The accurate assessment of soil properties is a crucial factor for composing and implementing reclamation plans. The main objective of this study was to evaluate soil chemical and physical properties and calculate the chemical and fertility index for assisting land reclamation in Toshka area. The Toshka area is located between latitudes 31 ° 32'N and 31 ° 36'N and longitudes 32 ° 40'E and 32 ° 60'E. GIS was used to select 16 sites. The results revealed the soil has undesirable characteristics. The soil pH ranged from slightly alkaline to moderately alkaline. Furthermore, it was characterized as saline (with a ECe of 4.65 - 11.45 dS ⋅ m − 1 ) and moderately calcareous soil (with CaCO 3 at 11.85% - 17.20%). The soil had a low soil organic matter content which did not exceed 0.18%. The soil was dominated by a sandy loam texture (62.50%) followed by a sandy clay loam texture (18.75%). The bulk density, total soil porosity and saturated hydraulic conductivity values varied with 1.38 - 1.55 Mg ⋅ cm − 3 , 41.85% - 48.45% and 1.20 - 3.34 cm ⋅ h − 1 , respectively. The chemical index ranged from low to moderate quality. The correlations between the parameters osculated between negative and positive. Therefore, the soil may be reclaimed if the soil properties are improved and crop selection is optimized for this soil.
KeywordsLand ReclamationSoil Chemical and Physical PropertiesChemical Quality IndexFertility Quality Index
Mohamed, M.A., Elgharably, G.A. and Rabie, M.H. (2019) Evaluation of Soil Fertility Status in Toshka, Egypt: Available Micronutrients. World Journal of Agricultural Sciences, 15, 1-6.
Abd-ElMabod, S.K., Jordán, A., Anaya-Romero, M., Ali, R.R., Munoz-Rojas, M., Zavala, L.M. and de la Rosa, D. (2012) Impact of Topography and Soil Factors on Crop Suitability in Two Mediterranean Areas (Egypt and Spain). Geophysical Research Abstracts, 14, EGU2012-443. https://www.researchgate.net/publication/279770519
Wahab, M.A., El Semary, M.A., Ali, R.R. and Darwish, H.M. (2013) Land Resources Assessment for Agricultural Use in Some Areas West of Nile Valley, Egypt. Journal of Applied Sciences Research, 9, 4288-4298.
El Ghonamey, Y.K. (2015) Evaluation of Some Soils in North Western Paris Oasis (Egypt) Using STORIE Index and SYS Models. Egyptian Journal of Agricultural Research, 93, 1-23. https://doi.org/10.21608/ejar.2015.152590
Afify, A.A., Wahdan, M.E. and Fahmy, F.M. (2016) Characterizing Land Cover, Physiography and Soils in a Representative Area of Different Soil Parent Materials East of River Nile in El Menia Governorate, Egypt. Journal of Soil Science and Agricultural Engineering, 7, 469-476. https://doi.org/10.21608/jssae.2016.39703
Fadl, M.E. and Abuzaid, A.S. (2017) Assessment of Land Suitability and Water Requirements for Different Crops in Dahrla Oasis, Western Desert, Egypt. International Journal of Plant and Soil Science, 16, 1-16. https://doi.org/10.9734/IJPSS/2017/33835
Abd El-Aziz, S.H. (2018) Soil Capability and Suitability Assessment of Tushka Area, Egypt by Using Different Programs (ASLE, Microleis and Modified STORIE Index). Malaysian Journal of Sustainable Agriculture, 2, 9-15. https://doi.org/10.26480/mjsa.02.2018.09.15
Hamed, M.H. and Khalafallh, M.Y. (2017) Available Nutrients and Some Soil Properties of El-Qasr Soils, El-Dakhla Oasis, Egypt. International Journal of Environment, Agriculture and Biotechnology, 2, 4243-4249. https://doi.org/10.22161/ijeab/2.6.60
Elwa, A.M., Abou-Shady, A.M., Sayed, A. and Showman, H. (2021) Impact of Physical and Chemical Properties of Soil on the Growing Plant in El Mounira-El Qattara New Valley. Egyptian Journal of Applied Science, 36, 148-175.
Hegab, R., Eissa, D., Abou-Shady, A. and Abdelmottaleb, O. (2016) Effect of Biochar Addition on Soil Properties and Carrot Productivity Grown in Polluted Soils. Egyptian Journal of Desert Research, 66, 327-350. https://doi.org/10.21608/ejdr.2016.6503
Abou-Shady, A. (2017) Recycling of Polluted Wastewater for Agriculture Purpose Using Electrodialysis: Perspective for Large Scale Application. Chemical Engineering Journal, 323, 1-18. https://doi.org/10.1016/j.cej.2017.04.083
Abou-Shady, A., Eissa, D., Abdelmottaleb, O. and Rehab, H. (2018a) New Approaches to Remediate Heavy Metals Containing Polluted Soil via Improved PCPSS. Journal of Environmental Chemical Engineering, 6, 1322-1332. https://doi.org/10.1016/j.jece.2018.01.066
Abou-Shady, A., Eissa, D., Abdelmottaleb, O. and Rehab, H. (2018b) Effect of Electrokinetic Pollutant Removal on the Status of Some Macro and Micro Elements in Saline Soil. Alexandria Exchange Science Journal, 39, 65-73. https://doi.org/10.21608/asejaiqjsae.2018.5697
Eissa, D., Abou-Shady, A. and Ismail, S. (2018) Environmental Behavior of Strontium in Some Salt Affected Soils Along the Western North Coast of Egypt. Alexandria Exchange Science Journal, 39, 197-214. https://doi.org/10.21608/asejaiqjsae.2018.6688
Khalfa, R., Abd El-Aziz, S., Eissa, D. and Abou-Shady, A. (2018) Application of Biosurfactant Producing Microorganisms to Remediate Heavy Metal Pollution in El-Gabal El-Asfar Area. Alexandria Exchange Science Journal, 39, 17-34. https://doi.org/10.21608/asejaiqjsae.2018.5504
Bahnasawy, N., El Kady, M. and Abou-Shady, A. (2020) Impact of Land Slope and Mineralogical Composition on the Spatial Distribution of Related Elements in Some Soils South-East of El-Qattara Depression, Egypt. Middle East Journal of Applied Sciences, 10, 26-33.
Ramadan, W., Abou-Shady, A., Bahnasawy, N. and Elwa, A.B.D. (2020) Current Status of Some Micro-Nutrients and Heavy Metals of El-Hawawer Valley Soils of Marsa Matrouh-Egypt. Alexandria Exchange Science Journal, 8, 225-239. https://doi.org/10.21608/asejaiqjsae.2020.98932
McLean, E.O. (1982) Soil pH and Lime Requirement. In: Page, A.L., Ed., Methods of Soil Analysis: Part 2 Chemical and Microbiological Properties, American Society of Agronomy, Madison, 199-224. https://doi.org/10.2134/agronmonogr9.2.2ed.c12
Page, A.L., Miller, R.H. and Keeney, D.R. (1982) Methods of Soil Analysis. Part 2. Chemical and Microbiological Properties (Vol. 1159). American Society of Agronomy, Soil Science Society of America.
Piper, C.S. (1947) Soil and Plant Analysis. International Science Publishers, New York.
Walkey, A. and Black, C.A. (1934) An Examination of the Degtjareff Method for Determining Soil Organic Matter and a Proposed Modification of the Chronic Acidification Method. Soil Science, 37, 29-38. https://doi.org/10.1097/00010694-193401000-00003
Nelson, D.W. and Sommers, L.E. (1982) Total Carbon, Organic Carbon and Organic Matter. In: Sparks, D.L., et al., Eds., Methods of Soil Analysis: Part 3 SSSA Book Series, Madison, 961-1010.
Jackson, M.L. (1962) Soil Chemical Analysis. Constable and Co. Ltd, London.
Jackson, M.L. (1973) Soil Chemical Analysis. Prentice Hall of India Pvt. Ltd., New Delhi.
Subbiah, B. and Asija, C.L. (1956) A Rapid Procedure for the Estimation of Available Nitrogen in Soils. Current Science, 25, 256-260.
Lindsay, W.L. and Norvell, W.A. (1978) Development of DTPA Soil Test for Zinc, Iron, Manganese and Copper. Soil Science Society of American Journal, 42, 421-428. https://doi.org/10.2136/sssaj1978.03615995004200030009x
Baird, R.B., Eaton, E.D. and Rice, E.W. (2017) Standard Methods for the Examination of Water and Waste Water. 23rd Edition, American Public Health Association, Washington DC.
Bouyoucos, G.H. (1962) Hydrometer Method Improved for Making Particle Size Analysis of Soil. Agronomy Journal, 54, 464-465. https://doi.org/10.2134/agronj1962.00021962005400050028x
Blake, G.R. and Hartge, K.H. (1986) Bulk Density. In: Klute, A. Ed., Methods of Soil Analysis: Part 1 Physical and Mineralogical Methods (2nd Edition), American Society of Agronomy, Inc. and Soil Science Society of America, Inc., Madison, 363-375. https://doi.org/10.2136/sssabookser5.1.2ed.c13
Li, Y.Y. and Shao, M.A. (2006) Change of Soil Physical Properties under Long-Term Natural Vegetation Restoration in the Loess Plateau of China. Journal of Arid Environments, 64, 77-96. https://doi.org/10.1016/j.jaridenv.2005.04.005
Zhang, S., Grip, H. and Lovdahl, L. (2006) Effect of Soil Compaction on Hydraulic Properties of Two Loess Soils in China. Soil and Tillage Research, 90, 117-125. https://doi.org/10.1016/j.still.2005.08.012
Price, K., Jackson, C.R. and Parker, A.J. (2010) Variation of Surficial Soil Hydraulic Properties across Land Uses in the Southern Blue Ridge Mountains, North Carolina, USA. Journal of Hydrology, 383, 256-268. https://doi.org/10.1016/j.jhydrol.2009.12.041
Danielson, R.E. and Sutherland, P.L. (1986) Porosity. In: Klute, A. Ed., Methods of Soil Analysis: Part 1 Physical and Mineralogical Methods (2nd Edition), American Society of Agronomy, Inc. and Soil Science Society of America, Inc., Madison, 443-461. https://doi.org/10.2136/sssabookser5.1.2ed.c18
Klute, A. (1986) Water Retention: Laboratory Methods. n: Klute, A. Ed., Methods of Soil Analysis: Part 1 Physical and Mineralogical Methods (2nd Edition), American Society of Agronomy, Inc. and Soil Science Society of America, Inc., Madison, 635-662. https://doi.org/10.2136/sssabookser5.1.2ed.c26
Sepehr, A., Hassanli, A.M., Ekhtesasi, M.R. and Jamali, J.B. (2007) Quantitative Assessment of Desertification in South of Iran Using MEDALUS Method. Environmental Monitoring and Assessment, 134, 243-254. https://doi.org/10.1007/s10661-007-9613-6
Abdellatif, M.A., El Baroudy, A.A., Arshad, E.K., Saleh, A.M., Moghanm, F.S. and Shokr, M.S. (2021) A GIS-Based Approach for the Quantitative Assessment of Soil Quality and Sustainable Agriculture. Sustainability, 13, Article 13438. https://doi.org/10.3390/su132313438
Pathak, H. (2010) Trend of Fertility Status of Indian Soils. Current Advances in Agricultural Sciences, 2, 10-12.
Metson, A.J. (1961) Methods of Chemical Analysis for Soil Survey Samples. Govt. Printers, Wellington, p. 64.
Dhotare, V.A., Guldekar, V.D., Bhoyar, S.M. and Ingle, S.N. (2019) Evaluation of Soil Nutrient Index and Their Relation with Soil Chemical Properties of Washim Road Farm of Dr.PDKV Akola, Maharashtra, India. International Journal of Current Microbiology and Applied Sciences, 8, 1773-1779. https://doi.org/10.20546/ijcmas.2019.809.205
Jibhakate, S.B., Raut, M.M., Bhende, S.N. and Kharche, V.K. (2009) Micronutrient Status of Soils of Katol Tahasil in Nagpur District and Their Relationship with Some Soil Properties. Journal of Soils and Crops, 19, 143-146.
Kusumandari, A., Kusumawardani, F., Subroto, S.A. and Wianti, K.F. (2018) Soil Chemical and Physical Characteristics as a Base for Achieving Sustainable forEst Land Use in RPH Watugudel, KPH Ngawi, Jawa Timur. Proceeding of the ICTA 2017 2nd International Conference on Tropical Agriculture, Yogyakarta, 26-27 October 2017, 1-6. https://doi.org/10.29037/digitalpress.21240
Al-Soghir, M.M.A., Mohamed, A.G., El-Desoky, M.A. and Awad, A.A.M. (2022) Comprehensive Assessment of Soil Chemical Properties for Land Reclamation Purposes in the Toshka Area, EGYPT. Sustainability, 14, Article 15611. https://doi.org/10.3390/su142315611
El-Sayed, M.A., Abd El-Aziz, S.H., El-Desoky, A.I. and Selmy, S.A.H. (2016) Pedomorphic Features and Soil Classification of Gharb El-Mawhob Area, El-Dakhla Oasis, Western Desert, Egypt. Middle East Journal of Agriculture Research, 5, 247-257.
Poggio, L. and Gimona, L. (2017) 3D Mapping of Soil Texture in Scotland. Geoderma Regional, 9, 5-16. https://doi.org/10.1016/j.geodrs.2016.11.003
Kumar, R., Tiku, A.K. and Mir, M.M. (2009) Effect of Nitrogen, Phosphorus and Potassium on Growth and Yield of Olive (Olea europea L.). The Asian Journal of Horticulture, 4, 52-54.
Laekemariam, F., Kibret, K., Mamo, T. and Gebrekidan, H. (2016) Soil-Plant Nutrient Status and Their Relations in Maize-Growing Fields of Wolaita Zone, Southern Ethiopia. Communications in Soil Science and Plant Analysis, 47, 1343-1356. https://doi.org/10.1080/00103624.2016.1166378
Negasa, T., Ketema, H., Legesse, A., Sisay, M. and Temesgen, H. (2016) Variation in Soil Properties under Different Land Use Types Managed by Smallholder Farmers along the Top Sequence in Southern Ethiopia. Geoderma, 290, 40-50. https://doi.org/10.1016/j.geoderma.2016.11.021
Vasu, D., Singh, S.K., Tiwary, P., Chandran, P., Ray, S.K. and Duraisami, V.P. (2016) Pedogenic Processes and Soil-Land Form Relationships for Identification of Yield Limiting Properties. Soil Research, 55, 273-284. https://doi.org/10.1071/SR16111
Senjobi, B.A. and Ogunkunle, A.O. (2011) Effect of Different Land Use Types and Their Implications on Land Degradation and Productivity in Ogun State, Nigeria. Journal of Agricultural Biotechnology & Sustainable Development, 3, 7-18.
Maji, A.K., Obi, R.G.P., Thayalan, S. and Walke, N.J. (2005) Characteristics and Classification of Landforms and Soils over Basaltic Terrain in Sub-Humid Tropics of Central India. Journal of the Indian Society of Soil Science, 53, 154-162.
Vogelmann, E.S., Reichert, J.M., Reinert, D.J., Mentges, M.I., Vieira, D.A., de Barros, P.C.A. and Fasinmirin, J.T. (2010) Water Repellency in Soils of Humid Subtropical Climate of Rio Grande do Sul, Brazil. Soil and Tillage Research, 110, 126-133. https://doi.org/10.1016/j.still.2010.07.006
Fasinmirin, J.T. and Olorunfemi, I.E. (2012) Comparison of Hydraulic Conductivity of Soils of the Forest Vegetative Zone of Nigeria. Applied Tropical Agriculture, 17, 64-77.
Rashidi, M. and Seilsepor, M. (2008) Modeling of Soil CEC Based on Soil Organic Carbon Dalam ARPN. Journal of Agriculture and Biological Science, 3, 41-45.
Chude, V.O., Malgwi, W.B., Amapu, I.Y. and Ano, A.O. (2011) Manual on Soil Fertility Assessment. Federal Fertilizer Department, FAO and National Programme on Food Security, Abuja, 102.
Enang, R.K., Yerima, B.P.K. and Kome, G.K. (2016) Soil Physico-Chemical Properties and Land Suitability Evaluation for Maize (Zea mays), Beans (Phaseolus vulgaris) and Irish Potatoes (Solanum tuberosum) in Tephra Soils of the Western Slopes of Mount Kupe (Cameroon). African Journal of Agricultural Research, 11, 4571-4583. https://doi.org/10.5897/AJAR2016.11669
Jimoh, A.I., Aliyu, J., Saboand, A.T. and Yusuf, O.Y. (2015) Land Suitability Evaluation of Kubanni Floodplain for Rice Production in Zaria, Kaduna State, Nigeria. Nigerian Journal of Basic and Applied Science, 26, 46-54. https://doi.org/10.4314/njbas.v26i1.5
Aliyu, J., Aliyu, N., Jimoh, I.A., Alasinrin, S.K. and Agaku, T.D. (2016) Pedological Characteristic, Classification and Fertility Implication of Floodplain Soil at Dakace, Zaria, Kaduna State. Nigerian Journal of Soil and Environmental Research, 14, 216-228.
Kelepertzis, E. (2014) Accumulation of Heavy Metals in Agricultural Soils of Mediterranean: Insights from Argolida Basin, Peloponnese, Greece. Geoderma, 221-222, 82-90. https://doi.org/10.1016/j.geoderma.2014.01.007
Mesfin, S., Taye, G., Desta, Y., Sibhatu, B., Muruts, H. and Mohammedbrhan, M. (2018b) Short-Term Effects of Bench Terraces on Selected Soil Physical and Chemical Properties: Landscape Improvement for Hillside Farming in Semi-Arid Areas of Northern Ethiopia. Environmental Earth Sciences, 77, Article No. 399. https://doi.org/10.1007/s12665-018-7528-x
Opeyemi, A.O., Adewunmi, B.I. and Oluwas, A.I. (2020) Physical and Chemical Properties of Soils in Gambari Forest Reserve Near Ibadan, South Western Nigeria. Journal of Bioresource Management, 7, Article 7. https://doi.org/10.35691/JBM.0202.0132
Lema, B., Mesfin, S., Kebede, F., Abraha, Z., Fitiwy, I. and Haileselassie, H. (2019) Evaluation of Soil Physical Properties of Long-Used Cultivated Lands as a Deriving Indicator of Soil Degradation, North Ethiopia. Physical Geography, 40, 323-338. https://doi.org/10.1080/02723646.2019.1568148
Chivenge, P.P., Murwira, H.K., Giller, K.E., Mapfumo, P. and Six, J. (2007) Long-Term Impact of Reduced Tillage and Residue Management on Soil Carbon Stabilization: Implications for Conservation Agriculture on Contrasting Soils. Soil and Tillage Research, 94, 328-337. https://doi.org/10.1016/j.still.2006.08.006
Chaudhari, P.R., Ahire, D.V., Ahire, V.D., Chkravarty, M. and Maity, S. (2013) Soil Bulk Density as Related to Soil Texture, Organic Matter Content and Available Total Nutrients of Coimbatore Soil. International Journal of Scientific and Research Publications, 3, 1-8.
Tanveera, A., Kanth, T.A., Tali, P.A. and Naikoo, M. (2016) Relation of Soil Bulk Density with Texture, Total Organic Matter Content and Porosity in the Soils of Kandi Area of Kashmir Valley, India. International Research Journal of Earth Sciences, 4, 1-6.
Sharma, B. and bhattacharya, S. (2017) Soil Bulk Density as Related to Soil Texture, Moisture Content, pH, Electrical Conductivity, Organic Carbon, Organic Matter Content and Available Macro Nutrients of Pandoga Sub Watershed, Una District of H.P (India). International Journal of Engineering Research and Development, 13, 72-76.
Elnaggar, A.A. (2017) Spatial Variability of Soil Physiochemical Properties in Bahariya Oasis, Egypt. Egyptian Journal of Soil Science, 57, 313-328. https://doi.org/10.21608/ejss.2017.4438
Arévalo-Gardini, E., Canto, M., Alegre, J., Loli, O., Juica, A. and Baligar, V. (2015) Changes in Soil Physical and Chemical Properties in Long Term Improved Natural and Traditional Agroforestry Management System of Cacao Genotypes in Peruvian Amazon. PLOS ONE, 10, e0132147. https://doi.org/10.1371/journal.pone.0132147
Jin, L., Andrews, D., Kaiser, N., Kaye, J., Lin, H. and Brantley, S.L. (2009) Interaction between Nutrient Dynamics and Chemical Weathering at Shale Hills Catchment, a Critical Zone Observatory in Pennsylvania, Pennsylvania, USA. GSA Annual Fall Meeting.
Geeves, G.W., Craze, B. and Hamilton, G.J. (2007) Soil Physical Properties. In: Charman, P.E.V. and Murphy, B.W., Eds., Soils—Their Properties and Management (3rd Edition), Oxford University Press, Melbourne, 168-191.