Ecology and Environment ›› 2021, Vol. 30 ›› Issue (11): 2204-2212.DOI: 10.16258/j.cnki.1674-5906.2021.11.011
• Research Articles • Previous Articles Next Articles
ZHENG Shiyu1,2(), ZHANG Lvshui1, GUO Xiaomin1, HUANG Zijun3, XIAO Yihua2,*(
)
Received:
2021-05-27
Online:
2021-11-18
Published:
2021-12-29
Contact:
XIAO Yihua
郑诗禹1,2(), 张绿水1, 郭晓敏1, 黄子峻3, 肖以华2,*(
)
通讯作者:
肖以华
作者简介:
郑诗禹(1996年生),男,硕士研究生,研究方向为城市森林生态。E-mail: zsyhardworking@qq.com
基金资助:
CLC Number:
ZHENG Shiyu, ZHANG Lvshui, GUO Xiaomin, HUANG Zijun, XIAO Yihua. Spatial and Temporal Variations of Negative Oxygen Ions in the Air and Environmental Influencing Factors in Forest Environment with Different Canopy Densities: A Case Study of Maofeng Mountain in Guangzhou[J]. Ecology and Environment, 2021, 30(11): 2204-2212.
郑诗禹, 张绿水, 郭晓敏, 黄子峻, 肖以华. 不同森林郁闭度环境内空气负氧离子的时空变化及环境影响要素研究——以广州帽峰山为例[J]. 生态环境学报, 2021, 30(11): 2204-2212.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.jeesci.com/EN/10.16258/j.cnki.1674-5906.2021.11.011
样点 Sampling Point | 植被类型 Vegetational form | 郁闭度 Canopy density | 水体情况 Water |
---|---|---|---|
CK | 空旷地 field | 0 | 无 Without |
S1 | 常绿阔叶混交林 Evergreen broad-leaved mixed forest | 0.46±0.06 | 无 Without |
S2 | 常绿阔叶混交林 Evergreen broad-leaved mixed forest | 0.72±0.02 | 无 Without |
S3 | 常绿阔叶混交林 Evergreen broad-leaved mixed forest | 0.88±0.02 | 无 Without |
S4 | 常绿阔叶混交林 Evergreen broad-leaved mixed forest | 0.86±0.02 | 流动水体 Flow |
Table 1 Information table of Maofeng Mountain sample plot
样点 Sampling Point | 植被类型 Vegetational form | 郁闭度 Canopy density | 水体情况 Water |
---|---|---|---|
CK | 空旷地 field | 0 | 无 Without |
S1 | 常绿阔叶混交林 Evergreen broad-leaved mixed forest | 0.46±0.06 | 无 Without |
S2 | 常绿阔叶混交林 Evergreen broad-leaved mixed forest | 0.72±0.02 | 无 Without |
S3 | 常绿阔叶混交林 Evergreen broad-leaved mixed forest | 0.88±0.02 | 无 Without |
S4 | 常绿阔叶混交林 Evergreen broad-leaved mixed forest | 0.86±0.02 | 流动水体 Flow |
Fig. 1 Change of negative oxygen ion concentration CK: field; S1: Low canopy density; S2: Medium canopy density; S3: High canopy density; S4: Water The same below Data were Mean±Standard error, Duncan method was used for multiple comparisons, and different letters of data standards in the same period indicated significant differences (P<0.05)
观测点 Site | 郁闭度 Canopy density | ε相关 ε relevant | |||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
全年 Year | 雨季 Rain season | 旱季 Dry season | |||||||||||||
TSP | PM10 | PM2.5 | O3 | TSP | PM10 | PM2.5 | O3 | TSP | PM10 | PM2.5 | O3 | ||||
CK | 0 | -0.224 | -0.165 | -0.38 | 0.087 | 0.504 | 0.346 | 0.236 | -0.057 | -0.1 | -0.168 | -0.236 | 0.346 | ||
S1 | 0.46 | -0.014 | -0.096 | -0.333 | -0.144 | -0.446 | -0.57** | -0.468 | -0.079 | -0.264 | -0.514 | -0.2 | -0.221 | ||
S2 | 0.72 | -0.54** | -0.43** | -0.23 | -0.214 | -0.407 | -0.364 | -0.386 | -0.021 | -0.56** | -0.54** | -0.325 | -0.55* | ||
S3 | 0.86 | -0.51** | -0.5** | -0.53** | -0.107 | -0.479 | -0.52* | -0.586* | 0.321 | -0.52** | -0.5 | -0.62* | -0.404 | ||
S4 | 0.88 | -0.55** | -0.476* | -0.68** | -0.145 | -0.512 | -0.478* | -0.486* | -0.121 | -0.51* | -0.57 | -0.39* | -0.104 |
Table 2 Correlation coefficient between NaI concentration and environmental factors in forest environment
观测点 Site | 郁闭度 Canopy density | ε相关 ε relevant | |||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
全年 Year | 雨季 Rain season | 旱季 Dry season | |||||||||||||
TSP | PM10 | PM2.5 | O3 | TSP | PM10 | PM2.5 | O3 | TSP | PM10 | PM2.5 | O3 | ||||
CK | 0 | -0.224 | -0.165 | -0.38 | 0.087 | 0.504 | 0.346 | 0.236 | -0.057 | -0.1 | -0.168 | -0.236 | 0.346 | ||
S1 | 0.46 | -0.014 | -0.096 | -0.333 | -0.144 | -0.446 | -0.57** | -0.468 | -0.079 | -0.264 | -0.514 | -0.2 | -0.221 | ||
S2 | 0.72 | -0.54** | -0.43** | -0.23 | -0.214 | -0.407 | -0.364 | -0.386 | -0.021 | -0.56** | -0.54** | -0.325 | -0.55* | ||
S3 | 0.86 | -0.51** | -0.5** | -0.53** | -0.107 | -0.479 | -0.52* | -0.586* | 0.321 | -0.52** | -0.5 | -0.62* | -0.404 | ||
S4 | 0.88 | -0.55** | -0.476* | -0.68** | -0.145 | -0.512 | -0.478* | -0.486* | -0.121 | -0.51* | -0.57 | -0.39* | -0.104 |
[1] |
HUI W, BING W, XIANG N, 2020. Study on the change of negative air ion concentration and its influencing factors at different Spatio-temporal scales[J]. Global Ecology and Conservation Volume, DOI: 10.1016/ j.gecco.2020.e01008.
DOI |
[2] | JIANG S Y, MA A, RAMACHANDRAN S, 2018. Negative Air Ions and Their Effects on Human Health and Air Quality Improvement[J]. International Journal of Molecular ences, 19(10): 1-19 |
[3] | JIANG S Y, MA A, RAMACHANDRAN S, 2020. Plant-based release system of negative air ions and its application on particulate matter removal[J]. Indoor Air, 17(5): 40-49 |
[4] | NADALI A, ARFAEINIA H, ASADGOl Z, et al., 2020. Indoor and Outdoor Concentration of PM, PM. and PM in Residential Building and Evaluation of Negative Air Ions (NAIs) in Indoor PM Removal[J]. Environmental Pollutants and Bioavailabilty, 32(1): 47-55. |
[5] | PINO O, RAGIONE F L, 2013. There’s something in the air: empirical evidence for the effects of negative air ions (NAI) on psychophysiological state and performance[J]. Research in Psychology and Behavioral Sciences, 1(4): 48-53. |
[6] |
UBANDO A T, DON A, AFRICA M, et al., 2021. Reduction of particulate matter and volatile organic compounds in biorefineries: A state-of-the-art review[J]. Journal of Hazardous Materials, DOI: 10.1016/ j.jhazmat.2020.123955.
DOI |
[7] |
WANG H, WANG B, NIU X, et al., 2020. Study on the change of negative air ion concentration and its influencing factors at different spatio-temporal scales[J]. Global Ecology and Conservation, DOI: 10.1016/j.gecco.2020.e01008.
DOI |
[8] |
X LIU, WANG N, X LYU, et al., 2020. Photochemistry of ozone pollution in autumn in Pearl River Estuary, South China[J]. Science of The Total Environment, DOI: 10.1016/j.scitotenv.2020.141812.
DOI |
[9] |
XU X B, 2020. Recent advances in studies of ozone pollution and impacts in China: A short review[J]. Current Opinion in Environmental Science & Health, DOI: 10.1016/j.coesh.2020.100225.
DOI |
[10] |
ZHANG C Y, WU Z N, LI Z H, et al., 2020. Inhibition Effect of Negative Air Ions on Adsorption between Volatile Organic Compounds and Environmental Particulate Matter[J]. Langmuir, 36(18): 5078-5083.
DOI URL |
[11] | 鲍宗炜, 张宏, 周志刚, 等, 2021. 兰溪市PM2.5中水溶性离子的组成特征及季节变化[J/OL]. 环境科学学报, 1-7. |
BAO Z W, ZHANG H, ZHOU Z G, et al., 2021 Characteristics and seasonal variation of water-soluble ions in PM2.5 in Lanxi city[J/OL]. Chinese Journal of Environmental Sciences, 1-7. | |
[12] | 曹建新, 张宝贵, 张友杰, 2017. 海滨、森林环境中空气负离子分布特征及其与环境因子的关系[J]. 生态环境学报, 26(8): 1375-1383. |
CAO J X, ZHANG B G, ZHANG Y J, 2017. Characteristics of air anion distribution in beach and forest environment and the correlation between air anion and the environmental factors[J]. Ecology and Environmental Sciences, 26(8): 1375-1383. | |
[13] | 陈兵红, 应俊辉, 靳全峰, 2018. 丽水市空气负氧离子分布特征及影响因素[J]. 浙江农业科学, 59(8): 1444-1448. |
CHEN B H, YING J H, JING Q F, et al., 2019. Distribution characteristics and influencing factors of negative oxygen ions in air in Lishui city[J]. Journal of Zhejiang Agricultural Sciences, 59(8): 1444-1448. | |
[14] | 陈兵红, 应俊辉, 靳全锋, 等, 2019. 白云山国家森林公园空气负氧离子分布特征[J]. 浙江农业科学, 60(2): 337-339. |
CHEN B H, YING J H, JIN Q F, 2018. Distribution characteristics of air anion of Baiyun Mountain National Forest Park[J]. Journal of Zhejiang Agricultural Sciences, 60(2): 337-339. | |
[15] | 陈步峰, 肖以华, 王莘仪, 等, 2020. 广州帽峰山林区空气负离子和气象因素全年时尺度变化及关系[J]. 生态环境学报, 29(11): 2240-2250. |
CHEN B F, XIAO Y H, WANG X Y, et al., 2020. Changes and relationships in hourly scales throughout the year for the negative air ions and meteorological factors in Maofeng Mountain forest areas, Guangzhou[J]. Ecology and Environmental Sciences, 29(11): 2240-2250. | |
[16] | 戴俊, 谢没兰, 戴华林, 2019. 邵阳市负氧离子浓度变化与气象要素相关关系分析[J]. 科技风 (5): 115-116. |
DAI J, XIE M L, DAI H L, 2019. Analysis on the relationship between negative oxygen ion concentration and meteorological elements in Shaoyang[J]. Technology Wind (5): 115-116. | |
[17] | 段文军, 2017. 深圳园山三种典型城市森林康养环境保健因子动态变化[D]. 北京: 中国林业科学研究院. |
DUAN W J, 2017. Dynamic changes of environmental health factors of three typical urban forests in Yuanshan, Shenzhen[D]. Beijing: Chinese Academy of Forestry. | |
[18] | 高瑶瑶, 熊咏梅, 潘勇军, 2019. 石门国家森林公园负离子浓度动态变化及评价[J]. 广东园林, 41(5): 37-41. |
GAO Y Y, XIONG Y M, PAN Y J, 2019. Dynamic Change and Evaluation of Air Health Factors in Shimen National Forest Park[J]. Guangdong Landscape Architecture, 41(5): 37-41. | |
[19] | 何宁, 林明丽, 赵红云, 等, 2016. 湘潭负氧离子浓度变化与气象要素的相关分析[J]. 贵州气象, 40(2): 65-69. |
HE N, LIN M L, ZHAO H Y, et al., 2016. Correlation analysis of the change of negative oxygen ion concentration and meteorological elements in Xiangtan[J]. Guizhou Meteorology, 40(2): 65-69. | |
[20] | 黄向华, 王健, 曾宏达, 等, 2013. 城市空气负离子浓度时空分布及其影响因素综述[J]. 应用生态学报, 24(6): 1761-1768. |
HUANG X H, WANG J, ZENG H D, et al., 2013. Spatiotemporal distribution of negative air ion concentration in urban area and related affecting factors[J]. Chinese Journal of Applied Ecology, 24(6): 1761-1768. | |
[21] | 贺瑶, 韩秀秀, 黄晓虎, 等, 2021. 南京市不同功能区冬季大气PM2.5分布特征及其来源解析[J]. 环境科学学报, 41(3): 830-841. |
HE Y, HAN X X, HUANG X H, et al., 2021. Distribution characteristics of atmospheric PM2.5 in winter and its origin in different functional areas of Nanjing[J]. Chinese Journal of Environmental Sciences, 41(3): 830-841. | |
[22] | 林伟强, 贾小容, 陈北光, 等, 2006. 广州帽峰山次生林主要种群生态位宽度与重叠研究[J]. 华南农业大学学报(自然科学版), 27(1): 84-87. |
LIN W Q, XIA X R, CHEN B G, et al., 2006. Niche Breadth and Overlap of Main Populations of the Secondary Forest Community in Maofengshan, Guangzhou[J]. Journal of East China Normal University (Natural Science), 27(1): 84-87. | |
[23] | 林宜鸿, 何中声, 杨素慧, 等, 2019. 永泰县夏季空气负氧离子空间异质性研究[J]. 西北林学报, 34(6): 82-88. |
LI Y H, HE Z S, YANG S H, et al., 2019. Spatial heterogeneity of negative oxygen ions in the air in summer in Yongtai County[J]. Journal of Northwest Forestry Sciences, 34(6): 82-88. | |
[24] | 李高飞, 李巧云, 颜立红, 等, 2019. 城市森林空气负氧离子浓度变化规律研究[J]. 湖南林业科技, 46(2): 52-56. |
LI G F, LI Q Y, YAN L H, et al., 2019. Study on the concentration characteristics of air negative oxygen ions in urban forest[J]. Hunan Forestry Science& Technology, 46(2): 52-56. | |
[25] | 马芙蓉, 张一舟, 2019. 昆明市城区不同区域环境空气负氧离子浓度变化特征分析[J]. 林业调查规划, 44(3): 30-34. |
MA F R, ZHANG Y Z, 2019. Analysis on the variation characteristics of negative oxygen ion concentration in ambient air in different areas of Kunming city[J]. Forest Survey and Planning, 44(3): 30-34. | |
[26] | 马荣, 王志高, 黄玉洁, 等, 2021. 午潮山国家森林公园秋季空气负离子浓度及影响因素[J]. 森林与环境学报, 41(1): 26-34. |
MA R, WANG Z G, HUANG Y J, et al., 2021. Spatio-temporal pattern of air anion concentrations and their influencing factors in autumn of Wuchaoshan National Forest Park[J]. Journal of Forest and Environment, 41(1): 26-34. | |
[27] | 梅中海, 徐洪峰, 吴传波, 等, 2020. 景宁县森林康养的负离子浓度成效分析[J]. 安徽农学通报, 26(7): 123-157. |
MEI Z H, XU H F, WU C B, et al., 2020. Analysis on the effect of anion concentration on forest health cultivation in Jingning county[J]. Anhui Agricultural Science Bulletin, 26(7): 123-157. | |
[28] | 牛海峰, 2018. 张家口地区空气负离子与林业变化探究[J]. 现代园艺 (16): 163. |
NIU H F, 2018. Study on air anion and forestry change in Zhangjiakou area[J]. Modern Horticulture, (16): 163. | |
[29] | 欧江, 地地木古, 张时林, 等, 2020. 不同郁闭度华山松人工林林下灌木和草本多样性[J]. 四川林业科技, 41(6): 57-62. |
OU J, DI DI M G, ZHANG S L, et al., 2020. Diversity of Understory Shrubs and Herbs in Pinus armandii Plantation with Different Canopy Densities[J]. Journal of Sichuan Forestry Science and Technology, 41(6): 57-62. | |
[30] | 裴男才, 陈步峰, 史欣, 2018. 广州市帽峰山森林公园动植物多样性资源监测概况[J]. 生态科学, 37(5): 191-194. |
PEI N C, CHEN B F, SHI X, 2018. Forest biodiversity resources in Maofengshan Forest Park, Guangzhou City[J]. Ecological Science, 37(5): 191-194. | |
[31] | 彭琳玉, 许方岳, 王立夫, 等, 2020. 九连山国家森林公园负氧离子浓度时空变化及其影响要素研究[J]. 江西农业大学学报, 35(5): 233-239. |
PENG L Y, XU F Y, WANG L F, et al., 2020. Temporal and spatial variations of negative oxygen ion concentration and its influencing factors in Jiulian mountain national forest park[J]. Journal of Northwest Forestry University, 35(5): 233-239. | |
[32] | 彭春梅, 谢东海, 王旭, 等, 2020. 海口火山口国家地质公园空气负氧离子及影响因素研究[J]. 海南大学学报自然科学版, 38(1): 95-103. |
PENG C M, XIE D H, WANG X, et al., 2020. Study on negative oxygen ions in the air of Haikou Voldera National Geopark and its influencing factors[J]. Journal of Hainan University Natural Science Edition, 38(1): 95-103. | |
[33] | 秦登, 唐吕君, 陈尧, 等, 2014. 夏季高温环境下3个矾根品种的光合特性比较[J]. 西北林学院学报, 29(3): 32-36. |
QIN D, TANG L J, CHEN X, et al., 2014. Comparison of photosynthetic characteristics of three alum root varieties under high temperature in summer[J]. Journal of Northwest Forestry University, 29(3): 32-36. | |
[34] | 尚媛媛, 王红波, 陶勇, 等, 2018. 赤水市大气负氧离子的时空特征及其与气象因子的关系[J]. 中低纬山地气象, 42(4): 42-48. |
SHANG Y Y, WANG H B, TAO Y, et al., 2018. Temporal and spatial characteristics of atmospheric negative oxygen ions and the relationship with meteorological factors in Chishui[J]. Mid-low Latitude Mountain Meteorology, 42(4): 42-48. | |
[35] | 施光耀, 桑玉强, 张劲松, 等, 2021. 自然状态下栓皮栎人工林空气负离子浓度与相对湿度的关系[J]. 中国农业气象, 42(1): 24-33. |
SHI G Y, SANG Y Q, ZHANG J S, et al., 2021. The relationship between air anion concentration and relative humidity in natural Quercus variabilis plantation[J]. Chinese Journal of Agrometeorology, 42(1): 24-33. | |
[36] | 司宝华, 吴晓丽, 2019. 银川市览山公园空气负氧离子浓度研究[J]. 安徽农学通报, 25(12): 127-135. |
SI B H, WU X L, 2019. Study on the concentration of negative oxygen ions in the air of Langshan Park in Yinchuan City[J]. Anhui Agricultural Science Bulletin, 25(12): 127-135. | |
[37] | 孙文, 韩玉洁, 殷杉, 2021. 城市公园不同植物群落内空气负离子变异格局及影响因素[J]. 华东师范大学学报(自然科学版) (2): 151-159. |
SUN W, HAN Y J, YIN S, 2021. Variation patterns and influencing factors of air anions in different plant communities in urban parks[J]. Journal of East China Normal University (Natural Science) (2): 151-159. | |
[38] | 唐璇, 陈泽茹, 余文华, 等, 2018. 广州帽峰山森林公园鸟类物种多样性调查[J]. 广州大学学报(自然科学版), 17(4): 52-57. |
TANG X, CHEN Z R, YU W H, et al., 2018. Diversity of birds species in Maofeng Mountain forest park of Guangzhou city[J]. Journal of Guangzhou University (Natural Science Edition), 17(4): 52-57. | |
[39] | 陶雪莹, 张伟宁, 鲁绍伟, 等, 2020. 北京城市森林空气负离子与PM2.5颗粒物交互效应研究[J]. 江西农业大学学报, 42(6): 1184-1194. |
TAO X Y, ZHANG W N, SU S W, et al., 2020. Study on the interaction between anion and PM2.5 particles in urban forest in Beijing[J]. Journal of Jiangxi Agricultural University, 42(6): 1184-1194. | |
[40] | 王薇, 刘仍辉, 甘伟喆, 2018. 5 种室内观赏植物的空气负离子浓度研究[J]. 建筑科学, 34(2): 22-25. |
WANG W, LIU N H, GAN W J, 2018. Study on Negative Air Ions Concentration in 5 Kinds of Indoor Ornamental Plants[J]. Building Science, 34(2): 22-25. | |
[41] | 王薇, 陈明, 夏斯涵, 2020. 高密度城市住区绿地空气负离子浓度分布特征及其与微气候关系[J]. 生态环境学报, 29(7): 1367-1376. |
WANG W, CHEN M, XIA S H, 2020. Research on distribution characteristics of negative air ions concentration in high-density urban residential green space and its relationship with microclimate[J]. Ecology and Environmental Sciences, 29(7): 1367-1376. | |
[42] | 谢勇丽, 王雪如, 董倍源, 2019. 乐山景区负氧离子浓度分布及其等级划分研究[J]. 环境科学管理, 44(9): 56-60. |
XIE Y L, WANG X R, DONG P Y, 2019. Concentration distribution and classification of negative oxygen ions in Leshan scenic area[J]. Environmental Science Management, 44(9): 56-60. | |
[43] | 朱冬梅, 马小燕, 曾璐, 等, 2019. 武平县空气负氧离子浓度分布特征研究[J]. 环境与发展, 32(6): 117-119. |
ZHU D M, MA X Y, ZENG L, et al., 2019. Study on the distribution characteristics of air negative oxygen ion concentration in Wuping county[J]. Environment and Development, 32(6): 117-119. | |
[44] | 朱怡诺, 崔丽娟, 李伟, 等, 2018. 湿地环境中负(氧)离子研究概述[J]. 山东林业科技, 48(3): 96-99. |
ZHU Y N, CUI L J, LI W, et al., 2018. Summary of Negative Air Ions in Wetland Environment[J]. Shandong Forestry Science and Technology, 48(3): 96-99. | |
[45] | 邹信春, 谢大斌, 2019. 森林环境因子对人体健康的积极影响[J]. 农业开发与装备 (9): 141-143. |
ZHOU X C, XIE D B, 2019. The positive effects of forest environmental factors on human heal[J]. Agricultural Development & Equipments (9): 141-143. |
[1] | JIANG Yongwei, DING Zhenjun, YUAN Junbin, ZHANG Zheng, LI Yang, WEN Qingchun, WANG Yeyao, JIN Xiaowei. Study on Benthic Macroinvertebrates Community Structure and Water Quality Evaluation in Main Rivers of Liaoning Province [J]. Ecology and Environment, 2023, 32(5): 969-979. |
[2] | WANG Yun, ZHENG Xilai, CAO Min, LI Lei, SONG Xiaoran, LIN Xiaolei, GUO Kai. Study on Denitrification Performance and Control Factors in Brackish-Freshwater Transition Zone of Coastal Aquifer [J]. Ecology and Environment, 2023, 32(5): 980-988. |
[3] | KOU Zhu, QING Chun, YUAN Changguo, LI Ping. Diversity and Distribution of Sulfur Oxidizing Bacteria in Hot Springs of Northeast Tibet, China [J]. Ecology and Environment, 2023, 32(5): 989-1000. |
[4] | WANG Xinyu, GAO Dengzhou, LIU Bolin, WANG Bin, ZHENG Yanling, LI Xiaofei, HOU Lijun. The Tidal-cycle Variation and Influencing Factors of Dark Carbon Fixation Process in the Yangtze Estuary [J]. Ecology and Environment, 2023, 32(4): 733-743. |
[5] | JIANG Nihao, ZHANG Shihao, ZHANG Shihan. Interspecific Associations and Environmental Interpretation of the Dominant Species of the Communities Invaded by Ageratina adenophora in Ailao Mountains [J]. Ecology and Environment, 2022, 31(7): 1370-1382. |
[6] | XIA Kai, DENG Pengfei, MA Ruihao, WANG Fei, WEN Zhengyu, XU Xiaoniu. Changes of Soil Bacterial Community Structure and Diversity from Conversion of Masson Pine Secondary Forest to Slash Pine and Chinese Fir Plantations [J]. Ecology and Environment, 2022, 31(3): 460-469. |
[7] | XUE Wenkai, ZHU Pan, DE Ji, GUO Xiaofang. Study on the Temporal and Spatial Characteristics of the Dominant Species of Cultivable Filamentous Fungi in Nam Co Lake [J]. Ecology and Environment, 2022, 31(12): 2331-2340. |
[8] | LI Cong, LÜ Jinghua, LU Mei, YANG Zhidong, LIU Pan, REN Yulian, DU Fan. Responses of Soil Bacterial Communities to Vertical Vegetarian Zone Changes in the Subtropical Forests, Southeastern Yunnan [J]. Ecology and Environment, 2022, 31(10): 1971-1983. |
[9] | LIU Xiaoju, CHU Jiangtao, ZHANG Yue, SHAN Qi. Effects of Environmental Factors and Fire Disturbance Factors on Distribution of Chamerion angustifolium in Kanas Taiga [J]. Ecology and Environment, 2022, 31(1): 37-43. |
[10] | SUN Xuejiao, LI Jimei, ZHANG Yutao, LI Xiang, LU Jianjiang, SHE Fei. Characteristics and Influence of Runoff and Sediment Yield in Mountain Forest on the North Slope of Tianshan Mountains [J]. Ecology and Environment, 2021, 30(9): 1821-1830. |
[11] | CAI Xi'an, HUANG Juan, WU Tong, LIU Juxiu, JIANG Fen, WANG Senhao. Study on Methane Emission from Tree Leaves [J]. Ecology and Environment, 2021, 30(9): 1842-1847. |
[12] | YAO Shiting, LU Guangxin, DENG Ye, DANG Ning, WANG Yingcheng, ZHANG Haijuan, YAN Huilin. Effects of Simulated Warming on Soil Fungal Community Composition and Diversity [J]. Ecology and Environment, 2021, 30(7): 1404-1411. |
[13] | Xue Liyuan, Liu Zhiliang, Song Wei, An Ying, Yuan Xiaobo, Chen Xiao. Spatial Distribution of Aurelia sp. Ephyrae and Its Relationship with Environmental Factors in the Coastal Waters of Qinhuangdao in Spring, 2020 [J]. Ecology and Environment, 2021, 30(6): 1240-1248. |
[14] | WANG Yiquan, ZHOU Zhang, LI Yide, CHEN Dexiang, ZHANG Tao, YANG Fan. The Spatial-temporal Pattern and Influencing Factors of Negative Air Ions in Tropical Forests, Hainan, China [J]. Ecology and Environment, 2021, 30(5): 898-906. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
Copyright © 2021 Editorial Office of ACTA PETROLEI SINICA
Address:No. 6 Liupukang Street, Xicheng District, Beijing, P.R.China, 510650
Tel: 86-010-62067128, 86-010-62067137, 86-010-62067139
Fax: 86-10-62067130
Email: syxb@cnpc.com.cn
Support byBeijing Magtech Co.ltd, E-mail:support@magtech.com.cn