生物炭
土壤水分
环境科学
农学
磷
泥炭
化学
稻草
土壤盐分
营养物
土壤肥力
土壤改良剂
土壤质地
铵
环境化学
土层
土壤pH值
干旱
土工试验
土壤结构
盐水
氮气
土壤分类
盐生植物
碱土
作者
Jie Sun,Y. Li,Cencen Guo,Runya Yang,Yajun Geng,Yinghua Pan,Z. Zhang
摘要
ABSTRACT Coastal saline soils can be ameliorated by establishing a capillary barrier at certain depths, yet the outcomes are contingent on barrier type. This study evaluated the performance of straw, biochar, and peat as capillary barriers in ameliorating coastal saline soil and improving plant growth. A 5‐cm‐thick barrier layer was buried in soil boxes at the 20‐cm depth, and phreatic evaporation was simulated over the growth cycle of Bermuda grass ( Cynodon dactylon (L.) Pers.). Distinct patterns of water, salt and nutrient distributions were observed in the 0–20 cm soil layers across treatments. Soil water content notably increased in biochar treatment compared with the control. Soil salt accumulation was strongly inhibited above different capillary barriers, as indicated by decreased electrical conductivity. Both soil Na + and SO 4 2− concentrations decreased in response to biochar treatment, despite the elevation of Ca 2+ and Mg 2+ concentrations. Biochar treatment exhibited the greatest positive effects on soil organic carbon, Olsen phosphorus and ammonium nitrogen concentrations, leading to the most significant improvements in root morphology and plant biomass. Path analysis revealed that the presence of capillary barriers modified root morphology through contrasting effects on salinity, ammonium nitrogen, and Olsen phosphorus in the upper soil layers, which conferred benefits to C. dactylon growth. This study demonstrates that biochar is a highly effective capillary barrier material, offering a promising strategy for sustainable soil amelioration and plant growth promotion in coastal saline areas.
科研通智能强力驱动
Strongly Powered by AbleSci AI