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河北省某钼尾矿土壤化改良及种植实验研究

孟凡伟 涂全平 向艾华 刘琨 石晴

矿产保护与利用2024,Vol.44Issue(2):106-114,9.
矿产保护与利用2024,Vol.44Issue(2):106-114,9.DOI:10.13779/j.cnki.issn1001-0076.2024.02.015

河北省某钼尾矿土壤化改良及种植实验研究

Soilization Improvement and Cultivation Experiment of Molybdenum Tailings in Hebei Province

孟凡伟 1涂全平 1向艾华 2刘琨 2石晴2

作者信息

  • 1. 河北矿业资源有限责任公司,河北 石家庄 050011
  • 2. 中南大学 资源加工与生物工程学院,湖南 长沙 410083
  • 折叠

摘要

Abstract

The molybdenum tailings in Hebei Province had been improved through simple mechanical mixing with low-cost additives,facilitating their utilization for soilization.Through single-factor and composite-amended tests,the water retention rate,pH value,and cation exchange capacity(CEC)of molybdenum tailings were significantly enhanced.Results indicated the application of a composite amendment agent,consisting of farmyard manure,montmorillonite,polyacrylamide(PAM),and citric acid,to the molybdenum tailings has significantly enhanced their properties.The saturated water absorption rate of the molybdenum tailings increased to 61.1%,and both the evaporation rate and decline rate of the moisture was significantly reduced.The cation exchange capacity(CEC)reached 10.15 cmol/kg,and the pH value was lowered to 8.08,achieving a level suitable for agricultural cultivation.Additionally,a pot experiment was conducted to assess the growth effect of improved molybdenum tailings on plants.Compared to the initial molybdenum tailings,the height and quality of plant growth in composite-amended molybdenum tailings increased by 77.4%and 98.1%,respectively.Furthermore,after 15 days of plant growth,the water retention,pH value,and CEC of the composite-amended molybdenum tailings reached levels comparable to those of normal soil,confirming the successful transformation of molybdenum tailings into plantable soil.

关键词

钼尾矿/复合改良剂/保水性/pH值/阳离子交换能力/植物生长效应

Key words

molybdenum tailings/compound amendments/water retention/pH/cation exchange capacity/plant growth effect

分类

矿业与冶金

引用本文复制引用

孟凡伟,涂全平,向艾华,刘琨,石晴..河北省某钼尾矿土壤化改良及种植实验研究[J].矿产保护与利用,2024,44(2):106-114,9.

基金项目

国家自然科学基金项目(52174268) (52174268)

矿产保护与利用

OACSTPCD

1001-0076

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