Effect of Combination of Poultry Manure and Rice Husk Biochar on Soil Fertility and Rice Plants

Edy Syafril Hayat, Sri Andayani, Rita Hayati

Abstract


Rice plants occupy a strategic position as a staple food producer for the people of Indonesia. Faced with limited suboptimal soil fertility, especially low levels of nutrients and soil pH, the use of organic fertilizers combined with local ameliorants is one solution to increase soil fertility. The purpose of this study was to obtain a combination of chicken or quail manure with rice husk biochar, which can reduce the use of inorganic fertilizers (urea, SP-36, and KCl). This study used a completely randomized design (CRD) consisting of 7 treatments (A, B, C, D, E, F, and G) which was a combination of 100% to 25% inorganic fertilizer of the recommendations, chicken manure or bird manure quail 5 tons/ha, and rice husk biochar 5 tons/ha. The parameters observed were plant height, total chlorophyll, seed dry weight, soil pH, soil NPK content, and Al-dd content. Observational data were analyzed with the F test at the 5% level then further tests were carried out using the Honest Significant Difference (HSD) test. The results showed that the treatments had a very significant effect, namely C, D, and E treatments resulted in a decrease in Al-dd, and an increase in K and had a significant effect on rice plant height. It was concluded that a combination of 5 tons/ha of chicken manure or quail manure with 5 tons/ha of biochar could increase soil fertility and rice plant height during the vegetative period and could substitute inorganic fertilizers up to 50% of the recommended dose.


Keywords


Poultry Manure; Organic Fertilizer; Rice Plant

Full Text:

PDF

References


Anas, M. A. W. M., Iqbal, Y. B. & De Silva, C. S. (2016). Evaluation of the Effects of Compost as a Substitution for Inorganic Fertilizers on Yield O Rice (Bg 94 - I) in Ampara District. Open University Research Sessions. ISSN 2536-8893, 164-167.

Budiono, R., Adinurani, P G., & Soni, P. (2019). Effect of new NPK fertilizer on lowland rice (Oryza sativa L.) growth. The 2nd International Conference on Natural Resources and Life Sciences (NRLS). IOP Conf. Series: Earth and Environmental Science 293 (2019) 012034 IOP Publishing doi:10.1088/1755-1315/293/1/012034

Dirjen Dukcapil Kemendagri (2022). Dukcapil Kemendagri Rilis Data Penduduk Semester I Tahun 2022, Naik 0,54% Dalam Waktu 6 Bulan. https://dukcapil.kemendagri.go.id/ berita/ baca /1396/dukcapil-kemendagri-rilis-data-penduduk-semester-i-tahun-2022-naik-054-dalam-waktu-6-bulan (Accessed on February 6, 2023).

Efeendi, I., Paiman, & Merismon. (2020). The Role of Rice Husk Biochar Rice Straw Compost on the Yield of Rice (Oryza sativa L.) in Polybag. Journal of Engineering Science and Technology,15(4), 2135-2147

Fahmi, A., Radjagukguk, B. & Purwanto, B.H. (2014). Interaction of peat Soil and Sulphidic material Substratum: Role of Peat Layer and Groundwater Level Fluctuations on Phosphorus concentration. J. Tanah Trop. 19(3), 161-169.

Haryono. (2013). Strategi Kebijakan Kementrian Pertanian dalam Optimalisasi Lahan Suboptimal Mendukung Ketahanan Pangan Nasional. In Prosiding Seminar Nasional Lahan Suboptimal Intensifikasi Pengelolaan Lahan Suboptimal dalam Rangka Mendukung Kemandirian Pangan Nasional Palembang 20-21 September 2013.

Hayat, E S. & Andayani, S. (2014). Pengelolaan Limbah Tandan Kosong Kelapa Sawit dan Aplikasi Biomassa Chromolaena Odorata Serta Sifat Tanah Sulfaquent. J. Teknol. Pengelolaan Limbah (Journal Waste Manag. Technol.), 17(2), 44–51.

Hayat, E S., Andayani, S. & Hayati, R. (2021). Substitution of inorganic fertilizer with organic fertilizer based on poultry waste combined with rice husk biochar. IOP Conf. Ser. Earth Environ. Sci. 82(1), 1–6. doi: 10.1088/1755-1315/824/1/012038.

Kurniawan, R., Anas, I., Widyastuti, R., & Sutandi, A. (2017). Substitusi Pupuk Kimia pada Budidaya Padi SRI Pengaruhnya Terhadap Pertumbuhan, Produksi dan Organisme Tanah. J. Ilmu Tanah dan Lingkung., 19(1), 46–50. doi: 10.29244/jitl.19.1.46-50.

Masulili, A. (2015). Pengelolaan lahan sulfat masam untuk pengembangan pertanian. J. Agrosains, 12(2), 1–13.

Mulyani, A. & Sarwani, M. (2013). Karakteristik dan potensi lahan sub optimal untuk pengembangan pertanian di Indonesia. J. Sumberd. Lahan, 7(1), 47–55.

Nazemi, D., Hairani, A. & Nurita. (2012). Optimalisasi Pemanfaatan Lahan Rawa Pasang Surut Melalui Pengelolaan Lahan dan Komoditas. Agrivor 5, 52-58.

Novak, J. M., Busscher, W. J., Laird, D. L., Ahmedna, M., Watts, D.W., & Niandou, M. A. S. (2009). Impact of biochar amendment on fertility of a southeastern coastal plain. Soil Sci. 174, 105-111.

Sa'adah, N., Halim, A., Abdullah, R., Karsani, S. A., Osman, N., Panhwar, Q. A., & Ishak, C. F. (2018). Influence of Soil Amendments on the Growth and Yield of Rice in Acidic Soil. Agronomy 8, 165.

Sabran M., Ramli, R., Massinai, R., & Firmansyah, M. A. (2003). Alternatif Kebijakan Peningkatan Produksi Beras di Kalimantan Tengah. Prosiding Hasil-hasil Penelitian dan Pengkajian Teknologi Pertanian, Balitbangtan, PSE, Bogor.

Santi, L. P. & Goenadi, D. H. (2010). Pemanfaatan bio-char sebagai pembawa mikroba untuk pemanta agregat tanah Ultisol dari Taman Bogo-Lampung. Menara Perkebunan 78(2), 11-22.

Subagyo, H. (2006). Karakteristik dan Pengelolaan Lahan Rawa. Balai Besar Litbang Sumberdaya Lahan Pertanian, Bogor.

Sukartono & Utomo, W. H. (2012). Peranan biochar sebagai pembenah tanah pada pertanaman jagung di tanah lempung berpasir (sandy loam) semiarid tropis Lombok Utara. Jurnal Penelitian Ilmu-Ilmu Kelaman: Buana Sains, 12(1), 91-98.

Sutono & Nurida, N. L. (2012). Kemampuan biochar memegang air pada tanah bertekstur pasir. Jurnal Penelitian Ilmu-Ilmu Kelaman: Buana Sains. 12(1), 45-52.

Szajdak, L., Brandyk, T. & Szatylowicz, J. (2007). Chemical Properties of different Peat-Marsh Soils From The Biebrza River Valley. Agronomy Research, 5, 165-174.

Wahyudin, U. (2006). Pengaruh pemberian kapur dan kompos sisa tanaman terhadap aluminium dapat ditukar dan produksi tanaman kedelai pada tanah Vertic Hapludult dari Gajrug, Banten. Bul. Agron. 34, 141-147.

Wiratmoko, Winarna, D., Rahutomo, S., & Santoso, H. (2008). Karakteristik Gambut Topogen dan Ombrogen di Kabupaten Labuhan Batu Sumatera Utara untuk Budidaya Tanaman Kelapa Sawit. Jurnal Penelitian Kelapa Sawit, 16(3), 119-126.

Yao, Y., Gao, B., Zhang, M., Inyang, M., & Zimmerman, A. R. (2012). Effect of biochar amendment on sorption and leaching of nitrate, ammonium, and phosphate in a sandy soil. Chemosphere, 89, 1467-1471.

Yu, O.Y., Raichle, B., & Sink, S. (2013). Impact of biochar on the water holding capacity of loamy sand soil. Int J Energy Environ Eng. 4, 1-9.




DOI: http://dx.doi.org/10.26737/ij-mds.v6i1.3751

Refbacks

  • There are currently no refbacks.


Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

Publisher:

Institute of Managing and Publishing of Scientific Journals, STKIP Singkawang

Address : STKIP Singkawang, Jalan STKIP - Kelurahan Naram, Singkawang, Kalimantan Barat, INDONESIA, 79251
No. Telp.   : +62562 420 0344
No. Fax.    : +62562 420 0584

International Journal of Multi Disipline Science

e-ISSN : 2615-1707

Editor in Chief Contact: [email protected] / [email protected] / Wa: +6285310307312

Publisher Contact: [email protected] / [email protected] / Wa: +6282142072788

Management Tools

INTERNATIONAL JOURNAL OF MULTI DISCIPLINE SCIENCE IS INDEXED BY

 

Creative Commons License

International Journal of Multi Discipline Science is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License