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Assessment of the impacts of toposequence on soil properties and quality in Tula, Gombe State, Nigeria


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Abba H. M., Sawa F. B. J., Gani A. M., Abdul S. D., Iliya M. (2016): Soil physico Chemical Characteristics of Kanawa Forest Reserve (KFR), Gombe State, Nigeria. Journal of Environmental Science, Toxicology and Food Technology 10: 68–75. Search in Google Scholar

Agbenin J. O. (1995): Laboratory Manual for Soil and Plant Analysis. Department of Soil Science, Ahmadu Bello University Zaria, Kaduna State, (1st ed.), ABU Press. Search in Google Scholar

Akpan-Idiok A. U., Ukabiala M. E., Amhakhian O. S. (2013): Characterization and classification of Benue floodplain soils in Bassa Local Government Area of Kogi State. International Journal of Soil Science 8: 32–46.10.3923/ijss.2013.32.46 Search in Google Scholar

Andrews S. S., Carroll C. R. (2001): Designing a soil quality assessment tool for sustainable agro‑ecosystem management. Ecological Applications 11: 1573–1585. https://doi.org/10.1890/1051-0761(2001)011[1573:DASQAT]2.0.CO;210.1890/1051-0761(2001)011[1573:DASQAT]2.0.CO;2 Search in Google Scholar

Aweto A. O., Enaruvbe G. O. (2010): Catenary variation of soil properties under oil palm plantation in South Western Nigeria. Ethiopian Journal of Environmental Studies and Management 3:1–7.10.4314/ejesm.v3i1.54389 Search in Google Scholar

Balzerek H., Fricke W., Heinrich J., Moldenhauer K. M., Rosenberger M. (2003): Man‑made Flood Disaster in the Savanna Town of Gombe/Ne Nigeria the Natural Hazard of Gully Erosion Caused by Urbanization Dynamics and Their Peri‑Urban Footprints. Erdkunde 57: 94–109. http://www.jstor.org/stable/2564754510.3112/erdkunde.2003.02.02 Search in Google Scholar

Blake G. R., Hartge K. H. (1986): Bulk density. In A. Klute (ed.) Methods of Soil Analysis. Part 1. Physical and Mineralogical Methods. (2nd ed). Agronomy Monograph. 9. ASA and SSSA, Madison, WI, USA, pp. 363–382.10.2136/sssabookser5.1.2ed.c13 Search in Google Scholar

Brady C. N., Weil, R. R. (2007): The nature and properties of soil; (12th ed.), Prentice Hall Englewood. Search in Google Scholar

Chidowe O. A., Joshua T. M., Sunday A., Dawi T. B., Oluoch M., Zeyaur K. (2014): Effect of Tillage, Fertilizer and Sorghum/Desmodium Intercrop Cultivation on Soils’ Quality and Yield of Sorghum in an Alfisols of a Northern Guinea Savanna of Nigeria. International Journal of Plant and Soil Science 3: 1490–1503.10.9734/IJPSS/2014/9402 Search in Google Scholar

Elias E., Agegnehu G. (2020): Mineralogical and physicochemical properties of nitisols in the Ethiopian highland. Ethiopia Journal of Agricultural Sciences 30: 97–119. Search in Google Scholar

Gee G. W., Bauder J. N. (1979): Particle Size Analysis by Hydrometric Method; A Simplified Method for Routine Textural Analysis and Sensitivity Test of Mineral Parameters, Soil Science Society of American Journal 43: 1004–1007.10.2136/sssaj1979.03615995004300050038x Search in Google Scholar

Garcia‑Ocampo A. (2003): Physical Properties of Magnesium Affected Soils in Colombia. Lecture given at the College on Soil Physics Trieste, LNS0418016, 3–21 March, 2003, 1–6. Search in Google Scholar

Hu C., Wright A., Lian G. (2019): Estimating the spatial distribution of soil properties using environmental variables at a catchment scale in the loess hilly area, China, International Journal of Environmental Research and Public Health 16: 491. doi:10.3390/ijerph16030491 www.mdpi.com/journal/ijerph.10.3390/ijerph16030491638820430744147 Search in Google Scholar

Ibrahim A. K., Umar A. H. (2012): Profile distribution of micronutrients in Jangargari, Yamaltu Deba Local Government area, Gombe state. Journal of Applied Phytotechnology in Environmental Sanitation l: 83–89. Search in Google Scholar

Jimoh I. A, Aliyu J., Suleiman R. (2019): Evaluation of Soil Quality under Date Palm Plantation for Climate Change and Food Security in Gombe State University, Gombe Nigeria. International Journal of Environmental Quality (EQA) 35: 51–64. DOI: 10.6092/ISSN: 2281-4485/9329. Search in Google Scholar

Jimoh I. A. Mbaya L. A, Akande D., Agaku T., Haruna S. (2020): Impact of toposequence on soil properties and classification in Zaria Kaduna state, Northern guinea savanna, Nigeria. International Journal of Environment Quality, 38: 48–58. DOI: 10.6092/issn.2281-4485/10043. Search in Google Scholar

Moeslund, J. E., Arge, L., Bocher P. K., Dalgaard T., Ejmaes, R., Odgaard, M. V., Svenning, J. C. (2013): Topographically controlled soil moisture drives plant diversity patterns within grasslands. Biodiversity and Conservation 22: 2151–2166.10.1007/s10531-013-0442-3 Search in Google Scholar

Nelson M. J., Sommers L. E. (1982): Total Carbon, Organic Carbon and Organic Matter. In: Page, L. A., Miller, R. H. and Keeney, D. R. (eds), Methods of Soil Analysis, pp. 539–579. Part 2. Chemical and Microbiological Methods (2nded.) American Society of Agronomy, Madison, W.I10.2134/agronmonogr9.2.2ed.c29 Search in Google Scholar

Odunze A. C., Kureh I. (2009): Land Use limitations and management option for a Savanna Zone Alfisol. Journal of Agriculture and Environment for International Development103: 321–335. Search in Google Scholar

Odunze A. C., Hamza H., Oyinlola E. Y. (2019): Slope Position and Land Use Effect on Select Soil Properties, Quality and Carbon Stock in Surface Soils at Afaka Forest Area, Northern Guinea Savanna of Nigeria. Current Journal of Applied Science and Technology 32: 1–13.10.9734/CJAST/2019/46375 Search in Google Scholar

Oku E., Essoka A., Thomas E. (2010): Variability in soil properties along an Udalftoposequence in the Humid Forest Zone of Nigeria. Kasetsart Journal (National Science) 44: 564–573. Search in Google Scholar

Parr J. F., Papendick R. I., Hornick S. B., Meyer R. E. (1992): Soil Quality: Attributes and Relationship to Alternative and Sustainable Agriculture. American Journal of Alternative Agriculture 7: 5–11. https://doi.org/10.1017/S0889189300004367.10.1017/S0889189300004367 Search in Google Scholar

Sadiq F. K., Maniyunda L. M., Anumah A. O., Adegoke K. A. (2021): Variation of soil properties under difference landscape positions and land use in Hunkuyi, Northern Guinea savanna of Nigeria. Environmental Monitoring and Assessment 193: 1–18.10.1007/s10661-021-08974-733751242 Search in Google Scholar

Seifu W., Elias E., Gebresamuel G. (2020): The Effects of Land Use and Landscape Position on Soil Physicochemical Properties in a Semiarid Watershed, Northern Ethiopia. Applied and Environmental Soil Science 1: 1–20. https://doi.org/10.1155/2020/881624810.1155/2020/8816248 Search in Google Scholar

Takoutsing B., Martin J. A. R., Weber J. C., Shepherd K., Sila A., Tondoh J. (2017): Landscape approach to assess key soil functional properties in the highlands of Cameroon: Repercussions of spatial relationships for land management interventions. Journal of Geochemical Exploration 178: 35–44. https://doi.org/10.1016/j.gexplo.2017.03.014.10.1016/j.gexplo.2017.03.014 Search in Google Scholar

Tellen V. A., Yerima B. P. K. (2018): Effects of land use change on soil physicochemical properties in selected areas in the North West region of Cameroon. Environmental System Research 7: 1–29. https://doi.org/10.1186/s40068-018-0106-0.10.1186/s40068-018-0106-0 Search in Google Scholar

Tolessa T., Senbeta F. (2018): The extent of soil organic carbon and total nitrogen in forest fragments of the central highlands of Ethiopia, Journal of Ecology and Environment 42: 1–20.10.1186/s41610-018-0081-4 Search in Google Scholar

Walworth J. (2013): Nitrogen in the Soil and the Environment, the University of Arizona, Tucson, AZ, USA. Search in Google Scholar

Wilson J. R. (2010): Minerals and Rocks, J. Richard Wilson and Ventus Publishing Aps. pp. 14–20, an e‑Book available online at www.bookboon.com. Search in Google Scholar

Yusuf U. A., Yahaya I. (2017): X‑raying Rainfall Pattern in Gombe State over the last three decades. IOSR Journal of Humanities and Social Science (IOSR‑JHSS) 22: 67–75. www.iosrjournals.org. DOI: 10.9790/0837-2206116775.10.9790/0837-2206116775 Search in Google Scholar

eISSN:
1801-0571
Sprache:
Englisch
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Volume Open
Fachgebiete der Zeitschrift:
Biologie, Botanik