| Literature DB >> 26068090 |
Ping Huang1, Jingyuan Zhang2, Yuxiang Tang3, Lu Liu4.
Abstract
The monitoring data of the 13 stations in Xi'an city for the whole years of 2013 and 2014 was counted and analyzed. Obtaining the spatial and temporal distribution characteristics of PM2.5 was the goal. Cluster analysis and the wavelet transform were utilized to discuss the regional distribution characteristics of PM2.5 concentration (ρ(PM2.5)) and the main features of its yearly changes and sudden changes. Additionally, some relevant factors were taken into account to interpret the changes. The results show that ρ(PM2.5) in Xi'an during 2013 was generally higher than in 2014, it is high in winter and low in summer, and the high PM2.5 concentration centers are around the People's Stadium and Caotan monitoring sites; For the regional PM2.5 distribution, the 13 sites can be divided into three categories, in which Textile city is Cluster 1, and High-tech Western is Cluster 2, and Cluster 3 includes the remaining 11 monitoring sites; the coefficient of goodness of the cluster analysis is 0.6761, which indicates that the result is acceptable. As for the yearly change, apart from June and July, the average ρ(PM2.5) concentration has been above the normal concentration criteria of Chinese National Standard (50 g/m3); cloudy weather and low winds are the major meteorological factors leading to the sudden changes of ρ(PM2.5).Entities:
Keywords: PM2.5; cluster analysis; spatial and temporal distribution; wavelet transform
Mesh:
Substances:
Year: 2015 PMID: 26068090 PMCID: PMC4483719 DOI: 10.3390/ijerph120606608
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Figure 1Distribution map of monitoring sites: 1—High-voltage Switch Factory;2—Xingqing district; 3—Textile city; 4—Xiaozhai; 5—People’s Stadium; 6—High-tech Western; 7—Economic development district; 8—Chang’an district; 9—Yanliang district; 10—Lintong district; 11—Qujiang cultural group; 12—Guangyun Tan; 13—Cao Tan.
Basic statistical information of ρ(PM2.5) monitoring data in Xi’an city.
| Number | Monitoring Sites | Samples | Maximum | Minimum | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| Mean | Standard Deviation | ||||||||||
| 2013 | 2014 | 2013 | 2014 | 2013 | 2014 | 2013 | 2014 | 2013 | 2014 | ||
| 1 | High-voltage Switch Factory | 365 | 365 | 500 | 500 | 18 | 15 | 144.752 | 108.156 | 107.074 | 71.822 |
| 2 | Xingqing district | 365 | 365 | 500 | 500 | 13 | 10 | 112.621 | 103.942 | 105.785 | 85.320 |
| 3 | Textile city | 365 | 365 | 496 | 470 | 15 | 13 | 129.704 | 106.948 | 94.877 | 68.811 |
| 4 | Xiaozhai | 365 | 365 | 500 | 496 | 10 | 10 | 125.724 | 97.426 | 98.628 | 70.467 |
| 5 | People’s Stadium | 365 | 365 | 500 | 500 | 18 | 20 | 152.915 | 114.319 | 109.554 | 80.374 |
| 6 | High-tech Western | 365 | 365 | 500 | 500 | 15 | 5 | 142.112 | 99.873 | 106.453 | 79.108 |
| 7 | Economic development district | 365 | 365 | 474 | 500 | 16 | 15 | 131.985 | 102.775 | 96.902 | 72.520 |
| 8 | Chang’an district | 365 | 365 | 500 | 430 | 10 | 16 | 122.815 | 89.431 | 98.070 | 66.200 |
| 9 | Yanliang district | 365 | 365 | 452 | 484 | 15 | 16 | 127.734 | 94.181 | 92.069 | 65.968 |
| 10 | Lintong district | 365 | 365 | 500 | 500 | 13 | 15 | 136.406 | 98.365 | 102.559 | 72.012 |
| 11 | Qujiang cultural group | 365 | 365 | 500 | 376 | 3 | 12 | 114.521 | 95.695 | 94.720 | 64.349 |
| 12 | Guangyun Tan | 365 | 365 | 500 | 460 | 18 | 18 | 123.643 | 95.503 | 102.280 | 63.695 |
| 13 | Cao Tan | 365 | 365 | 500 | 500 | 12 | 12 | 163.705 | 111.151 | 107.575 | 80.394 |
Figure 2Wavelet decomposition structure.
Figure 3Wavelet analysis platform.
Figure 4Seasonal distribution of ρ(PM2.5) in Xi’an city. (a) Spring; (b) Summer; (c) Autumn; (d) Winter.
Figure 5Monthly distribution of ρ(PM2.5) in Xi’an city for 2013.
Figure 6Monthly distribution of ρ(PM2.5) in Xi’an city for 2014.
Figure 7Hierarchical clustering map of 13 monitoring sites in Xi’an city: 1—High-voltage Switch Factory; 2—Xingqing district; 3—Textile city; 4—Xiaozhai; 5—People’s stadium; 6—High-tech Western; 7—Economic development district; 8—Chang’an district; 9—Yanliang district; 10—Lintong district; 11—Qujiang cultural group; 12—Guangyun Tan; 13—Cao Tan.
The characteristics of the regional industrial activities in Xi’an city.
| Cluster | Sites | Main industrial Activities Characteristics |
|---|---|---|
| 1 | Textile city | Dense urban road networks, shopping malls and supermarkets dotted, textiles and clothing, aerospace technology, new materials, equipment manufacturing, modern service industry are the leading production |
| 2 | High-tech Western | Electrical machinery, refrigeration equipment, petroleum equipment, instrumentation |
| 3 | Xingqing district, Xiaozhai, People’s Stadium, Economic development district, Chang’an district, Yanliang dstrict, Lintong district, Qujiang cultural group, Guangyun Tan, and Cao Tan | Aluminum plant, profile plant, equipment factory, auto parts factory, aircraft industry, paper, flour, commercial vehicle industry, photovoltaic industry, agriculture, tourism |
Figure 8Original signal of ρ(PM2.5) and 4th level reconstructed low-frequency signal for 2013.
Figure 9Original signal of ρ(PM2.5) and 4th level reconstructed low-frequency signal for 2014.
Figure 101st level and 2nd level high-frequency signals for 2013.
Figure 111st level and 2nd level high-frequency signal for 2014.
Meteorological data of corresponding mutation day.
| Date(mm-dd) | ρ(PM2.5) (μg/m3) | Pollution Degree | Temperature/°C | Weather Condition | Wind Speed | |
|---|---|---|---|---|---|---|
| 2013 | 01-12 | 264 | Severe | −3–7 | Cloudy | <3 |
| 02-11 | 292 | Severe | −2–5 | Sleety | <3 | |
| 02-26 | 372 | Severe | 5–13 | Cloudy | <3 | |
| 03-12 | 260 | Severe | 7–16 | Cloudy | <3 | |
| 10-27 | 243 | Severe | 10–19 | Cloudy | <3 | |
| 12-17 | 278 | Severe | 9–12 | Hazy | <3 | |
| 12-24 | 500 | Severe | −2–3 | Hazy | <3 | |
| 2014 | 1-16 | 310 | Severe | −3–5 | Cloudy | <3 |
| 2-2 | 413 | Severe | 1–14 | Cloudy | <3 | |