PENGARUH PUPUK DAN AMELIORAN PADA TANAMAN PAKCOY BUDIDAYA SISTEM VERTIKULTUR DENGAN FERTIGASI SUMBU DI LAHAN KERING

Authors

  • Ana Anggelina Juliana Kolo Fakultas Pertanian Sains dan Kesehatan Universitas Timor
  • Wilda Lumban Tobing Fakultas Pertanian Sains dan Kesehatan Universitas Timor
  • Azor Yulianus Tefa Fakultas Pertanian Sains dan Kesehatan Universitas Timor
  • Natalia Desy Djata Ndua Fakultas Pertanian Sains dan Kesehatan Universitas Timor

DOI:

https://doi.org/10.34012/agroprimatech.v8i2.5718

Keywords:

biochar;, compost; , liquid organic fertilizer;, nitrogen fixing bacteria;

Abstract

The purpose of this study was to determine the effect of N fertilizer and ameliorant types on the growth, yield, and nitrogen absorption of pak choy (Brassica rapa L.) plants through wick fertigation systems in vertical cultivation in dry land. The research method used a split-plot design. The main plot is N fertilizer consisting of BPN + Urea, BPN + POC, and BPN + Urea + POC. The subplots are ameliorant types consisting of soil, soil: biochar (1:1), and soil: compost (1:1), which were repeated 3 times so that 27 total experimental combinations were obtained. The results showed that there was an interaction between N fertilizer and ameliorant types that could increase the growth and production of pak choy plants, where the interaction of BPN + Urea + POC treatment with ameliorant types of soil: biochar (1:1) gave the best results in observing the stem diameter and root length of pak choy plants. N fertilizer was able to increase the growth and production of pak choy plants, where BPN + POC gave the best results in observing the dry weight of the crown and N absorption of pak choy plants. The type of ameliorant is able to increase the growth and production of pak choi plants where the soil:compost (1:1) treatment gives the best results in observing plant height and the number of pak choi leaves.

References

Adugna, G. (2016). A review on impact of compost on soil properties, water use and crop productivity. Academic Research Journal of Agricultural Science Research.

Agegnehu, G., Bass, A. M., Nelson, P. N., & Bird, M. I. (2016). Benefits of biochar, compost and biochar-compost for soil quality, maize yield and greenhouse gas emissions in a tropical agricultural soil. Science of the Total Environment, 543. https://doi.org/10.1016/j.scitotenv.2015.11.054

Alotaibi, K. D., & Schoenau, J. J. (2019). Addition of biochar to a sandy desert soil: Effect on crop growth,water retention and selected properties. Agronomy, 9(6). https://doi.org/10.3390/agronomy9060327

Bashan, Y., de-Bashan, L. E., Prabhu, S. R., & Hernandez, J. P. (2014). Advances in plant growth-promoting bacterial inoculant technology: Formulations and practical perspectives (1998-2013). In Plant and Soil (Vol. 378, Issues 1–2). https://doi.org/10.1007/s11104-013-1956-x

Bijay-Singh, & Craswell, E. (2021). Fertilizers and nitrate pollution of surface and ground water: an increasingly pervasive global problem. In SN Applied Sciences (Vol. 3, Issue 4). https://doi.org/10.1007/s42452-021-04521-8

Canellas, L. P., Olivares, F. L., Aguiar, N. O., Jones, D. L., Nebbioso, A., Mazzei, P., & Piccolo, A. (2015). Humic and fulvic acids as biostimulants in horticulture. In Scientia Horticulturae (Vol. 196). https://doi.org/10.1016/j.scienta.2015.09.013

Canfora, L., Malusà, E., Salvati, L., Renzi, G., Petrarulo, M., & Benedetti, A. (2015). Short-term impact of two liquid organic fertilizers on Solanum lycopersicum L. rhizosphere Eubacteria and Archaea diversity. Applied Soil Ecology, 88. https://doi.org/10.1016/j.apsoil.2014.11.017

Choudhury, A. T. M. A., Kecskés, M. L., & Kennedy, I. R. (2014). Utilization of BNF Technology Supplementing Urea N for Sustainable Rice Production. Journal of Plant Nutrition, 37(10). https://doi.org/10.1080/01904167.2014.888746

Ding, Y., Liu, Y. X., Wu, W. X., Shi, D. Z., Yang, M., & Zhong, Z. K. (2010). Evaluation of biochar effects on nitrogen retention and leaching in multi-layered soil columns. Water, Air, and Soil Pollution, 213(1–4). https://doi.org/10.1007/s11270-010-0366-4

Guo, Y., Zhang, M., Liu, Z., Zhao, C., Lu, H., Zheng, L., & Li, Y. C. (2020). Applying and Optimizing Water-Soluble, Slow-Release Nitrogen Fertilizers for Water-Saving Agriculture. ACS Omega, 5(20). https://doi.org/10.1021/acsomega.0c00303

Ji, R., Dong, G., Shi, W., & Min, J. (2017). Effects of liquid organic fertilizers on plant growth and rhizosphere soil characteristics of chrysanthemum. Sustainability (Switzerland), 9(5). https://doi.org/10.3390/su9050841

Kowaljow, E., Gonzalez-Polo, M., & Mazzarino, M. J. (2017). Understanding compost effects on water availability in a degraded sandy soil of Patagonia. Environmental Earth Sciences, 76(6). https://doi.org/10.1007/s12665-017-6573-1

Lal, R. (2020). Soil organic matter content and crop yield. Journal of Soil and Water Conservation, 75(2). https://doi.org/10.2489/JSWC.75.2.27A

Lehmann, J., & Joseph, S. (2024). Biochar for environmental management: Science, technology and implementation. In Biochar for Environmental Management: Science, Technology and Implementation. https://doi.org/10.4324/9781003297673

Sharp, R. G. (2013). A review of the applications of chitin and its derivatives in agriculture to modify plant-microbial interactions and improve crop yields. In Agronomy (Vol. 3, Issue 4). https://doi.org/10.3390/agronomy3040757

Singh, V. K., Malhi, G. S., Kaur, M., Singh, G., & Jatav, H. S. (2022). Use of Organic Soil Amendments for Improving Soil Ecosystem Health and Crop Productivity. In Ecosystem Services: Types, Management and Benefits.

Sipayung, B. P., Tobing, W. L., Tefa, A. Y., epriliati, I., Widyawati, P. S., Laurentinus, H. S., Buan, F. C. H., & Silla, M. E. (2024). Inovasi Teknologi Budidaya Sayuran pada Lahan Kering Melalui Pupuk Organik dan Vertikultur dengan Sistem Fertigasi Sumbu di Desa Napan Kabupaten Timor Tengah Utara NTT. Jurnal Pengabdian Undikma, 5(1). https://doi.org/:https://doi.org/10.33394/jpu.v5i1.10305

Swify, S., Mažeika, R., Baltrusaitis, J., Drapanauskaitė, D., & Barčauskaitė, K. (2024). Review: Modified Urea Fertilizers and Their Effects on Improving Nitrogen Use Efficiency (NUE). In Sustainability (Switzerland) (Vol. 16, Issue 1). https://doi.org/10.3390/su16010188

Tang, H., Chen, M., Wu, P., Faheem, M., Feng, Q., Lee, X., Wang, S., & Wang, B. (2023). Engineered biochar effects on soil physicochemical properties and biota communities: A critical review. In Chemosphere (Vol. 311). https://doi.org/10.1016/j.chemosphere.2022.137025

Tobing, W. L., Ndua, D. D., & Hanas, D. F. (2024a). Utilization of organic ameliorants and fertilizers to increase Entisol total N through axis system fertigation in vertical cultivation. In IOP Conf. Series: Earth and Environmental Science (Vol. 1302). https://doi.org/10.1088/1755-1315/1302/1/012023

Tobing, W. L., Ndua, N. D. D. N., & Hanas, D. F. (2024b). Verticulture Cultivation Fertigation System through Wick: Study of Growth and Yield of Pakchoi in Dry Land. Universal Journal of Agricultural Research, 12(1), 133–147. https://doi.org/10.13189/ujar.2024.120113

Tobing, W. L., Neonbeni, E. Y., Gumelar, A. I., Tuas, M. A., & Sabuna, R. (2022). Serapan dan Efisiensi Penyerapan Hara N dan P Pada Pakcoy (Brassica rapa L.) Sistem Vertikultur di Lahan Kering. Agrosains : Jurnal Penelitian Agronomi, 24(1), 50. https://doi.org/10.20961/agsjpa.v24i1.59912

Yuniarti, A., Suriadikusumah, A., & Gultom, J. U. (2018). Pengaruh pupuk anorganik dan pupuk organik cair terhadap ph, n-total, c-organik, dan hasil pakcoy pada inceptisols. Prosiding Semnastan.

Zhang, M., Cheng, G., Feng, H., Sun, B., Zhao, Y., Chen, H., Chen, J., Dyck, M., Wang, X., Zhang, J., & Zhang, A. (2017). Effects of straw and biochar amendments on aggregate stability, soil organic carbon, and enzyme activities in the Loess Plateau, China. Environmental Science and Pollution Research, 24(11). https://doi.org/10.1007/s11356-017-8505-8

Zhang, Y., Li, D., Zhang, K., Xiao, F., Li, Y., Du, Y., Xue, Y., Zhang, L., Gong, P., Song, Y., & Wu, K. (2023). The Effects of Long-Term Application of Stabilized and Coated Urea on Soil Chemical Properties, Microbial Community Structure, and Functional Genes in Paddy Fields. Agronomy, 13(9). https://doi.org/10.3390/agronomy13092190

Zhu, Z., Zhang, F., Wang, C., Ran, W., & Shen, Q. (2013). Treating fermentative residues as liquid fertilizer and its efficacy on the tomato growth. Scientia Horticulturae, 164. https://doi.org/10.1016/j.scienta.2013.10.008

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Published

2024-10-30