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应用生态学报 ›› 2026, Vol. 37 ›› Issue (8): 2605-2617.doi: 10.13287/j.1001-9332.202608.016

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亚热带退化红壤苔藓结皮对土壤水分入渗和水流特征的影响

张海林1,2,3, 王宇欣1,2, 李胜龙1,2,3*, 易军1,2,3, 费远航1,2,3, 郭睿思1,2, 廖琴1,2   

  1. 1华中师范大学城市与环境科学学院, 武汉 430079;
    2华中师范大学地理过程分析与模拟湖北省重点实验室, 武汉 430079;
    3湖北江汉平原农田生态系统野外科学观测研究站, 武汉 430079
  • 收稿日期:2026-01-14 修回日期:2026-07-07 出版日期:2026-08-18 发布日期:2027-02-18
  • 通讯作者: *E-mail: shenglongli@ccnu.edu.cn
  • 作者简介:张海林, 博士, 教授。主要从事土壤水文学、生态水文学研究。E-mail: hailzhang@ccnu.edu.cn
  • 基金资助:
    国家自然科学基金项目(42307414)、中国博士后科学基金项目(2023M741309,2025T180087)、中央高校基本业务费(XJ2026006401,XJ2026007501)和湖北省自然科学基金项目(2024AFB909)

Effects of moss biocrusts on soil water infiltration and water flow characteristics in subtropical degraded red soil region

ZHANG Hailin1,2,3, WANG Yuxin1,2, LI Shenglong1,2,3*, YI Jun1,2,3, FEI Yuanhang1,2,3, GUO Ruisi1,2, LIAO Qin1,2   

  1. 1College of Urban & Environmental Sciences, Central China Normal University, Wuhan 430079, China;
    2Hubei Province Key Laboratory for Geographical Process Analysis & Simulation, Central China Normal University, Wuhan 430079, China;
    3Hubei Jianghan Plain Scientific Observation and Research Station of Farmland Ecosystem, Wuhan 430079, China
  • Received:2026-01-14 Revised:2026-07-07 Online:2026-08-18 Published:2027-02-18

摘要: 我国南方红壤丘陵区水土流失严重,退化裸露红壤地表广泛发育的生物结皮在区域生态水文过程中发挥重要作用。本研究于2024年7—10月在江西省鹰潭市余江区中国科学院红壤生态试验站,以无结皮退化红壤和典型藓结皮覆盖退化红壤为对象,采用原位双环入渗和野外原位染色示踪等方法,对比分析藓结皮与无结皮土壤的水分入渗与水流特征差异。结果表明:与无结皮土壤相比,藓结皮显著改变了表层0~10 cm土壤的基本理化性质和水力学参数,土壤容重和饱和导水率分别显著降低9.1%和176.5%,有机质、黏粒和粉粒含量及地表粗糙度分别显著增加58.2%、35.3%、45.0%和201.7%。藓结皮显著降低了表层土壤的入渗特性,土壤初始入渗率、稳定入渗率、平均入渗率和累计入渗量较无结皮土壤分别降低了11.8%、53.3%、50.0%和50.9%。藓结皮0~10 cm深度土壤染色面积比和<100 mm染色路径宽度较无结皮土壤平均降低了29.7%和57.9%,且其覆盖土壤的染色路径数是无结皮土壤的1.5倍;水平染色图像也显示,藓结皮土壤在0~10 cm深度的水流路径数和当量宽度均高于无结皮土壤。藓结皮覆盖土壤水流类型以非均质指流(集中分布于0~1 cm)和高互相作用大孔隙流为主,无明显均质流;无结皮土壤在0~3 cm深度以均质流为主,3~8 cm为非均质指流,8 cm以下均为高相互作用大孔隙流。Mantel检验与结构方程模型结果显示,入渗速率与染色面积比、地表类型和有机质含量均有显著相关性,其中地表类型(无结皮和藓结皮)对土壤入渗有直接显著负效应,并且会通过影响土壤基本理化性质直接或间接影响染色面积比与土壤入渗。综上,在亚热带退化裸露红壤地表发育的藓结皮可显著改变表层土壤的基本理化性质与水力学参数,降低入渗速率,进而抑制入渗,最终改变土壤水流类型,其在红壤退化区地表生态恢复中的作用不可忽视。

关键词: 生物土壤结皮, 红壤, 入渗速率, 染色示踪, 染色面积比

Abstract: Soil erosion is severe in the red soil hilly region of southern China, where biocrusts widely develop on the surface of degraded and exposed soil, playing a critical role in regional eco-hydrological processes. From July to October 2024, we conducted an experiment with uncrusted degraded red soil and typical moss-crusted degraded red soil at the Ecological Experiment Station of Red Soil, Chinese Academy of Sciences, in Yujiang District, Yingtan City, Jiangxi Province. To elucidate the differences of soil water movement characteristics between biocrusts and uncrusted soil in degraded red soil regions, we investigated the infiltration processes and water flow types of uncrusted soil and biocrusts (moss crusts) through double-ring infiltration and in-situ dye-tracing experiments. The results showed that moss crusts significantly altered the physicochemical properties of the 0-10 cm depth of soil. Specifically, soil bulk density and saturated hydraulic conductivity of moss crusts was significantly reduced by 9.1% and 176.5%, while organic matter content, clay content, silt content, and surface roughness were 58.2%, 35.3%, 45.0%, and 201.7% higher than that of uncrusted soil, respectively. Compared to uncrusted soil, moss crusts greatly diminished soil infiltration, with initial infiltration rate, steady-state infiltration rate, average infiltration rate, and cumulative infiltration being reduced by 11.8%, 53.3%, 50.0%, and 50.9%, respectively. Moss crusts suppressed infiltration, resulting in a 29.7% reduction in the 0-10 cm stained area ratio and a 57.9% decrease in the stained path width <100 mm in comparison to uncrusted soil. Furthermore, the stained path number of moss crusts was 1.5 times of uncrusted soil. Moreover, the horizontal stained images also revealed that moss-crusted soil exhibited a higher number of water flow paths and a larger equivalent width compared to the uncrusted soil at 0-10 cm depth. The water flow pattern of moss crusts was predominantly exhibited heterogeneous finger flow (concentra-ted at 0-1 cm depth of soil) and highly interacted macropore flow, and without any homogeneous flow. Uncrusted soil exhibited predominantly homogeneous flow in the 0-3 cm depth, heterogeneous finger flow in the 3-8 cm, and highly interacted macropore flow below 8 cm. Results of Mantel test and structural equation modeling revealed that infiltration rate exhibited significant correlations with stained area ratio, surface type, and organic matter content. Especially, surface type (uncrusted soil and moss-crusted soil) exerted a direct and significant effect on soil infiltration and also indirectly influenced stained area ratio and soil infiltration by modifying other soil properties. In conclusion, moss crusts that developed on degraded and exposed red soil surfaces in subtropical regions could significantly alter the basic physicochemical properties and hydraulic parameters of surface soils. It markedly reduced the infiltration rate, suppress infiltration, and ultimately change soil water flow type. Thus, moss crusts play a cardinal role in surface ecological restoration in degraded red soil regions.

Key words: biological soil crust, red soil, infiltration rate, dye tracer, stained area ratio