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中国博士后科学基金(2011M501010)

作品数:2 被引量:10H指数:2
相关作者:常杰罗卫东葛滢谷保静杨国福更多>>
相关机构:浙江大学更多>>
发文基金:中国博士后科学基金国家自然科学基金更多>>
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中国工业氮通量快速增长的驱动力及其影响被引量:6
2013年
人类活动通过增加工业氮(不包括肥料氮)输入、活性氮多样性及活性氮库容量,正强烈地改变着全球氮循环.然而,目前还缺乏对工业氮通量、去向及其环境效应的理解.本研究发现,中国工业氮通量近30年来增加了13.4倍,2008年达到3.7TgN(1Tg=1012g),已超过全国食物氮通量的50%.社会经济发展(人均GDP、城市化以及家庭规模大小)显著驱动了工业氮通量的变化,致使中国高工业氮通量区域主要出现在东部发达地区.工业氮生产过程中的氮流失率仅为5%,远低于农田(约为50%)和养殖(80%).但是,工业氮流失属点源污染,高浓度的点释放给局部环境带来较大危害.中国工业氮组成中,生命周期一年以上的结构性氮产品(如合成纤维和塑料)占全部工业氮产品的比例从1980年的20%增加到2008年的70%左右.2008年新增2.6TgN结构性氮产品,这些结构性氮积累在人类居住区,可能是人为源氮输入(主要为Haber-Bosch固氮)未知氮汇的解释之一.虽然结构性氮滞缓了活性氮的释放,但是其积累过程带来的滞留效应对环境和人类健康存在长期的影响.此外,工业氮循环为现代全球氮的生物地球化学循环增添了新的特征,如增加了活性氮的种类,降低了活性氮的周转率等,未来需要将工业氮整合到地球系统的动态模拟中.工业氮循环的通量及其环境效应的整合分析将为决策者制定区域可持续发展战略提供全新的认识.
谷保静杨国福罗卫东杜园园葛滢常杰
关键词:垃圾围城点源污染
Rapid growth of industrial nitrogen fluxes in China: Driving forces and consequences被引量:4
2013年
Human activities are strongly modifying the global nitrogen (N) cycle through increasing input, N species diversity, and pool size of industrial reactive N (Nr). However, the fluxes, fates and environmental consequences of industrial Nr (excluding synthesized N fertilizer) remain poorly understood and quantified. We report here that industrial Nr flux has increased 13.4-fold over the past 30 years in China, reaching 3.7Tg N (1 Tg=10 12g) in 2008, accounting for over 50% of China's food Nr flux. Socioeconomic development (per capita GDP, urbanization and household size) significantly drives the growth of industrial Nr fluxes. This leads to "hotspots" of industrial Nr, mainly in relatively developed Eastern China. Industrial Nr loss rate during production is only 5%, much lower than that of cropland (50%) and livestock (80%). However, industrial Nr loss is point source pollution, and Nr release in concentrated doses produces serious risk in small regions. The contribution of structural N to total industrial Nr with a lifespan longer than one year (e.g., synthetic fiber, plastic) increased from 20% in 1980 to 70% in 2008. There was about 2.6 Tg N structural industrial Nr accumulated in human settlements in 2008, which could be one ex- planation of an unknown Nr sink of anthropogenic Nr input (mainly Haber-Bosch N fixation). Legacy effects caused by structural N accumulation have long-term consequences for environmental and human health, although structural N delays Nr release and reduces short-term Nr pollution. Industrial Nr use generates new features of modern global N biogeochemistry, such as increasing Nr species diversity, reducing Nr turnover rate. Future dynamics simulation of the earth system should involve industrial Nr. Explicit consideration and accounting of the fluxes and environmental consequences of industrial Nr would provide decision-makers a novel view of regional sustainable development.
GU BaoJingYANG GuoFuLUO WeiDongDU YuanYuanGE YingCHANG Jie
关键词:活性氮区域可持续发展
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