ABSTRACT Response of soil physicochemical and microbial properties to organic amendment addition in three soil types
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| Di Xu1, Guojun Feng1, Dajun Liu1, Chang Liu1, Zhishan Yan1, Taifeng Zhang1, Mingwei Xu1, and Xiaoxu Yang1* |
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| Conventional agricultural practices have progressively reduced soil fertility, largely as a consequence of C depletion. So, the application of organic amendments as a fertilization strategy should enhance soil properties and promote long-term sustainability. This study assessed the effects of a composted organic amendment, “bio-stabilized”, as improver of the soil properties applied at rates of 1% and 2% (w/w), on the chemical, physical, and microbiological properties of three soils with contrasting textures (sandy loam, silt loam, and clay loam) following a 30 d aerobic incubation. The results showed that bio-stabilized application improved chemical properties across all soils, resulting in agronomically adequate nutrient availability and acceptable electrical conductivity levels (< 0.55 dS m-1). In addition, water retention increased at potentials corresponding to different pore-size classes in two soils (500-1500 kPa in the silt loam soil and 33-1500 kPa in the clay loam soil). Microbiological properties increased quantitatively with bio-stabilized application; however, a significant increase in dissolved organic C was observed only in the clay loam soil (from 98.4 to 283.4 mg kg-1). Overall, the application of bio-stabilized at the evaluated rates improved soil properties, with positive implications for agronomic performance and soil sustainability. |
| Key words: Bio-stabilized, clay loam, compost, sandy loam, silt loam. |
1Heilongjiang University, College of Modern Agriculture and Ecological Environment, Harbin, China. *Corresponding author (sunny19880106@126.com) Received: 29 January 2026; Accepted: 1 June 2026, Available online: 3 August 2026. |
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