Spatio-Temporal Variations in Soil pH and Aluminum Toxicity in Sub-Saharan African Croplands (1980–2050)

Faculty Agriculture Year: 2023
Type of Publication: ZU Hosted Pages:
Authors:
Journal: REMOTE SENSING MDPI Volume:
Keywords : Spatio-Temporal Variations , Soil , , Aluminum Toxicity in Sub-Saharan    
Abstract:
Soil acidity threatens food production in the tropics. The effect of increasing ammoniumbased fertilizer (INF) on soil pH was assessed in sub-Saharan Africa (SSA). A total of 9043 soil data from Africa soil information services, past INF use, and two future scenarios of INF use (business as usual (BAU) and equitable diet (EqD)) were used to determine soil pH variations from 1980 to 2022 and to predict soil PH variations from 2022 to 2050. Random forest and extreme gradient boosting algorithms and soil-forming factor covariates were used for the spatio-temporal soil pH predictions. Topsoil acidification was shown to be significant, with mean annual decrements of 0.014, 0.024, and 0.048 from 1980 to 2022, 2022 to 2050 (BAU), and 2022 to 2050 (EqD), respectively. Over the past 42 years, croplands with soil pH < 6.5 have declined significantly, and soil acidification is predicted to become severe by 2050 in the BAU and EqD scenarios. This was indicated by a predicted 3% increase in croplands at risk of aluminum toxicity (soil pH < 5.5) from 66 × 106 ha in 2022 to 78.5 × 106 ha in 2050. The drivers of the spatial variations in the soil pH between 1980 and 2050 were the MAP, basic cation, clay content, SOC, and nitrogen fertilizers. The evaluation metrics of the 10-fold cross-validation showed that the root mean squared errors (RMSEs) of the soil pH from 1980 to 2022, as well as the predicted soil PH from 2022 to 2050 (BAU) and 2022 to 2050 (EqD), were 0.53 pH units, 0.54 pH units, and 0.56 pH units, respectively, with coefficients of determination (R2) of 0.63, 0.64, and 0.66. The findings of this study can be used for the establishment of management strategies for increasing INF use in acidic soils
   
     
 
       

Author Related Publications

  • Ahmed Salah Abdelkarim ebrahim, "Changes in phosphorus fractions in response to long-term nitrogen fertilization in loess plateau of China", ُELSEVIR, 2021 More
  • Ahmed Salah Abdelkarim ebrahim, "Global gross nitrification rates are dominantly driven by soil carbon-to-nitrogen stoichiometry and total nitrogen", Wiley, 2021 More
  • Ahmed Salah Abdelkarim ebrahim, "Genome-Wide Identification and Expression Analysis of Metal Tolerance Protein Gene Family in Medicago truncatula Under a Broad Range of Heavy Metal Stress", Frontiers, 2021 More
  • Ahmed Salah Abdelkarim ebrahim, "Interplaying roles of silicon and proline effectively improve salt and cadmium stress tolerance in Phaseolus vulgaris plant", ELSEVIER, 2019 More
  • Ahmed Salah Abdelkarim ebrahim, "Role of Nanoparticles in Enhancing Crop Tolerance to Abiotic Stress: A Comprehensive Review", Frontiers, 2022 More

Department Related Publications

  • Sarah Alsayed Elsayed Elsayed Foda, "Response of Faba bean (Vicia faba L.) plants to different sources and rates of nitrogen fertilization in newly reclaimed soil.", مجلة كلية الزراعة, 2015 More
  • Mohamed Kamal Abdelfatah Mohamed, "تأثير المستويات المختلفة من النيتروجين والفوسفور مخلوطة مع الكمبوست النباتي على نمو ومحصول الباميا تحت ظروف الأراضي الرملية في مصر", Knowledgia Review, Malaysia, 2013 More
  • Sameh mohamed abd monem ahmed, "Potential use of some natural materials for remediating polluted water", Zagazig university, 2021 More
Tweet