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设施菜田土壤氮磷淋失对镁改性生物炭施用的响应

王亚玲 成宇阳 王赫 彭正萍 梅秀文 文新月 刘春敬 王秀斌

中国土壤与肥料Issue(4):1-11,11.
中国土壤与肥料Issue(4):1-11,11.DOI:10.11838/sfsc.1673-6257.25650

设施菜田土壤氮磷淋失对镁改性生物炭施用的响应

Response of nitrogen and phosphorus leaching in greenhouse vegetable soils to magnesium-modified biochar application

王亚玲 1成宇阳 2王赫 3彭正萍 3梅秀文 2文新月 2刘春敬 3王秀斌2

作者信息

  • 1. 河北农业大学资源与环境科学学院,河北 保定 071000||北方干旱半干旱耕地高效利用全国重点实验室/中国农业科学院农业资源与农业区划研究所,北京 100081
  • 2. 北方干旱半干旱耕地高效利用全国重点实验室/中国农业科学院农业资源与农业区划研究所,北京 100081
  • 3. 河北农业大学资源与环境科学学院,河北 保定 071000
  • 折叠

摘要

Abstract

To address leaching pollution from excessive nitrogen(N)and phosphorus(P)accumulation in greenhouse vegetable soil,this study prepared unmodified biochars(MB from corn stover,BB from bamboo)and Mg-modified biochars(Mg-MB,Mg-BB)at 550 ℃.Batch adsorption experiments,soil column leaching experiments,and characterizations(Scanning electron microscope-energy dispersive spectroscppy,Fourier transform infrared spectroscopy)were conducted to explore the adsorption performance of Mg-modified biochars for coexisting N and P,and their mitigation effect on N and P leaching in greenhouse vegetable soil.Results showed that Mg modification did not destroy the biochar carbon skeleton,but introduced Mg—O bonds(620 cm-1)and enhanced the intensity of oxygen-containing functional groups(—OH,—COOH).Adsorption experiments indicated that all biochars except BB treatment fitted the Langmuir model,with better fitting to the pseudo-second-order kinetic model,suggesting monolayer homogeneous chemisorption as the dominant mechanism.Mg modification increased the maximum theoretical adsorption capacity of biochars for NO3-:Mg-MB and Mg-BB treatments increased by 81.18%and 7.77%,compared with MB and BB treatments,respectively,with Mg-BB treatment showing the highest NO3-adsorption.For PO43-,the maximum adsorption capacities of Mg-MB and Mg-BB treatments were 1.21 and 2.09 times those of MB and BB treatments,respectively,while MB and Mg-MB treatments had higher P adsorption than BB and Mg-BB treatments.In soil column leaching experiments,all biochar treatments significantly reduced N and P leaching compared to treatment without biochar:Mg-BB treatment had the best N leaching mitigation(44.36%reduction),and Mg-MB treatment had the best P leaching mitigation(21.52%reduction).Mg-modified biochars showed lower N and P leaching than their unmodified biochars.Specifically,Mg-BB treatment significantly reduced the proportions of dissolved inorganic nitrogen,dissolved organic nitrogen,and nitrate nitrogen in leachate by 17.24%,10.61%,and 12.88%,compared with BB treatment;Mg-MB treatment reduced the proportions of soluble reactive phosphorus and soluble organic phosphorus by 6.81%and 3.66%,compared with MB treatment.In conclusion,Mg modification enhances adsorption capacity of biochars for coexisting N and P,with feedstock-dependent functional differentiation:Mg-BB treatment is more suitable for N leaching mitigation,while Mg-MB treatment is better for P leaching mitigation.This provided a basis for targeted material selection in nutrient management and environmental risk control of greenhouse vegetable soil.

关键词

镁改性生物炭/氮、磷吸附/氮、磷淋失/设施菜田土壤

Key words

Mg-modified biochar/nitrogen and phosphorus adsorption/nitrogen and phosphorus leaching/greenhouse vegetable soils

引用本文复制引用

王亚玲,成宇阳,王赫,彭正萍,梅秀文,文新月,刘春敬,王秀斌..设施菜田土壤氮磷淋失对镁改性生物炭施用的响应[J].中国土壤与肥料,2026,(4):1-11,11.

基金项目

国家自然科学基金项目(2272816). (2272816)

中国土壤与肥料

1673-6257

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