• Tidak ada hasil yang ditemukan

DAFTAR PUSTAKA. , 1999, Toxicological Profile for Cadmium, ATSDR, Georgia, USA. Anonim, 2005, Toxicological Profile for Zinc, ATSDR, Georgia, USA.

N/A
N/A
Protected

Academic year: 2022

Membagikan "DAFTAR PUSTAKA. , 1999, Toxicological Profile for Cadmium, ATSDR, Georgia, USA. Anonim, 2005, Toxicological Profile for Zinc, ATSDR, Georgia, USA."

Copied!
6
0
0

Teks penuh

(1)

65

DAFTAR PUSTAKA

Aiken, G.R., McKnight, D.M., Wershaw, R.L., dan MacCarthy, 1985, Humic Subtances in Soil Sediment and Water : Geochemistry, Isolation, and Characterization, John Wiley & Sons, New York.

Agus, F., dan Subiksa, I.G., 2008, Lahan Gambut: Potensi untuk Pertanian dan Aspek Lingkungan, Balai Penelitian Tanah, Badan Penelitian dan Pengembangan Pertanian, Bogor.

Anonim, 1996, Zinc in Drinking-water, Background Document Guidelines for Drinking-water Quality, 2nd ed.2, WHO, Geneva, WHO/SDE/WSH/03.04/17.

, 1999, Toxicological Profile for Cadmium, ATSDR, Georgia, USA.

Anonim, 2005, Atlas of Eh-pH Diagrams, Intercomperasion of thermodynamic databases, National Institute of Advanced Industrial Science and Technology , Geological Survey of Japan Open File Report No.419.

Anonim, 2005, Toxicological Profile for Zinc, ATSDR, Georgia, USA.

Anonim, 2011, Cadmium Drinking-water, Background Document Guidelines for Drinking-water Quality, WHO, Geneva, WHO/SDE/WSH/03.04/80/Rev/1.

Anonim, 2011, Detailed Data Table for The 2011 Priority List of Hazardous Subtances that will be the Subject of Toxicological Profiles, ATSDR Georgia, USA.

Barot, N. S., dan Balga, H. K., 2009, Extraction of Humic Acid from Biological Matrix – Dry Cow Dung Powder. Green Chemistry Letters and Reviews. 2, 4, 217-221.

Barot, N. S., dan Balga, H. K., 2011, Biosorption of Radiotoxic 90Sr by Green Adsorbent: Dry Cow Dung Powder, Journal of Radioanalytical and Nuclear Chemistry, 294, 81-86

Barot, N.S., dan Bagla, H.K., 2012, Eco-friendly Waste Water Treatment by Cow Dung Powder (Adsorption Studies of Cr(III), Cr(IV), and Cd(II) using Tracer Technique), Desalination and Water Treatment, 38, 1-3, 104.

(2)

Candra, I.N., 2012, Studi of Adsorption Isoterm of Zinc and Cadmium in Treated Wastewater, Tesis, FMIPA, Universitas Gadjah Mada, Yogyakarta.

Chaiklahan, R., Chirasuwan, N., Triratana, P., Tia, S., dan Bunnag, B., 2014, Effect of Extraction Temperature on the Diffusion Coefficient of Polysaccharides from Sprirulina and the Optimal Separation Method, Biotechnology and Bioprocess Engineering, 19, 369-377.

Choi, J., Truong, Y.B., Kyratzis, I.L., dan Caruso, R.A., 2013, High surface area mesoporous titanium-zirconium oxide nanofibrous, J. Mater. Chem .A., 1, 19, 2050-7488.

Drever, J.I., 1997, The Geochemistry of Natural Waters: Surface and Groundwater Environments, 3rd edition, Upper Saddle River, New Jersey, Prentice-Hall Inc.

Dupuy, N., dan Douay, F., 2001, Infrared and chemometrics study of the interaction between heavy metals and organic matter in soils, Spectrochimica Acta Part A 57, 5, 1037-1047.

Gakwirisi, C., Raut, N., Al-Saadi, A., Al-Aisri, dan S., Al-Ajmi, A., 2012, A Critical Review of Removal of Zinc from Wastewater, Proceedings of The World Congress on Enginering 2012, Vol.2, July 4 – 6, London, U.K.

Geetha, K.S., dan Belagali, S.L., 2013, Removal of Heavy Metal and Dyes Using Low Cost Adsorbents from Aqueous Medium-, A review, IOSR-JESTFT, 4, 3, 56-68.

Goenadi, D.H., Darmono, T.W., dan Away, Y., 2000, Biodekomposisi Limbah Padat Organik Perkebunan dengan Aktivator OrgaDec dalam Produksi Pupuk Organik dari Kompos Bioaktif, Laporan ARMP, Bogor, Unit Penelitian Bioteknologi Perkebunan 44 pp.

Herdiansyah, dan Januarita, R., 2003, Adsorpsi Cr(IV) pada Air Hitam, Indo. J.

Chem, 3, 3, 169-175.

Huheey, J.R., 1978, Inorganic Chemistry “Principle of Structure and Reactivity”, 2’nd Edition, Happer and Row Publisher.Inc., New York.

Huang, P. M.dan Schnitzer, M., 1986, Interaction of Soils Minerals With Natural Organic and Microbes, Soil Sci. Soc. Am. Inc., New York.

(3)

Joo, J., Chow, B. Y., Prakash, M., Boyden, E. S., and Jacobson, J. M., 2011, Face- selective electrostatic control of hydrpthermal zinc oxide nanowire synthesis, Natural Materials, 10, 596-601.

Kerndorff, H., dan Schinetzer, M., 1980, Sorption of Metals on Humic Acid, Geochim. Cosmochim. Acta, 44, 1577-1581.

Klučáková, M., 2012, Complexation of Copper(II) with Humic Acids Studied by Ultrasound Spectrometry, Organic Chemistry International, Vol.2012, 1-6.

Kulkarni, S.J., dan Kaware, J.P., 2013, A Review on Research for Cadmium Removal from Effluent, IJESIT, 2, 4, 465- 469.

Liu C. dan Huang, P.M., 1999, “Atomic Force Microscopy of pH, Ionic Strength and Cadmium Effects on Surface Features of Humic Acid”, In:

“Understanding Humic Substances” : Advanced Methods, Properties and Applications, The Royal Society of Chemistry, Cambridge, UK.

Mahanan, S.E., 2001, Fundamental of Enviromental Chemistry, CRC Press, Columbia.

Manku, G.S., 1980, Theoretical Principles of Inorganic Chemistry, Tata McGraw Hill Publishing Company Limited, New Delhi.

Martin, D., Srivastava, P.C., Ghosh, D., dan Zech, W., 1998, Characterization of Humic Substance in Cultivated and Natural Forest soils of Sikkim, Geoderma, 84, 345-362.

Ming, H., Naidu, R., Lamb, D.T., dan Megharaj, M., 2010, Dual Metal Solution Mapping Study of Competitive Adsorption between Cadmium and Zink in Soil, 19th World Congress of Soil Science, Soil Solution for Changing World, Brisbane, Australia, 1-6 Agustus.

Pavia, D.L., Lampman, G.M., Kriz, G.S., dan Vyvyan, J.R., 2009. Introduction to Spectroscopy, 4’th, Changage Learning, Australia.

Petrus, A. C., Ahmed, O.S., Muhammad, A.M.N., Nasir, H.M., Jiwan, M., dan Banta, M.G., 2009, Chemical Characteristics of Compost and Humic Acid from Sago Waste (Metroxylon sagu), Am. J. Appl. Sci., 6, 11, 1880-1884.

Piccolo, A. dan Stevenson, F.J., 1982. Infrared spectra of Cu2+, Pb2+, and Ca2+

complexes of soil humic substances, Geoderma, 27, 195-208.

(4)

Prasasti, D., Juari, S., dan Sudiono, S., 2012, Studi Kapasitas Adsorpsi-Reduksi Ion Au(III) pada Asam Humat Hasil Isolasi dari Tanah Gambut Rawa Pening, Jurnal Ilmiah Kefarmasian, 2, 2, 141-151.

Rahmawati, A., 2004, Studi Adsorpsi Kadmium(II) dan Timbal(II) pada Asam Humat, Tesis, FMIPA, Universitas Gadjah Mada, Yogyakarta.

Rahmawati, A., 2011, Pengaruh Derajat Keasaman terhadap Adsorpsi Logam Logam Kadmium(II) dan Timbal(II) pada Asam Humat, Jurnal Penelitian Sains & Teknologi, 12, 1, 1-14.

Rahmawati, A., Santosa, S. J., 2012, Studi Adsorpsi logam Pb(II) dan Cd(II) pada Asam Humat dalam Medium Air, Alchemy, 2, 1, 46-67.

Rao, K.S., Mohapatra, M., Anand, S., dan Venkateswarlu P., 2010, Review on Cadmium Removal from Aqueous Solutions, IJEST, 2, 7, 81-103.

Rupiasih, N.N., dan Vidyasagar, P.B., 2009, Analytical Study of Humic Acid from Various Sources Commonly Used as Fertilizer: Emphasis on Heavy Metal Content, Int. J. of Design & Nature and Ecodynamics. 4, 1, 32-46.

Saadi, P., 1995, Kajian Pemanfaatan Gambut sebagai Adsorben Senyawa Merkuri(II) Anorganik dalam Larutan, Tesis, FMIPA, Universitas Gadjah Mada, Yogyakarta.

Sari, Rr.L.P., 2000, Studi Sorpsi-Desorpsi Kromium(III), Kobalt(II), Nikel(II), dan Tembaga(II) pada Asam Humat dan Bentonit sebagai Model Sistem Tanah, Tesis, FMIPA, Universitas Gadjah Mada, Yogyakarta.

Samat, dan Lesbani, A., 2012, Studi Interaksi Seng (II) pada Asam Humat Muara Kuang serta Aplikasinya terhadap Limbah Industri Pelapisan Seng, Jurnal Penelitian Sains, 15, 1(C), 15105, 22-25.

Santi, L.P., Goenadi, D.H., Widiastuti, H., dan Mardiana, N., 2000, Extraction and Characterization of Humic Acid from Plantation’s Solid Organic Waste Compost, Menara Perkebunan, 62, 2, 1-9.

Santosa, S. J., Siswanta, D., Sudiono, dan Utarianingrum, R., 2008, Chitin-humic Acid Hybrid as Adsorbent for Cr(III) in effluent of Tannery Wastewater Treatment, Applied Surface Science, 254, 7846–7850.

Santoso, U. T., Nurmasari, R., Umaningrum, D., Santosa, S. J., Rusdiarso, B., dan Siswanta, D., 2010, Batch Sorption of Cr(III) on Sorbent Produced through Protected-Crosslinking Method of Humic Acid and Chitosan Beads,

(5)

Proceeding of International Seminar on Green Water Resources, Solo, 8-9 Mei 2010, 61-68.

Santosa, U. T., Nurmasari, R., Umaningrum, D., Santosa, S. J., Rusdiarso, B., dan Siswanta, D., 2012, Immobilization of Humic Acid Onto Chitosan Using Tosylation Method With 1,4-Butanediol As A Spacer Arm, Indo. J. Chem., 12, 1, 35-42.

Santoso, U. T., Santosa, S. J., Siswanta, D., dan Rusdiarso, B., 2010, Evaluation of Humic Acid Activation with Epichlorohydrin and Its Interaction With Chitosan, Proceeding The 2nd International Conference on Chemical Sciences (2nd ICCS-2010), Yogyakarta, 14-16 Oktober.

Santoso, U. T., Santosa, S. J., Siswanta, D., Rusdiarso, B., dan Shimazu, S., 2010, Characterization of Sorbent Produced Through Immobilization of Humic Acid on Chitosan Using Glutaraldehyde as Cross-Linking Agent and Pb(II) Ion as Active Site Protector, Indo. J. Chem., 10, 3, 301-309.

Spark, K.M., Wells, J.D., dan Johnson, B.B., 1997, The Interaction of Humic Acid with Heavy Metals, Aus. J. Soil Res., 35, 89-101.

Schnitzer, M., 1986, Pengikatan Bahan Humat oleh Koloid Mineral Tanah, (dalam Huang, P.M, dan Schnitzer, M., 1986, Interaksi Mineral Tanah dengan Organik Alami dan Mikroba, Terjemahan : Goenadi, D.H., 1997), Gadjah Mada University Press, Yogyakarta.

Sehol, M., 2004, Imobilisasi Asam Humat pada Kitin dan Aplikasinya sebagai Adsorben Cr(III), Tesis, FMIPA, Universitas Gadjah Mada, Yogyakarta.

Stevenson, F.J., 1994, Humus Chemistry : Genesis, Composition, Reactions, 2’nd Edition, John Wiley & Sons Inc, New York.

Sudiarto, B., 2008, Pengolahan Limbah Peternakan Terpadu dan Agribisnis yang Berwawasan Lingkungan, Seminar Nasional Teknologi Peternakan dan Veteriner, Bandung.

Sundari, S., 2005, Immobilisasi Asam Humat pada Kitin dan Aplikasinya untuk Adsorpsi Cu(II), Tesis, FMIPA, Universitas Gadjah Mada, Yogyakarta.

Suyono, 2002, Karakterisasi Fisikokimia, Kapasitas Ikat, dan Pola Ikat Asam Humat Tinja Sapi terhadap Kation Timbal, Disertasi, Universitas Airlangga, Surabaya.

(6)

Tan, K.H., Lobartini, J.C., Himmelsbach, D.S, dan Asmunen, L.E., 1991, Composition of Humic Acid Extracted Under Air and Nitrogen Atmosfer, Commun. Soils Sci. Plant Anal., 22, 861-877.

Torikil, H., 2009, Kajian Adsorpsi-reduksi Ion Au(III) dengan menggunakan Asam Humat Kotor Hasil Isolasi Gambut Danau Rawa Pening Jawa Tengah, Tesis, FMIPA, Universitas Gadjah Mada, Yogyakarta.

Unjianto, B., 2013, Peternakan Penyumbang Terbesar Emisi Gas Rumah Kaca, www.suaramerdeka.com, diakses 16 Maret 2013.

Varrault, G., Camel, V., dan Bermond, A., 2000, Adsorption of Trace Metal Ion onto Humic Acid,Proceedings 10th International Meeting of the International-Humic Substances Society, Touluse, France, 24-28 Juli.

Referensi

Dokumen terkait

Hasil analisis ragam pada jenis media tanam dalam penelitian ini, menunjukkan hasil tidak berbeda nyata terhadap pertumbuhan semai tanaman kemiri pada semua parameter

Hasil dari penelitian yaitu (1) Lembaga Amil Zakat Al-Ittihad melibatkan masyarakat untuk aktif dalam pengelolaan zakat, infaq dan shodaqoh, mulai dalam perencanaan,

Di samping belief, waria juga melakukan ritual sebagai bentuk komunikasi religius dengan Tuhannya, berupa salat atau pun Ibadah yang lain. Selain salat yang mereka

23 Mukesh Manager-Administration & Facilities 24 Vikram Gupta Senior Manager-Facilities Mangement 25 Balraj Singh Manager Administrtion, Facilities & Security 26 Rajesh

Dari data di atas maka dapat diketahui bahwa efisiensi rata-rata penggunaan bahan bakar premium yang paling maksimal adalah ketika menggunakan manifold 4 dan dengan penambahan

Dengan demikian dapat dinyatakan bahwa tidak terdapat perbedaan yang signifikan rata-rata kreatinin pada post treatment kelompok piroksikam dan post treatment

dari uji ANOVA atau F tes ternyata didapat F hitung 14,388 : dimana F hitung > F tabel (14,388 > 2,89) serta dengan nilai signifikan = 0,000< 0,05 maka Ho

Sebagai resort & budget hotel pengunjung Hotel Azana Saptanawa berasal dari kalangan menengah ke atas dengan mempertimbangkan mobilitas yang mudah menuju ke