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- W2743710273 abstract "Abstract Managing the land properly can help conserve the soil which is critical for sustaining our life and the global society. However, measuring the quality of the soil explicitly is still a challenge. Therefore, this study was conducted to identify suitable soil quality indicators among contrasting land managements (i.e., simple vs. complex crop rotations; manure vs. balanced fertilization) at two long-term experimental fields. The fractal structure of soils was documented by the mass-diameter relationship of soil aggregates using 3D laser scanning. Hydraulic conductivity (K), pore size fractions, and soil physical S parameter (S-index) were determined from moisture retention curves using a HYPROP system. Soil microbial community structure was characterized using phospholipid fatty acid analysis. Our results demonstrated an improved hierarchical fractal aggregation in soils under perennial legumes and grasses (Dm = 0.97) compared to nonfractal aggregation under fallow phases (Dm = 0.99). In addition, across nutrient managements, only balanced fertilization exhibited significantly enhanced fractal aggregation. Moreover, complex crop rotations and balanced fertilization also improved S-index, saturated water content (sat. WC), and plant available water (PAW) compared to their counterparts (Ps" @default.
- W2743710273 created "2017-08-17" @default.
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- W2743710273 date "2017-10-01" @default.
- W2743710273 modified "2023-10-16" @default.
- W2743710273 title "Quantifying sensitive soil quality indicators across contrasting long-term land management systems: Crop rotations and nutrient regimes" @default.
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- W2743710273 doi "https://doi.org/10.1016/j.agee.2017.07.018" @default.
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