Investigation of Amended Sandy Soil's Water Retention Characteristics

Authors

  • E.K. Amewode University of Cape Coast
  • B. Sefa-Ntiri University of Cape Coast
  • A. Owusu University of Cape Coast
  • M. K. Vowotor University of Cape Coast
  • S. S. Sackey University of Cape Coast
  • F. Kumi University of Cape Coast
  • C. L. Y Amuah University of Cape Coast

DOI:

https://doi.org/10.26437/ajar.v9i2.563

Keywords:

Activated charcoal. COMSOL. retention. simulation. water

Abstract

Purpose: Soil water retention studies are important for evaluating soil quality and water movement in soils. This study assesses the water content capacity and changes in the retention curve of sandy soil after using zeolite X, activated charcoal, and rice husk ash as amendments.   

Design/Methodology/Approach: Sandy soil samples were collected from the study area, Keta District of Ghana, and a core borer and a pot experiment were used to determine the pressure head and water content of the soil. One-way analysis of variance (One-way ANOVA) was used to analyze the data.  Water retention curve analyses were conducted using COMSOL multi-physics simulation and experimental work.

Research Limitation/Implication:  The amendments used were restricted to zeolite X, activated charcoal, and rice husk ash. 

Practical Implications: The study contributes to the field of sustainable agriculture and land management by exploring amendments that can potentially reduce water usage in irrigation, mitigate soil erosion, and enhance soil fertility. This aligns with global efforts to promote sustainable and efficient resource use.

Social Implications: These findings can be implemented for cases of poor yield by farming communities by applying zeolite X, activated charcoal, and rice husk ash to improve crop productivity.

Author Biography

S. S. Sackey, University of Cape Coast

 Lecturer at the Department of Physics, University of Cape Coast, Ghana

References

Abel, S., Peters, A., Trinks, S., Schonsky, H., Facklam, M., & Wessolek. G. (2013). Impact of

biochar and hydrochar addition on water retention and water repellency of sandy soil. Geoderma, 202-203:183–191.

https://doi.org/10.1016/j.geoderma.2013.03.003

Asomaning, S. K., Abekoe, M. K., Dowuona, G. N. N., Borggaard, O. K., Kristensen, J. A., &

Breuning-Madsen, H. (2015). Sustainable long-term intensive application of manure to sandy soils without phosphorus leaching: a case study from Ghana. Acta. Agriculture Scandinavica, Section B – Soil and Plant Science, 65, 747-754.

https://www.tandfonline.com/doi/full/10.1080/09064710.2015.1058413

Asomaning, S. K., Abekoe, M. K., & Dowuona, G. N. N. (2018). Phosphorus sorption capacity in

relation to soil properties in profiles of sandy soils of the Keta sandspit in Ghana. West African Journal of Applied Ecology, 26(1), 49-60.

Baumann, P., Lee, J., Behrens, T., Biswas, A., Six, J., McLachlan, G., & Viscarra Rossel, R. A.

(2022). Modelling soil water retention and water‐holding capacity with visible–near‐infrared spectra and machine learning. European Journal of Soil Science, 73(2), e13220.

Baronti, S., Vaccari, F. P., Miglietta F., Calzolari, C., Lugato, E., Orlandini, S., Pini, R., Zulian, C., & Genesio, L. (2014). “Impact of biochar application on plant water relations in Vitis vinifera (L.),” European Journal of Agronomy. 53, 38–44.

https://doi.org/10.1016/j.eja.2013.11.003

https://www.sciencedirect.com/science/article/abs/pii/S1161030113001536

Bernardi, A. C., Oliviera, P. P. A., De Melo Monte, M. B., & Souza-Barros, F. (2013). Brazilian

sedimentary zeolite use in agriculture. Microporous and Mesoporous Materials, 167, 16-21.

http://dx.doi.org/10.1016/j.micromeso.2012.06.051

https://zeolife.gr/wp-content/uploads/2014/04/brazilian-sedimentary-zeolite-use-in-agriculture.pdf

Colombani, N., Mastrocicco, M., Di Giuseppe, D., Faccini, B., & Coltorti, M. (2014). Variation of

the hydraulic properties and solute transport mechanisms in a silty-clay soil amended with natural zeolites, Catena, 123, 195-204. https://doi.org/10.1016/j.catena.2014.08.003

https://www.researchgate.net/publication/265210043_Variation_of_the_hydraulic_properties_and_solute_transport_mechanisms_in_a_silty-clay_soil_amended_with_natural_zeolites

Enamorado-Horrutiner, Y., Villanueva-Tagle, M. E., Behar, M., Rodríguez-Fuentes, G., Dias, J. F.,

& Pomares-Alfonso, M. S. (2016). Cuban zeolite for lead sorption: application for water

decontamination and metal quantification in water using nondestructive techniques, International Journal of Environmental Science and technology, 13(5), 1245-1256.

https://doi.org/10.1007/s13762-016-0956-9

https://www.researchgate.net/publication/297728370_Cuban_zeolite_for_lead_sorption_application_for_water_decontamination_and_metal_quantification_in_water_using_nondestructive_techniques

Guaya, D., Mendoza, A., Valderrama, C., Farran, A., Sauras-Yera, T., & Cortina, J. L. (2020). Use

of nutrient-enriched zeolite (NEZ) from urban wastewaters in amended soils: Evaluation of plant availability of mineral elements. Science of the total environment, 727, 138646.

Ghazavi, R. (2015). The application effects of natural zeolite on soil runoff, soil drainage and some

chemical soil properties in arid land areas. International Journal of Innovation and Applied Studies, 13(1), 172-177.

https://www.issr-journals.org/links/papers.php?journal=ijias&application=pdf&article=IJIAS-15-139-01

Ghanbarian-Alavijeh, B., Liaghat, A., Huang, G. H., & van Genuchten. M. T. (2010).

Estimation of the van Genuchten soil water retention properties from soil textural data.

Pedosphere, 20(4): 456-465. https://www.pc-progress.com/Documents/RVGenugten/2010_Ghanbarian_Water_retention_PS.pdf

Ghorbani, M., Amirahmadi, E., Konvalina, P., Moudrý, J., Bárta, J., Kopecký, M., & Bucur, R. D.

(2022). Comparative influence of biochar and zeolite on soil hydrological indices and growth characteristics of corn (Zea mays L.). Water, 14(21), 3506.

Gholizadeh-Sarabi, S., & Sepaskhah, A. R. (2013). Effect of zeolite and saline water application

on saturated hydraulic conductivity and infiltration in different soil textures. Archives of Agronomy and Soil Science, 59(5), 753-764.

https://dro.shirazu.ac.ir/documents/613171/680015/droPaSepas-8.pdf

Herath, H. M. S. K., Camps-Arbestain, M., & Hedley, M. (2013). Effect of biochar on soil

physical properties in two contrasting soils: an Alfisol and an Andisol. Geoderma 209, 188-197. https://doi.org/10.1016/j.geoderma.2013.06.016

https://www.sciencedirect.com/science/article/abs/pii/S0016706113002164

Ibrahim-Saeedi, F., & Sepaskhah, A. R. (2013). Effects of a bentonite–water mixture on soil-

saturated hydraulic conductivity. Archives of Agronomy and Soil Science, 59(3), 377-392.

http://dx.doi.org/10.1080/03650340.2011.631130

https://dro.shirazu.ac.ir/documents/613171/680015/droPaSepas-7.pdf

Ibrahim, M. M., El-Baroudy, A. A., & Taha, A. M. (2016). Irrigation and fertigation scheduling

under drip irrigation for maize crops in sandy soil. International Agrophysics, 30, 47-55.

doi: 10.1515/intag-2015-0071

http://www.international-agrophysics.org/pdf-104174-35242?filename=Irrigation

Jabro, J. D., Stevens, W. B., & Iversen, W. M. (2020). Comparing two methods for measuring soil

bulk density and moisture content. Open Journal of Soil Science, 10(6), 233-243.

Jha, B., & Singh, D. N. (2016). Fly Ash Zeolites: Innovations, Applications, and Directions.

Springer Nature Singapore, vol. 78.

https://books.google.com/books/about/Fly_Ash_Zeolites.html?id=sNG5jwEACAAJ

Kanzari, S., Rezig, M., & Nouna, B. B. (2017). Estimating hydraulic properties of unsaturated soil

using a single tensiometer. American Journal of Geophysics, Geochemistry and Geosystems. 3(1), 1-4. Available:

https://www.researchgate.net/profile/Mourad-Rezig-2/publication/323943555_Estimating_Hydraulic_Properties_of_Unsaturated_Soil_Using_a_Single_Tensiometer/links/5ab3c0f0458515ecebf093a3/Estimating-Hydraulic-Properties-of-Unsaturated-Soil-Using-a-Single-Tensiometer.pdf

https://scholar.google.com/citations?user=vZ-w4FgAAAAJ&hl=fr

Kanzari, S., Hachicha, M., & Bouhlila R. (2014). Simple evaporation method for estimating soil

water retention properties of an unsaturated zone in Bouhajla (Kairouan - Central Tunisia), The Experiment Journal, 26(4), 1834-1843.

http://www.experimentjournal.com/sites/default/files/2019-06/70.Sabri%20Kanzari%20et%20al%2C%20The%20Experiment%2C%202014.%2C%20Vol.%2026%284%29%2C%201834-1843.pdf

Li, Z., Zheng, Z., Li, H., Xu, D., Li, X., Xiang, L., & Tu, S. (2023). Review on Rice Husk Biochar

as an Adsorbent for Soil and Water Remediation. Plants, 12(7), 1524.

Mukherjee, A., & Lal, R. (2013). Biochar impacts on soil physical properties and greenhouse gas

Emissions. Agronomy 3(2), 313–339. https://doi.org/10.3390/agronomy3020313

Panda, P. K., Nandi, A., Swain, P. K., Patnaik, S. K., & Patnaik, M. (2012). Soil amendment on

growth, nodulation, yield, soil health, and economics of cowpea. International journal of vegetable science, 18(3), 284-297.

Rogovska, N., Laird, D. A., Rathke, S. J., & Karlen, D. L. (2014). Biochar Impact on Midwestern

Mollisols and maize nutrient availability. Geoderma, 230, 340-347

http://dx.doi.org/10.1016/j.geoderma.2014.04.009

https://digitalcommons.unl.edu/cgi/viewcontent.cgi?article=2654&context=usdaarsfacpub

Sangeetha, C., & Baskar, P. (2016). Zeolite and its potential uses in agriculture: A critical review.

Agricultural Reviews, 37(2), 101-108.

https://www.researchgate.net/publication/301714420_Zeolite_and_its_potential_uses_in_agriculture_A_critical_review

Sarkar, B., & Naidu, R. (2015). Nutrient and water use efficiency in soil: the influence of geological

mineral amendments. In Nutrient use efficiency: from basics to advances (pp. 29-44). Springer, New Delhi.

Simunek, J., Van Genuchten, M.T., & Sejna, M. (2012). HYDRUS: Model use, calibration, and

validation, Transactions of the ASABE, 55(4), 1261-1274. doi: 10.13031/2013.42239

https://www.semanticscholar.org/paper/HYDRUS%3A-Model-Use%2C-Calibration%2C-and-Validation-%C5%A0im%C5%AFnek-Genuchten/da270ac7e4f47d7afc0af019c1b6b5b7d314aae6

Szerment, J., Ambrozewich-Nita, A., Kedziora, K., & Piasek, J. (2014). Use of zeolite in

agriculture and environmental protection. A Short Review, UDC: 666.96:691.5. https://science.lpnu.ua/sctp/all-volumes-and-issues/volume-781-2014/use-zeolite-agriculture-and-environmental-protection

Wang, J., Huang, J., Zhao, X., Wu, P., Horwath, W. R., Li, H., Jing, Z., & Chen, X. (2016a).

Simulated study on effects of ground managements on soil water and available nutrients in jujube orchards. Land Degradation & Development, 27(1), 35–42.

Downloads

Published

2023-10-31

How to Cite

Amewode, E., Sefa-Ntiri, B., Owusu, A., Vowotor, M. K., Sackey, S. S., Kumi, F., & Amuah, C. L. Y. (2023). Investigation of Amended Sandy Soil’s Water Retention Characteristics. AFRICAN JOURNAL OF APPLIED RESEARCH, 9(2), 90–103. https://doi.org/10.26437/ajar.v9i2.563