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DAFTAR PUSTAKA. BSN, SNI , Air dan Air Limbah Bagian 24 : Cara Uji Warna Secara Perbandingan Visual, Badan Standarisasi Nasional (BSN).

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DAFTAR PUSTAKA

Alaert, G. dan Santika, S., (1987), Metode Penelitian Air, Penerbit Usaha Nasional, Surabaya.

Asselin, M., Drogui, P., Benmoussa, H., and Jean – Francois Blais, (2008), Effectiveness of Electrocoagulation Process in Removing Organic Compounds From Slaughterhouse Wastewater Using Monopolar and Bipolar Electrolytic Cells, Chemosphere, Volume 72 pp. 1727 – 1733. Badan Pengkajian dan Penerapan Teknologi (BPPT), 2006, Mengemas Air

Gambut Asin Menjadi Siap Minum, http://nuansaonline.net, akses 23 January 2009.

BAPEDAL, SNI 06-2503-1991, Metode Pengujian Kadar Kebutuhan Oksigen Biokimiawi Dalam Air, Badan Pengendalian Dampak Lingkungan (BAPEDAL)

Benefield, L. D., Joseph, F., Judkins and Barron L. Weand, (1982), Process Chemistry For Water and Wastewater Treatment, Prentice Hall Inc., New Jersey.

BSN, SNI 06-6989.24-2005, Air dan Air Limbah – Bagian 24 : Cara Uji Warna Secara Perbandingan Visual, Badan Standarisasi Nasional (BSN).

BSN, SNI 06-6989.15-2004, Air dan Air Limbah – Bagian 15 : Cara Uji Kebutuhan Oksigen Kimiawi (KOK) Refluks Terbuka Dengan Refluks Terbuka Secara Titrimetri, Badan Standarisasi Nasional (BSN).

BSN, SNI 06-6989.34-2005, Air dan Air Limbah – Bagian 34 : Cara Uji Kadar Aluminium (Al) Dengan Spektrofotometer Serapan Atom (SSA), Badan Standarisasi Nasional (BSN).

BSN, SNI 06-6989.4-2004, Air dan Air Limbah – Bagian 4 : Cara Uji Besi (Fe) Dengan Spektrofotometri Serapan Atom (SSA) – Nyala, Badan Standarisasi Nasional (BSN).

BSN, SNI 06-6989.5-2004, Air dan Air Limbah – Bagian 5 : Cara Uji Mangan (Mn) Dengan Spektrofotometri Serapan Atom (SSA) – Nyala, Badan Standarisasi Nasional (BSN).

BSN, SNI 06-6989.7-2004, Air dan Air Limbah – Bagian 7 : Cara Uji Seng (Zn) Dengan Spektrofotometri Serapan Atom (SSA) – Nyala, Badan Standarisasi Nasional (BSN).

(2)

BSN, SNI 06-6989.16-2004, Air dan Air Limbah – Bagian 16 : Cara Uji Kadmium (Cd) Dengan Spektrofotometri Serapan Atom (SSA) – Nyala, Badan Standarisasi Nasional (BSN).

BSN, SNI 06-6989.6-2004, Air dan Air Limbah – Bagian 6 : Cara Uji Tembaga (Cu) Dengan Spektrofotometri Serapan Atom (SSA) – Nyala, Badan Standarisasi Nasional (BSN)

Buffle J.A.E. (1977), Les Substances Humiques et leurs Interactions Avec Les Ions Mineraux, Conference Proceedings de la Commission d’hydrologie Appliquee de A.G.H.T.M., I’Universite d’Orsay, pp. 3-10.

Cahyana, Gedehace, (2009), Adsorbsi Karbon Aktif, http://gedehace.blogspot.com/2009/03/adsorpsi-karbon-aktif.html, akses 18 Mei 2009.

Chaidir, Z., Alif, A., Tetra, N., (1999), Aktivitas Koagulan dari Fraksi-Fraksi Protein Biji Kelor Terhadap Penjernihan Air Rawa Gambut, Jurnal Kimia Andalas, 5(2), Hal. 99-103.

Chatterjee, A.K., (1979), Water Suply and Sanitary Engineering, Khanna Publishers, Delhi.

Collet (2007), Humus, Humic, Acid and Humates, http://www.chelatedtracemineral.com, akses 28 april 2009.

Ghernaout, D., Ghernaout, B., Boucherit, A., Naceur, M.W., Khelifa, A., Kellil, A., (2009), Study on Mechanism of Electrocoagulation With Iron Electrodes in Idealised Conditions and Electrocoagulation of Humic Acid Solution in Batch Using Aluminium Electrodes, Desalination and Water Treatment, 8, pp. 91-99.

Departemen Kesehatan, Keputusan Menteri Kesehatan RI, Nomor : 907/MENKES/SK/VII/2002, Tanggal 29 Juli 2002 tentang Persyaratan Kualitas Air Minum, www.depkes.go.id, diakses tanggal 14 November 2008.

Departemen Kesehatan, Peraturan pemerintah Nomor 82 tahun 2001 tentang Pengelolaan Kualitas Air dan Pengendalian Pencemaran Air, www.depkes.go.id, diakses tanggal 14 November 2008.

Departemen Kesehatan, PERMENKES No. 416/Men Kes/Per/IX/1990 Tentang Standar Air Minum dan Air Bersih, www.depkes.go.id, diakses tanggal 14 November 2008.

Duan, J., and Gregory, J., (2003), Coagulation by Hydrolysing Metal Salt, Advances in Colloid and Interface Science 100-102, pp. 475-502.

(3)

Eckenfelder, W.W., (1989), ”Industrial Water Pollution Control”, 2nd ed. McGrawHill, Inc. New York.

Effendi, Hefni (2003), Telaah kualitas air, Kanisius Yogyakarta, hal 61- 62. Emamjomeh, Mohammad M. and Sivakumar, Muttucumaru, (2009), Review of

Pollutans Removed by Electrocoagulation and Electrocagulation/Flotation Processes, Journal of Environmental Management 90, pp. 1663 – 1679. Fair, G. M., Geyer, J. C., and Okun, D. A., (1978), Water and Wastewater

Engineering, Volume 2, John Willey and Sons Inc., New York.

Ge, J., Qu, J., Lei, P., and Liu, H., (2004), New Bipolar Electrocoagulation-Electroflotation Process for the Treatment of Laundry Wastewater, Separation and Purification Technology 36: pp. 33-39.

Hadi, Anwar., (2007), Prinsip Pengelolaan Pengambilan Sampel Lingkungan, Penerbit PT GramediaPustaka Utama, Jakarta, Hal. 89 – 94.

Hammer, Mark J., (1977), Water and Wastewater Technology, John Wiley and Sons Inc, New York.

Hamonangan Nainggolan, (1994), “Pengembangan Teknik Analisis Pencemar Mikroorganik Serta Pembinaan Model Sistem Perawatan Air Buangan Berminyak.” Disertasi, Fakulti Sains Fizis dan Gunaan Universiti Kebangsaan Malaysia, Bangi.

Hartomo, A.J, Widiatmoko, M.C., (1994), Teknologi Membran Pemurnian Air, Andi Offset, Jogyakarta.

Holt, P. K., (2002), Electrocoagulation : Unravelling and Synthesising the Mechanisms Behind a Water Treatment Process, Department of Chemical Engineering, University of Sydney.

Holt, P. K., Barton, G.W., and Mitchell, C.A., (2001), The Role of Current in Determining Pollutant Removal in a Batch Electrocoagulation Reactor, in 6th World Congressof Chemical Engineering, Conference Media CD, Melbourne, Australia.

Holt, P.K., Barton, G.W., and Mitchell, C.A., (2004), The Future for Electrocoagulation as A Localised Water Treatment Technology, Chemosphere, Elsevier Ltd, pp. 1-13.

Holt, P.K., Barton, G.W., and Mitchell, C.A., (2006), “Electrocoagulation as Wastewater Treatment” The Third Annual Australian Environmental Engineering Research Event, 23-26 November 1999 Castlemaine, Victoria., Departement of Chemical Engineering, The University of Sydney, New South

(4)

Irianto, (1998), Kinetika Penurunan Warna & Zat Organik Air Gambut Menggunakan Tanah Lempung Gambut Dengan Sistem Batch, Penelitian Puslitbang Pemukiman bekerja sama dengan PAU ITB.

Kiely, G. (1998), ”Environmental Engineering”, Irwin McGraw-Hill, Boston. Koparal, A.S., (2008), Effect of Initial pH on the Removal of Humic Substances

from Wastewater by Electrocoagulation, Separation and Purification Technology 59, pp. 175 – 182.

Kusnaedi, (2006), Mengolah Air Gambut dan Kotor untuk Air Minum, Penebar Swadaya, Jakarta, Hal. 17-20.

Letterman, R.D., Amirtharajah, A. dan O’melia, C.R. (1999), Coagulation and Floculation in Water Quality, A Handbook of Community Watersuplies, Editor : Letterman, R.D. and American Water Association, Mc Graw-Hill, New York.

Mameri, N, Yeddou, A.R., Lounici, H., Belhocine, D., Grib, H., and Bariou B., (1998), Defluoridation of Septentrional Sahara Water of North Africa by Electrocoagulation Process Using Bipolar Aluminium Electrodes, Water Research, Vol. 32, No. 5, pp. 1604 – 1612.

Mollah, M.Y.A., Schennach, R., Parga, J. R., and Cocke, D. L., (2001), Electrocoagulation (EC) – Science and Aplications, Gill Chair of Chemistry & Chemical Engineering, Lamar University, Beaumont, TX 77710, USA. Mollah, M.Y.A., Morkovsky, P., Gomes, J.A.G., Kesmez, M., Parga, J.,

Cocke,D.L., (2004), Fundamentals, Present and Future Prespectives of Electrocoagulation, Journal of Hazardous Material, B114 : pp. 199 -210. Ni’am, M. F., Othman, F., Sohaili J., Fauzia, Z., (2007), Removal of COD and

Turbidity to Improve Wastewater Quality Using Electrocoagulation Technique, The Malaysian Journal of Analytical Sciences, Vol. 11, No. 1 : pp.198-205.

Notodarmojo S., (1994), Pengolahan Air Berwarna, Kajian Terhadap Studi Laboratorium, Makalah Lokakarya Pengolahan Air Berwarna, Palangkaraya. O.S. Amuda, and I.A. Amoo, (2007), “Coagulation/Flocculation Procces ang

Sludge Conditioning in Beverage Industrial Wastewater Treatment”, Journal of Hazardous Materials 141, pp. 778-783.

Pansu, M., Gautheyrou, J., (2006), Handbook of Soil Analysis : Mineralogical, Organics and Inorganics Methods, Part 2, Springer Berlin Heidelberg, pp. 371-397.

(5)

Pararaja, A., (2008), Metode Pengolahan Air, http://pararaja.wordpress.com. Diakses 20 April 2009.

Reynold, Tom D., (1977), Unit Operation and Processing Environmental Engineering, Texas A & M University.

Proste, Ronald L., (1997), “Coagulation and Flocculation”, Theory and Practice of Water and Wastewater Treatment, John Willey & Sons Inc., New York. Sanks, Robert L., (1982), Water Treatment Plant Design, Ann Arbor Science,

Michigan.

Sincero,A.P., and Sincero, A.G., (1990), “Physical-Chemical Treatment of Water and and Wastewater”, London : CRC – Press.

Singh, T.S., Bhavik Parikh, (2006), Pengamatan Penyerapan Aluminium Dalam Air Minum oleh Absorben Biaya Rendah, India.

Sunardi, (2007), Pengaruh Tegangan Listrik dan Kecepatan Alir Terhadap Hasil Pengolahan Limbah Cair Mengandung Logam Pb, Cd dan TSS Menggunakan Alat Elektrokoagulasi, SDM Teknologi Nuklir – BATAN, Yogyakarta, hal. 441-446.

Susilawati, Alfian, Z., Zarlis, M., and Nainggolan, H., (2009), Model Peat Water Treatment for People Compsumption With Electrocoagulation Method, International Seminar on Chemistry And Polymer 2009, Book of Seminar Programme & Abstracts, Tiara Convention Centre, Medan – Indonesia. Stevenson F.J. (1982), Humus Chemistry : Genesis, Composition, Reactions. John

Wiley and Sons.

Syafran (2005), Pencucian Membran Reverse Osmosis Pada Penjernihan Air Gambut-2, http://syafran.wordpress.com. Akses tanggal 20 April 2009. Syarfi, Syamsu Herman, (2007), Rejeksi Zat Organik Air Gambut Dengan

Membran Ultrafiltasi, Jurnal Sains dan Teknologi, Jakarta, Vol. XII, Hal. 9-14.

Tan, Kim Howard. (1991), Dasar-Dasar Kimia Tanah, Gadjah Mada University Press.

Tan, Kim Howard, (1982) Principles of Soil Chemistry, Marcel – Dekker, Inc. New York, pp 48-58.

Thomann, Robert V. and Muller, John A., (1987), Principles of Surface Water Quality Modelling and Control, Harper and Row Publisher, New York.

(6)

Tjahjono (2007), Kajian Potensi Endapan Gambut Indonesia Berdasarkan Aspek Lingkungan, Departemen Energi dan Sumber Daya Mineral (ESDM), Jakarta, hal 6-14.

Totok Sutrisno, C., (1991), “Teknologi Penyediaan Air Bersih” Penerbit Rhineka Cipta, Jakarta.

Trckova, M., Matlova, L., Hudcova, H., Faldyna, M., Zraly, Z., Dvorska, L., Beran, V., and Pavlik, I., (2005), Peat as a Feed Supplement For Animal : A Review, Review Article, Veterinary Research Institute, Vet. Med. – Czech, 50, (8) : pp. 361 – 367.

Vik, E. A., Carlson, D. A., Eikun, A. S., and Gjessing, E. T., (1984), Electrocoagulation of potable water. Water Research 18 (11), 1355-1360 Vik, E. A., (1980), Small Water Treatment Plants Using Electrocoagulation, 4 th

Asia Pacific Regional Water Supply Conference an Exhibition, Jakarta – Indonesia.

Wagner, E.G., Pinhiero, R.G., (2001), Upgrading Water Treatment Plants, Spon Press, New York, pp. 228-236.

Wikipedia, The Free Encyclopedia, june 2007., “Electrocoagulation”, (http://en.wikipedia.org/wiki/electrocoagulation). Diakses tanggal 30 April.

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