A study on the energy consumption nitrogen emission and its influence factors based on the expand Kaya in Zhejiang Province
LYU Yue1,2, CHEN Zhongqing1,2
1. School of Civil Engineering, Shaoxing University, Shaoxing 312000, Zhejiang Province, China;
2. Centre of Rock Mechanics and Geological Disaster, Shaoxing University, Shaoxing 312000, Zhejiang Province, China
Abstract:This paper divides the nitrogen emission process in Zhejiang Province during 1980 to 2014 into three stages:1980-1990, 1991-2000, 2001-2014, and adopts the logarithmic mean division index model (LMDIM) combined with expand Kaya identity to study the main driving factors of natural energy consumption nitrogen emission in Zhejiang Province during 1980 to 2014. It analyises quantitatively the effect of economic, population, energy intensity, energy structure and energy substitution effect in the different stages of the process. The results show that (1) Economic effect is the primary positive contributor to nitrogen emission growth, and followed by the population effect. (2) The decrease of energy consumption intensity inhibits the growth rate of nitrogen emissions, hence leading to a negative effect since the time of reform and opening policy. (3) The negative contributors also include the energy structure and energy substitution effect, but both of them become positive contributors in the third stage.
吕越, 陈忠清. 基于Kaya扩展的浙江能耗氮排放及其影响因素研究[J]. 浙江大学学报(理学版), 2016, 43(5): 610-614.
LYU Yue, CHEN Zhongqing. A study on the energy consumption nitrogen emission and its influence factors based on the expand Kaya in Zhejiang Province. Journal of ZheJIang University(Science Edition), 2016, 43(5): 610-614.
[1] LEACH A M, GALLOWAY J N, BLEEKER A, et al. A nitrogen footprint model to help consumers understand their role in nitrogen losses to the environment [J].Environmental Development, 2012,1(1):40-66.
[2] 蓝艳,陈刚,彭宁.以环境标准推动技术创新迈向生态创新[J].环境与可持续发展,2015,40(5):30-34. LAN Yan, CHEN Gang, PENG Ning. Spurring technical innovation with environment standards: A way towards ecological innovation [J]. Environment and Sustainable Development,2015,40(5):30-34.
[3] 冼超凡,欧阳志云.城市生态系统氮代谢研究进展[J].生态学杂志,2014,33(9):2548-2557. XIAN Chaofan, OUYANG Zhiyun. Urban ecosystem nitrogen metabolism: research progress [J]. Chinese Journal of Ecology,2014,33(9):2548-2557.
[4] 周赛军,邓明君,罗文兵.氮足迹核算研究最新进展[J].浙江农业科学,2015,56(6):915-920. ZHOU Saijun, DENG Mingjun, LUO Wenbin. Research progress on nitrogen footprint calculation[J]. Journal of Zhejiang Agricultural Sciences,2015,56(6):915-920.
[5] 马文静,张承中,韩德明,等.西安城区夏季地面臭氧浓度变化特征分析[J].环境工程,2015,33(10):47-49,65. MA Wenjing, ZHANG Chengzhong, HAN Deming, et al. Analysis on variation characteristics of surface ozone concentration in urban area of Xi'an in summer[J]. Environmental Engineering,2015,33(10):47-49,65.
[6] GU B J, DONG X L, PENG C H, et al. The long-term impact of urbanization on nitrogen patterns and dynamics in Shanghai, China [J]. Environmental Pollution,2012,171(1):30-37.
[7] HOLST J, LIU C, YAO Z, et al. Importance of point sources on regional nitrous oxide fluxes in semi-arid steppe of Inner Mongolia, China [J]. Plant and Soil,2007,296(1):209-226.
[8] CUI S H, SHI Y L, GROFFMANB P M, et al. Centennial-scale analysis of the creation and fate of reactive nitrogen in China(1910-2010) [J]. Proceeding of the National Academy Sciences of the United States of America, 2013,110(6):2052-2057.
[9] HAN Y G, LI X Y, NAN Z. Net anthropoid nitrogen accumulation in the Beijing metropolitan region [J]. Environmental Science and Pollution Research International,2001,18(3):485-496.
[10] 高群,余成.城市化进程对氮循环格局及动态的影响研究进展[J].地理科学进展,2015,34(6):726-738. GAO Qun, YU Cheng. A review of urbanization impact on nitrogen cycle [J]. Progress in Geography, 2015,34(6):726-738.
[11] 王丽琼.基于探索性空间分析的中国氮氧化物排放强度研究[J].生态环境学报.2013,22(3):494-497. WANG Liqiong. Study NOx emission intensity of China based on an exploratory spatial data analysis [J]. Ecology and Environmental Sciences, 2013,22(3):494-497.
[12] BROOK J R, BURNETT R T, DANN T F, et al. Further interpretation of the acute effect of nitrogen dioxide observed in Canadian time-series studies [J]. Journal of Exposure Science and Environmental Epidemiology, 2008,17(S2):36-44.
[13] 施亚岚,崔胜辉,许肃,等.需求视角的中国能源消费氮氧化物排放研究[J].环境科学学报,2014,34(10):2684-2692. SHI Yalan, CUI Shenghui, XU Su, et al. Nitrogen oxide emission energy consumption in China from a consumption-based perspective [J]. Acta Scientiae Circumstantiate, 2014,34(10):2684-2692.
[14] LIN J T, MCELROY M B, BOERSMA K F. Constraint of anthropogenic NOx emissions in China from different sectors: A new methodology using multiple satellite retrievals [J]. Atmospheric Chemistry and Physics, 2010,10(186):63-78.
[15] 吉木色.基于情景分析的城市大气污染物减排潜力研究[J].环境与可持续发展,2015,40(5):102-105. JI Muse. Based on the scenario analysis of atmospheric pollutants emission reduction potential research [J]. Environment and Sustainable Development, 2015,40(5):102-105.
[16] 张艳芳,位贺杰.基于生态平衡视角的浙江碳通量时空演变分析[J].干旱区研究,2015,32(4):777-783. ZHANG Yanfang, WEI Hejie. Space-time evolvement of carbon flux in Zhejiang Province based on the ecological balance perspective [J]. Arid Zone Research, 2015,32(4):777-783.
[17] LAWRENCE A B, DIANE H, XU Y, et al. Nitrogen balance for the central Arizona-phoenix (CAP) ecosystem [J]. Ecosystems, 2001,4(6):582-602.
[18] AKIMOTO H, NARITA H. Distribution of SO2,NO,and CO2 emissions from fuel combustion and industrial activities in Asia with l°×l°resolution [J]. Atmos Environ, 1994,28(2):213-225.
[19] XI F M, GENG Y, CHEN X D, et al. Contributing to local policy making on GHG emission reduction through inventorying and attribution: A case study of Shenyang, China [J]. Energy Policy, 2011,39(10):5999-6010.
[20] GALLOWAY J N, DENTENER F J, CAPONE D G, et al. Nitrogen cycles: Past, present, and future [J]. Ecosystems,2001,4(6):153-226.
[21] 戴小文,何艳秋,钟秋波.基于扩展的Kaya恒等式的中国农业碳排放驱动因素分析[J].中国科学院大学学报,2015,32(6):751-759. DAI Xiaowen, HE Yanqiu, ZHONG Qiubo. Analysis of CO2 emission driving factors in China's agriculture based on expanded Kaya identity [J]. Journal of University of Chinese Academy of Sciences, 2015,32(6):751-759.
[22] 浙江省统计局.浙江统计年鉴[M].北京:中国统计出版社,2015. Zhejiang Province Statistical Bureau. Zhejiang Statistical Yearbook [M].Beijing:China Statistical Publishing House, 2015.
[23] 国家统计局.中国能源统计年鉴[M].北京:中国统计出版社,2015. State Statistical Bureau. China Energy Statistical Yearbook[M].Beijing:China Statistical Publishing House, 2015.
[24] 高新华,汪莉,曹云者,等.辽宁省1980~2003年氮氧化物排放清单初步研究[J].环境科学研究,2006,19(6):35-39. GAO Xinhua, WANG Li, CAO Yunzhe, et al. Preliminary study on nitrogen oxides emission inventory of Liaoning province from 1980-2003 [J]. Research of Environmental Sciences, 2006,19(6):35-39.
[25] 施亚岚,崔胜辉,许肃,等.中国产业能源消费氮氧化物排放影响因素分析[J].环境科学与技术,2014(S1):355-362. SHI Yalan, CUI Shenghui, XU Su, et al. Factor decomposition of nitrogen oxide emission of China industrial energy consumption [J]. Environmental Science & Technology, 2014(S1): 355-362.