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181.
182.
With the environmental carrying capacity reaching its limits and the decreasing margin benefits of traditional production factors, the green transformation and green development through technological innovations has been a major direction for the future development of Chinese industries. However, the characteristics and heterogeneities of various types of industries call for different approaches regarding technological innovations. How to choose the most effective mode of technological innovation according to the characteristics of a certain industry has been a key issue. This paper measures the green total factor productivity of 32 industrial trades using the Slacks Based Measure(SBM)-DDF method. The effects of three innovation modes in the green transformation of industrial industry, including the independent innovation(Ⅱ), the technology introduction(TI), and the government support(GS), are empirically analyzed based on industry heterogeneity. Results indicate that the green total factor productivities of different industries show significant differences if taking into account the energy input and the undesirable output of pollutant emissions. The green total factor productivities of traditional high input,high pollution, and high energy consumption industrial trades were significantly lower than those with obvious green features. The year of 2009 is a leap year for the industrial green transformation in China. For resource-intensive industries, the II and the GS are the important ways to achieve green transformation. For labor-intensive industries, the TI is the best path to achieve green transformation, while for technology-intensive industries, the II is the primary driving force for the promotion of green developments. In addition, the innovation-compensating effect of the current Chinese environmental regulations to the resource-intensive industries has been revealed. Improving the overall scale and the industrial concentration of the industries is also beneficial for the green transformation of the industries. 相似文献
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184.
Miglena Zhiyanski Maria Sokolovska Alexandros Clouvas Viktor Badulin 《Journal of environmental radioactivity》2010,101(10):864-868
This study focuses on the cesium-137 (137Cs) contamination in grass and in different compartments of oak trees growing in ecosystems, located in the zone with sub-mediterranean climate in South Bulgaria, characterized with high summer temperatures, low precipitation and often periods of drought. In 2008, three experimental sites - PP1, PP2, PP3 - were sampled in oak ecosystems from Maleshevska Mountain at 900 m above sea level. Samples from grass species and oak tree leaves, branches with different diameter, wood disks and bark were analyzed for 137Cs activity with γ-spectrometry. The soil-to-plant transfer factor (TF) values for 137Cs were estimated differentiating different tree compartments. Our findings showed relatively high activity concentrations of 137Cs in oak trees even 22 years after the Chernobyl accident. The grass under oak was less contaminated compared with the oak trees. The different organs of oak trees could be distinguished according to the 137Cs contamination as follows: bark > branches (d < 1 cm) > leaves > branches (d > 3 cm) > wood. The relatively higher contamination of bark compared with the new-formed biomass suggested that a significant part of 137Cs was accumulated as a result of direct adsorption at the time of the main contamination event. The TF values obtained and the presence of 137Cs in the branches, leaves and in the wood formed after 1986 confirmed that 22 years after the contamination, the main mechanism of 137Cs entrance in tree biomass was the root uptake. 相似文献
185.
中国能源可持续发展区域差异及其因素分析 总被引:3,自引:0,他引:3
该文在明晰中国能源可持续发展内涵的基础上,从能源足量、可持续、合理供给;能源与水、土地、森林等资源配套能力;国家可持续能源政策与地区规划的融合,减缓环境资源的损耗;环境可持续性四个目标出发,构建了区域能源可持续发展指标体系。从定量的角度刻画中国能源可持续发展的区域差异,解析影响中国能源可持续发展的主要因素。研究结果表明,可持续能源政策与环境的可持续性是制约能源可持续发展的关键环节;能源与森林、土地资源的配套能力是重要基础;能源供应能力是核心所在;从中国东、中、西部来看,西部地区是中国能源可持续性最强的地区,中部次之,东部能源可持续性最弱;从中国八大区域来看,能源可持续性沿海地区最弱,东北和长江中游地区次之,大西北、西南和黄河中游地区最强。本文作者最后认为多元化发展,提升能源供应能力;建立健全环境税收制度,增强环境可持续性;因地制宜,是促进中国区域能源可持续发展的必然选择。 相似文献
186.
There is increasing concern that agricultural intensification in China has greatly increased N2O emissions due to rapidly increased fertilizer use. By linking a spatial database of precipitation, synthetic fertilizer N input, cropping rotation and area via GIS, a precipitation-rectified emission factor of N2O for upland croplands and water regime-specific emission factors for irrigated rice paddies were adopted to estimate annual synthetic fertilizer N-induced direct N2O emissions (FIE-N2O) from Chinese croplands during 1980-2000. Annual FIE-N2O was estimated to be 115.7 Gg N2O-N year−1 in the 1980s and 210.5 Gg N2O-N year−1 in the 1990s, with an annual increasing rate of 9.14 Gg N2O-N year−1 over the period 1980-2000. Upland croplands contributed most to the national total of FIE-N2O, accounting for 79% in 1980 and 92% in 2000. Approximately 65% of the FIE-N2O emitted in eastern and southern central China. 相似文献
187.
能源在社会经济发展中具有重要作用。随着能源消耗量剧增,能源供需矛盾、环境问题日益突出,研究区域能源强度变化具有重要的现实意义。采用Laspeyres因素分解法,定量分析江苏省和安徽省的产业结构和产业效率对能源强度的影响。研究发现:(1)安徽省的能源强度高于江苏省的能源强度,不过差距在逐渐变小,利用重标极差法预测未来两省的能源强度会逐渐趋同;(2)江苏省的产业结构发展有减小能源强度的趋势,不过作用过程有波动;产业效率有利于降低能源强度;(3)安徽省的产业结构有助于增加能源强度,作用趋势还在增大,产业效率有利于降低能源强度,降低作用大于江苏省。因此本文提出目前同样的投入应该偏向欠发达地区或能源强度较高地区,这有利于快速取得降低能源强度的成效. 相似文献
188.
基于事故树的三峡库区水体污染公共安全事件诱因分析 总被引:1,自引:0,他引:1
三峡库区蓄水后对长江水体自净能力的极大削弱,沿江聚集的各类生产、生活活动对长江水质的多渠道污染极易引发库区各类水体污染公共安全事件。结合对库区水体污染公共安全事件多维度诱发因素的调研结果,运用事故树的分析方法对三峡库区水体污染公共安全事件的逐级诱发过程进行分析。研究表明:存在13条诱发库区水体污染公共安全事件的路径以及3条防治水体污染公共安全事件的路径;在不考虑诱因发生概率的情况下,排污因素是诱发库区水体污染公共安全事件最重要、最根本的因素,促成库区水体自净能力下降的回水区变长,水流紊动减弱和水位抬升三方面因素是次重要的诱发因素。只有对不同的诱因施行不同的监测和控制策略,才能对库区水体污染公共安全事件开展有效预警、预控. 相似文献
189.
西部地区工业发展的比较优势分析 总被引:1,自引:0,他引:1
西部大开发实施以来,西部地区经济发展迅速,在产业结构升级和优化上取得了较大成绩.对西部地区1997-2006年的相关工业数据进行了分析,从总量、结构以及比较优势等方面加以把握,归纳出西部地区工业发展的几个显著特点以及成因,提出一些对策思路,主要包括:培育国家政策扶持机制,强化科技投入增长的保障机制,建设具有西部特色和优势的区域创新体系,健全金融体系等. 相似文献
190.