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中国农学通报 ›› 2026, Vol. 42 ›› Issue (16): 147-156.doi: 10.11924/j.issn.1000-6850.casb2026-0114

• 资源·环境·生态·土壤·气象 • 上一篇    下一篇

园林绿化废弃物生物炭的碳释放特征及对土壤碳组分的影响

黄英梅1(), 梁永鑫2, 吴家龙1, 张俊涛1, 许昌超1, 梁春梅1   

  1. 1 广州市林业和园林科学研究院/广州市生态园林科技协同创新中心, 广州 510405
    2 华南农业大学资源环境学院, 广州 510642
  • 收稿日期:2026-01-23 修回日期:2026-06-09 出版日期:2026-08-25 发布日期:2026-08-20
  • 作者简介:

    黄英梅,女,1994年出生,河南驻马店人,工程师,博士,研究方向:园林绿地土壤修复与改良、绿化废弃物资源化利用。通信地址:510405 广东省广州市白云区广园中路428号,E-mail:

  • 基金资助:
    广州市林业和园林局部门预算项目“绿废源生物炭输入对土壤氮固持调控机制研究和应用”(穗财编[2025]2号)

Carbon Release Characteristics of Garden Waste Biochar and Its Impact on Soil Carbon Fractions

HUANG Yingmei1(), LIANG Yongxin2, WU Jialong1, ZHANG Juntao1, XU Changchao1, LIANG Chunmei1   

  1. 1 Guangzhou Institute of Forestry and Landscape Architecture/Guangzhou Collaborative Innovation Center on Science-tech of Ecology and Landscape, Guangzhou 510405
    2 College of Natural Resources and Environment, South China Agricultural University, Guangzhou 510642
  • Received:2026-01-23 Revised:2026-06-09 Published:2026-08-25 Online:2026-08-20

摘要:

为探究园林绿化废弃物源生物炭的碳释放特性及其对土壤碳组分的影响,选取华南地区常见的9种园林绿化废弃物,包括乔木(桉树、樟树、番石榴、棕榈叶、棕榈壳)、灌木(大花荣耀木)和草本(大叶油草、矮牵牛、凤仙花),分别制备生物炭。通过表征其基本理化性质、溶解性有机碳(DOC)释放特征及组分,以亚热带阔叶林城市森林公园典型赤红壤为供试土壤,开展不同添加比例(0.2%和1.0%,m/m)下大叶油草、大花荣耀木、矮牵牛、桉树生物炭对土壤理化性质、微生物生物量碳(MBC)、颗粒有机碳(POC)、矿物结合有机碳(MAOC)及易氧化有机碳(EOC)的影响。结果表明,桉树等乔木类生物炭具有较高的比表面积和更致密的孔隙结构,大叶油草等草本类生物炭具有较高的pH、电导率(EC)及灰分含量。DOC释放呈初期快速释放、后期逐渐趋缓的趋势,释放量由大到小为草本类>灌木类>乔木类;不同萃取方式下DOC释放量依次为热水萃取>冷水萃取>弱碱萃取,其中棕榈壳生物炭释放量最高,桉树生物炭量最低。1.0%添加量生物炭处理对土壤pH、EC及有机质提升最为显著。培养14 d时,除0.2%大花荣耀木生物炭外,其余处理土壤DOC含量显著提高47.12%~111.32%;培养至28 d时,0.2%大叶油草生物炭土壤DOC显著提高69.92%;至56 d时,各处理DOC含量均低于对照组。生物炭处理显著提升了土壤MBC含量(14.90%~72.61%,除0.2%矮牵牛生物炭处理外),生物炭处理还显著提高了POC含量(31.66%~364.65%),MAOC和EOC含量也有不同程度提高。1%添加量下,MBC、POC、MAOC和EOC含量均高于0.2%添加量。研究结论表明,大叶油草等草本类生物炭的添加有利于土壤活性碳的快速释放,大花荣耀木灌木类生物炭添加有助于激活土壤微生物活性,桉树等乔木类生物炭添加则更有利于土壤稳定性碳组分的积累。

关键词: 园林绿化废弃物, 生物炭, 溶解性有机碳, 释放特征, 土壤碳组分, 赤红壤

Abstract:

To investigate the carbon release characteristics of biochar derived from horticultural waste and its effects on soil carbon fractions, nine common types of horticultural waste in South China were selected: tree materials (eucalyptus, camphor tree, guava, palm leaves, and palm shells), shrub (Cassia fistula), and herbaceous plants (broadleaf carpet grass, petunia, and balsam). Biochar was produced from each material, and their basic physicochemical properties, dissolved organic carbon (DOC) release characteristics, and composition were characterized. A typical lateritic red soil from a subtropical broad-leaved forest urban park was used as the test soil. Soil incubation experiments were conducted to examine the effects of different application rates (0.2% and 1.0%, m/m) of biochar from broadleaf carpet grass, C. fistula, petunia, and eucalyptus on soil physicochemical properties, microbial biomass carbon (MBC), particulate organic carbon (POC), mineral-associated organic carbon (MAOC), and easily oxidizable organic carbon (EOC). The results showed that biochar derived from woody plants such as eucalyptus had higher specific surface areas and more compact pore structures, while those from herbaceous species like broadleaf carpet grass exhibited higher pH, electrical conductivity (EC), and ash content. DOC release followed a pattern of rapid initial release followed by gradual decline, with the release amount ranking as: herbaceous>shrub>woody species. Under different extraction methods, DOC release was in the order of hot water extraction>cold water extraction>weak alkaline extraction, with palm shell biochar showing the highest release and eucalyptus biochar the lowest. The 1.0% biochar application rate most significantly increased soil pH, EC, and organic matter content. After 14 days of incubation, except for the treatment with 0.2% C. fistula biochar, all other treatments showed a significant increase in soil DOC content by 47.12% to 111.32%. After 28 days, the soil DOC content in the 0.2% broadleaf carpet grass biochar treatment increased significantly by 69.92%. By day 56, DOC levels in all treatments were lower than those in the control group. Except for the 0.2% petunia biochar treatment, MBC in all other treatments increased significantly by 14.90% to 72.61%. The treatment with biochar also significantly increased the POC content by 31.66% to 364.65%, and the contents of MAOC and EOC also increased to varying degrees. At an addition rate of 1%, the contents of MBC, POC, MAOC and EOC were all higher than those at an addition rate of 0.2%. The addition of herbaceous biochar such as broadleaf carpet grass is beneficial for the rapid release of soil active carbon, the addition of shrub-like biochar such as C. fistula is helpful for activating the activity of soil microorganisms, and the addition of tree-like biochar such as eucalyptus is more conducive to the accumulation of stable carbon components in the soil.

Key words: garden waste, biochar, dissolved organic carbon, release characteristics, soil carbon fractions, lateritic red soil

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