Spesies
|
Jumlah / ulangan
|
||
1
|
2
|
3
|
||
![]() |
Melanoides tuberculatus
|
9
|
2
|
-
|
![]() |
Melanoides maculata
|
18
|
51
|
8
|
![]() |
Lymnaea sp (1)
|
14
|
-
|
-
|
![]() |
Lymnaea sp (2)
|
1
|
-
|
-
|
![]() |
Parathepusa convexa
|
-
|
-
|
2
|
![]() |
Haemadipsa zeylanica
|
-
|
1
|
-
|
Jumlah
|
42
|
54
|
10
|
Indeks
Diversitas Shannon-Wiener
H’ =
(ni/N ln ni/N)

1.
Dimana
:
2.
H’
= Indeks diversitas
3.
Ni
= Jumlah individu jenis ke-1
4.
N = Jumlah total individu
No
|
Spesies
|
Stasiun 1
|
Stasiun 2
|
Stasiun 3
|
1
|
Melanoides
tuberculatus
|
0,3631
|
0,0542
|
0,1642
|
2
|
Melanoides
maculata
|
0,3301
|
-
|
-
|
3
|
Lymnaea
sp (1)
|
0,3662
|
0,1221
|
-
|
4
|
Lymnaea
sp (2)
|
0,0890
|
-
|
-
|
5
|
Parathepusa
convexa
|
-
|
-
|
0,31
|
6
|
Haemadipsa
zeylanica
|
-
|
0,0739
|
-
|
Jumlah
|
1,1484
|
0,2502
|
0,4742
|
Indeks
diversitas benthos danau cekdam
( 1,1484 + 0,2502 + 0,4742 ) / 3 = 1,8728
/ 3
=
0,624
Berdasarkan
indeks diversitas Shannon-Wiener sungai Cikuda tercemar
berat
Catatan
Lapangan
Danau
Cekdam Unpad
14. Nama Badan Air
|
:
|
Danau
|
15. Lokasi
|
:
|
Cekdam Unpad Jatinangor
|
16. Tanggal dan
Waktu
|
:
|
13 Oktober 2012 , 12.10 WIB
|
17. Nomor dan
Jenis sampel air
|
:
|
Stasiun 1, Stasiun 2, Stasiun 3
|
18. Temperatur Air
dan Udara
|
:
|
Rata-rata air 30oC
rata-rata udara 32oC
|
19. Tinggi muka
air / debit kedalaman air
|
:
|
-
|
20. Keadaan Cuaca
|
:
|
Panas Terik
|
21. Keadaan fisisk
sumber air
|
:
|
Tercemar ringan (hasil perhitungan
indeks simpson)
|
22. Vegetasi
disekitar lokasi
|
:
|
Pohon kopi, rumput gajah
|
23. Keadaan
lingkungan lokasi
|
:
|
Berangin, badan air lotik
|
24. Keadaan lokasi
sampling
|
:
|
Air keruh
|
25. Hasil
peeriksaan lapangan
|
:
|
Terlampir
|
26. Nama Pengambil
Sampel
|
:
|
Kelompok 7 dan 8
|
Gambar
Denah lokasi Pengamatan
![]() |
Foto

Hasil perhitungan Parameter
Fisika-Kimia
Parameter
|
Ulangan
|
Rata-rata
|
||
1
|
2
|
3
|
||
15. Kedalaman (m)
|
0.51
|
0.90
|
0.45
|
0.62
|
16. Kecerahan
|
0.21
|
0.16
|
0.36
|
24.3
|
17. Suhu air (oC)
|
25
|
25
|
24.6
|
24.87
|
18. V arus (m/dtk)
|
-
|
-
|
-
|
-
|
19. Debit air
(m/dtk2)
|
-
|
-
|
-
|
-
|
20. pH
|
7.75
|
7.68
|
7.55
|
7.66
|
21. DHL
|
250
|
250
|
250
|
250
|
22. Salinitas
|
0%
|
0%
|
0%
|
0%
|
23. DO
|
6.0975
|
6.178
|
8.2925
|
6.856
|
24. BOD
|
6.02
|
4.07
|
5.045
|
5.045
|
25. CO2
|
8.8
|
8.8
|
13.2
|
30.8
|
26. HCO3-
|
207.45
|
195.2
|
189.1
|
197.25
|
27. Tipe Substrat
|
Tanah dan
lumpur
|
Proses perhitungan
7.
Kedalaman
Stasiun
|
Kedalaman (m)
|
Rata-rata
|
1
|
0.51
|
0.62
|
2
|
0.9
|
|
3
|
0.45
|
8.
Kecerahan
Stasiun
|
Kecerahan (cm)
|
Rata-rata
|
1
|
21
|
20.43
|
2
|
16
|
|
3
|
20.43
|
9.
Kadar
CO2
Kadar CO2 (mg/L)

Stasiun
|
ml NaOH
|
Kadar CO2
(mg/L)
|
1
|
0.1
|
8.8
|
2
|
0.1
|
8.8
|
3
|
0.15
|
13.2
|
Rata-rata
|
30.8
|
10. Kadar HCO3-
Kadar HCO3- (mg/L)


Stasiun
|
ml HCl
|
ml NaOH
|
Kadar HCO3-
(mg/l)
|
HCO3-
rata rata
|
1-2
|
2
|
0.1
|
231.8
|
207.45
|
2-1
|
1.85
|
0.1
|
231.5
|
|
1-2
|
1.65
|
0.1
|
189.1
|
195.2
|
2-2
|
1.55
|
0.1
|
176.9
|
|
3-1
|
1.65
|
0.15
|
183
|
189.1
|
3-2
|
1.75
|
0.15
|
195.2
|
11. DO (Dissolve Oxygen)
DO



Diketahui : N na Tiolsulfat = 0.01
; V = 125
Stasiun 1
|
ml Na
Tiolsulfat
|
DO
|
||
Pengulangan 1
|
Pengulangan 2
|
Pengulangan 1
|
Pengulangan 2
|
|
DO o
|
4
|
3.5
|
6.50
|
5.69
|
DO 5
|
0.9
|
1
|
1.77
|
1.62
|
Perhitungan
:
DO o (I) 

DO o (II) 

DO 5 (I) 

DO5 (II)

Stasiun 2
|
ml Na
Tiolsulfat
|
DO
|
||
Pengulangan 1
|
Pengulangan 2
|
Pengulangan 1
|
Pengulangan 2
|
|
DO o
|
4
|
3.6
|
6.50
|
5.835
|
DO 5
|
0.9
|
1
|
1.77
|
1.62
|
Perhitungan
DO o (I) 

DO o (II) 

DO 5 (I) 

DO5 (II)

Stasiun 3
|
ml Na
Tiolsulfat
|
DO
|
||
Pengulangan 1
|
Pengulangan 2
|
Pengulangan 1
|
Pengulangan 2
|
|
DO o
|
3.5
|
6.7
|
5.691
|
10.894
|
DO 5
|
0.3
|
1
|
0.48
|
1.62
|
Perhitungan :
DO o (I) 

DO o (II) 

DO 5 (I)

DO5 (II)

12. BOD (Biochemical Oxygen Demand)
Kadar BOD (mg/L)
Faktor pengenceran
(DO0hari –DO5hari)


BOD1 =
1 X (6.50 - 0.48) = 6.02
BOD2
= 1 X (5.69 – 1.62) = 4.07
Rata-rata =
mg/L


Parameter
Biologi
c.
Plankton
Photo
|
spesies
|
jumlah / ulangan
|
Jumlah
|
||
1
|
2
|
3
|
|
||
![]() |
Zygnema
sp.
|
|
Stasiun2,
Stasiun3,
|
|
3
|
![]() |
diatome
|
Stasiun2
|
|
|
2
|
![]() |
Spirulina
sp.
|
|
Stasiun 3
|
|
3
|
![]() |
Agmenellum
quadraplicatum.
|
Stasiun 2
|
|
|
2
|
![]() |
Filinia
sp.
|
|
Stasiun 2
|
|
2
|
![]() |
Flagilaria
sp.
|
|
Stasiun 3
|
|
3
|
![]() |
Synedra
rumpens
|
Stasiun 2
|
|
|
2
|
![]() |
Cyclops
|
Stasiun 3
|
|
|
2
|
Jumlah
|
19
|
Perhitungan Indeks Diversitas
Simpson
I = 1- D
D = ⅀(ni/N)2
Dimana
:
I = Indeks diversitas Simpson
D = resiprok Indeks Diversitas Simpson
Ni
= jumlah Individu jenis ke 1
N =
Jumlah total Individu
Spesies
|
(ni/N)2
|
1.
Spirulina sp
|
(3/19)2
= 0.024
|
2.
Zygnema sp
|
(3/19)
2= 0.024
|
3.
Agmenelllum sp.
|
(2/19)2
= 0.011
|
4.
Filinia sp.
|
(2/19)2
= 0.011
|
5.
Flagilaria sp.
|
(3/19)2
= 0.024
|
6.
Diatome
|
(2/19)2
= 0.011
|
7.
Synedra
rumpens
|
(2/19)2
= 0.011
|
8.
cyclops
|
(2/19)2
= 0.011
|
Total (D)
|
0.072
|
I
= 1 - D
I
= 1 – 0.072
I
= 0.9
Apabila
:
I
> 0,8 = tercemar ringan
0,6>I>0.8
= tercemar sedang
I
< 0.6 = tercemar berat
Maka,
Danau Cekdam telah tercemar ringan sebab I danau cekdam > 0.8
d.
Benthos
Gambar
|
Spesies
|
Jumlah / ulangan
|
||
1
|
2
|
3
|
||
![]() |
Achatina
fulica
|
6
|
|
|
![]() |
Mytilus
sp.
|
1
|
|
|
Indeks
Diversitas Shannon-Wiener
H’ =
(ni/N ln ni/N)

5. Dimana
:
6. H’
= Indeks diversitas
7. Ni
= Jumlah individu jenis ke-1
8. N = Jumlah total individu
Spesies
|
-(ni/N ln ni/N)
|
1.
Mytilus sp.
|
-(1/7 ln 1/7) = 0.2780
|
2.
Achatina
fulica
|
-(6/7 l n 6/7) = 0.1321
|
Indeks diversitas benthos danau cekdam
0.2780 + 0.1321 = 0.4101
Berdasarkan
indeks diversitas Shannon-Wiener danau cekdam tercemar
LAMPIRAN
No.
|
Kegiatan di Lapangan
|
Keterangan
|
1
|
![]() |
Lokasi pengambilan sampel pertama,
Cikuda
|
2
|
![]() |
Proses pengambilan sampel plankton
dengan menggunakan plankton net, pada stasiun pertama
|
3
|
![]() |
Pengambilan sampel plankton maupun
benthos di setiap stasiun, serta pengukuran kedalaman dan kecerahan dengan
menggunakan sechi disk
|
4
|
![]() |
Penghitungan arus air, dengan
menghitung pencatatan waktu dari pergerakan sterofoam mendekati pengamat
|
5
|
![]() |
Penambahan reagen O2 di
lapangan
|
6
|
![]() |
Penambahan KMNSO4 di lapangan
|
7
|
![]() |
Botol yang telah ditambahkan KMNSO4
|
8
|
![]() |
Botol sampel air yang telah ditambahkan
reagen O2
|
9
|
![]() |
Botol sampel air yang telah ditambahkan
reagen H2SO4
|
10
|
![]() |
Proses Titrasi
|
11
|
![]() |
Hasil titrasi
|
12
|
![]() |
Sampel 50 ml + KMnO4
sebelum dipanaskan.
|
13
|
![]() |
Sampel yang sudah dipanaskan, ditambah larutan KI sebanyak 10 ml.
|
14
|
![]() |
Sebelum dilakukan titrasi ditambahkan 10 ml H2SO4
|
15
|
![]() |
Proses titrasi dengan menggunakan Na-thiosulfat.
|
16
|
![]() |
Setelah titrasi, sampel menjadi bening
|
0 komentar " ", Baca atau Masukkan Komentar
Post a Comment