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机构地区:[1]东北林业大学林学院,黑龙江哈尔滨150040 [2]呼伦贝尔市林业科学研究所,内蒙古海拉尔021000 [3]呼伦贝尔市产品质量计量检测所,内蒙古海拉尔021000
出 处:《林业科技》2016年第6期53-56,共4页Forestry Science & Technology
基 金:国家自然科学基金项目(31370460)
摘 要:采集2015年3月16日最大积雪期流域内积雪样品和2015年4~5月河川融雪径流样品,分析其离子质量浓度特征,结果表明:1)森林流域内积雪离子质量浓度从大到小依次为PO_4^(3-)(5.91 mg/L)、SO_4^(2-)(5.15 mg/L)、Cl^-(1.90 mg/L)、K^+(1.16 mg/L)、Ca^(2+)(0.96 mg/L)、NO_3^-(0.89 mg/L)、Mg^(2+)(0.33 mg/L)和Mn(0.011 mg/L),其中樟子松林对积雪离子浓度影响最大,白桦林次之,兴安落叶松林最小。2)河川融雪径流中离子成分以Ca^(2+)和PO_4^(3-)为主,二者占78.50%左右,融雪径流Ca^(2+)、PO_4^(3-)、Mg^(2+)和K^+相对流域积雪表现为淋失型迁移,其中Ca^(2+)的迁移量最大,迁移系数为15.84,而SO_4^(2-)、NO_3^-、Cl^-和Mn则表现为内贮型迁移。In order to reveal characteristics of snow-chemistry in forest-watershed in boreal,the samples of snowpack in forest-watershed and snowmelt-runoff in stream were collectedduring March 2014 to May 2015 in the northern region of Greater Xing,an Mountains, weanalysed the ion-concentrations of all samples to provide scientific basises for correctly evaluating water-conservation function of forest-ecosystem in boreal.The results were shown as the followings:1) In forest watershed, the concentration of snowpack-ions from large to small was consecutively PO_4^(3-)(5.91 mg/L)、SO_4^(2-)(5.15 mg/L)、Cl^-(1.90 mg/L)、K~+(1.16 mg/L)、Ca^(2+)(0.96mg/L)、NO_3^-(0.89 mg/L)、Mg^(2+)(0.33 mg/L) and Mn(0.011 mg/L), and different forest types had different influences on the chemical-characteristics of snowpack in forest-ecosystem, Pinus sylvestris forest was the largest, Birch forest was second, and Larix gmelini forest was the least. 2) The concentration of Ca^(2+)and PO_4^(3-) in all ions of snowmelt-runoff was the largest, the two accounted for about 78.50%, Ca^(2+)、PO_4^(3-)、Mg^(2+)and K+showed leaching-migration, migration quantity of Ca^(2+)was the largest, migration coefficient was 20.01,however, SO_4^(2-)、NO_3^-、Cl^-and Mn showed internal storage migration.
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