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521.
城市化和工业化产生的碳排放是当今中国影响气候变化的重要因素,经济增长和碳排放之间的关系是当今研究的热点问题.本文研究南京市低碳经济发展的现状、阶段及演化特点,发现30年来,南京市低碳经济发展呈现波动反复的特点,扩张负脱钩3次,较高能源消费的经济增长形式-扩张连接4次,经济发展实现与能源消费较好脱钩的弱负脱钩1次,强脱钩4次,其余为弱脱钩.基于内生经济增长模型Moon-Sonn,建立了南京经济增长预测模型,并探讨了不同发展模式下南京未来50年低碳经济水平及碳排放量演化规律,预测了不同低碳经济水平下南京碳排放量和峰值出现的时间.研究结果显示,按现行经济模式,南京2050-2060年碳总量增加速度逐步减缓,约在2058年左右实现碳总量的负增长.50年内南京市预计为扩张负脱钩和扩张连接,难以实现稳定的离水平低碳经济增长模式;设定最优能源强度参数的模式下,南京迅速实现稳定强脱钩的低碳经济,碳释放量EKC曲线呈现倒U型,2015年左右即达到峰值.综合各种因素,南京近几年将延续模式l的增长模式,在2020年左右实现向模式2转变,其碳释放量约于2028年前后出现峰值.  相似文献   
522.
城镇化与生态环境之间存在着客观的动态耦合关系,以江苏沿海三市(南通、盐城、连云港)2000-2009年统计数据为基础,分别从人口、经济、空间、社会城镇化和生态环境压力、状态、响应等层面构建了城镇化与生态环境协调发展的综合评价指标体系,利用协调发展模型对其演化趋势进行了量化分析。结果表明:①城镇化指数逐步提高,呈线性增长趋势,进入城镇化快速发展时期;②生态环境指数具有不同的变化特征,表现为波动上升趋势,生态环境质量不断得到改善;③城镇化与生态环境协调发展度指数表现出多样化的等级类型,当城镇化水平发展到一定阶段,生态环境压力也随之增大,同时人们的环境保护意识与逐步增强,两者之间的交互作用逐步走向适应与协调。  相似文献   
523.
利用卫星遥感监测,分析三峡工程建设前后库区城镇发展类型、时空过程,揭示库区城镇变化的驱动力,探索了城镇扩展与人口城镇化关系,研究城镇环境变化特征。三峡库区城镇规模发展不均衡,库尾城市规模庞大,库中、东部区县级城市规模较小,而乡镇的比例占城镇面积24%;在过去15 a中,建城区规模扩大172%,高于全国省会城市发展水平72%;三峡库区城镇规模扩大的同时,东西城镇规模差距逐步缩小,三峡工程建设起着重要的推动作用;城镇发展以侵占了优质耕地资源为代价,耕地占城镇变化83%;城镇用地变化与人口城市化发展不平衡,城镇空间发展快于人口城镇化过程,城镇对农村人口的吸引力不及全国省会城市平均水平,在2007年城市化率低于全国水平13%,差距进一步扩大;城市空间结构发展模式受地形和土地资源的限制,城市分维数和坡度分别增加12%和104°,城市向潜山区扩展或搬迁的同时,城市空间的完整性下降  相似文献   
524.
上海城市样带土壤有机碳空间变异性研究   总被引:2,自引:0,他引:2  
为揭示城市化、工业化等人为活动对土壤有机碳的影响,选择能反映上海城郊乡梯度差异的城市样带,采用地统计学方法对表层土壤样品土壤有机碳的空间变异结构和分布格局进行了分析。结果表明:城市表层土壤有机碳含量均属中等变异,徐汇区土壤有机碳含量呈正态分布,奉贤区、闵行区和所研究样带土壤有机碳含量呈对数正态分布。半方差函数模型拟合结果显示徐汇和闵行区土壤有机碳符合指数模型,奉贤和所研究样带土壤有机碳符合球状模型。通过泛克里格插值得到城市表层土壤有机碳含量空间分布图,发现徐汇、闵行区土壤有机碳呈岛状,奉贤区呈条带状,而所研究样带呈条带和岛状分布相结合的特点。土壤有机碳含量城郊乡梯度差异明显,工业化、城市化、肥料投入与管理等人为因素对城市土壤有机碳空间分布密切相关  相似文献   
525.
湖北“人口-经济-空间”城市化及其层级结构   总被引:2,自引:0,他引:2  
城市化的内在协调性是城市(区域乃至国家)综合竞争力、国民生计及可持续发展能力的综合体现。基于对城市化概念与内涵的认知--城市化是一个“人口 经济 空间”三维一体的过程,其中人是行为主体,经济是驱动力,空间是载体,构建了城市化综合测度指标,并运用时序全局主成分分析法,对2000年以来湖北省12个地级市的城市化层级结构演变过程及趋势进行了分析。结果表明湖北省城市化具有如下特征:① 城市化总量时序演变上呈现出明显的上升趋势,且存在经济城市化>空间城市化>综合城市化>人口城市化的变化趋势,但也表现出一定程度的粗放增长的内在特征;② 整个城市化过程是一个由人口城市化导向型向经济城市化导向型转变的过程;③ 城市化相关系数的时序演变与人口城市化集聚程度>空间城市化集聚程度>经济城市化集聚程度的演变趋势密切相关,表明综合城市化与人口城市化的地域协调性最高,而与经济的最低;④ 城市化等级体系空间结构及其时序演变具有首位度城市层级结构、城市层级结构动态演变,以及城市化地域协调性不强等特征;最后就城市化的协调发展提出对策和建议。为我国城市化可持续发展研究以及湖北省今后的城市化发展战略提供了理论借鉴和实践指导  相似文献   
526.
In the new European Pesticide Regulation (EC) No. 1107/2009, the harmonisation of approaches for estimation of the environmental exposure of pesticides is considered a major goal. Several member states currently require their own models for the calculation of predicted environmental concentrations (PEC) in surface water. The variety of methods makes risk evaluations rather time-consuming for both notifiers and evaluating authorities. In the present study we compare surface water concentrations of 19 compounds using EU and country-specific models and risk assessment approaches to evaluate to which extent the resulting estimated exposure concentrations differ. Our results show that EU and country specific approaches and the resulting surface water concentrations differ considerably regarding basic model assumptions and assessment methods. The results indicate that the aimed harmonisation of risk assessment approaches within the EU will be difficult based on current models. New scenarios may help to achieve a harmonisation taking country-specific features into account.  相似文献   
527.
Reduction of viable airborne Staphylococcus epidermidis and Aspergillus niger spore concentrations using two types of photocatalytic fluorescent lamps under controlled environmental conditions (25 vs. 35 °C and 55 vs. 75% relative humidity) were investigated. Visible white-light and UVA black light were in-house spray-coated with TiO2 and then compared with a commercially coated visible white-light for microbial concentration reduction. The white-light photocatalytic lamps reduced the concentration of culturable S. epidermidis up to 92% independent of temperature or humidity change, while the black light photocatalytic lamps completely inactivated the culturable bacteria at 25 °C, 55% relative humidity. Humidity seemed to alleviate UVA damage since better bacteria survival was found. For A. niger spores, rising humidity or temperature could lower their concentration or drop their culturabilities so that a difference between the natural decay and photocatalytic disinfection could not be distinguished. Reductions of total bacteria and total fungi concentrations using these lamps were also examined under uncontrolled environmental conditions in an office and a waste-storage room. It was found that photocatalytic lamps could reduce total culturable bacteria concentration from 9 to 97% and total culturable fungi concentration from 3 to 95% within irradiation time of 30-480 min, respectively. Insignificant difference in concentration reduction among these photocatalytic lamps was pronounced.  相似文献   
528.
Rapid expansion of coastal anthropogenic development means that critical foraging and developmental habitats often occur near highly polluted and urbanized environments. Although coastal contamination is widespread, the impact this has on long-lived vertebrates like the green turtle (Chelonia mydas) is unclear because traditional experimental methods cannot be applied. We coupled minimally invasive sampling techniques with health assessments to quantify contaminant patterns in a population of green turtles resident to San Diego Bay, CA, a highly urbanized and contaminated estuary. Several chemicals were correlated with turtle size, suggesting possible differences in physiological processes or habitat utilization between life stages. With the exception of mercury, higher concentrations of carapace metals as well as 4,4′-dichlorodiphenyldichloroethylene (DDE) and γ chlordane in blood plasma relative to other sea turtle studies raises important questions about the chemical risks to turtles resident to San Diego Bay. Mercury concentrations exceeded immune function no-effects thresholds and increased carapace metal loads were correlated with higher levels of multiple health markers. These results indicate immunological and physiological effects studies are needed in this population. Our results give insight into the potential conservation risk contaminants pose to sea turtles inhabiting this contaminated coastal habitat, and highlight the need to better manage and mitigate contaminant exposure in San Diego Bay.  相似文献   
529.
The protective effect of hydroxytyrosol (HT), a strong antioxidant compound from extra virgin olive oil, against TCDD induced toxicity was investigated in human peripheral blood mononuclear cells (PBMC). PBMC (1 × 106 cells mL−1) were divided into four groups and were incubated in a CO2 incubator (5% CO2) for 12 h with vehicle, TCDD (10 nM), TCDD + HT (10 nM + 100 μM) and HT alone (100 μM) respectively. To clarify the role of HT against TCDD induced cytotoxicity, oxidative stress and the levels of antioxidant enzymes were assessed. Incubation of PBMC with TCDD significantly decreased cell viability, catalase (CAT) and glutathione peroxidase (GPx) and increased the levels of superoxide dismutase (SOD), glutathione reductase (GR) and oxidative stress markers such as lipid peroxidation products (LPO), protein carbonyl content (PCC) and reactive oxygen species (ROS). Whereas, HT had an effective antioxidant property as observed by the increased cell viability, normalization of antioxidant enzymes and decreased levels of LPO, PCC and ROS in PBMC co-treated with HT and TCDD. Apoptosis detection and comet assay results shows that HT, by acting as an antioxidant, prevents the damage to DNA induced by TCDD. In addition light microscopic and histopathological observations revealed that the cells are apoptotic and degenerated during TCDD treatment, whereas cells showed intact morphology during co-treatment with HT. On the whole, the results reveal that HT exerts a promising antioxidant potential in protecting the PBMC against TCDD induced oxidative stress, which might be due to the presence of catechol moiety in its structure.  相似文献   
530.
Research increasingly highlights cause and effect relationships between urbanization and stream conditions are complex and highly variable across physical and biological regions. Research also demonstrates stormwater runoff is a key causal agent in altering stream conditions in urban settings. More specifically, thermal pollution and high salt levels are two consequences of urbanization and subsequent runoff. This study describes a demonstration model populated with data from a high gradient headwaters stream. The model was designed to explain surface water‐groundwater dynamics related to salinity and thermal pollution. Modeled scenarios show long‐term additive impacts from salt application and suggest reducing flow rates, as stormwater management practices are typically designed to do, have the potential to greatly reduce salt concentrations and simultaneously reduce thermal pollution. This demonstration model offers planners and managers reason to be confident that stormwater management efforts can have positive impacts.  相似文献   
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