[1] ZHOU Sha, HUANG Yuefei, YU Bofu, et al. Effects of human activities on the eco-environment in the middle Heihe River Basin based on an extended environmental Kuznets curve model[J]. Ecol Eng, 2015, 76:14-26.
[2] KONG Fanhua, YIN Haiwei, NAKAGOSHI N, et al. Simulating urban growth processes incorporating a potential model with spatial metrics[J]. Ecol Indic, 2012, 20(20):82-91.
[3] 陆地.快速城镇化背景下武汉东湖风景名胜区生态文明构建策略[J].中国园林, 2015, 31(10):66-70.

LU Di. Ecological civilization construction strategy of East Lake famous scenic site of Wuhan under the background of rapid urbanization[J]. Chin Landscape Archit, 2015, 31(10):66-70.
[4] 费世民.竹林生态研究[M].北京:中国林业出版社, 2011.
[5] 蒲晓蓉, 陈其兵.浅析竹类植物的城市生态环境效应[J].竹子研究汇刊, 2006, 25(3):59-62.

PU Xiaorong, CHEN Qibing. Analyses on ecological environmental functions of bamboo in the urban[J]. J Bamboo Res, 2006, 25(3):59-62.
[6] 王玲, 赵丽娅.竹类植物的生态功能[J].资源开发与市场, 2011, 27(4):342-343.

WANG Ling, ZHAO Liya. Ecological function of bamboo plants[J]. Resour Develop Mark, 2011, 27(4):342-343.
[7] 李智勇, 校建民, 张新萍, 等.竹林生态环境效益评估探讨[J].世界竹藤通讯, 2005, 3(4):15-17.

LI Zhiyong, XIAO Jianmin, ZHANG Xinping, et al. Evaluation on eco-environmental benefit of bamboo forest[J]. World Bamboo Rat, 2005, 3(4):15-17.
[8] 陈双林, 萧江华, 薛建辉.竹林水文生态效应研究综述[J].林业科学研究, 2004, 17(3):399-404.

CHEN Shuanglin, XIAO Jianghua, XUE Jianhui. A review on hydrological effects of bamboo stand[J]. For Res, 2004, 17(3):399-404.
[9] CHAN Y S. Mitigating surface urban heat island by a tree protection policy:a case study of The Woodland, Texas, USA[J]. Urban For Urban Green, 2013, 12(4):474-480.
[10] GEORGI J N, DIMITRIOU D. The contribution of urban green spaces to the improvement of environment in cities:Case study of Chania, Greece[J]. Build Environ, 2015, 45(6):1401-1414.
[11] 谭庆, 童俊, 戢小梅, 等.武汉31种野生地被植物的固碳释氧和降温增湿研究[J].中国园林, 2010, 26(8):93-95.

TAN Qing, TONG Jun, JI Xiaomei, et al. Researches on capability of carbon fixation & oxygen production, and temperature decrease & humidity increase in 31 wild groundcover plants in Wuhan[J]. Chin Landscape Archit, 2010, 26(8):93-95.
[12] 刘娇妹, 李树华, 杨志峰.北京公园绿地夏季温湿效应[J].生态学杂志, 2008, 27(11):1972-1978.

LIU Jiaomei, LI Shuhua, YANG Zhifeng. Temperature and humidity effect of urban green spaces in Beijing in summer[J]. Chin J Ecol, 2008, 27(11):1972-1978.
[13] 鲍淳松, 楼建华, 曾新宇, 等.杭州城市园林绿化对小气候的影响[J].浙江大学学报 (农业与生命科学版), 2001, 27(4):415-418.

BAO Chunsong, LOU Jianhua, ZENG Xinyu, et al. Effect of landscaping and greening on microclimate in Hangzhou City[J]. J Zhejiang Univ Agric Life Sci, 2001, 27(4):415-418.
[14] 吴莹. 5种中国特有观赏竹生态效应及园林应用研究[D]. 福州: 福建农林大学, 2014.

WU Ying. Study on the Eco-efficiency and Landscape Application of 5 Species of Chinese Special Ornamental Bamboos[D]. Fuzhou:Fujian Agriculture and Forestry University, 2014.
[15] 余树全, 冯洁.夏季不同绿地类型温湿度及空气负离子浓度变化特征研究[J].东北农业大学学报, 2013, 44(5):66-74.

YU Shuquan, FENG Jie. Study on the variation traits of different types of greenbelt humiture and air ions concentration in summer[J]. J Northeast Agric Univ, 2013, 44(5):66-74.
[16] ZHANG Zhe, LÜYingmin, PAN Huitang. Cooling and humidifying effect of plant communities in subtropical urban parks[J]. Urban For Urban Green, 2013, 12(3):323-329.
[17] 蒲晓蓉. 8种观赏竹在城市园林中的生态效应研究[D]. 成都: 四川农业大学, 2007.

PU Xiaorong. Studies on Ecological Function of Eight Ornamental Bamboos in Urban[D]. Chengdu:Sichuan Agricultural University, 2007.
[18] 张颖. 观赏竹净化环境功能研究[D]. 福州: 福建农林大学, 2013.

ZHANG Ying. Research on the function of Ornamental Bamboos in Purifying Environment[D]. Fuzhou:Fujian Agriculture and Forestry University, 2013.
[19] 宋凌浩, 宋伟民, 施玮, 等.上海市大气微生物污染对儿童呼吸系统健康影响的研究[J].环境与健康杂志, 2000, 17(3):135-138.

SONG Linghao, SONG Weimin, SHI Wei, et al. Health effects of atmospheric microbiological pollution on respiratory system among children in Shanghai[J]. J Environ Health, 2000, 17(3):135-138.
[20] 谢慧玲, 李树人, 袁秀云, 等.植物挥发性分泌物对空气微生物杀灭作用的研究[J].河南农业大学学报, 1999, 33(2):127-133.

XIE Huiling, LI Shuren, YUAN Xiuyun, et al. Study on the disinfection of plant volatile secretion to the microorganism content in the air[J]. Acta Agric Univ Henan, 1999, 33(2):127-133.
[21] DUDAREVA N, NEGRE F. Practical applications of research into the regulation of plant volatile emission[J]. Curr Opin Plant Biol, 2005, 8(1):113-118.
[22] 周单红. 4种园林植物对空气微生物的影响[D]. 临安: 浙江农林大学, 2009.

ZHOU Danhong. Effects of Four Garden Plants on Airborne Microbes[D]. Lin'an:Zhejiang A & F University, 2009.
[23] 常杰, 任远, 史琰, 等.亚热带城乡复合系统BVOC排放清单:以台州地区为例[J].生态学报, 2012, 32(2):641-649.

CHANG Jie, REN Yuan, SHI Yan, et al. An inventory of BVOC emission for a subtropical urban-rural complex:Greater Taizhou Area[J]. Acta Ecol Sin, 2012, 32(2):641-649.
[24] 张莉, 白艳莹, 王效科, 等.浙江省毛竹异戊二烯排放规律及其影响[J].生态学报, 2002, 22(8):1339-1344.

ZHANG Li, BAI Yanying, WANG Xiaoke, et al. Isoprene emission of bamboo and its implication to ozone level in region[J]. Acta Ecol Sin, 2002, 22(8):1339-1344.
[25] 王晓磊, 王成.城市森林调控空气颗粒物功能研究进展[J].生态学报, 2014, 34(8):1910-1921.

WANG Xiaolei, WANG Cheng. Research status and prospects on functions of urban forests in regulating the air particulate matter[J]. Acta Ecol Sin, 2014, 34(8):1910-1921.
[26] 张灵艺, 秦华.城市园林绿地滞尘研究进展及发展方向[J].中国园林, 2015, 31(1):64-68.

ZHANG Lingyi, QIN Hua. Research on progress of dust-retention for urban green space[J]. Chin Landscape Archit, 2015, 31(1):64-68.
[27] 郭含文, 丁国栋, 赵媛媛, 等.城市不同绿地PM2. 5质量浓度日变化规律[J].中国水土保持科学, 2013, 11(4):99-103.

GUO Hanwen, DING Guodong, ZHAO Yuanyuan, et al. Diurnal variations in the mass concentration of suspended particulate matter 2. 5(PM2. 5) of different urban green space[J]. Sci Soil Water Conserv, 2015, 31(1):64-68.
[28] 洪茜, 倪乐, 张迎辉, 等.凤尾竹等18种观赏竹滞尘能力的研究[J].福建林业, 2013, 29(1):25-29.

HONG Xi, NI Le, ZHANG Yinghui, et al. A study on dust retention capacity of 18 bamboos including Bambusa multiplex 'Fernleaf' etc.[J]. Fujian For, 2013, 29(1):25-29.
[29] 周芳纯.竹林培育学[M].北京:中国林业出版社, 1998.
[30] 洪茜. 18种观赏竹净化环境功能研究[D]. 福州: 福建农林大学, 2014.

HONG Xi. Study on the Function of 18 Ornamental Bamboos in Purifying Environment[D]. Fuzhou:Fujian Agriculture and Forestry University, 2014.
[31] 苏泳娴, 黄光庆, 陈修治, 等.城市绿地的生态环境效应研究进展[J].生态学报, 2011, 31(23):7287-7300.

SU Yongxian, HUANG Guangqing, CHEN Xiuzhi, et al. Research progress in the eco-environment effects of urban green spaces[J]. Acta Ecol Sin, 2011, 31(23):7287-7300.
[32] 张颖, 蒋建立, 何天友, 等. 3个竹种硫含量季节变化[J].福建林业科技, 2013, 40(2):60-63.

ZHANG Ying, JIANG Jianli, HE Tianyou, et al. Study on the contents of sulfur of 3 bamboos[J]. J Fujian For Sci Technol, 2013, 40(2):60-63.
[33] 张颖, 何天友, 陈凌艳, 等.麻竹等4种竹子Cl含量对比[J].亚热带农业研究, 2012, 8(2):102-104.

ZHANG Ying, HE Tianyou, CHEN Lingyan, et al. Comparison of chlorine in 4 bamboo species[J]. Subtrop Agric Res, 2012, 8(2):102-104.
[34] 李印颖. 植物与空气负离子关系的研究[D]. 杨凌: 西北农林科技大学, 2007.

LI Yinying. Study of Ralation of Plants and Air Negetive Ions[D]. Yangling:Northwest A & F University, 2007.
[35] 吴楚材, 黄绳纪.桃源洞国家森林公园的空气负离子含量及评价[J].中南林学院学报, 1995, 15(1):9-12.

WU Chucai, HUANG Shengji. Determination of the anion content in the air in Taoyuandong National Forest Park and evaluation of the air quality[J]. J Cent-South For Coll, 1995, 15(1):9-12.
[36] 胡卫华.竹林生态环境资源分析及旅游开发探讨[J].竹子研究汇刊, 2010, 29(4):58-62.

HU Weihua. Bamboo forest eco-environmental resources and its tourism development[J]. J Bamboo Res, 2010, 29(4):58-62.
[37] 曾曙才, 苏志尧, 陈北光.广州绿地空气负离子水平及其影响因子[J].生态学杂志, 2007, 26(7):1049-1053.

ZENG Shucai, SU Zhiyao, CHEN Beiguang. Air negative ion concentrations and their affecting factors in greenbelts of Guangzhou[J]. Chin J Ecol, 2007, 26(7):1049-1053.
[38] 张晔. 黄金间碧竹等18种观赏竹的空气负离子浓度和光合特性研究[D]. 福州: 福建农林大学, 2012.

ZHANG Ye. Study on Negative Air Ion Concentration and Photosynthetic Characteristics of 18 Species of Ornamental Bamboos Such as Bambusa vulgaris[D]. Fuzhou:Fujian Agriculture and Forestry University, 2012.
[39] 张晶. 无锡惠山地区秋季毛竹游憩林生态保健功能研究[D]. 北京: 中国林业科学研究院, 2012.

ZHANG Jing. Ecological Health Effects of Moso Bamboo Recreation Forest in Huishan Area of Wuxi in the Fall[D]. Beijing:Chinese Academy of Forestry, 2012.
[40] 刘国华, 傅伯杰, 方精云.中国森林碳动态及其对全球碳平衡的贡献[J].生态学报, 2000, 20(5):733-739.

LIU Guohua, FU Bojie, FANG Jingyun. Carbon dynamics of Chinese forests and its contribution to global carbon balance[J]. Acta Ecol Sin, 2000, 20(5):733-739.
[41] 谢瑞麟. 四川"蜀南竹海"绵竹林生态系统碳储量及其空间分布的研究[D]. 成都: 四川农业大学, 2013.

XIE Ruilin. Carbon Storage and Its Spatial Distribution in Mianzhu Stands in the Bamboo Sea of Southern Sichuan[D]. Chengdu:Sichuan Agricultural University, 2013.
[42] 李正才, 傅懋毅, 徐德应.竹林生态系统与大气二氧化碳减量[J].竹子研究汇刊, 2003, 22(4):1-6.

LI Zhengcai, FU Maoyi, XU Deying. Bamboo ecosystem and carbon dioxide sequestration[J]. J Bamboo Res, 2003, 22(4):1-6.
[43] 陈先刚, 张一平, 张小全, 等.过去50年中国竹林碳储量变化[J].生态学报, 2008, 28(11):5218-5227.

CHEN Xiangang, ZHANG Yiping, ZHANG Xiaoquan, et al. Carbon stock changes in bamboo stands in China over the last 50 years[J]. Acta Ecol Sin, 2008, 28(11):5218-5227.
[44] 周国模, 姜培坤.毛竹林的碳密度和碳贮量及其空间分布[J].林业科学, 2004, 40(6):20-24.

ZHOU Guomo, JIANG Peikun. Density, storage and spatial distribution of carbon in Phyllostachy pubescens forest[J]. Sci Silv Sin, 2004, 40(6):20-24.
[45] 张蕊, 申贵仓, 张旭东, 等.四川长宁毛竹林碳储量与碳汇能力估测[J].生态学报, 2014, 34(13):3592-3601.

ZHANG Rui, SHEN Guicang, ZHANG Xudong, et al. Carbon stock and sequestration of a Phyllostachys edulis forest in Changning, Sichuan province[J]. Acta Ecol Sin, 2014, 34(13):3592-3601.
[46] 方晰, 田大伦, 项文化.速生阶段杉木人工林碳素密度、贮量和分布[J].林业科学, 2002, 38(3):14-19.

FANG Xi, TIAN Dalun, XIANG Wenhua. Density, storage and distribution of carbon in Chinese fir plantation at fast growing stage[J]. Sci Silv Sin, 2002, 38(3):14-19.
[47] 胡海清, 罗碧珍, 魏书精, 等.小兴安岭7种典型林型林分生物量碳密度与固碳能力[J].植物生态学报, 2015, 39(2):140-158.

HU Haiqing, LUO Bizhen, WEI Shujing, et al. Biomass carbon density and carbon sequestration capacity in seven typical forest types of the Xiaoxing'an Mountains, China[J]. Chin J Plant Ecol, 2015, 39(2):140-158.
[48] 李江, 黄从德, 张国庆.川西退耕还林地苦竹林碳密度、碳贮量及其空间分布[J].浙江林业科技, 2006, 26(4):1-5.

LI Jiang, HUANG Congde, ZHANG Guoqing. Density, storage and spatial distribution of carbon in Pleioblastus amarus forest returned from farmland[J]. J Zhejiang For Sci Technol, 2006, 26(4):1-5.
[49] 王勇军, 黄从德, 王宪帅, 等.慈竹林生态系统碳储量及其空间分配特征[J].福建林业科技, 2009, 36(2):6-9, 87.

WANG Yongjun, HUANG Congde, WANG Xianshuai, et al. Carbon stock and spatial distribution characteristics of Neosinocalamus affinis forest ecosystem[J]. J Fujian For Sci Technol, 2009, 36(2):6-9, 87.
[50] SONG Xinzhang, ZHOU Guomo, JIANG Hong, et al. Carbon sequestration by Chinese bamboo forests and their ecological benefits:assessment of potential, problems, and future challenges[J]. Environ Rev, 2011, 19(1):418-428.
[51] TZOULAS K, KORPELA K, VENN S, et al. Promoting ecosystem and human health in urban areas using Green Infrastructure:a literature review[J]. Landscape Urban Plan, 2007, 81(3):167-178.
[52] ÖZBILEN A, KALIN A. The semantic value of plants in the perception of space[J]. Build Environ, 2001, 36(2):257-279.
[53] 张哲, 潘会堂.园林植物景观评价研究进展[J].浙江农林大学学报, 2011, 28(6):962-967.

ZHANG Zhe, PAN Huitang. Research on the evaluation of garden plant landscapes[J]. J Zhejiang A & F Univ, 2011, 28(6):962-967.
[54] CHANG C Y. Psychophysiological responses to different landscape settings and a comparison of cultural differences[J]. Acta Hortic, 2004, 639:57-65.
[55] VERLARDE M D, FRY G, TVEIT M. Health effects of viewing landscapes:landscape types in environmental psychology[J]. Urban For Urban Green, 2007, 6(4):199-212.
[56] 毛齐正, 罗上华, 马克明, 等.城市绿地生态评价研究进展[J].生态学报, 2012, 32(17):5589-5600.

MAO Qizheng, LUO Shanghua, MA Keming, et al. Research advance in ecological assessment of urban greenspace[J]. Acta Ecol Sin, 2012, 32(17):5589-5600.