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◆ Journal of environmental management2026-09-19

Low-release biochar for improving coastal reclaimed Saline-Alkali soil: Short-Term physicochemical responses and exploratory microbial transcriptional associations under controlled pot conditions.

Wen Tao Li, Lin Liu, Kang Wang, Saiwei Zhang, Lei Wang, Xiaoyong Qian, Han Tang, Junhui Yan, Min-Tian Gao, Jixiang Li, Jiajun Hu

一句话结论

Evaluated the short-term responses of coastal reclaimed saline-alkali soil under controlled pot conditions to a novel low-release biochar. Low-release biochar exerted negligible disturbance on soil salinity and pH, induced a 24% net rise in soil organic carbon alongside improved macroaggregate formation and microbial biomass. Low-release biochar reduces release-related risk signals while increasing soil organic carbon and improving fertility properties in reclaimed coastal saline-alkali soil.

原始摘要(原文)
Coastal land reclamation is an important approach to expanding useable land, yet reclaimed soils are often constrained by low fertility, weak structural stability, and saline-alkaline stress. Considering traditional amendments may introduce environmental risks in sensitive coastal settings, this study evaluated the short-term responses of coastal reclaimed saline-alkali soil (Hengsha Island, Shanghai) under controlled pot conditions to a novel low-release biochar (BC-SR). Ten days after application, conventional biochar (BC-O) increased soil salinity to 2.5 times the initial level and raised pH by 0.22, whereas BC-SR exerted negligible disturbance on salinity and pH. Soil organic carbon (SOC) exhibited a net 13% reduction under BC-O during incubation, whereas BC-SR induced a 24% net rise in SOC alongside improved macroaggregate formation and microbial biomass. This effect of BC-SR further elevated the net SOC increment to 105% in the plant-containing treatments, whereas SOC decreased by 41% in the plant-only control. Exploratory metatranscriptomic analysis indicated that the treatment combining plant and BC-SR was associated with higher transcript abundances of genes related to the Calvin-Benson-Bassham cycle and other carbon fixation pathways. Overall, these findings provide short-term evidence that low-release biochar could reduce release-related risk signals while increasing soil organic carbon and improving fertility properties in reclaimed coastal saline-alkali soils under controlled pot conditions.
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Low-release biochar for improving coastal reclaimed Saline-Alkali soil: Short-Term physicochemical responses and exploratory microbial transcriptional associations under controlled pot conditions. — 科研速览 Science Skim