华东师范大学学报(自然科学版) ›› 2025, Vol. 2025 ›› Issue (4): 134-146.doi: 10.3969/j.issn.1000-5641.2025.04.014

• • 上一篇    

生物炭-脱硫石膏混合施用对滨海盐碱土改良和N2O减排效果评估

陈子彦, 杨荣荣, 吴仪, 侯立军, 梁霞*()   

  1. 华东师范大学 河口海岸全国重点实验室, 上海 200241
  • 收稿日期:2024-02-24 接受日期:2024-04-12 出版日期:2025-07-25 发布日期:2025-07-19
  • 通讯作者: 梁霞 E-mail:xliang@sklec.ecnu.edu.cn
  • 基金资助:
    国家自然科学基金重点项目 (42030411)

Evaluation of biochar-desulfurized gypsum mixed application on saline-alkali soil improvement and N2O emission reduction in coastal areas

Ziyan CHEN, Rongrong YANG, Yi WU, Lijun HOU, Xia LIANG*()   

  1. State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai 200241, China
  • Received:2024-02-24 Accepted:2024-04-12 Online:2025-07-25 Published:2025-07-19
  • Contact: Xia LIANG E-mail:xliang@sklec.ecnu.edu.cn

摘要:

在实验室条件下设置不同生物炭和脱硫石膏施用比例, 并结合稳定同位素和分子生物学研究方法, 定量评估了生物炭和脱硫石膏混合添加对滨海盐碱土的改良效果及其对土壤氧化亚氮 (N2O) 排放的影响. 结果表明, 相较于生物炭和脱硫石膏单独添加处理, 两者混合施用后, 土壤碱化度(ESP)显著下降, 土壤有机碳含量明显增加. 混合施用后, 土壤N2O累积排放量下降了约127.7% (N2O由排放状态转为吸收状态), 这主要是由于混合施用显著提升了土壤硝化、反硝化潜力及N2O的还原消耗, 因此有效减少了土壤N2O排放. 研究结果为滨海盐碱土改良技术发展以及土壤温室气体减排管理提供数据支持和理论参考.

关键词: 盐碱地, 生物炭, 脱硫石膏, 氧化亚氮, 氮循环

Abstract:

The effects of biochar and desulfurized gypsum (FGD) on the improvement of coastal saline-alkaline soils and the emission of nitrous oxide (N2O) from soils were quantitatively evaluated using different application ratios of biochar and FGD under laboratory conditions and combined with stable isotope and molecular biology methods. The results showed that compared with the treatment with biochar or FGD gypsum alone, soil exchangeable eodium saturation percentage (ESP) decreased significantly to 11.6% ~ 13.0% whereas soil organic carbon content increased by about 34 times after the application of the mixture. Compared with the control and the individual applications, cumulative soil N2O emission in the mixture treatment decreased by about 127.7%. This is mainly due to the fact that the mixture application of biochar and FGD gypsum can significantly increase the nitrification and denitrification potential of soil as well as the consumption of soil N2O, thereby effectively reducing the soil N2O emission. The results of this study provide data support and a theoretical basis for the development of coastal saline soil improvement technology and the management of soil greenhouse gas emissions.

Key words: saline-alkali soil, biochar, desulfurized gypsum, nitrous oxide, nitrogen cycle

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