欢迎访问《应用生态学报》官方网站,今天是

应用生态学报 ›› 2026, Vol. 37 ›› Issue (7): 2393-2401.doi: 10.13287/j.1001-9332.202607.017

• • 上一篇    下一篇

有机物料分解过程中溶解性有机质组分变化及其与镉的络合特征

王金超, 石梦瑶, 王晨宇, 连方淤, 唐天逸, 刘敏霞*   

  1. 山西农业大学林学院, 山西晋中 030801
  • 收稿日期:2025-11-20 接受日期:2026-05-26 出版日期:2026-07-18 发布日期:2027-01-18
  • 通讯作者: *E-mail: liumx@sxau.edu.cn
  • 作者简介:王金超, 男, 2001年生, 硕士。主要从事溶解性有机质分子多样性及其与重金属相互作用机制研究。E-mail: w12301192@163.com
  • 基金资助:
    国家自然科学基金项目(32501507)和山西省基础研究计划面上项目(202303021211095)资助。

Component changes of dissolved organic matter during organic materials decomposition and their comple-xation with cadmium

WANG Jinchao, SHI Mengyao, WANG Chenyu, LIAN Fangyu, TANG Tianyi, LIU Min-xia*   

  1. College of Forestry, Shanxi Agricultural University, Jinzhong 030801, Shanxi, China
  • Received:2025-11-20 Accepted:2026-05-26 Online:2026-07-18 Published:2027-01-18

摘要: 有机物料分解产生的溶解性有机质(DOM)在调节土壤生态功能和重金属污染修复中发挥着重要作用。本研究以腐熟猪粪、玉米秸秆和生物炭3种有机物料为研究对象,经过120 d分解试验,结合三维荧光光谱-平行因子分析(EEM-PARAFAC)技术,分析了不同物料分解过程中DOM的组分变化及其与Cd的络合特征。结果表明:所有物料的DOM含量均随试验时间呈下降趋势,并在28 d后进入一个相对稳定的平台期。在整个试验周期内,玉米秸秆处理DOM含量均显著高于腐熟猪粪和生物炭。各物料DOM的腐殖化指数(HIX)与分解时间呈正相关,120 d时玉米秸秆、生物炭和腐熟猪粪DOM的HIX较初始(0 d)分别提高了50.0%、6.3%和24.5%。生物炭DOM以类富里酸(C2,占比24.0%~29.0%)和类胡敏酸(C3,占比52.0%~60.0%)组分为主,腐熟猪粪和玉米秸秆DOM在前28 d主要以类蛋白质组分(C1,占比47.0%~63.0%和44.0%~52.0%)为主,28 d后以C2和C3组分为主。EEM-PARAFAC与Ryan-Weber模型分析显示,DOM与Cd的络合能力依次为玉米秸秆>腐熟猪粪>生物炭,且络合作用主要由C2组分主导。培养28 d时玉米秸秆DOM对Cd的络合能力最强。综上,相较于腐熟猪粪和生物炭,分解至28 d的玉米秸秆在修复Cd污染土壤方面具有潜在优势。

关键词: 溶解性有机质(DOM), Cd, 络合作用, 有机物料, 荧光组分

Abstract: Dissolved organic matter (DOM) released from organic materials plays a vital role in regulating soil ecological functions and remediating heavy metal contamination. We conducted a 120-day decomposition experiment with three types of organic materials, including composted pig manure, corn stover, and biochar. Using three-dimensional fluorescence spectroscopy and parallel factor analysis (EEM-PARAFAC), we analyzed the compositional change of DOM during decomposition and its complexation characteristics with Cd. Results showed that the DOM content of all materials decreased over time and stabilized after 28 days. Throughout the experiment, the DOM content of the corn stover treatment remained significantly higher than other two types. The humification index (HIX) of DOM from all materials positively correlated with decomposition time, with the HIX of corn stover, biochar, and composted pig manure being increased by 50.0%, 6.3%, and 24.5% after 120 days, respectively. Biochar DOM was primarily composed of fulvic acid-like (C2, accounting for 24.0%-29.0%) and humic acid-like (C3, accounting for 52.0%-60.0%) components, while composted pig manure and corn stover DOM were dominated by protein-like components (C1, accounting for 47.0%-63.0% and 44.0%-52.0%, respectively) during the first 28 days and shifted to C2 and C3 components thereafter. EEM-PARAFAC and Ryan-Weber model analysis revealed that the complexation capacity of DOM with Cd followed the order: corn stover > composted pig manure > biochar, with C2 components playing a dominant role. At 28 days of incubation, corn stover DOM exhibited the strongest complexation capacity with Cd. In summary, compared to composted pig manure and biochar, corn stover decomposed for 28 days demonstrated potential advantages in remediating Cd-contaminated soils.

Key words: dissolved organic matter (DOM), Cd, complexation, organic material, fluorescent component