1. 新疆林业科学研究院森林生态研究所,新疆,乌鲁木齐市,830063
2. 新疆大学资源与环境科学学院绿洲生态教育部重点实验室,新疆,乌鲁木齐市,830046
纸质出版:2015
移动端阅览
李翔, 何平, 张毓涛, 等. 准格尔盆地南缘不同生态功能区夏季空气负离子浓度特征[J]. 水土保持通报, 2015,35(4):229-234.
LI Xiang, HE Ping, ZHANG Yutao, et al. Charactoristics of Summer Air Anion Concentration in Different Ecological Functional Areas of Southern Edge of Junggar Basin[J]. Bulletin of Soiland Water Conservation, 2015, 35(4): 229-234.
李翔, 何平, 张毓涛, 等. 准格尔盆地南缘不同生态功能区夏季空气负离子浓度特征[J]. 水土保持通报, 2015,35(4):229-234. DOI: 10.13961/j.cnki.stbctb.2015.04.042.
LI Xiang, HE Ping, ZHANG Yutao, et al. Charactoristics of Summer Air Anion Concentration in Different Ecological Functional Areas of Southern Edge of Junggar Basin[J]. Bulletin of Soiland Water Conservation, 2015, 35(4): 229-234. DOI: 10.13961/j.cnki.stbctb.2015.04.042.
[目的
]
对准格尔盆地南缘不同生态功能区夏季空气负离子浓度进行监测和分析
为不同地区空气质量评价提供参考依据。[方法
]
分别就不同生态功能区(水体、林区、停车场、聚集区)进行空气负离子浓度监测及评价
通过AIC-1000型空气离子测量仪进行数据采集并运用SPSS 17.0软件进行统计分析。[结果
]
(1) 不同区域生态功能区空气负离子浓度变化由高到低依次为:精河>天池>哈密>巴尔鲁克
且精河、天池与哈密、巴尔鲁克之间差异显著(p
<
0.05); (2) 不同生态功能区中水体和林区空气负离子浓度含量较高
且空气负离子浓度随时间的变化出现早、晚较高
中午较低的动态变化趋势; (3) 空气质量等级指标:天池(A级
1.28±0.42 ind/cm
3
) > 精河(A级
1.16±0.08 ind/cm
3
) > 哈密(D级
0.33±0.14 ind/cm
3
) > 巴尔鲁克(D级
0.32±0.03 ind/cm
3
); (4) 不同天气状况对空气负离子浓度影响较大
主要表现为:雨天(699 ind/cm
3
) > 沙尘(507 ind/cm
3
) > 晴天(428 ind/cm
3
) > 阴天(395 ind/cm
3
)。[结论
]
不同生态功能区空气质量变化与空气负离子浓度变化基本一致
空气质量沿准格尔盆地南缘由东到西呈现劣-优-劣的分布规律。
[Objective] Air anion concentration in different ecological functional zones in southern margin of Junggar Basin was monitored in summer in order to provide a reference for rating regional air quality. [Methods] The concentrations of negative air ion in different ecological function areas (water body
forest area
parking lot
populated districts)by AIC-1000 type instrument. SPSS 17.0 was used for statistical analysis. [Results] (1) The concentrations in different regional areas ranked as: Jinghe > Hami > Tianchi > Baerluke. And the difference between the concentrations of Jinghe and Tianchi and values of Hami and Baerluke was significant (p<0.05); (2) In local ecological function areas
water body and forest area had higher concentration of negative air ions; and the daily concentration showed that it was higher in the morning and evening
and lower in the noon; (3) The rank of air quality levels(CI): Tianchi (level A
1.28±0.42 ind/cm3) > Jinghe (level A
1.16±0.08 ind/cm3) > Hami (level D
0.33±0.14 ind/cm3) > Baerluke (level D
0.32±0.03 ind/cm3); (4) Weather conditions could also influence the concentration of negative air ions
a rank was measured as: rainy(699 ind/cm3) > dust(507 ind/cm3) > sunny(428 ind/cm3) > cloudy(395 ind/cm3). [Conclusion] Changes in air quality and the concentration of negative air ions were basically synchronized in different ecological function areas. Air quality along the southern Junggar Basin showed an inferior-superior-inferior trend graphically form east to west.
章志攀,俞益武,孟明浩,等.旅游环境中空气负离子的研究进展[J].浙江林学院学报,2006,23(1):103-108.
张璐,杨加志,曾曙才,等.车八岭国家级自然保护区空气负离子水平研究[J].华南农业大学学报,2004,25(3):26-28.
王洪俊,孟庆繁. 城市绿地中空气负离子水平的初步研究[J]. 北华大学学报:自然科学版, 2005,6(3):264-268.
邵海荣,贺庆棠,阎海平,等.北京地区空气负离子浓度时空变化特征的研究[J].北京林业大学学报, 2005, 27(3):35-39.
尹俊光.上海市公园空气负离子浓度的时空格局及其影响因素[D].上海:华东师范大学,2010.
王晓磊,李传荣,许景伟,等.济南市南部山区不同模式庭院林空气负离子浓度[J].应用生态学报,2013,24(2):373-378.
Nakane H, Asami O, Yamada Y, et al. Effect of negative air ions on computer operation, anxiety and salivary chromogranin A-like immunoreactivity[J]. International Journal of Psychophysiology, 2002,46(1):85-89.
Goel N, Terman M, Terman J S, et al. Controlled trial of bright light and negative air ions for chronic depression[J]. Psychological Medicine, 2005,35(7):945-955.
Suzuki S, Yanagita S, Amemiya S, et al. Effects of negative air ions on activity of neural substrates involved in autonomic regulation in rats[J].International Journal of Biometeorology, 2008,52(6):481-489.
Sirota T V, Safronova V G, Amelina A G, et al, The effect of negative air ions on respiratory organs and blood[J]. Biophysics, 2008,53(5):886-893.
石强,舒惠芳,钟林生,等.森林游憩区空气负离子评价研究[J].林业科学,2004,40(1):36-40.
张毓涛,李吉玫.新疆主要城市不同生态功能区夏季空气负离子特征[J].干旱区地理,2012,35(6):864-874.
刘新,吴林豪,张浩,等.城市绿地植物群落空气负离子浓度及影响要素研究[J].复旦大学学报:自然科学版,2011,50(2):206-212.
范亚民,何平,李建龙,等.城市不同植被配置类型空气负离子效应评价[J].生态学杂志,2005,24(8):883-886.
韦朝领,王敬涛,蒋跃林,等.合肥市不同生态功能区空气负离子浓度分布特征及其与气象因子的关系[J].应用生态学报,2006,17(11):2158-2162.
倪军.城市不同功能区典型下垫面空气离子与环境因子的相关研究:以上海徐汇为例[J].上海师范大学学报,2005,5(1):20-21.
高铭聪,蒋文伟,金竹秀,等.西径山森林公园夏季空气负离子日变化[J].浙江林学院学报,2011,28(4):667-673.
吴楚材,郑群明,钟林生.森林游憩区空气负离子水平的研究[J].林业科学,2001,37(5):75-81.
韦朝领,王敬涛,蒋跃林,等.合肥市不同生态功能区空气负离子浓度分布特征及其与气象因子的关系[J].应用生态学报,2006,17(11):2158-2162.
司婷婷,罗艳菊,赵志忠,等.吊罗山热带雨林空气负离子浓度与气象要素的关系[J].资源科学,2014,36(4):788-792.
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