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生态学杂志 ›› 2025, Vol. 44 ›› Issue (11): 3683-3693.doi: 10.13292/j.1000-4890.202511.012

• 研究报告 • 上一篇    下一篇

北部湾茅岭江河口土壤粒径分布特征

林俊良1,田义超1,2*,张亚丽1,白小梅1,张强1,陶进1,杨芸珍1   

  1. 1北部湾大学资源与环境学院, 广西钦州 535011; 2北部湾大学北部湾海洋地理信息资源开发与利用重点实验室, 广西钦州 535011)

  • 出版日期:2025-11-10 发布日期:2025-11-11

Characteristics of soil particle size distribution at the estuary of Maoling River, Beibu Gulf.

LIN Junliang1, TIAN Yichao1,2*, ZHANG Yali1, BAI Xiaomei1, ZHANG Qiang1, TAO Jin1, YANG Yunzhen1   

  1. (1School of Resources and Environment, Beibu Gulf University, Qinzhou 535011, Guangxi, China; 2Key Laboratory of Marine Geographic Information Resources Development and University, Beibu Gulf University, Qinzhou 535011, Guangxi, China).

  • Online:2025-11-10 Published:2025-11-11

摘要: 土壤粒径分布是土壤物理性质的基本参数,是影响红树林生态系统物质循环与能量流动的重要因素。本研究以北部湾茅岭江河口的无瓣海桑、桐花树、茳芏盐沼、光滩为对象,分析不同植被类型的土壤粒径组成、垂直水平特征及影响因素。结果表明:研究区土壤类型包括砂质粉砂和粉砂;无瓣海桑和光滩土壤平均粒径Φ值随土层深度增加而减小,桐花树和茳芏土壤平均粒径Φ值先减小后增大。无瓣海桑土壤从上游到下游砂含量减少,粉砂和黏土含量增加;整个研究区二级潮沟向海、向陆方向砂含量增加,黏土、粉砂含量减少;河口红树林土壤粒度组成受海岸带类型、径流输入、输沙量及底栖动物的影响。本研究结果为研究红树林土壤碳汇及海岸带管理提供重要依据。


关键词: 红树林湿地, 土壤粒径, 空间分布, 北部湾茅岭江河口

Abstract: The distribution of soil particle size is a fundamental parameter of soil physical properties and plays a crucial role in influencing material cycling and energy flow in mangrove ecosystems. We analyzed soil particle size composition, vertical distribution characteristics, and influencing factors across different vegetation types of Sonneratia apetala, Aegiceras corniculatum, Cyperus malaccensis, and bare flats in the Maoling River estuary of Beibu Gulf. Soil types in the study area included sandy chalk and silt. The average particle size (Φ) of the soils of Sonneratia apetala and bare flats decreased with increasing soil depth, while that of the soils of Aegiceras corniculatum and Cyperus malaccensis decreased first and then increased. Sand content decreased from upstream to downstream of the Sonneratia apetala sampling sites, and silt and clay contents increased. Sand content increased in the seaward and landward direction of secondary tidal channels, and silt and clay contents decreased. Our findings indicated that the particle size composition of estuarine mangrove soils was influenced by coastal zone type, runoff input, sand transport, and benthic fauna. Our results provide an important basis for the study of mangrove soil carbon sinks and coastal zone management.


Key words: mangrove wetland, soil particle size, spatial distribution, Maoling River estuary of Beibu Gulf