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Risk-based environmental management of Auricularia spent mushroom substrate: a review-based conceptual framework for
Zhongxu Duan1, Xuerong Han2, Lichun Huang3
1State Key Laboratory of Black Soils Conservation and Utilization, Key Laboratory of Wetland Ecology and Environment Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun, 130102, China; University of Chinese Academy of Science, Beijing, 101400, China.
Abstract:
The rapid expansion of Auricularia cultivation has generated a growing lignocellulosic waste stream, yet soil recycling of Auricularia spent mushroom substrate (SMS) remains constrained because its woody origin, incomplete decomposition, variable formulations, mineral additives, and post-harvest handling make it a heterogeneous residue rather than a ready-to-use organic fertilizer. This review synthesizes the attributes governing its environmental suitability for soil application and evaluates the main soil-oriented management pathways. Across the available evidence, the principal recurrent constraints are elevated salinity, insufficient maturity or residual phytotoxicity, and C/N-related nitrogen immobilization. Restricted direct field use is generally limited to screened materials with adequate maturity, low salinity, a narrowed C/N ratio, and no evident contaminant or biosafety concern. Indicative decision criteria should therefore be treated as method- and use-dependent screening aids rather than universal thresholds. GI values should be interpreted with the reported test species, extract ratio, moisture condition, and assay protocol; EC should be interpreted only with a defined extraction method and intended use; and C/N ratio should be assessed together with maturity, salinity, contaminant status, mineral N status, and crop-soil compatibility. For stabilized materials, application rates should be calculated on a dry-weight basis and constrained by the most limiting agronomic or environmental factor rather than assigned from a fixed universal t ha-1 yr-1 range. Future work should strengthen harmonized thresholds, long-term field evidence, and integrated environmental and techno-economic assessment.