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作 者:崔键[1,2] 周静[2] 杨浩[1] 梁家妮[2] 杜志敏[2,3]
机构地区:[1]南京师范大学地理科学学院,江苏南京210046 [2]中国科学院南京土壤研究所,江苏南京210008 [3]南京农业大学资源与环境学院,江苏南京210095
出 处:《生态环境学报》2011年第2期368-371,共4页Ecology and Environmental Sciences
基 金:国家技术支撑项目(2009BADA6B04)
摘 要:2010年6月6日至6月16日,运用采样器TH-110B和TH-150C收集了地处沿淮麦区3个观测点的气体(NH3和NO2)和气溶胶样品,初步探讨了小麦收获期大气气态氮和颗粒态氮质量浓度的特征。结果表明:气态氮质量浓度以NO2最高,其时均质量浓度和日均质量浓度分别为0.57~0.64 mg.m-3和0.29~0.63 mg·m-3,且均超标(0.24和0.12 mg·m-3);颗粒态氮质量浓度以NH4+-N最高(4.12~78.28μg·m-3),占总氮的47.00%~71.19%。此外,农业活动如收割,可增加大气气溶胶及无机态氮的质量浓度。Concentrations of atmospheric inorganic nitrogen including gaseous nitrogen(NH3-N and NO2-N) and aerosol nitrogen(NH4+-N and NO3--N) were monitored by a TH-110B portable air sampler and a TH-150C intelligent medium-flow sampler at three winter-wheat growing fields along the Huaihe River during June 6-June 16,2010.The results showed that NO2-N concentration was higher and its hourly and daily concentrations were in the ranges of 0.57-0.64 and 0.29-0.63 mg.m-3,respectively,all of which exceeded the national standard(0.24 and 0.12 mg.m-3,GB3095-1996).As for aerosol nitrogen concentrations,NH4+-N concentration was higher,and its values varied from 4.12 to 78.28 μg/m3,accounting for 47.00%-71.19% of total nitrogen(T-N).Moreover,agricultural activities such as reaping winter-wheat might increase the concentrations of atmospheric inorganic nitrogen in the studied area.
分 类 号:K903[历史地理—人文地理学] X171[环境科学与工程—环境科学]
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