Pengaruh Limbah Domestik Terhadap Kualitas Perairan Danau Toba (Studi Kasus Desa Marbun Toruan, Desa Napitupulu Bagasan, dan Kelurahan Pangururan)

PARAMETER SATUAN KELAS

IV FISIKA

KIMIA ANORGANIK

  Arsen mg/L 0,05

  5 NO

  3

  10

  10

  20

  20 NH

  

3 mg/L – N 0,5 (-) (-) (-)

  1

  1

  3 Total fosfat – P mg/L 0,2 0,2

  1 Kobalt mg/L 0,2 0,2 0,2 0,2 Barium mg/L 1 (-) (-) (-) Boron mg/L

  1

  1

  1

  1 Selenium mg/L 0,01 0,05 0,05 0,05 Kadmium mg/L 0,01 0,01 0,01 0,01 Khrom (VI) mg/L 0,05 0,05 0,05 0,01 Tembaga mg/L 0,02 0,02 0,02 0,02 Besi mg/L 0,3 (-) (-) (-) Timbal mg/L 0,03 0,03 0,03

  1 Mangan mg/L 0,1 (-) (-) (-) Air Raksa mg/L 0,001 0,002 0,002 0,005

  1

  4

  LAMPIRAN

  3 Residu Terlarut mg/L 1000 1000 1000 2000 Residu Tersuspensi mg/L

  Lampiran 1 . Kriteria mutu air berdasarkan kelas (PP Nomor 82 Tahun 2001)

  I II

  III

  o

  C Temperatur mg/L Deviasi

  3 Deviasi

  3 Deviasi

  3 Deviasi

  50 50 400 400

  6

  pH 6 – 9 6 – 9 6 – 9 5 – 9

  BOD mg/L

  2

  3

  6

  12 COD mg/L

  10

  25 50 100 DO mg/L

  • N mg/L
Lanjutan

PARAMETER SATUAN KELAS

  I II

  III

IV RADIOAKTIVITAS

  Gross A Bq/L 0,1 0,1 0,1 0,1 Gross B Bq/L

  1

  1

  1

  1 KIMIA ORGANIK Minyak dan Lemak µg/L 1000 1000 1000 (-) Deterjen sebagai MBAS µg/L 200 200 200 (-) Senyawa fenol sebagai µg/L

  1

  1 1 (-) fenol BHC µg/L 210 210 210 (-) Aldrin/Dieldrin µg/L 17 (-) (-) (-) Chlordane µg/L 3 (-) (-) (-) DDT µg/L

  2

  2

  2

  2 Heptachlor µg/L 18 (-) (-) (-) Lindane µg/L 56 (-) (-) (-) Methoxychlor µg/L 35 (-) (-) (-) Endrin µg/L

  1

  4 4 (-) Toxaphan µg/L 5 (-) (-) (-)

  Keterangan : mg = milligram µg = mikrogram mL = milliliter

  L = liter Bq = Beqeurel MBAS = Methylene Blue Active Substance Nilai di atas merupakan batas maksimum, kecuali untuk pH dan DO Bagi pH merupakan nilai rentang yang tidak boleh kurang atau lebih dari nilai yang tercantum

  Lampiran 2. Bagan Kerja Metode Winkler untuk Mengukur DO

  Sampel Air

  1 ml MnSO

  4

  1 ml KOH KI Dikocok Didiamkan

  Sampel Endapan Putih/Cokelat

  1 ml H

  2 SO

  4 Dikocok

  Didiamkan

  Larutan Sampel Berwarna Cokelat

  Diambil 100 ml Ditetesi Na

  2 S

  2 O 3 0,00125 N Sampel Berwarna Kuning Pucat

  Ditambah 5 tetes Amilum

  Sampel Berwarna Biru Lampiran 3. Bagan Kerja Metode Winkler untuk Mengukur BOD

  5

  • Penghitungan nilai DO awal dan DO akhir sama dengan
  • Nilai BOD = Nilai DO awal – Nilai DO akhir

  (Michael, 1984; Suin, 2002)

  Keterangan :

  penghitungan Nilai DO

  dihitung nilai DO akhir diinkubasi selama 5 hari pada temperatur 20°C dihitung nilai DO awal

  Sampel Air Sampel Air Sampel Air DO Akhir DO Awal Lampiran 4. Bagan Kerja Pengukuran COD dengan Metode Refluks

  10 ml Sampel Air

  dimasukkan ke dalam erlenmeyer ditambah 5 ml K

  2 Cr

  2 O

  7

  dimasukkan 2 batu didih ditambah 5 ml H

  2 SO 4 (p)

  direfluks selama 45 menit dibiarkan sampai dingin dan dilepaskan dari rangkaian ditambah 30 ml akuadest diteteskan indikator feroin dititrasi dengan Ferro Amonium Sulfat 0,025 N dihitung volume peniternya

  Hasil Merah Kecokelatan

  (Suin, 2002) Lampiran 5. Nilai Oksigen Terlarut Maksimum (mg/L) pada Berbagai Besaran Temperatur Air

  T ˚C

  0,0 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 14,6 14,12 14,08 14,04 14,00 13,97 13,93 13,89 13,85 13,81 1 13,77 13,74 13,70 13,66 13,63 13,59 13,55 13,51 13,48 13,44

  2 13,40 13,37 13,33 13,30 13,26 13,22 13,19 13,15 13,12 13,08 3 13,05 13,01 12,98 12,94 12,91 12,87 12,84 12,81 12,77 12,74 4 12,70 12,67 12,64 12,60 12,57 12,54 12,51 12,47 12,44 12,41 5 12,37 12,34 12,31 12,28 12,25 12,22 12,18 12,15 12,12 12,09 6 12,06 12,03 12,00 11,97 11,94 11,91 11,88 11,85 11,82 11,79 7 11,76 11,73 11,70 11,67 11,64 11,61 11,58 11,55 11,52 11,50 8 11,47 11,44 11,41 11,38 11,36 11,33 11,30 11,27 11,25 11,22 9 11,19 11,16 11,14 11,11 11,08 11,06 11,03 11,00 10,98 10,95 10 10,92 10,90 10,87 10,85 10,82 10,80 10,77 10,75 10,72 10,70 11 10,67 10,65 10,62 10,60 10,57 10,55 10,53 10,50 10,48 10,45 12 10,43 10,40 10,38 10,36 10,34 10,31 10,29 10,27 10,24 10,22 13 10,20 10,17 10,15 10,13 10,11 10,09 10,06 10,04 10,02 10,00 14 9,98 9,95 9,93 9,91 9,89 9,87 9,85 9,83 9,81 9,78 15 9,76 9,74 9,72 9,70 9,68 9,66 9,64 9,62 9,60 9,58 16 9,56 9,54 9,52 9,50 9,48 9,46 9,45 9,43 9,41 9,39 17 9,37 9,35 9,33 9,31 9,30 9,28 9,26 9,24 9,22 9,20 18 9,18 9,18 9,15 9,13 9,12 9,10 9,08 9,06 9,04 9,03 19 9,01 8,99 8,98 8,96 8,94 8,93 8,91 8,89 8,88 8,86 20 8,84 8,83 8,81 8,79 8,78 8,76 8,75 58,73 8,71 8,70 21 8,68 8,67 8,65 8,64 8,62 8,61 8,59 8,58 8,56 8,55 22 8,53 8,52 8,50 8,49 8,47 8,46 8,44 8,43 8,41 8,40 23 8,38 8,37 8,36 8,34 8,33 8,32 8,30 8,29 8,27 8,26 24 8,25 8,23 8,22 8,21 8,19 8,18 8,17 8,15 8,14 8,13 25 8,11 8,10 8,09 8,07 8,06 8,05 8,04 8,02 8,01 8,00

  Lampiran 6. Nilai parameter fisik-kimia air pada setiap stasiun pengamatan

  Parameter Satuan A1 A2 A3 A4 A5 A6 A7 A8 A9 A10 A11 A12 o

  Suhu C 25,1 25,4 26,2 23,6 24,8 23,5 24,2 23,8 25,2 25,2 25,9 25,4 pH skala 7,7 7,5 7,6 6,9 6,6 7,2 7,1 7,1 7,5 6,7 6,7 6,8 Kecerahan m 234 250 527 117 105 96 125 187 164

  84 68 162 Kekeruhan NTU 0,48 1,70 0,73 9,50 6,83 8,34 2,81 1,68 0,42 12,15 24,92 27,54 DO mg/L 7,6 7,0 7,1 6,9 7,0 7,8 7,2 7,1 7,6 6,0 6,2 6,8 COD mg/L 5,95 6,33 6,14 8,06 7,48 7,87 6,91 6,72 6,33 11,52 11,71 12,18 BOD mg/L 0,61 0,69 0,64 0,87 0,93 0,87 0,81 0,78 0,75 1,25 1,28 1,34

  • NO

  3 mg/L 0,43 0,53 0,48 0,82 0,73 0,76 0,68 0,65 0,69 1,32 1,36 1,43 3-

  PO mg/L 0,06 0,06 0,06 0,11 0,09 0,09 0,08 0,07 0,08 0,14 0,14 0,16

4 Deterjen mg/L <0,01 <0,01 <0,01 <0,01 <0,01 <0,01 <0,01 <0,01 <0,01 <0,01 <0,01 <0,01

  (MBAS) Keterangan : A1 : Kontrol 1 A4 : Napitupulu Bagasan 1 A7 : Marbun Toruan 1 A10 : Pangururan 1 A2 : Kontrol 2 A5 : Napitupulu Bagasan 2 A8 : Marbun Toruan 2 A11 : Pangururan 2 A3 : Kontrol 3 A6 : Napitupulu Bagasan 3 A9 : Marbun Toruan 3 A12 : Pangururan 3

  Lampiran 7. Kuesioner Penelitian

  Pendidikan Terakhir :

  1. Petani/buruh tani /nelayan

  Pekerjaan Responden :

  B. Pekerjaan

  4. Akademi/PT

  2. SLTP/sederajat

  3. SLTA/sederajat

  1. SD

  A. Pendidikan

  

KUESIONER PENELITIAN

PENGARUH LIMBAH DOMESTIK PENDUDUK TERHADAP KUALITAS

PERAIRAN DANAU TOBA

Identitas Responden 1. Nama : ..........................................................................

  6. Lama Bermukim : .........................................................................

  5. Jumlah Anggota Keluarga : .........................................................................

  2. Kelurahan Pangururan

  3. Desa Napitupulu Bagasan

  1. Desa Marbun Toruan

  2. Perempuan 4. Alamat : ..........................................................................

  3. Jenis kelamin : 1. Laki-laki

  2. Umur : .................. Tahun

  3. PNS/TNI/POLRI

  No Pertanyaan

  5

  4

  3

  2

  1

  1 Apakah Bapak/Ibu tahu apa saja sumber limbah cair rumah tangga?

  2 Apakah Bapak/Ibu tahu bahan-bahan pencemar yang masuk ke Danau Toba?

  3 Apakah Bapak/Ibu tahu konsumsi deterjen, shampoo dan sabun dapat mencemari lingkungan khususnya perairan?

  4 Apakah Bapak/Ibu tahu limbah cair dari kamar mandi dan dapur dapat mencemari badan air?

  5 Apakah Bapak/Ibu tahu apa dampak yang terjadi bila Danau Toba tercemar?

D. Sikap

  5 = Sangat Setuju 4 = Setuju 3 = Netral 2 = Kurang Setuju 1 = Tidak Setuju

  5

  4

  3

  2

  1

  1 Kualitas air Danau Toba harus dijaga dan terhindar dari bahan pencemar

  2 Air buangan rumah tangga tidak dibuang ke danau

  3 Setiap rumah tangga harus mengurangi limbah cair domestik (limbah dapur dan kamar mandi)

  4 Tidak menggunakan Danau Toba untuk tempat mandi

  5 Tidak menggunakan Danau Toba untuk tempat mencuci

  No Pernyataan

  No Pernyataan

  5

  4

  3

  2

  1

  1 Apakah Bapak/ibu membuang limbah cair domestik dari dapur ke Danau Toba ?

  2 Apakah Bapak/ibu membuang limbah cair domestik dari kamar mandi ke danau ?

  3 Apakah bapak/ibu menggunakan air danau sebagai kebutuhan sehari-hari?

  4 Apakah bapak/ibu mandi di danau?

  5 Apakah bapak/ibu mencuci di danau?

F. KONSUMSI AIR DAN BAHAN-BAHAN TAMBAHAN

  1. Sumber air bersih :

  a. Air sumur

  b. Air PDAM (lanjut ke no. 2)

  c. Air pegunungan

  d. Air danau

  2. Berapa rata-rata jumlah air PDAM yang dikonsumsi seluruh anggota keluarga

  3

  per bulan ………………..m /bulan

  3. Berapa rata-rata jumlah bahan-bahan di bawah ini yang dikonsumsi oleh seluruh anggota keluarga :

  3.1 Sabun mandi : Cair : ……………….. ml Batang : ……………….. buah Lampiran 8. Hasil uji F terhadap parameter fisik dan kimia air

  

ANOVA

  Sum of df Mean F Sig, Squares Square

  Between 5,949 3 1,983 3,712 0,061

  Groups Suhu

  Within Groups 4,273 8 0,534 Total 10,222

  11 Between 1,323 3 0,441 11,262 0,003

  Groups pH Within Groups 0,313 8 0,039 Total 1,637

  11 Between 819,512 3 273,171 15,296 0,001

  Groups Kekeruhan

  Within Groups 142,871 8 17,859 Total 962,382

  11 Between 1,923 3 0,641 4,345 0,043

  Groups DO

  Within Groups 1,180 8 0,147 Total 3,103

  11 Between 56,568 3 18,856 224,210 0,000

  Groups COD

  Within Groups 0,673 8 0,084 Total 57,241

  11 Between 0,692 3 0,231 158,240 0,000

  Groups BOD

  Within Groups 0,012 8 0,001 Total 0,704

  11 Lampiran 9. Hasil uji perbedaan nyata terhadap parameter lingkungan antara lokasi pengamatan

  Oneway Descriptives

  Suhu N Mean Std. Deviation Std. Error 95% Confidence Interval for Mean Minimum Maximum Lower Bound Upper Bound Marbun Toruan

  3 24.4000 .72111 .41633 22.6087 26.1913

  23.80

  25.20 Pangururan 3 25.5000 .36056 .20817 24.6043 26.3957

  25.20

  25.90 Napitupulu Bagasan 3 24.6333 .96090 .55478 22.2463 27.0203

  23.60

  25.50 Kontrol 3 26.1667 .75056 .43333 24.3022 28.0311

  25.40

  26.90 Total 12 25.1750 .96401 .27829 24.5625 25.7875

  23.60

  26.90 ANOVA Suhu Sum of Squares df Mean Square F Sig. Between Groups 5.949 3 1.983 3.712 .061 Within Groups 4.273

  8 .534 Total 10.222

  11

  Test of Homogeneity of Variances Suhu Levene Statistic df1 df2 Sig.

  .731

  3 8 .562 Post Hoc Tests Multiple Comparisons

  Dependent Variable: Suhu LSD (I) Kelompok Pengukuran (J) Kelompok Pengukuran Mean Difference (I-J)

  Std. Error Sig. 95% Confidence Interval Lower Bound Upper Bound Marbun Toruan Pangururan -1.10000 .59675 .103 -2.4761 .2761

  Napitupulu Bagasan -.23333 .59675 .706 -1.6094 1.1428 Kontrol -1.76667 .59675

  • * .018 -3.1428 -.3906 Pangururan Marbun Toruan 1.10000 .59675 .103 -.2761 2.4761 Napitupulu Bagasan .86667 .59675 .184 -.5094 2.2428 Kontrol -.66667 .59675 .296 -2.0428 .7094 Napitupulu Bagasan

  Marbun Toruan .23333 .59675 .706 -1.1428 1.6094 Pangururan -.86667 .59675 .184 -2.2428 .5094 Kontrol -1.53333 .59675 * .033 -2.9094 -.1572 Kontrol Marbun Toruan 1.76667 .59675 * .018 .3906 3.1428 Pangururan .66667 .59675 .296 -.7094 2.0428 Napitupulu Bagasan 1.53333 .59675 * .033 .1572 2.9094 *. The mean difference is significant at the 0.05 level.

  Oneway Descriptives pH N Mean Std. Deviation Std. Error 95% Confidence Interval for Mean Minimum Maximum

  Lower Bound Upper Bound Marbun Toruan 3 7.2333 .23094 .13333 6.6596 7.8070

  7.10

  7.50 Pangururan 3 6.7333 .05774 .03333 6.5899 6.8768

  6.70

  6.80 Napitupulu Bagasan 3 6.9000 .30000 .17321 6.1548 7.6452

  6.60

  7.20 Kontrol 3 7.6000 .10000 .05774 7.3516 7.8484

  7.50

  7.70 Total 12 7.1167 .38573 .11135 6.8716 7.3617

  6.60

  7.70 Test of Homogeneity of Variances pH Levene Statistic df1 df2 Sig.

  1.844

  3 8 .217 ANOVA pH Sum of Squares df Mean Square F Sig.

  Between Groups 1.323 3 .441 11.262 .003 Within Groups .313 8 .039 Total 1.637

  11

  Post Hoc Tests Multiple Comparisons Dependent Variable: pH LSD

  (I) Kelompok Pengukuran (J) Kelompok Pengukuran Mean Difference (I-J) Std. Error Sig. 95% Confidence Interval Lower Bound Upper Bound

  Marbun Toruan Pangururan .50000 .16159

  • * .015 .1274 .8726 Napitupulu Bagasan .33333 .16159 .073 -.0393 .7060 Kontrol -.36667 .16159 .053 -.7393 .0060 Pangururan Marbun Toruan -.50000 .16159 *

  .015 -.8726 -.1274 Napitupulu Bagasan -.16667 .16159 .333 -.5393 .2060 Kontrol -.86667 .16159 * .001 -1.2393 -.4940 Napitupulu Bagasan Marbun Toruan -.33333 .16159 .073 -.7060 .0393 Pangururan .16667 .16159 .333 -.2060 .5393 Kontrol -.70000 .16159 * .003 -1.0726 -.3274 Kontrol Marbun Toruan .36667 .16159 .053 -.0060 .7393 Pangururan .86667 .16159

  • * .001 .4940 1.2393 Napitupulu Bagasan .70000 .16159 *

  .003 .3274 1.0726 *. The mean difference is significant at the 0.05 level.

  Oneway Descriptives

  Kekeruhan N Mean Std. Deviation Std. Error 95% Confidence Interval for Mean Minimum Maximum Lower Bound Upper Bound Marbun Toruan

  3 1.6367 1.19559 .69027 -1.3333 4.6067 .42

  2.81 Pangururan 3 21.5367 8.23397 4.75388 1.0824 41.9910

  12.15

  27.54 Napitupulu Bagasan 3 8.2233 1.33882 .77297 4.8975 11.5491

  6.83

  9.50 Kontrol 3 .9700 .64444 .37207 -.6309 2.5709 .48

  1.70 Total 12 8.0917 9.35357 2.70014 2.1487 14.0346 .42

  27.54 Test of Homogeneity of Variances Kekeruhan Levene Statistic df1 df2 Sig.

  9.114

  3 8 .006 ANOVA

  Kekeruhan Sum of Squares df Mean Square F Sig.

  Between Groups 819.512 3 273.171 15.296 .001 Within Groups 142.871 8 17.859 Total 962.382

  11

  Post Hoc Tests Multiple Comparisons Dependent Variable: Kekeruhan LSD

  (I) Kelompok Pengukuran (J) Kelompok Pengukuran Mean Difference (I-J) Std. Error Sig. 95% Confidence Interval Lower Bound Upper Bound

  Marbun Toruan Pangururan -19.90000 3.45049

  • * .000 -27.8569 -11.9431 Napitupulu Bagasan -6.58667 3.45049 .093 -14.5435 1.3702 Kontrol .66667 3.45049 .852 -7.2902 8.6235 Pangururan Marbun Toruan 19.90000 3.45049 *

  .000 11.9431 27.8569 Napitupulu Bagasan 13.31333 3.45049

  • * .005 5.3565 21.2702 Kontrol 20.56667 3.45049 *

  .000 12.6098 28.5235 Napitupulu Bagasan Marbun Toruan 6.58667 3.45049 .093 -1.3702 14.5435 Pangururan -13.31333 3.45049

  • * .005 -21.2702 -5.3565 Kontrol 7.25333 3.45049 .069 -.7035 15.2102 Kontrol Marbun Toruan -.66667 3.45049 .852 -8.6235 7.2902 Pangururan -20.56667 3.45049 *

  .000 -28.5235 -12.6098 Napitupulu Bagasan -7.25333 3.45049 .069 -15.2102 .7035

  • . The mean difference is significant at the 0.05 level.

  Oneway Descriptives

  7.60 Total 12 7.0250 .53108 .15331 6.6876 7.3624

  Between Groups 1.923 3 .641 4.345 .043 Within Groups 1.180 8 .147 Total 3.103

  DO Sum of Squares df Mean Square F Sig.

  3 8 .485 ANOVA

  .895

  7.80 Test of Homogeneity of Variances DO Levene Statistic df1 df2 Sig.

  6.00

  7.00

  DO N Mean Std. Deviation Std. Error 95% Confidence Interval for Mean Minimum Maximum Lower Bound Upper Bound Marbun Toruan

  7.80 Kontrol 3 7.2333 .32146 .18559 6.4348 8.0319

  6.90

  6.80 Napitupulu Bagasan 3 7.2333 .49329 .28480 6.0079 8.4587

  6.00

  7.60 Pangururan 3 6.3333 .41633 .24037 5.2991 7.3676

  7.10

  3 7.3000 .26458 .15275 6.6428 7.9572

  11

  Post Hoc Tests Multiple Comparisons Dependent Variable: DO LSD

  (I) Kelompok Pengukuran (J) Kelompok Pengukuran Mean Difference (I-J) Std. Error Sig. 95% Confidence Interval Lower Bound Upper Bound

  Marbun Toruan Pangururan .96667 .31358

  • * .015 .2435 1.6898 Napitupulu Bagasan .06667 .31358 .837 -.6565 .7898 Kontrol .06667 .31358 .837 -.6565 .7898 Pangururan Marbun Toruan -.96667 .31358 *

  .015 -1.6898 -.2435 Napitupulu Bagasan -.90000 .31358

  • * .021 -1.6231 -.1769 Kontrol -.90000 .31358 *

  .021 -1.6231 -.1769 Napitupulu Bagasan Marbun Toruan -.06667 .31358 .837 -.7898 .6565 Pangururan .90000 .31358

  • * .021 .1769 1.6231 Kontrol .00000 .31358 1.000 -.7231 .7231 Kontrol Marbun Toruan -.06667 .31358 .837 -.7898 .6565 Pangururan .90000 .31358 *

  .021 .1769 1.6231 Napitupulu Bagasan .00000 .31358 1.000 -.7231 .7231

  • . The mean difference is significant at the 0.05 level.

  Oneway Descriptives

  COD N Mean Std. Deviation Std. Error 95% Confidence Interval for Mean Minimum Maximum Lower Bound Upper Bound Marbun Toruan

  3 6.9867 .31214 .18022 6.2113 7.7621

  6.72

  7.33 Pangururan 3 11.8033 .33975 .19616 10.9593 12.6473

  11.52

  12.18 Napitupulu Bagasan 3 7.8033 .29569 .17072 7.0688 8.5379

  7.48

  8.06 Kontrol 3 6.1400 .19000 .10970 5.6680 6.6120

  5.95

  6.33 Total 12 8.1833 2.28117 .65852 6.7340 9.6327

  5.95

  12.18 Test of Homogeneity of Variances COD Levene Statistic df1 df2 Sig.

  .515

  3 8 .683 ANOVA

  COD Sum of Squares df Mean Square F Sig.

  Between Groups 56.568 3 18.856 224.210 .000 Within Groups .673 8 .084 Total 57.241

  11

  Post HocTests Multiple Comparisons Dependent Variable: COD LSD

  (I) Kelompok Pengukuran (J) Kelompok Pengukuran Mean Difference (I-J) Std. Error Sig. 95% Confidence Interval Lower Bound Upper Bound

  Marbun Toruan Pangururan -4.81667 .23678

  • * .000 -5.3627 -4.2706 Napitupulu Bagasan -.81667 .23678 *

  .009 -1.3627 -.2706 Kontrol .84667 .23678

  • * .007 .3006 1.3927 Pangururan Marbun Toruan 4.81667 .23678 *

  .000 4.2706 5.3627 Napitupulu Bagasan 4.00000 .23678

  • * .000 3.4540 4.5460 Kontrol 5.66333 .23678 *

  .000 5.1173 6.2094 Napitupulu Bagasan Marbun Toruan .81667 .23678 * .009 .2706 1.3627 Pangururan -4.00000 .23678

  • * .000 -4.5460 -3.4540 Kontrol 1.66333 .23678 *

  .000 1.1173 2.2094 Kontrol Marbun Toruan -.84667 .23678 * .007 -1.3927 -.3006 Pangururan -5.66333 .23678

  • * .000 -6.2094 -5.1173 Napitupulu Bagasan -1.66333 .23678 *

  .000 -2.2094 -1.1173 *. The mean difference is significant at the 0.05 level.

  Oneway Descriptives

  BOD N Mean Std. Deviation Std. Error 95% Confidence Interval for Mean Minimum Maximum Lower Bound Upper Bound Marbun Toruan

  3 .7800 .03000 .01732 .7055 .8545 .75 .81 Pangururan 3 1.2900 .04583 .02646 1.1762 1.4038

  1.25

  1.34 Napitupulu Bagasan 3 .8900 .03464 .02000 .8039 .9761 .87 .93 Kontrol 3 .6467 .04041 .02333 .5463 .7471 .61 .69 Total

  12 .9017 .25298 .07303 .7409 1.0624 .61

  1.34 Test of Homogeneity of Variances BOD Levene Statistic df1 df2 Sig.

  .297

  3 8 .827 ANOVA

  BOD Sum of Squares df Mean Square F Sig.

  Between Groups .692 3 .231 158.240 .000 Within Groups .012 8 .001 Total .704

  11

  Post Hoc Tests Multiple Comparisons Dependent Variable: BOD LSD

  (I) Kelompok Pengukuran (J) Kelompok Pengukuran Mean Difference (I-J) Std. Error Sig. 95% Confidence Interval Lower Bound Upper Bound

  Marbun Toruan Pangururan -.51000 .03118

  • * .000 -.5819 -.4381 Napitupulu Bagasan -.11000 .03118 *

  .008 -.1819 -.0381 Kontrol .13333 .03118

  • * .003 .0614 .2052 Pangururan Marbun Toruan .51000 .03118 *

  .000 .4381 .5819 Napitupulu Bagasan .40000 .03118

  • * .000 .3281 .4719 Kontrol .64333 .03118 *

  .000 .5714 .7152 Napitupulu Bagasan Marbun Toruan .11000 .03118 * .008 .0381 .1819 Pangururan -.40000 .03118

  • * .000 -.4719 -.3281 Kontrol .24333 .03118 *

  .000 .1714 .3152 Kontrol Marbun Toruan -.13333 .03118 * .003 -.2052 -.0614 Pangururan -.64333 .03118

  • * .000 -.7152 -.5714 Napitupulu Bagasan -.24333 .03118 *

  .000 -.3152 -.1714 *. The mean difference is significant at the 0.05 level.

  Oneway Descriptives

  NO3- N Mean Std. Deviation Std. Error 95% Confidence Interval for Mean Minimum Maximum Lower Bound Upper Bound Marbun Toruan

  3 .6733 .02082 .01202 .6216 .7250 .65 .69 Pangururan 3 1.3700 .05568 .03215 1.2317 1.5083

  1.32

  1.43 Napitupulu Bagasan 3 .7700 .04583 .02646 .6562 .8838 .73 .82 Kontrol 3 .4800 .05000 .02887 .3558 .6042 .43 .53 Total

  12 .8233 .34935 .10085 .6014 1.0453 .43

  1.43 Test of Homogeneity of Variances NO3- Levene Statistic df1 df2 Sig.

  .647

  3 8 .606 ANOVA

  NO3- Sum of Squares df Mean Square F Sig.

  Between Groups 1.326 3 .442 217.410 .000 Within Groups .016 8 .002 Total 1.342

  11

  Post Hoc Tests Multiple Comparisons Dependent Variable: NO3- LSD

  (I) Kelompok Pengukuran (J) Kelompok Pengukuran Mean Difference (I-J) Std. Error Sig. 95% Confidence Interval Lower Bound Upper Bound

  Marbun Toruan Pangururan -.69667 .03682

  • * .000 -.7816 -.6118 Napitupulu Bagasan -.09667 .03682 *

  .030 -.1816 -.0118 Kontrol .19333 .03682

  • * .001 .1084 .2782 Pangururan Marbun Toruan .69667 .03682 *

  .000 .6118 .7816 Napitupulu Bagasan .60000 .03682

  • * .000 .5151 .6849 Kontrol .89000 .03682 *

  .000 .8051 .9749 Napitupulu Bagasan Marbun Toruan .09667 .03682 * .030 .0118 .1816 Pangururan -.60000 .03682

  • * .000 -.6849 -.5151 Kontrol .29000 .03682 *

  .000 .2051 .3749 Kontrol Marbun Toruan -.19333 .03682 * .001 -.2782 -.1084 Pangururan -.89000 .03682

  • * .000 -.9749 -.8051 Napitupulu Bagasan -.29000 .03682 *

  .000 -.3749 -.2051 *. The mean difference is significant at the 0.05 level.

  Oneway Descriptives

  PO43- N Mean Std. Deviation Std. Error 95% Confidence Interval for Mean Minimum Maximum Lower Bound Upper Bound Marbun Toruan

  3 .0767 .00577 .00333 .0623 .0910 .07 .08 Pangururan 3 .1467 .01155 .00667 .1180 .1754 .14 .16 Napitupulu Bagasan 3 .0967 .01155 .00667 .0680 .1254 .09 .11 Kontrol 3 .0600 .00000 .00000 .0600 .0600 .06 .06 Total

  12 .0950 .03477 .01004 .0729 .1171 .06 .16 Test of Homogeneity of Variances

  PO43- Levene Statistic df1 df2 Sig.

  6.519

  3 8 .015 ANOVA

  PO43- Sum of Squares df Mean Square F Sig.

  Between Groups .013 3 .004 56.444 .000 Within Groups .001 8 .000 Total .013

  11

  Post Hoc Tests Multiple Comparisons Dependent Variable: PO43- LSD

  (I) Kelompok Pengukuran (J) Kelompok Pengukuran Mean Difference (I-J) Std. Error Sig. 95% Confidence Interval Lower Bound Upper Bound

  Marbun Toruan Pangururan -.07000 .00707

  • * .000 -.0863 -.0537 Napitupulu Bagasan -.02000 .00707 *

  .022 -.0363 -.0037 Kontrol .01667 .00707

  • * .046 .0004 .0330 Pangururan Marbun Toruan .07000 .00707 *

  .000 .0537 .0863 Napitupulu Bagasan .05000 .00707

  • * .000 .0337 .0663 Kontrol .08667 .00707 *

  .000 .0704 .1030 Napitupulu Bagasan Marbun Toruan .02000 .00707 * .022 .0037 .0363 Pangururan -.05000 .00707

  • * .000 -.0663 -.0337 Kontrol .03667 .00707 *

  .001 .0204 .0530 Kontrol Marbun Toruan -.01667 .00707 * .046 -.0330 -.0004 Pangururan -.08667 .00707

  • * .000 -.1030 -.0704 Napitupulu Bagasan -.03667 .00707 *

  .001 -.0530 -.0204 *. The mean difference is significant at the 0.05 level. Lampiran 10. Rata-rata penggunaan air dan bahan-bahan rumah tangga

  No Responden Volume air (L) Bahan Cair (mL) Bahan Padat (mg)

  1 9000 310 225 2 15000

  93.33 725

  3 9000 136.67 400 4 12000 180 375 5 9000 220 200 6 15000 226.67 487.5 7 12000 213.33 412.5 8 18000 270 625 9 24000 566.67 850

  10 15000 203.33 475 11 18000

  66.67 787.5

  12 18000 93.33 762.5

  13 15000 66.67 700

  14 21000 466.67 575 15 18000 176.67 725 16 15000

  66.67 700

  17 15000 250 475 18 15000 283.33 575 19 9000 166.67 400 20 15000 226.67 600 21 18000 200 612.5 22 12000 180 550 23 9000 203.33 362.5 24 24000 406.67 650 25 21000 333.33 587.5 26 21000 213.33 762.5 27 18000 303.33 562.5

  28 Lanjutan

  No Responden Volume air (L) Bahan Cair (mL) Bahan Padat (mg)

  42 21000 550 625 43 24000 466.67 1025 44 21000 466.67 550 45 21000 466.67 500 46 18000 200 662.5 47 21000 400 600 48 24000 466.67 600 49 18000 366.67 675 50 21000 466.67 675 51 24000 500 737.5 52 21000 433.33 625 53 24000 400 850 54 15000 400 300 55 18000 400 500 56 9000 300 425 57 21000 500 550 58 24000 400 1000 59 18000 533.33 650 60 21000 566.67 750 61 18000 166.67 1025 62 21000 566.67 825 63 21000 400 1000 64 18000 200 1050 65 21000 300 675 66 18000 400 925 67 21000 400 550 68 24000 266.67 825

  69 Lanjutan

  No Responden Volume air (L) Bahan Cair (mL) Bahan Padat (mg)

  83 12000 333.33 400 84 18000 300 812.5 85 15000 400 550 88 18000 500 650 89 18000 433.33 550 90 21000 433.33 612.5 Lampiran 11.Rata-rata faktor perilaku responden terhadap Danau Toba No Responden Pengetahuan Sikap Tindakan

  1

  3.6

  3.4

  3.4

  3.8

  20

  2.6

  2.8

  3.2

  19

  3.2

  3.2

  18

  4

  2.6

  2.8

  3

  17

  2.6

  2.8

  2.8

  16

  2

  3

  3.4

  21

  3

  2.6

  25

  3

  3.6

  27

  3.4

  3.2

  4

  26

  3.2

  3

  4

  3

  3

  3.4

  3.6

  24

  2.4

  2.6

  3.2

  23

  2.6

  2.8

  3.4

  22

  15

  3.2

  3.2

  3

  7

  2.6

  2.8

  2.8

  6

  2

  3

  3

  5

  2.2

  3.2

  3

  4

  2.6

  3

  3

  3

  3.2

  3.2

  3.2

  2

  2.6

  3

  3

  2.4

  3.2

  3.2

  14

  2.8

  3

  3

  13

  2.8

  3.4

  3.2

  12

  3

  3.6

  11

  8

  2.8

  2.8

  3

  10

  2.4

  4

  4

  9

  2.2

  3

  2.4

  3 Lanjutan No Responden Pengetahuan Sikap Tindakan

  42

  3

  3

  3.4

  3.2

  61

  3.2

  3.6

  3.8

  60

  3.2

  3.6

  59

  4.2

  3.2

  4

  3.6

  58

  2.8

  3.6

  4.4

  57

  2.8

  3.2

  3.8

  62

  4.2

  3.2

  66

  3.4

  3.8

  68

  3

  3.2

  3.8

  67

  3.2

  3.8

  4.2

  3.2

  3

  3.4

  3

  65

  2.8

  3.6

  4

  64

  3

  3.8

  4

  63

  56

  3.2

  4.6

  3.2

  48

  3.2

  3.4

  4.6

  47

  3

  3

  3.4

  46

  3

  3.6

  3.2

  45

  3.2

  3.4

  3.8

  44

  2.2

  4.2

  4.8

  43

  3.2

  3.2

  4.6

  3

  3.2

  3.4

  55

  2

  3

  3

  54

  3.2

  3.6

  4.4

  53

  3.2

  3.6

  52

  49

  3.4

  3.6

  4.2

  51

  3

  3.8

  3.6

  50

  3.2

  3.6

  4.2

  2.4 Lanjutan No Responden Pengetahuan Sikap Tindakan

  83

  2.8

  88

  3.6

  3.2

  3

  89

  3

  2.6

  3.8

  90

  3.2

  3.6

  2.4 Rata-rata

  3.59

  3.28

  3

  3.8

  3.2

  85

  2.8

  2.8

  84

  3.4

  3.4

  3.2

  3.6

  87

  3.2

  3

  86

  3.6

  3.2

  2

  2.85 Lampiran 12. Uji statistik korelasi Pearson untuk mengetahui hubungan variabel perilaku masyarakat dengan jumlah limbah yang masuk ke perairan Danau Toba

  Correlations

  Konsumsi Air Konsumsi Konsumsi Pengetahuan Sikap Tindakan Bahan Cair Bahan Padat

  Pearson Correlation 1 0,513 0,712 0,511 0,715 0,789 Konsumsi Air Sig0, (2-tailed) 0,000 0,000 0,000 0,000 0,000

  N

  90

  90

  90

  90

  90

  90

  Pearson Correlation 0,513 1 0,116 0,453 0,520 0,557 Konsumsi Bahan Cair Sig0, (2-tailed) 0,000 0,277 0,000 0,000 0,000

  N

  90

  90

  90

  90

  90

  90

  Pearson Correlation 0,712 0,116 1 0,405 0,701 0,712 Konsumsi Bahan Padat Sig0, (2-tailed) 0,000 0,277 0,000 0,000 0,000

  N

  90

  90

  90

  90

  90

  90

  Pearson Correlation 0,511 0,453 0,405 1 0,542 0,583 Pengetahuan Sig0, (2-tailed) 0,000 0,000 0,000 0,000 0,000

  N

  90

  90

  90

  90

  90

  90

  Pearson Correlation 0,715 0,520 0,701 0,542 1 0,797 Sikap Sig0, (2-tailed) 0,000 0,000 0,000 0,000 0,000

  N

  90

  90

  90

  90

  90

  90

  • Pearson Correlation 0,789 0,557 0,712 0,583 0,797

  1 Tindakan Sig0, (2-tailed) 0,000 0,000 0,000 0,000 0,000 N

  90

  90

  90

  90

  90

  90

  • . Korelasi signifikan pada tingkat kepercayaan 0,01

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