Kajian Sifat Fisika Tanah Ultisol Menggunakan Pembenah Kompos Bertanaman Pakcoy (Brassica rapa L.) Dengan Tingkat Pemberian Air Berbeda

DAFTAR PUSTAKA

Aak, 1991. Dasar-Dasar Bercocok Tanam. Kanisius, Yogyakarta.
Abdurachman, A., U. Kurnia, F. Agusdan A. Dariah, 2006. Sifat Fisik Tanah dan
Metode Analisisnya. Diakses dari http://pustaka.litbang.pertanian.go.id
[2 Desember 2016].

Alberta, J. A., 2016. Kajian Distribusi Air Pada Tanah Inceptisol Bertanaman
Kedelai Dengan Jumlah Pemberian Air Yang Berbeda. Diakses dari
http://jurnal.usu.ac.id [Jurnal].
Anikwe, M. A. N., J. C. Eze and A. N. Ibudialo, 2015. Influence of lime and
gypsum application on soil properties and yield of cassava (Manihot
esculenta Crantz.) in a degraded Ultisol in Agbani, Enugu Southeastern
Nigeria. Soil & Tillage Research 158, 32-38.
Anikwe, M. A. N., J. C. Eze, M. C. Chima and E. E. Ikenganyia, 2016. Soil
physicochemical quality in contrasting tillage systems and its effect on
nodulation and nodulation effectivity of groundnut, Bambara groundnut
and soybean in a degraded Ultisol in Agbani, Enugu Southeastern Nigeria.
Rhizosphere 1, 14-16.
Antinoro, C., E. Arnone and L. V. Noto, 2016. The use of soil water retention
curve models in analyzing slope stability in differently structured soils.

Catena 150, 133-145.
Arsyad, S., 1989. Konservasi Tanah dan Air. IPB-Press, Bogor.
Bandi, A. A., 2014. Kajian Pengaruh Lama Penggenangan Terhadap Kualitas
Air dan Sifat Fisik Tanah Andosol Serta Pertumbuhan Tanaman
Tomat (Lycopersicumes culentum Mill.). Diakses dari http://jurnal.usu.ac.id
[18 Juni 2017].
Cahyono, B., 2003. Teknik dan Strategi Budidaya Sawi Hijau. Yayasan Pustaka
Nusantara, Yogyakarta.
Craig, R. F., 1987. Mekanika Tanah. Erlangga, Jakarta.
Ding, D., Y. Zhao, H. Feng, X. Peng, and B. Si, 2015. Using the doubleexponential water retention equation to determinate how soil pore-size
distribution is linked to soil texture. Soil & Tillage Research 156, 119-130.
Donn, S., R. E. Wheatley, B. M. McKenzie, K. W. Loades, and P. D. Hallett,
2014. Improved soil fertility from compost amendment increases root
growth and reinforcement of surface soil on slopes. Ecological
Engineering 71, 458-465.

65
Universitas Sumatera Utara

66


Fitzpatrick, E. A., 1986. An Introduction To Soil Science. John Willey & Sons,
New York.
Foth, H. D., 1951. Fundamentals Of Soil Science Eight Edition, John Willey &
Sons, New York.
Frey, S. K., H. T. Hwang, Y. J. Park, S. I. Hussain, N. Gottschall, M. Edwards
and D. R. Lapen, 2016. Dual permeability modeling of tile drain
management influences on hydrologic and nutrient transport
characteristics in macroporous soil. Journal of Hydrology 535, 392-406.
Fungo, B., J. Lehmann, K. Kalbitz, M. Thion, I. Okeyo, M. Tenywa and H.
Neufeldt, 2016. Aggregate size distribution in a biochar-amended tropical
Ultisol under conventional hand-hoe tillage. Soil & Tillage Research 165,
190-197.
Gao Lu, S., Z. Malik, D. P. Chen, and C. F. Wu, 2014. Porosity and pore size
distribution of ultisols and correlations to soil iron oxides. Catena 123,
79-87.
Gupta, P., J. Alam and M. Muzzammil, 2016. Influence of thickness and position
of the individual layer on the permeability of the stratified Soil.
Perspectives in Science 8, 757-759.
Hanafiah, K. A., 2005. Dasar-Dasar Ilmu Tanah. PT Raja Grafindo Persada,

Jakarta.
Harahap, I. P., 2016. Sifat Fisika Dan Kimia Tanah Inceptisol Dengan Perlakuan
Kompos. Diakses dari http://repository.usu.ac.id [2 Desember 2016].
Hardjowigeno, S., 1992. Ilmu Tanah. Mediyatama Sarana Perkasa, Jakarta.
Hardjowigeno, S., 1993. Klasifikasi Tanah Dan Pedogenesis. Akademika
Pressindo, Jakarta.
Haridjaja, O., D. P. T. Baskoro, and M. Setianingsih, 2013. Perbedaan Nilai
Kadar Air Kapasitas Lapang Berdasarkan Metode Alhricks, Drainase
Bebas, Dan Pressure Plate Pada Berbagai Tekstur Tanah Dan
Hubungannya Dengan Pertumbuhan Bunga Matahari (Helianthus annuus,
L.). Diakses dari http://journal.ipb.ac.id [Jurnal].
Haryanto, E., dan T. Suhartini, 2002. Sawi dan Selada. Penebar Swadaya, Jakarta.
Hassan, W., J. David and F. Abbas, 2013. Effect of type and quality of two
contrasting plant residues on CO2 emission potential of Ultisol soil:
Implications for indirect influence of temperature and moisture. Catena
114, 90-96.

Universitas Sumatera Utara

67


Hausenbuiller, R. L., 1982. Soil Science. Fourth Printing. United States of
America.
Huda, N., 2016. Sifat Fisika Dan Kimia Tanah Ultisol Dengan Perlakuan
Kompos. Diakses darihttp://repository.usu.ac.id [2 Desember 2016].
Hillel, D., 1980. Applications of Soil Physics. Academic Press, New York.
Hillel, D., 1981. Soil and Water. Academic Press, New York.
Hontoria, C., C. G. Paccard, I. M. Sancho, M. Benito, J. Pérez and R. Espejo,
2016. Aggregate size distribution and associated organic C and N under
different tillage systems and Ca-amendment in a degraded Ultisol. Soil &
Tillage Research 160, 42-52.
Hossain, M. F., W. Chen, and Y. Zhang, 2015. Bulk density of mineral and
organic soils in the Canada’s arctic and sub-arctic. Information
Processing in Agriculture 2, 183-190.
Ichsan, C. N., M. Hayati, and S. P. Mashtura, 2010. Respon Kedelai Kultivar
Kipas Putih dan Wilis Pada Kadar Air Tanah Yang Berbeda Terhadap
Pertumbuhan dan Hasil. Diakses dari http://jurnal.unsyah.ac.id [Jurnal].
Irsal,

L.,

1979.
Analisis
Fisika
Tanah.
Diakses
http://balittanah.litbang.pertanian.go.id [10 Desember 2016].

dari

Islami, T., dan W. H. Utomo, 1995. Hubungan Tanah, Air dan Tanaman. IKIP
Semarang Press, Semarang.
James, L. G., 1988. Principles of Farm Irrigation System Design. John Wiley &
Sons, Inc., Kanada.
Jiang, X. J., S. Liu and H. Zhang, 2016. Effects of different management practices
on vertical soil water flow patterns in the Loess Plateau. Soil & Tillage
Research 166, 33-42.
Jury, W. A., W. R. Gardner, and W. H. Gredner, 1991. Soil Physics. John Willey
and Sans, Inc., New York.
Kravchenko, A. N and A. K. Guber, 2016. Soil pores and their contributions to soil
carbon processes. Geoderma 287, 31-39.


Kuncoro, P. H., K. Koga, N. Satta and Y. Muto, 2014. A study on the effect of
compaction on transport properties of soil gas and water. II: Soil pore
structure indices. Soil & Tillage Research 143, 180-187.
Kurnia, U., F. Agus, A. Adimihardja and A. Dariah, 2006. Sifat Fisik Tanah dan
Metode Analisisnya. BBSDL-Litbang Deptan, Bogor.

Universitas Sumatera Utara

68

Limantara, L. M., 2010. Hidrologi Praktis. Lubuk Agung, Bandung.
Lingga, P., dan Marsono., 2000. Petunjuk Penggunaan Pupuk. Penebar Swadaya,
Jakarta.
Lingga, P., dan Marsono, 2008. Petunjuk Penggunaan Pupuk. Penebar Swadaya,
Jakarta.
Linsley, R. K., M. A. Kohier and J. L. H. Paulhus, 1989. Hidrologi untuk Insinyur
Edisi Ketiga. Erlangga, Jakarta.
Lubis, K. S., 2015. Pengantar Fisika Tanah. USU Press, Medan.
Martin, M. A., M, Reyes, and F. J. Taguas, 2016. Estimating soil bulk

density with information metrics of soil texture. Geoderma 287, 66-70.
McGrath, D and J. Henry, 2016. Organic amendments decrease bulk density and
improve tree establishment and growth in roadside plantings. Urban
Forestry & Urban Greening 20, 120-127.
Mukhlis, 2007. Analisis Tanah Tanaman. USU Press, Medan.
Moctava, M. A., Koesriharti dan M. Dawam, 2013. Respon Tiga Varietas
Sawi (Brassica rapa L.) Terhadap Cekaman Air. Diakses dari
http://protan.studentjournal.ub.ac.id [19 Juni 2017].
Noor, M., 1996. Padi Lahan Marginal. Penebar Swadaya, Jakarta.
Novizan, 2002. Petunjuk Pemupukan Yang Efektif. Agro Media Pustaka, Jakarta.
Oliva, S. R., M. D. Mingorance, and A. Pena, 2016. Effect of two different
composts on soil quality and on the growth of various plant species in a
polymetallic acidic mine soil. Chemosphere 168, 183-190.
Pla, C., S. Cuezva, J. M. Martinez, A. F. Cortes, E. G. Anton, N. Fusi, G. B.
Crosta, J. C. Gonzales, J. C. Cañaveras, S. S. Moral and D. Benavente,
2016. Role of soil pore structure in water infiltration and CO2 exchange
between the atmosphere and underground air in the vadose zone: A
combined laboratory and field approach. Catena 149, 402-416.
Prasetyo, B. H., dan Suriadikarta, D. A., 2006. Karakteristik, Potensi, Dan
Teknologi Pengelolaan Tanah Ultisol Untuk Pengembangan

Pertanian
Lahan
Kering
Di
Indonesia.
Diakses
dari
http://pustaka.litbang.pertanian.go.id [Jurnal].
Poerwowidodo, 1991. Genesa Tanah: Batuan Pembentuk Tanah. Rajawali Press,
Jakarta.

Universitas Sumatera Utara

69

Rahimi, A., H. Rahardjo and E. C. Leong, 2014. Effect of range of soil water
characteristic curve measurements on estimation of permeability function.
Engineering Geology 185, 96-104.
Rohmat, D., dan I. Soekarno, 2006. Formulasi Efek Sifat Fisik Tanah Terhadap
Permeabilitas dan Suction Head Tanah (Kajian Empirik untuk

Meningkatkan Laju Infiltasi). Diakses dari http://file.upi.edu [Jurnal].
Samekto, S., 2006. Pupuk Kompos. Intan Sejati, Klaten.
Schjonning, P., R. A. McBride, T. Keller, and P. B. Obour, 2016. Predicting soil
particle density from clay and soil organic matter contents. Geoderma
286, 83-87.
Sharma, P., Y. Laor, M. Raviv, S. Medina, I. Saadi, A. Krasnovsky, M. Vager,
G. J. Levy, A. B. Tal, and M. Borisover, 2016. Compositional
characteristics of organic matter and its water-extractable components
across a profile of organically managed soil. Geoderma 286, 73-82.
Setyorini, D., R. Saraswati, dan E. K. Anwar, 2003. Kompos. Diakses dari
http://balittanah.litbang.pertanian.go.id [10 Desember 2016].
Sosrodarsono, S dan K. Takeda, 2003. Hidrologi untuk Pengairan. Pradnya
Paramita, Jakarta.
Subagyo, H., N. Suharta, dan A. B. Siswanto, 2004. Tanah-tanah Pertanian di
Indonesia. Diakses dari http://balittanah.litbang.pertanian.go.id [Jurnal].
Subowo, G., 2010. Strategi Efisiensi Penggunaan Bahan Organik Untuk
Kesuburan Dan Produktivitas Tanah Melalui Pemberdayaan Sumberdaya
Hayati Tanah. Diakses dari http://balittanah.litbang.pertanian.go.id
[Jurnal].
Sumono, 2015. Ketahanan Pangan dan Konservasi Lingkungan. Buah Pikiran

Para Guru Besar Fakultas Pertanian Universitas Sumatera Utara, Medan.
USU Press, 2015.
Sutedjo, M. M., dan A. G. Kartasapoetra, 2002. Pengantar Ilmu Tanah
(Terbentuknya Tanah dan Tanah Pertanian). Rineka Cipta, Jakarta.
Song, G., E. H. Novotny, J. D. Mao, and M. H. B. Hayes, 2016. Characterization
of transformations of maize residues into soil organic matter. Science of
the Total Environment, 12.
Sosrodarsono, S., dan K. Takeda, 2000. Hidrologi untuk Pengairan. Pradnya
Paramita, Jakarta.

Universitas Sumatera Utara

70

Sosrodarsono, S., dan K. Takeda, 2003. Hidrologi untuk Pengairan. Pradnya
Paramita, Jakarta.
Triatmodjo, B., 2009. Hidrologi Terapan. Beta Offset, Yogyakarta.
Uhland, R. E. and A. M. O’neal, 1951. Soil Permeability Determination For Use
In Soil and Water Conservation. United States of Agriculture, Washington.
Vicente, L. C., E. F. G. Rodrigues and A. C. G. Rodrigues, 2016. Soil carbon

stocks of Ultisols under different land use in the Atlantic rainforest zone of
Brazil. Geoderma Regional 7, 330-337.
Wang, D., C. Su., W. Zhang., X. Hao., L. Cang., Y. Wang and D. Zhou, 2014.
Laboratory assessment of the mobility of water-dispersed engineered
nanoparticles in a red soil (Ultisol). Journal of Hydrology 519, 16771687.
Wang, Y., M. Duc, Y. J. Cui, A. M. Tang, N. Benahmed, W. J. Sun and W. M.
Ye, 2016. Aggregate size effect on the development of cementitious
compounds in a lime-treated soil during curing. Applied Clay Science
136, 58-66.
Wasis, B., dan A. Sandrasari, 2011. Pengaruh Pemberian Pupuk Kompos
Terhadap Pertumbuhan Semai Mahoni (Swietenia macrophylla King.)
Pada Media Tanah Bekas Tambang Emas (Tailling). Diakses dari
http://repository.ipb.ac.id [Jurnal].
Xu, L., N. He, and G. Yu, 2016. Methods of evaluating soil bulk density: impact
on estimating large scale soil organic carbon storage. Catena 144, 94-101.
Yulipriyanto, H., 2010. Biologi Tanah dan Strategi Pengelolaannya.Graha Ilmu,
Yogyakarta.
Zaffar, M and L. S. Gao, 2015. Pore Size Distribution of Clayey Soils and Its
Correlation with Soil Organic Matter. Pedosphere 25, 240-249.
Zhai, Q and H. Rahardjo, 2015. Estimation of permeability function from the soil
water characteristic curve. Engineering Geology 199, 148-156.
Zhao, J., S. Chen, R. Hu, and Y. Li, 2016. Aggregate stability and size
distribution of red soils under different land uses integrally regulated by
soil organic matter, and iron and alumunium oxides. Soil & Tillage
Research 167, 73-79.
Zhou, W. H., K. V. Yuen and F. Tan, 2014. Estimation of soil water
characteristic curve and relative permeability for granular soils with
different initial dry densities. Engineering Geology 179, 1-9.

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