名山河流域黄壤无机纳米微粒对钙的吸附解吸特征Effect of the inorganic nanoparticles of loess on the properties of calcium adsorption-desorption in Mingshan watershed
贺文林;夏建国;王政;
摘要(Abstract):
以名山河流域老冲积黄壤无机纳米微粒为对象,从纳米尺度分析钙的吸附解吸机制对土壤养分状况的影响,并采用等温吸附法和静态解吸法,比较不同土地利用方式下钙的吸附解吸特征差异。结果表明:1)不同土地利用方式土壤无机纳米微粒对钙的吸附解吸量均随钙质量浓度增加而增加,在低质量浓度范围内吸附量增加较快,在高质量浓度范围内增加趋缓,不同土地利用方式下钙的吸附能力从高到低为水田(2 580.69 mg/kg)、茶园(2 452.30 mg/kg)、旱地(1 935.10 mg/kg)、林地(1 867.36 mg/kg)、果园(1 520.65 mg/kg),土壤无机纳米微粒对钙的解吸率从大到小为果园、林地、旱地、茶园、水田,且解吸率随外加钙质量浓度增加而增大;2)去除土壤组分(有机质、游离氧化铁)后,无机纳米微粒对钙的吸附量及解吸量均有所增加,5种土地利用方式吸附增加量从大到小为水田、旱地、茶园、林地、果园;3)去除土壤组分前后,无机纳米微粒对钙的等温吸附均以Freundlich方程拟合效果最佳,相关系数在0.954 50.989 0,达到极显著水平,Langmuir方程与Temkin方程拟合效果不佳。研究表明,钙离子以非专性吸附为主,专性吸附为辅,有机质和游离氧化铁的存在会阻碍土壤对钙的吸附及解吸。
关键词(KeyWords): 环境学;钙;土壤无机纳米微粒;吸附解吸;土壤组分
基金项目(Foundation): 四川省学术和技术带头人培养基金项目(2014);; 四川农业大学学科建设双支计划项目(2014)
作者(Authors): 贺文林;夏建国;王政;
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