Research Article
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Year 2025, Volume: 14 Issue: 3, 231 - 239, 01.07.2025
https://doi.org/10.18393/ejss.1683715

Abstract

References

  • AbdelRahman, M.A.E., Metwaly, M.M., Aff, A.A., D’Antonio, P., Scopa, A., 2022. Assessment of soil fertility status under soil degradation rate using geomatics in West Nile Delta. Land 11: 1256.
  • Adewopo, J.B., VanZomeren, C., Bhomia, R.K., Almaraz, M., Bacon, A.R., Eggleston, E., Judy, J.D., Lewis, R.W., Lusk, M., Miller, B., Moorberg, C., Snyder, E.H., Tiedeman, M., 2014. Top-ranked priority research questions for soil science in the 21 century. Soil Science Society of America Journal 78(2): 337–347.
  • Adugna, G.A., 2016. Review on impact of compost on soil properties, water use and crop productivity. Academic Research Journal of Agricultural Science and Research 4(3): 93-104.
  • Al-Rumaihi, A., McKay, G., Mackey, H.R., Al-Ansari, T., 2020. Environmental impact assessment of food waste management using two composting techniques. Sustainability 12(4): 1595.
  • Amundson, R., Berhe, A.A., Hopmans, J.W., Olson, C., Sztein, A.E., Sparks, D.L., 2015. Soil and human security in the 21st century. Science 348(6235): 647–653.
  • Banuwa, I.S., Hidayat, K.F., Zulkarnain, I., Sanjaya, P., Afandi, R.A., 2020. Soil loss and cassava yield under ridge tillage in humid tropical climate of Sumatera, Indonesia. International Journal of GEOMATE 18(67): 1-7.
  • Bhattacharyya, R., Kundu, S., Prakash, V., Gupta, H.S., 2008. Sustainability under combined application of mineral and organic fertilizers in a rainfed soybean-wheat system of the Indian Himalayas. European Journal of Agronomy 28(1): 33-46.
  • Blake, G.R. Hartge, K.H., 1986. Bulk Density. In: Methods of Soil Analysis: Part 1 Physical and Mineralogical Methods. Klute, A. (Ed.). Soil Science Society of America. Madison, Wisconsin, USA. pp.363-375.
  • Bouajila, K., Sanaa, M., 2011. Effects of organic amendments on soil physico-chemical and biological properties. Journal of Materials and Environmental Science 2 (1): 485-490.
  • Bremner, J.M, Mulvaney, C.S., 1982. Nitrogen-Total. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 595-624.
  • Cahyono, P., Astuti, N., Purwito, K., Rahmat, A., 2018. Mapping the rainfall distribution for irrigation planning in dry season at pineapple plantation, Lampung Province, Indonesia (Study case at Great Giant Pineapple Co. Ltd.). IOP Conference Series: Earth and Environmental Science. 129: 012017.
  • Cahyono, P., Loekito, S., Wiharso, D., Rahmat, A.A., Nishimura, N., Senge, M., 2020. Effects of compost on soil properties and yield of pineapple (Ananas comusus L. MERR.) On red acid soil, Lampung, Indonesia. International Journal of GEOMATE 19(76): 33–39.
  • Chang, J., Havlik, P., Leclère, D., de Vries, W., Valin, H., Deppermann, A., Hasegawa, T., Obersteiner, M., 2021. Reconciling regional nitrogen boundaries with global food security. Nature Food 2: 700–711.
  • Chapman, H.D., Pratt, P.F., 1961. Methods of analysis for soils, plants and waters. University of California, Division of Agricultural Science, Riverside, USA. 309p.
  • Eden, M., Gerke, H.H., Houot, S., 2017. Organic waste recycling in agriculture and related effects on soil water retention and plant available water: a review. Agronomy for Sustainable Development 37: 11.
  • Efthimiadou, A., Bilalis, E., Karkanis, D.A., Bob, F.W., 2010. Combined organic/inorganic fertilization enhance soil quality and increased yield, photosynthesis and sustainability of sweet maize crop. Australian Journal of Crop Science 4(9): 722-729.
  • FAO, 2021. The State of the World’s Land and Water Resources for Food and Agriculture – Systems at breaking point (SOLAW 2021) Synthesis report 2021. Food and Agriculture Organization, Rome. Italy.
  • Gee, G.W., Bauder, J.W., 1986. Particle-size analysis, In: Methods of Soil Analysis: Part 1 Physical and Mineralogical Methods. Klute, A. (Ed.). Soil Science Society of America. Madison, Wisconsin, USA. pp. 383–411.
  • Gupta, G.S., 2019. Land degradation and challenges of food security. Review of European Studies 11(1): 63-72.
  • Hemidat, S., Achouri, O., El Fels, L., Elagroudy, S., Hafidi, M., Chaouki, B.A.M., Hodgkinson, I., Guo, J., 2022. Solid waste management in the context of a circular economy in the MENA region. Sustainability 14(1): 480.
  • Hemidat, S., Jaar, M., Nassour, A., Nelles, M., 2018. Monitoring of composting process parameters: a case study in Jordan. Waste and Biomass Valorization 9(3): 2257-2274.
  • Herencia, J.F., Ruiz-Porras, J.C., Melero, S., Garcia-Galavis, P.A., Morillo, E., Maqueda, C., 2009. Comparison between organic and mineral fertilization for soil fertility levels, crop macronutrient concentrations and yield. Agronomy Journal 99(4): 973- 983.
  • Hernández Rodríguez, O.A., Rivera Figueroa, C.H., Díaz Ávila, E.E., Ojeda Barrios, D.L., Guerrero Prieto, V.M., 2017. Plant and livestock waste compost compared with inorganic fertilizer: nutrient contribution to soil. Revista Terra Latinoamericana 35(4): 321–328.
  • Leroy, B.L.M., Herath, H.M.S.K., Sleutel, S., De Neve, S., Gabriels, D., Reheul, D., Moens, M., 2008. The quality of exogenous organic matter: Short-term effects on soil physical properties and soil organic matter fractions. Soil Use and Management 24(2): 139– 147.
  • Li, J., Zhao, B.Q., Li, X.Y., Jiang, R.B., Bing, S.H., 2008. Effects of long-term combined application of organic and mineral fertilizers on microbial biomass, soil enzymes activities and soil fertility. Agricultural Sciences in China 7(3): 336-343.
  • Lindsay, w.l., norvell, w.a., 1978. development of a dtpa soil test for zinc, iron, manganese, and copper. Soil Science Society of America Journal 42(3): 421–428.
  • Liu, D., Zhang, R., Wu, H., Xu, D., Tang, Z., Yu, G., Xu, Z., Shen, Q., 2011. Changes in Biochemical and microbiological parameters during the period of rapid composting of dairy manure with rice chaff. Bioresource Technology 102(19): 9040-9049.
  • Malézieux, E., Bartholomew, D.P., 2003. Plant Nutrition. In: The Pineapple: Botany, Production and Uses. Bartholomew, D.P., Paull, R.E., Rohrbach, K.G. (Eds.). Wallingford, UK. 143-165.
  • Maximillian, J., Brusseau, M.L., Glenn, E.P., Matthias, A.D., 2019. Pollution and Environmental Perturbations in the Global System. In: Environmental and Pollution Science. Brusseau, M.L., Pepper, I.L., Gerba, C.P. (Eds.). Academic Press. pp: 457-476.
  • McLean, E.O., 1982. Soil pH and Lime Requirement. In. Methods of soil analysis, Part 2- Chemical and Microbiological Properties. Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). Soil Science Society of America. Madison, Wisconsin, USA. pp. 199-224.
  • Nardi, S., Pizzeghello, D., Muscolo, A., Vianello, A., 2002. Physiological effects of humic substances on higher plants. Soil Biology and Biochemistry 34: 1527-1536.
  • Nelson, D.W., Sommers, L.E., 1980. Total nitrogen analysis for soil and plant tissues. Journal of the Association of the Official Analytical Chemistry 63(4): 770–778.
  • Nelson, D.W., Sommers, L.E., 1982 Total carbon, organic carbon, and organic matter. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 539–580.
  • Ning, C., Gao, P., Wang, B., Lin, W., Jiang, N., Cai, K. 2017. Impacts of chemical fertilizer reduction and organic amendments supplementation on soil nutrient, enzyme activity and heavy metal content. Journal of Integrative Agriculture 16(8): 1819-1831.
  • Olsen, S.R., Cole, C.V., Watanabe, F.S., Dean, L.A., 1954. Estimation of available phosphorus in soils by extraction with sodium bicarbonate. U. S. Department of Agriculture Circular No. 939. Washington, DC, USA.
  • Oyetunji, O., Bolan, N., Hancock, G., 2022. A comprehensive review on enhancing nutrient use efficiency and productivity of broadacre (arable) crops with the combined utilization of compost and fertilizers. Journal of Environmental Management. 317: 115395.
  • Penuelas, J., Coello, F., Sardans, J., 2023. A better use of fertilizers is needed for global food security and environmental sustainability. Agriculture & Food Security 12: 5.
  • Penuelas, J., Janssens, I.A., Ciai, P., Obersteiner, M., Sardans, J., 2020. Anthropogenic global shifts in biospheric N and P concentrations and ratios and their impacts on biodiversity, ecosystem productivity, food security, and human health. Global Change Biololgy 26(4): 1962-1985.
  • Petrescu-Mag, R.M., Petrescu, D.C., Azadi, H., 2020. A social perspective on soil functions and quality improvement: Romanian farmers’ perceptions. Geoderma 380: 114573.
  • Rhoades, J.D., 1982a. Soluble salts. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 167–179.
  • Rhoades, J.D., 1982b. Cation exchange capacity. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 149-157.
  • Richards, L.A., 1954. Diagnosis and improvement of saline and alkaline soils. Agriculture Handbook, Vol. 60, United States Department of Agriculture (USDA), Washington DC, 160 p.
  • Rusan, M.J., 2017. Selecting the right source of potassium for fertigation. Proceedings for the Frontiers of Potassium Science Conference, O110. 25–27 January 2017. Rome, Italy. International Plant Nutrition Institute, USA.
  • Rusan, M.J., 2018. 4R fertigation extension handbook: A tool for fertilizer and water stewardship. Arab Fertilizer Association (AFA), Cairo, Egypt. 160p.
  • Rusan, M.J., 2023. Soil and Nutrient Management Under Saline Conditions. In: Biosaline Agriculture as a Climate Change Adaptation for Food Security. Choukr-Allah, R., Ragab, R. (Eds.). Springer, Cham. pp. 71–85.
  • Rusan, M.J., Hinnawi, S., Rousan, L., 2007. Long term effect of wastewater irrigation of forage crops on soil and plant quality parameters. Desalination 215: 143–152.
  • Sarwar, G., Schmeisky, H., Tahir, M.A., Iftikhar, Y., Sabah, N.U., 2010. Application of greencompost for ımprovement in soil chemical properties and fertility status. The Journal of Animal & Plant Sciences 20(4): 258-260.
  • Thomas, G.W., 1982. Exchangeable cations. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 159–165.
  • UN, 2022. United Nations Department of Economic and Social Affairs. Population Division. 2022. World Population prospects. UN DESA/POP//2022/No.3. United Nations, New York, USA.
  • Wichuk, K.M., McCartney, D., 2010. Compost stability and maturity evaluation—a literature review. Canadian Journal of Civil Engineering 37(11): 1505-1523.
  • Zaki, M.K.K., Rahmat, A., Pujiasmanto, B., 2018. Organic amendment and fertilizer effect on soil chemical properties and yield of maize (Zea Mays L.) in rainfed condition. Walailak Journal of Science and Technology 17(1): 11–17.

A Combined application of compost and mineral fertilization enhances plant growth and soil fertility in calcareous clay loam soils

Year 2025, Volume: 14 Issue: 3, 231 - 239, 01.07.2025
https://doi.org/10.18393/ejss.1683715

Abstract

Pot experiment was implemented to investigate the effect of compost soil application with and without mineral fertilizers on the plant growth and fertility of calcareous clay loam soils. Randomized complete block design with four replication was used to evaluate the following treatments: i) Control with no compost or fertilizer addition (C); ii) Compost at a rate of 20 ton ha1 (Co); iii) Mineral NPK fertilizer as di-ammonium phosphate and potassium sulfate at a rates of 700 kg and 500 kg ha-1, respectively; (F) and iv) Combined compost and mineral fertilization (CoF). Pots filled with 4 kg soil and seeded with maize were periodically watered to reach field capacity water content. At flowering stage samples of soil and plants were taken were for analysis. The results indicated that application of compost with and/or without mineral fertilizer significantly increased plant growth and nutrients uptake. Moreover, soil organic matter, cation exchange capacity and nutrient contents were also significantly increased by the same treatments. However, the positive effect of the combined compost and mineral fertilization was better than the effect of separate application of each. The obtained results highly recommend the combined application of compost and mineral fertilizers.

References

  • AbdelRahman, M.A.E., Metwaly, M.M., Aff, A.A., D’Antonio, P., Scopa, A., 2022. Assessment of soil fertility status under soil degradation rate using geomatics in West Nile Delta. Land 11: 1256.
  • Adewopo, J.B., VanZomeren, C., Bhomia, R.K., Almaraz, M., Bacon, A.R., Eggleston, E., Judy, J.D., Lewis, R.W., Lusk, M., Miller, B., Moorberg, C., Snyder, E.H., Tiedeman, M., 2014. Top-ranked priority research questions for soil science in the 21 century. Soil Science Society of America Journal 78(2): 337–347.
  • Adugna, G.A., 2016. Review on impact of compost on soil properties, water use and crop productivity. Academic Research Journal of Agricultural Science and Research 4(3): 93-104.
  • Al-Rumaihi, A., McKay, G., Mackey, H.R., Al-Ansari, T., 2020. Environmental impact assessment of food waste management using two composting techniques. Sustainability 12(4): 1595.
  • Amundson, R., Berhe, A.A., Hopmans, J.W., Olson, C., Sztein, A.E., Sparks, D.L., 2015. Soil and human security in the 21st century. Science 348(6235): 647–653.
  • Banuwa, I.S., Hidayat, K.F., Zulkarnain, I., Sanjaya, P., Afandi, R.A., 2020. Soil loss and cassava yield under ridge tillage in humid tropical climate of Sumatera, Indonesia. International Journal of GEOMATE 18(67): 1-7.
  • Bhattacharyya, R., Kundu, S., Prakash, V., Gupta, H.S., 2008. Sustainability under combined application of mineral and organic fertilizers in a rainfed soybean-wheat system of the Indian Himalayas. European Journal of Agronomy 28(1): 33-46.
  • Blake, G.R. Hartge, K.H., 1986. Bulk Density. In: Methods of Soil Analysis: Part 1 Physical and Mineralogical Methods. Klute, A. (Ed.). Soil Science Society of America. Madison, Wisconsin, USA. pp.363-375.
  • Bouajila, K., Sanaa, M., 2011. Effects of organic amendments on soil physico-chemical and biological properties. Journal of Materials and Environmental Science 2 (1): 485-490.
  • Bremner, J.M, Mulvaney, C.S., 1982. Nitrogen-Total. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 595-624.
  • Cahyono, P., Astuti, N., Purwito, K., Rahmat, A., 2018. Mapping the rainfall distribution for irrigation planning in dry season at pineapple plantation, Lampung Province, Indonesia (Study case at Great Giant Pineapple Co. Ltd.). IOP Conference Series: Earth and Environmental Science. 129: 012017.
  • Cahyono, P., Loekito, S., Wiharso, D., Rahmat, A.A., Nishimura, N., Senge, M., 2020. Effects of compost on soil properties and yield of pineapple (Ananas comusus L. MERR.) On red acid soil, Lampung, Indonesia. International Journal of GEOMATE 19(76): 33–39.
  • Chang, J., Havlik, P., Leclère, D., de Vries, W., Valin, H., Deppermann, A., Hasegawa, T., Obersteiner, M., 2021. Reconciling regional nitrogen boundaries with global food security. Nature Food 2: 700–711.
  • Chapman, H.D., Pratt, P.F., 1961. Methods of analysis for soils, plants and waters. University of California, Division of Agricultural Science, Riverside, USA. 309p.
  • Eden, M., Gerke, H.H., Houot, S., 2017. Organic waste recycling in agriculture and related effects on soil water retention and plant available water: a review. Agronomy for Sustainable Development 37: 11.
  • Efthimiadou, A., Bilalis, E., Karkanis, D.A., Bob, F.W., 2010. Combined organic/inorganic fertilization enhance soil quality and increased yield, photosynthesis and sustainability of sweet maize crop. Australian Journal of Crop Science 4(9): 722-729.
  • FAO, 2021. The State of the World’s Land and Water Resources for Food and Agriculture – Systems at breaking point (SOLAW 2021) Synthesis report 2021. Food and Agriculture Organization, Rome. Italy.
  • Gee, G.W., Bauder, J.W., 1986. Particle-size analysis, In: Methods of Soil Analysis: Part 1 Physical and Mineralogical Methods. Klute, A. (Ed.). Soil Science Society of America. Madison, Wisconsin, USA. pp. 383–411.
  • Gupta, G.S., 2019. Land degradation and challenges of food security. Review of European Studies 11(1): 63-72.
  • Hemidat, S., Achouri, O., El Fels, L., Elagroudy, S., Hafidi, M., Chaouki, B.A.M., Hodgkinson, I., Guo, J., 2022. Solid waste management in the context of a circular economy in the MENA region. Sustainability 14(1): 480.
  • Hemidat, S., Jaar, M., Nassour, A., Nelles, M., 2018. Monitoring of composting process parameters: a case study in Jordan. Waste and Biomass Valorization 9(3): 2257-2274.
  • Herencia, J.F., Ruiz-Porras, J.C., Melero, S., Garcia-Galavis, P.A., Morillo, E., Maqueda, C., 2009. Comparison between organic and mineral fertilization for soil fertility levels, crop macronutrient concentrations and yield. Agronomy Journal 99(4): 973- 983.
  • Hernández Rodríguez, O.A., Rivera Figueroa, C.H., Díaz Ávila, E.E., Ojeda Barrios, D.L., Guerrero Prieto, V.M., 2017. Plant and livestock waste compost compared with inorganic fertilizer: nutrient contribution to soil. Revista Terra Latinoamericana 35(4): 321–328.
  • Leroy, B.L.M., Herath, H.M.S.K., Sleutel, S., De Neve, S., Gabriels, D., Reheul, D., Moens, M., 2008. The quality of exogenous organic matter: Short-term effects on soil physical properties and soil organic matter fractions. Soil Use and Management 24(2): 139– 147.
  • Li, J., Zhao, B.Q., Li, X.Y., Jiang, R.B., Bing, S.H., 2008. Effects of long-term combined application of organic and mineral fertilizers on microbial biomass, soil enzymes activities and soil fertility. Agricultural Sciences in China 7(3): 336-343.
  • Lindsay, w.l., norvell, w.a., 1978. development of a dtpa soil test for zinc, iron, manganese, and copper. Soil Science Society of America Journal 42(3): 421–428.
  • Liu, D., Zhang, R., Wu, H., Xu, D., Tang, Z., Yu, G., Xu, Z., Shen, Q., 2011. Changes in Biochemical and microbiological parameters during the period of rapid composting of dairy manure with rice chaff. Bioresource Technology 102(19): 9040-9049.
  • Malézieux, E., Bartholomew, D.P., 2003. Plant Nutrition. In: The Pineapple: Botany, Production and Uses. Bartholomew, D.P., Paull, R.E., Rohrbach, K.G. (Eds.). Wallingford, UK. 143-165.
  • Maximillian, J., Brusseau, M.L., Glenn, E.P., Matthias, A.D., 2019. Pollution and Environmental Perturbations in the Global System. In: Environmental and Pollution Science. Brusseau, M.L., Pepper, I.L., Gerba, C.P. (Eds.). Academic Press. pp: 457-476.
  • McLean, E.O., 1982. Soil pH and Lime Requirement. In. Methods of soil analysis, Part 2- Chemical and Microbiological Properties. Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). Soil Science Society of America. Madison, Wisconsin, USA. pp. 199-224.
  • Nardi, S., Pizzeghello, D., Muscolo, A., Vianello, A., 2002. Physiological effects of humic substances on higher plants. Soil Biology and Biochemistry 34: 1527-1536.
  • Nelson, D.W., Sommers, L.E., 1980. Total nitrogen analysis for soil and plant tissues. Journal of the Association of the Official Analytical Chemistry 63(4): 770–778.
  • Nelson, D.W., Sommers, L.E., 1982 Total carbon, organic carbon, and organic matter. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 539–580.
  • Ning, C., Gao, P., Wang, B., Lin, W., Jiang, N., Cai, K. 2017. Impacts of chemical fertilizer reduction and organic amendments supplementation on soil nutrient, enzyme activity and heavy metal content. Journal of Integrative Agriculture 16(8): 1819-1831.
  • Olsen, S.R., Cole, C.V., Watanabe, F.S., Dean, L.A., 1954. Estimation of available phosphorus in soils by extraction with sodium bicarbonate. U. S. Department of Agriculture Circular No. 939. Washington, DC, USA.
  • Oyetunji, O., Bolan, N., Hancock, G., 2022. A comprehensive review on enhancing nutrient use efficiency and productivity of broadacre (arable) crops with the combined utilization of compost and fertilizers. Journal of Environmental Management. 317: 115395.
  • Penuelas, J., Coello, F., Sardans, J., 2023. A better use of fertilizers is needed for global food security and environmental sustainability. Agriculture & Food Security 12: 5.
  • Penuelas, J., Janssens, I.A., Ciai, P., Obersteiner, M., Sardans, J., 2020. Anthropogenic global shifts in biospheric N and P concentrations and ratios and their impacts on biodiversity, ecosystem productivity, food security, and human health. Global Change Biololgy 26(4): 1962-1985.
  • Petrescu-Mag, R.M., Petrescu, D.C., Azadi, H., 2020. A social perspective on soil functions and quality improvement: Romanian farmers’ perceptions. Geoderma 380: 114573.
  • Rhoades, J.D., 1982a. Soluble salts. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 167–179.
  • Rhoades, J.D., 1982b. Cation exchange capacity. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 149-157.
  • Richards, L.A., 1954. Diagnosis and improvement of saline and alkaline soils. Agriculture Handbook, Vol. 60, United States Department of Agriculture (USDA), Washington DC, 160 p.
  • Rusan, M.J., 2017. Selecting the right source of potassium for fertigation. Proceedings for the Frontiers of Potassium Science Conference, O110. 25–27 January 2017. Rome, Italy. International Plant Nutrition Institute, USA.
  • Rusan, M.J., 2018. 4R fertigation extension handbook: A tool for fertilizer and water stewardship. Arab Fertilizer Association (AFA), Cairo, Egypt. 160p.
  • Rusan, M.J., 2023. Soil and Nutrient Management Under Saline Conditions. In: Biosaline Agriculture as a Climate Change Adaptation for Food Security. Choukr-Allah, R., Ragab, R. (Eds.). Springer, Cham. pp. 71–85.
  • Rusan, M.J., Hinnawi, S., Rousan, L., 2007. Long term effect of wastewater irrigation of forage crops on soil and plant quality parameters. Desalination 215: 143–152.
  • Sarwar, G., Schmeisky, H., Tahir, M.A., Iftikhar, Y., Sabah, N.U., 2010. Application of greencompost for ımprovement in soil chemical properties and fertility status. The Journal of Animal & Plant Sciences 20(4): 258-260.
  • Thomas, G.W., 1982. Exchangeable cations. In: Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties, Second Edition. Number 9, Page, A.L., Keeney, D. R., Baker, D.E., Miller, R.H., Ellis, R. Jr., Rhoades, J.D. (Eds.). ASA-SSSA, Madison, Wisconsin, USA. pp. 159–165.
  • UN, 2022. United Nations Department of Economic and Social Affairs. Population Division. 2022. World Population prospects. UN DESA/POP//2022/No.3. United Nations, New York, USA.
  • Wichuk, K.M., McCartney, D., 2010. Compost stability and maturity evaluation—a literature review. Canadian Journal of Civil Engineering 37(11): 1505-1523.
  • Zaki, M.K.K., Rahmat, A., Pujiasmanto, B., 2018. Organic amendment and fertilizer effect on soil chemical properties and yield of maize (Zea Mays L.) in rainfed condition. Walailak Journal of Science and Technology 17(1): 11–17.
There are 51 citations in total.

Details

Primary Language English
Subjects Plant Nutrition and Soil Fertility
Journal Section Research Article
Authors

Munir J. Rusan This is me 0000-0002-5637-5464

Rashid Lubani This is me 0009-0005-8488-7765

Submission Date December 10, 2024
Acceptance Date April 23, 2025
Publication Date July 1, 2025
Published in Issue Year 2025 Volume: 14 Issue: 3

Cite

APA Rusan, M. J., & Lubani, R. (2025). A Combined application of compost and mineral fertilization enhances plant growth and soil fertility in calcareous clay loam soils. Eurasian Journal of Soil Science, 14(3), 231-239. https://doi.org/10.18393/ejss.1683715