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April 23, 2026Scientific Reports0 citationsOpen Access

Biochar-mediated enhancement of soil quality and nutrient availability to spinach under water-limited conditions

MZMaryam ZahedifarAMAli Akbar MoosaviEGEdris Gavili

Key Points

  • The study aims to examine how different levels of biochar affect soil quality indices and spinach yield under varying moisture conditions.
  • Conducted a factorial greenhouse study with three moisture levels and varying biochar applications
  • Assessed soil quality using principal component analysis (PCA) and various soil indicators
  • Evaluated spinach yield in relation to biochar treatments under water-limited conditions.
  • Biochar application improved soil quality indices and spinach yield, particularly at 50 t ha⁻¹ and 100 t ha⁻¹ rates
  • PCA identified effective treatments that enhanced soil attributes and plant nutrient levels
  • Control samples without biochar showed the lowest scores in soil and plant properties.

Abstract

Biochar as a soil amendment can mitigate plant water stress. But its effects on soil quality in calcareous soils, particularly under varying moisture conditions, have not been studied. Therefore, this three replicated factorial greenhouse study evaluated the effects of cattle manure-derived biochar (0 (B0), 25 (B25), 50 (B50), and 100 (B100) t ha− 1 which are equivalent to 0, 1.25, 2.5, and 5%wt, respectively) on spinach yield and the soil quality indices (SQI) of the postharvest soils under three soil moisture levels (100% (W100), 70% (W70), and 55% (W55) of field capacity, FC). Soil quality indices and their grades were assessed using a total of 27 soil indicators (TDS) and minimum (MDS) data sets derived from principal component analysis (PCA), with the Nemoro (NQI) and integrated (IQI) soil quality indices. PCA identified six principal components (PCs) with eigenvalues > 1, accounting for 94.77% of cumulative variance. The most influential indicators (MDS) comprised soil iron, copper, and nitrogen concentrations, mean weight diameter (MWDd), and geometric mean diameter (GMDd) from dry sieving, and ∆GMD (with eigenvectors of 0.745, 0.565, 0.958, 0.801, 0.863, and 0.743, respectively). Correlations between IQI-TDS, IQI-MDS, NQI-MDS, and most plant and soil properties were positive, except for electrical conductivity, sodium adsorption ratio, and soil sodium concentration. PCA revealed that B50W55 and B100W55 were the most effective treatments, showing higher PC1 and lower PC2 scores, and were associated with improved greenness index, water repellency, penetration resistance, plant nitrogen, phosphorus, and sodium, as well as soil potassium, magnesium, and iron. Quality grades of the biochar-treated soil varied from III to IV under drought conditions. The highest soil property scores were achieved with 100 t ha⁻¹ biochar, whereas the best plant property scores occurred with 50 t ha⁻¹ biochar at 55% FC. The lowest scores across all properties were observed in the control (no biochar). Based on the sensitivity index and efficiency ratio, IQI-MDS was identified as the optimal model for representing soil quality in relation to crop yield. Overall, biochar application enhanced soil quality indices and crop yield by supplying nutrients and improving soil attributes. These findings highlight biochar’s potential to sustain soil health and productivity under drought conditions, which are increasingly common in arid and semi-arid regions.

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Cite This Study

Zahedifar et al. (2026) studied this question.

synapsesocial.com/papers/69e9ba6b85696592c86eca8fhttps://doi.org/10.1038/s41598-026-49328-y
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