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521.
Fang Li Jing Jin Dongqin Tan Longxing Wang Ningbo Geng Rong Cao Yuan Gao Jiping Chen 《环境科学学报(英文版)》2016,28(10):209-217
Hexabromocyclododecane(HBCD) and tetrabromobisphenol A(TBBPA) are two kinds of brominated flame retardants and widely present in the environment and biota. The levels,spatial distributions and mass inventories of HBCD and TBBPA were investigated in sediments and paddy soils from the Liaohe River Basin in northeast China. The concentrations of ΣHBCD and TBBPA were in the range of not detected(nd) to 4.02 ng/g dry weight(dw) and 0.03 to 4.06 ng/g dw, respectively. γ-HBCD was dominated in sediments,while the abundance of α-HBCD was relatively high in paddy soils. The spatial distributions of HBCD and TBBPA in surface sediments and paddy soils indicated that the local point-input was their major source. The significant correlation between total organic carbon(TOC) contents and the HBCD levels suggested that TOC content also exerted an influence on the distribution of HBCD in sediments. Meanwhile, it was found that the irrigation with river water was not the major transportation pathway of HBCD and TBBPA in paddy soils. Based on the study, it was estimated that there were about 1.67 tons HBCD and 2.20 tons TBBPA deposited into sediments of the Liaohe River system every year. The total mass inventories of HBCD and TBBPA in sediments were far higher than that in paddy soils. 相似文献
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Shanzhi Xin Wei Gao Dandan Cao Kun Lv Yaquan Liu Chunyan Zhao Yawei Wang Guibin Jiang 《环境科学学报(英文版)》2019,31(1):378-387
The increasing production and usage of chlorinated paraffins(CPs) correspondently increase the amount of CPs that experience thermal processes. Our previous study revealed that a significant amount of medium-chain chlorinated paraffins(MCCPs), short-chain chlorinated paraffins(SCCPs) as well as aromatic and chlorinated polycyclic aromatic hydrocarbons(Cl-PAHs) were formed synergistically during the thermal decomposition of CP-52(a class of CP products).However, the transformation mechanisms of CP-52 to these compounds are still not very clear.This article presents a mechanistic analysis on the decomposition of CP-52 experimentally and theoretically. It was found that CP-52 initially undergoes dehydrochlorination and carbon chain cleavage and it transformed into chlorinated and unsaturated hydrocarbons. Cyclization and aromatization were the most accessible pathways at low temperatures(200–400°C), both of which produce mostly aromatic hydrocarbons. As the temperature exceeds 400°C, the hydrocarbons could decompose into small molecules, and the subsequent radical-induced reactions become the predominant pathways, leading to the formation of Cl-PAHs. The decomposition of CP-52 was investigated by using density functional theory and calculations demonstrating the feasibility and rationality of PCB and PCN formation from chlorobenzene. The results improve the understanding of the transformation processes from CP-52 to SCCPs and Cl-PAHs as well as provide data for reducing their emissions during thermal-related processes. 相似文献
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Particle number size distribution and new particle formation: New characteristics during the special pollution control period in Beijing 总被引:3,自引:0,他引:3
New particle formation is a key process in shaping the size distribution of aerosols in the atmosphere.We present here the measurement results of number and size distribution of aerosol particles (10-1... 相似文献
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5种沉水植物对重金属富集能力的对比研究 总被引:1,自引:0,他引:1
为了探求不同的沉水植物对水体中重金属吸收富集能力的差异,采用原子吸收光谱法,对淮河支流东风渠水体及水体中常见的5种沉水植物:菹草、黑藻、龙须眼子菜、穗花狐尾藻及小茨藻进行了铅(Pb)、镉(Cd)、锌(Zn)、铜(Cu)含量分析。结果表明:5种沉水植物样品中重金属含量远远高于水体重金属背景值,对重金属Cu、Pb、Cd、Zn的富集系数为58~1 515,对Zn富集最强,最大富集量达到242.42 mg/kg,富集系数为1 515。不同的沉水植物对重金属的吸收富集优势存在明显差异,利用沉水植物来修复水体重金属污染时,须依据不同的污染元素来选择合适的沉水植物。 相似文献
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人口增长胁迫下的全球土地利用变化研究 总被引:49,自引:3,他引:49
人口和耕地、草地、森林4个因子构成一个理论上以人为中心的全球人地关系系统,在这个系统中,人口总量的变动势必引起耕地、草地和森林面积的数量增减和相互转化。该文构建了一个简单的人-地关系平衡模型,对1970~1995年和未来50年全球人口增长胁迫下土地利用变化进行了分析。结果表明:①全球25年来,在人口增长了546%的情况下,耕地面积和草地面积并没有大幅度增减。维持相对稳定的机制是以扩大灌溉面积和大量投入化肥为标志的农业技术进步使土地生产率提高了639%,从而抵消了人口增长胁迫耕地面积增加、草地和森林面积相应减少的压力。②未来50年当中,人口将增加74%,达到100×108,人均耕地、草场和森林面积将分别减少到低于013hm2、034hm2和037hm2,在此情况下,由于将耕地面积扩大74%不大可能,现有全球土地利用(覆盖)格局能否保持稳定的关键是依靠农业技术进步使耕地生产率提高74%以上。③由于在原有维持土地覆盖变化相对稳定的机制中,扩大灌溉面积和大量投入化肥在未来难以继续发挥作用以提高土地生产率,假定现有耕地面积保持不变,现有耕地生产率水平不变,到2050年,耕地仍能养活比届时地球上预测生存人口还 相似文献
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