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31.
32.
黑碳(BC)是大气污染物的重要组成部分,对空气质量与人类生活健康产生重要的影响.本研究采用移动样带手段开展上海市近地面BC浓度监测,分析其基本统计特征和空间分异性.在此基础上,利用土地利用回归模型(LUR),探讨人口密度、经济产值和交通道路网密度等因素对上海市近地面BC浓度空间分异的影响.结果表明上海市近地面BC平均浓度为(9.86±8.68)μg·m~(-3),空间差异明显,郊区[(10.47±2.04)μg·m~(-3)]比市中心地区[(7.93±2.79)μg·m~(-3)]高32.03%(2.54μg·m~(-3)).气象要素(风速和相对湿度)和交通道路变量(路网长度、省道距离、高速距离等)显著影响上海市近地面BC浓度(r为0.5~0.7,P0.01).基于气象和交通道路变量的LUR模型能较好模拟上海近地面BC浓度(调整后R2为0.62~0.75,交叉验证R2为0.54~0.69,RMSE为0.15~0.20μg·m~(-3)),其中100 m和5 km缓冲距离的LUR模型相对较优,在一定程度上表明上海市近地面BC浓度主要受气象要素和交通源的影响.本研究有利于加深对上海市BC浓度空间分布格局及其影响因素的客观认识,可为模拟和预测BC对人类活动和自然环境的响应机制提供科学依据和理论支撑. 相似文献
33.
南京北郊黑碳气溶胶的来源解析 总被引:4,自引:4,他引:0
利用七波段黑碳仪对2015年1~12月南京北郊地区黑碳(black carbon,BC)气溶胶实时监测,并结合黑碳仪模型对该期间内BC进行来源解析,探讨化石燃料排放产生BC(BCff)与生物质燃烧产生BC(BCbb)各自的贡献大小.结果表明,观测期间BC的吸收波长指数(α)和生物质燃烧对BC的贡献百分比(BB)的变化范围都较大但趋势较为一致;冬季α值偏高而夏季α值较低,表明不同季节时间BC来源和强度的差异性.BCff在各季节BC总浓度中占比略有不同但均高于75%;BC、BCff和BCbb的日变化趋势均呈双峰特征,在07:00~09:00和18:00~21:00左右浓度有最大值;全天中,BCff对BC贡献最大,浓度值约为BCbb的3~5倍;夜晚BC浓度普遍高于白天,其平均浓度值是白天的1.2倍.由浓度权重轨迹分析的结果可知,影响南京北郊地区高浓度BC的源区主要集中在浙江、安徽以及江西和福建等地区. 相似文献
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沂蒙山区典型小流域降雨径流的磷素输出特征 总被引:8,自引:3,他引:5
以沂蒙山区孟良崮小流域为研究对象,通过监测2010年自然降雨条件下流域出口污染物的流失状况,选取降雨量>2mm的10场降雨,分析降雨径流特征对磷素流失的影响.结果表明,次降雨径流中总磷(TP)、颗粒态全磷(PP)、水溶性全磷(DP)、水溶性无机磷(DIP)浓度变化与流量变化过程不一致,浓度峰值均出现于流量峰值之前,而磷素通量与流量变化过程较为一致,且两者呈较好的线性关系;次降雨径流TP、PP、DP、DIP的浓度最大值及平均浓度(EMCs)差异均较大,其主要受降雨量、最大雨强和平均雨强影响,与降雨历时无显著相关关系,而浓度最小值差异较小;TP以PP流失为主,DP以DIP流失为主,DIP/DP的动态变化与降雨历时、降雨量、最大雨强和平均雨强均无显著相关关系,而PP/TP的动态变化与最大雨强显著相关.DIP、DP、TP的输出受地表径流(DR)和基流(BF)的影响较大,DIP/DP的动态变化及DIP、DP、TP的EMCs与DR/TR(地表径流/总径流量)存在多项式关系,而PP/TP的动态变化和PP的EMCs受DR/TR影响较小. 相似文献
37.
直接大红4BE的磷钨酸均相光催化还原脱色 总被引:1,自引:1,他引:0
以磷钨酸(H3PW12O40,PW12)为光催化剂,异丙醇(Isopropanol)作为电子给体的条件下对偶氮染料直接大红4BE进行均相光催化还原脱色研究,考察PW12用量、IS浓度、直接大红4BE和盐浓度等因素的影响,结果表明杂多蓝(PW1-2)对直接大红4BE具有明显的还原脱色作用.pH=2.0,直接大红4BE初始浓度50 mg·L-1,PW12浓度为600 mg·L-1,IS浓度为0.13mol·L-1,50 min直接大红4BE的脱色率可达到90.39%.4BE的光催化还原脱色速率随PW12和IS浓度的增加而增加,最后趋于恒定;直接大红4BE初始浓度增加,其光反应一级速率常数降低;PW12、IS和4BE浓度之间存在交互影响.离子强度增加,4BE脱色速率减小,表现为负的盐效应,推测4BE与光反应生成的杂多蓝(PW1-2)进行复合,然后发生电子转移引起偶氮染料还原脱色和杂多蓝氧化复原.本研究结果表明PW12/IS/UV能够有效用于偶氮染料直接大红4BE的还原脱色处理. 相似文献
38.
Sulfur-containing amino acid methionine as the precursor of volatile organic sulfur compounds in algea-induced black bloom 总被引:2,自引:0,他引:2
After the application of methionine, a progressive and significant increase occurred in five volatile organic sulfur compounds (VOSCs): methanethiol (MeSH), dimethyl sulfide (DMS), dimethyl disulfide (DMDS), dimethyl trisulfide (DMTS) and dimethyl tetrasulfide (DMTeS). Even in the untreated control without a methionine addition, methionine and its catabolites (VOSCs, mainly DMDS) were found in considerable amounts that were high enough to account for the water’s offensive odor. However, blackening only occurred in two methionine-amended treatments. The VOSCs production was observed to precede black color development, and the reaching of a peak value for total VOSCs was often followed by water blackening. The presence of glucose stimulated the degradation of methionine while postponing the occurrence of the black color and inhibiting the production of VOSCs. In addition, DMDS was found to be the most abundant species produced after the addition of methionine alone, and DMTeS appeared to be the most important compound produced after the addition of methionine+glucose. These results suggest that methionine acted as an important precursor of the VOSCs in lakes suffering from algea-induced black bloom. The existence of glucose may change the transformation pathway of methionine into VOSCs to form larger molecular weight compounds, such as DMTS and DMTeS. 相似文献
39.
The sorption of 17α-ethinyl estradiol(EE2),bisphenol A(BPA),and 4-n-nonylphenol(NP) in single systems and the sorption of EE2 with different initial aqueous concentrations of BPA or NP were examined using three soils.Results showed that all sorption isotherms were nonlinear and fit the Freundlich model.The degree of nonlinearity was in the order BPA(0.537-0.686) > EE2(0.705-0.858) > NP(0.875-0.0.951) in single systems.The isotherm linearity index of EE2 sorption calculated by the Freundlich model for Loam,Silt Loam and Silt increased from 0.758,0.705 and 0.858,to 0.889,0.910 and 0.969,respectively,when BPA concentration increased from 0 to 1000 μg/L,but the effect of NP was comparably minimal.Additionally,EE2 significantly suppressed the sorption of BPA,but insignificantly suppressed that of NP.These findings can be attributed to the difference of sorption affinity of EE2,NP and BPA on the hard carbon(e.g.,black carbon) of soil organic matter that dominated the sorption in the low equilibrium aqueous concentration range of endocrine-disrupting chemicals(EDCs).Competitive sorption among EDCs presents new challenges for predicting the transport and fate of EDCs under the influence of co-solutes. 相似文献
40.
Effects of physical and chemical characteristics of surface sediments in the formation of shallow lake algae-induced black bloom 总被引:12,自引:0,他引:12
Qiushi Shen Cheng Liu Qilin Zhou Jingge Shang Lei Zhang ChengXin Fan 《环境科学学报(英文版)》2013,25(12):2353-2360
Surface sediments are closely related to lake black blooms. The dissolved oxygen (DO) distribution and its penetration depth in surface sediments as well as the migration and transformation of redox sensitive elements such as Fe and S at the sediment-water interface are important factors that could influence the formation of the black bloom. In this study, dredged and undredged sediment cores with different surface properties were used to simulate black blooms in the laboratory. The Micro Profiling System was employed to explore features of the DO and ∑H2S distribution at the sediment-water interface. Physical and chemical characteristics in sediments and pore waters were also analyzed. The results showed that sediment dredging effectively suppressed the black blooms. In the undredged treatment, DO penetration depth was only 50 μm. Fe^2+ concentrations, ∑H2S concentrations, and ∑H2S production rates were remarkably higher in surface sediments and pore waters compared to control and dredged treatments. Furthermore, depletion of DO and accumulation of Fe^2+ and ∑H2S in surface sediments and pore waters provided favorable redox environments and necessary material sources for the blooms. The study results proved that physical and chemical characteristics in surface sediments are important factors in the formation of the black bloom, and could provide scientific guidance for emergency treatment and long-term pre-control of black blooms. 相似文献