Study of Chemical Characteristics and Physical Properties in Various Used of Village Agricultural Land Labang, Labang District, Bangkalan Regency

Natasya Putri Reka Arsita, Rossyda Priyadarshini, Purwadi Purwadi

Abstract


Background: Diverse land uses influence soil physical and chemical properties, which subsequently affects agricultural productivity. This study aimed to analyze the effect of different land uses on soil characteristics and determine the land use with the best soil quality in Labang Village, Labang District, Bangkalan Regency. Methodology: A survey method with purposive sampling was applied to three land-use types: paddy fields, dry land, and mixed gardens. Soil samples were collected at two depths (0–20 cm and 20–40 cm) from four sampling points in each land-use type, resulting in 24 samples. Parameters analyzed included soil texture, water content, bulk density, specific gravity, pH, organic carbon, cation exchange capacity (CEC), and total nitrogen. Data were analyzed using ANOVA in a Randomized Block Design followed by Duncan's test. Findings: The results showed that land use significantly affected pH, total nitrogen, clay, silt, and organic carbon, but had no significant effect on bulk density and sand content. Mixed garden land exhibited the best soil quality, characterized by higher organic carbon, nitrogen, and CEC, as well as lower bulk density and better water retention. These conditions are attributed to diverse vegetation that contributes greater organic matter through litter input. Therefore, mixed gardens are considered more effective in maintaining soil quality and supporting plant growth than other land-use types. Contribution: This study provides baseline information for sustainable land management in the Entisol–Inceptisol areas of Labang Village


Keywords


Penggunaan Lahan, Sifat Fisik Tanah, Sifat Kimia Tanah

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Agus, F., Anda, M., Jamil, A., & Masganti. (2016). Formation and Characteristics of Indonesian Tropical Peat. In Indonesian Peatlands: The Suitability of Peatlands for Agriculture (2nd edition). IAARD Press.

Alordzinu, K. E., Li, J., Lan, Y., Appiah, S. A., Al Aasmi, A., Wang, H., Liao, J., Sam-amoah, L. K., & Qiao, S. (2021). Ground-based hyperspectral remote sensing for estimating water stress in tomato growth in sandy loam and silty loam soils. Sensors, 21(17), 1–18. https://doi.org/10.3390/s21175705

Ayuningtyas, E. A., Ilma, A. F. N., & Yudha, R. B. (2018). Mapping soil erodibility and its correlation to soil characteristics in the Serang watershed, Kulonprogo. National Journal of Applied Technology (JNTT), 2(1), 135. https://doi.org/10.22146/jntt.39194

Basuki, B., Mandala, M., Farisi, O. A., Sari, V. K., Ristiyana, S., & Utami, R. A. (2023). Physical-Chemical Characteristics and Soil Classification of Lowland Alluvial Land Using Three Soil Classification Systems. Jurnal Teknik Pertanian Lampung (Journal of Agricultural Engineering), 12(3), 684. https://doi.org/10.23960/jtep-l.v12i3.684-697

Central Statistics Agency of Bangkalan Regency. (2024). Statistics Regions Regency Bangkalan 2024. BPS Bangkalan Regency, 09, 16–33. https://bangkalankab.bps.go.id/en/

publication/2024/12/23/68d24af070882d8fd235e957/regional-statistics-of-bangkalan-regency-2024.html. Accessed on 12th January 2026.

Central Statistics Agency of Bangkalan Regency (BPS). (2020). Bangkalan Regency in Numbers 2020. https://bangkalankab.bps.go.id/id/publication/2020/09/28/a035be5930efc1cef43bbf45/kecamatan-bangkalan-dalam-angka-2020.html. Accessed on 12th January 2026.

Chang, R. (2003). Basic Chemistry Core Concepts. (First Edition). Erlangga.

Das, P. P., Singh, K. R., Nagpure, G., Mansoori, A., Singh, R. P., Ghazi, I. A., Kumar, A., & Singh, J. (2022). Plant-soil-microbes: A tripartite interaction for nutrient acquisition and better plant growth for sustainable agricultural practices. Environmental Research, 214, 113821. https://doi.org/10.1016/j.envres.2022.113821

Elfarisna, E., Rahmayuni, E., Herman, W., Putri, E. L., & Kurniati, K. (2024). Soil Organic Matter and Its Correlation with Several Chemical Properties of Inceptisols in Rice Fields in Java. Universal Journal of Agricultural Research, 12(2), 242–248. https://doi.org/10.13189/ujar.2024.120204

Endang, M. L., Laoli, Y., & Halawa, C. F. (2024). The Effect Of Soil Moisture Content And Porosity On The Efficiency Of Fertilizer Application To Corn Plants. Journal of Agricultural and Fisheries Sciences, 01(01), 1–6.

Faery, D., Harefa, C., & Zebua, M. (2024). The role of cation exchange capacity in maintaining soil fertility in different types of soil textures. Journal of Agricultural and Fisheries Sciences, 01(1), 165–170.

Fageria, N. K. (2016). The use of Nutrients in Crop Plants (1st edition). CRC Press/ Taylor & Francis Group.

Geospatial Information Agency. (2021). Geoportal of the Geospatial Information Agency July 2021. https://tanahair.indonesia.go.id/portal-web/webmap. Accessed on 4Th July 2021

Gong, C., Shao, Y., Luo, M., Xu, D., & Ma, L. (2023). Distribution Characteristics of Heavy Metals in Different Particle Size Fractions of Chinese Paddy Soil Aggregates. Processes, 11(7), 1–12. https://doi.org/10.3390/pr11071873

Handayani, S., Amri, A. I., & Khoiri, M. A. (2014). Growth of Palm Oil (Elaeis guineensis Jacq.) on Peat Soil and Effluent on The Main Nursery. Jomfaperta, 1(2), 63–77. [In Indonesian language]

Isra, N., Lias, S. A., & Ahmad, A. (2019). The Characteristics of Grain-Sizes And Soil Clay Minerals in Landslide Area (Case Study: Jeneberang Sub-watershed) 1. Journal of Ecosolum, 8(2), 62–73.

Khoirunisa, I., Budiman, B., & Kurniasih, R. (2021). The Effect Of Available Soil Water Content And Fertilizer Management On The Growth Of Meniran (Phyllanthus niruri). Journal of Precision Agriculture, 5(2), 138–146. https://doi.org/10.35760/jpp.2021.v5i2.5285

Liu, J., Sleeter, B., Selmants, P. C., Diao, J., Zhou, Q., Worstell, B., & Moritsch, M. (2021). Modeling watershed carbon dynamics as affected by land cover change and soil erosion. Ecological Modelling, 459(650), 109724. https://doi.org/10.1016/j.ecolmodel.2021.109724

Lumbanraja, J., Amalia, R. H., Sarno, Dermiyati, Hasibuan, R., Agustina, W., Satgada, C. P., Zulkarnain, E., & Awang, T. R. (2019). Ammonium Exchange Behavior and Production of Sugarcane (Saccharum officinarum L.) Fertilized Inorganic NPK and Organic in Sugarcane Planting in Ultisol Tanah Gedung Meneng. Journal of Tropical Upland Resources, 01(01), 1–18.

Manan, L. I. (2016). Identification Of Morphology And Chemical Properties Of Soil Under Cassava (Manihot esculenta Crantz) And Natural Rubber (Hevea Brasiliensis) Vegetation In Kalibalangan Village, North Lampung Regency. Undergraduate thesis of University of Lampung. https://digilib.unila.ac.id/24921/ [In Indonesian language]

Multazam, J. Z., Sukweenadhi, J., Ekawati, C. J. K., Anwar, K., Indra, G., Adnan, J., Amir, S., Muhammad, N., & Wisnubroto, P. (2025). Soil Fertility and Organic Matter (1st edition). CV Hei Publishing Indonesia.

Muslim, R. Q., Kricella, P., Pratamaningsih, M. M., Purwanto, S., Suryani, E., & Ritung, S. (2020). Characteristics of Inceptisols derived from basaltic andesite from several locations in volcanic landform. Sains Tanah - Journal of Soil Science and Agroclimatology, 17(2), 115. https://doi.org/10.20961/stjssa.v17i2.38221

Murtilaksono, K., & Wahyuni, E. D. (2004). The relationship between groundwater availability and the basic properties of soil physics. Journal of Soil and Environmental Sciences, 6(2), 46–50. https://doi.org/10.29244/jitl.6.2.46-50

Muyassir, Sufardi, & Saputra I. (2012). Changes in the physical properties of inceptisol due to differences in the type and dosage of organic fertilizers. Lent, 12(1), 1–8.

Nengsih, Y. (2015). Application of Organic Fertilizers and Inorganic Fertilizers to the Growth of Oil Palm Seedlings (Elaeis guineensis) in Main Nurseries. Scientific Journal of Batanghari University of Jambi, 15(4), 1–6.

Nurilmi, N. D. M., Achmad, M., & Suhardi, S. (2017). Estimation of Soil Moisture in Inceptisols for Horticultural Crops Using Landsat 8 Imagery. Jurnal AgriTechno, 10(2), 2–3.

Omposunggu, G. P., Guchi, H., & Razali. (2015). Mapping the Status of C-Organic on Paddy Soil of Sei Bamban Subdistric of Sei Bamban Distric of Serdang Bedagai. Journal of Agroecotechnology, 4(1), 1830–1837.

Pasaribu, N., Wahjunie, E. D., & Tarigan, S. D. (2023). Characteristics of soil physical properties in different soil management of oxisols and inceptisols. Agrovigor Jurnal Agroekoteknologi, 16(2), 83–90. https://doi.org/10.21107/agrovigor.v16i2.19869

Putra, A. R., Rudiansyah, M. M. D. H., Darmawan, D., Mardikaningsih, R., & Sinambela, E. A. (2022). The Influence of Lifestyle, Physical Environment, and Price Perception on Lottemart Customer Loyalty. Economics and Management, 2(1), 71–85.

Putri, O. H., Utami, S. R., & Kurniawan, S. (2019). Sifat kimia tanah pada berbagai penggunaan lahan di UB Forest. Jurnal Tanah dan Sumberdaya Lahan, 6(1), 1075–1081. https://doi.org/10.21776/ub.jtsl.2019.006.1.6

Rahmadani, A. D., Wahyudi, I., & Rois. (2020). Soil Nitrogen Nutrient Status Under Three Land Uses In Lolu Village of Sigi Regency. Agrotechbis: Journal of Agricultural Sciences, 8(1), 32–37.

Rahmawati, R. P., Sugeng Prijono, Akbar, S., & Rahman, Y. A. (2023). Physical Properties Of Soil And Growth Of Rice Plants (Oryza sativa L.) As A Result Of The Application Of Decomposers On The Multispectral Camera Image-Based Fertilization Recommendation System In Sukamandijaya, West Java. Journal of Soil and Land Resources, 10(2), 483–489. https://doi.org/10.21776/ub.jtsl.2023.010.2.31

Rai, R. K., Singh V.P, & Upadhyay A. (2017). Planning and Evaluation of Irrigation Projects: Methods and Implementation (1st ed). Academic press.

Safitri, A., Daru, T. P., Anjani, F. M., Ardiansyah, & Huko, F. A. P. (2024). Growth of Sorghum (Sorghum bicolor (L.) Moench) Numbu, BMR Strain G5 and G8 at Different Manure Doses in Podsolik Soil, East Kalimantan. Journal of Nutrition Science and Feed Technology, 22(2), 110–115. https://doi.org/10.29244/jintp.22.2.110-115

Sainju, U. M., & Liptzin, D. (2022). Relating soil chemical properties to other soil properties and dryland crop production. Frontiers in Environmental Science, 10, 1005114. https://doi.org/10.3389/fenvs.2022.1005114

Salam, A. K. (2020). Soil Science (2nd edition). Global Madani Press Bandar Lampung. 393 page. [In Indonesian language]

Saputri, R. R. (2020). Soil Chemical Characteristics in Rice Field Use After 34 Years in Kemuning Muda Village, Siak Regency. 4–7.

Sarwono, H. (2003). Soil Classification and Pedogenesis (5th edition). Academics Pressindo. 276 page.

Scott, W. (2021). Comparative Analysis of Acidity Content (pH) of Rice Fields Using Calorimeter and Electrometer Methods in Matang Setiai Village. Hadron Journal, 3(1), 10–12. https://doi.org/10.33059/jh.v3i1.3758

Suryani, I. (2014). Cation Exchange Capacity (CEC) of various soil depths in forest land conversion areas. Jurnal Agrisistem, 10(2), 99-106. https://ejournal.polbangtan-gowa.ac.id/J-Agr/article/view/29 [In Indonesian language]

Soil Research Center. (1995). Technical Guidelines for Soil Fertility Evaluation. Technical Report no. 14. Version 1.0.1. REP II Project, CSAR (7th edition). Bogor Soil Research Center.

Tuas, M. A., Raharjo, K. T. P., & Kapitan, O. B. (2022). Identification of the Chemical Properties of Entisol Soil in the Drylands of Sekon Village, Insana Subdistrict, North Central Timor Regency – NTT. Jurnal BETA (Biosistem dan Teknik Pertanian), 10(2), 396. https://doi.org/10.24843/jbeta.2022.v10.i02.p22 [In Indonesian language]

Wahyunto, & Dariah, A. (2014). Land Degradation in Indonesia: Existing Conditions, Characteristics, and Uniformity of Definitions Support the Movement Towards One Map. Journal of Land Resources , 8(2), 81–93.

Wang, Z., Zhang, L., Sun, G., Zhou, W., Sheng, J., Ye, X., Olaniran, A. O., & Kana, E. B. G. (2022). Adsorption Characteristics of Three Types of Soils on Biogas Slurry Ammonium Nitrogen. Frontiers in Environmental Science, 10(June), 1–12. https://doi.org/10.3389/fenvs.2022.942263

Wijaya, E. (2024). Soil Organic Carbon Analysis in Coffee-Based Agroforestry Systems. Undergraduated thesis of Agrotechnology department, Hasanuddin University. https://repository.unhas.ac.id/id/eprint/38789/

Wismaria, T., & Dermawan, Z. (2026). Natural resource management through soil conservation techniques for water use efficiency in drylands. Jimakun : Journal of Management and Accounting Sciences of the Archipelago, 2(1), 1–6.




DOI: https://doi.org/10.36987/jpbn.v12i2.9175

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