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581.
黄河河口地区生态供水效益分析 总被引:2,自引:0,他引:2
流域生态需水是指流域生态系统为维持一定程度的生态系统健康所需要一定质量的水量,以保证流域生态系统结构和生态功能等为目标,实现流域生态系统健康。流域生态需水量的研究对于社会经济的可持续发展具有重要的战略意义。论文针对南水北调西线一期工程的供水规划,在提出配水效益计算方法的基础上,针对不同的配水量,计算了黄河河口地区的生态需水量、生态效益以及供水对减少断流所带来的生态效益,并进行了方案比较分析。主要结论是:当来水量分别为55×108、122.8×108或240×108m3时,产生的湿地综合生态效益则为34.85×108、47.18×108或54.72×108元。 相似文献
582.
黄河三角洲二元结构与多元可持续发展初探 总被引:4,自引:1,他引:3
黄河三角洲由石油资源的开发而兴起,其区位条件和油气资源条件都十分优越,但目前仍处于经济发达地区的低谷区。通过对二元结构系数的定量分析,发现该地区具有明显的复合二元结构特征,即“油地+城乡”,二元结构是制约三角洲持续发展的一个重要限制性因素。目前,石油产业的全面改组改制、优越的外部环境和自身基础条件、东营港扩建及其附属加工制造业基地的立项、综合性交通运输网络体系的形成等都是三角洲全面发展的难得机遇。要实现多元可持续发展的目标,必须转变观念,由“以油建城”到“以港兴城”、大力发展资源深加工工业和具有竞争优势的制造业;构建高效生态农业经济体系;推进城市的“内聚式”发展。 相似文献
583.
584.
Muhammad Nasrullah Pasi Vainikka Janne Hannula Markku Hurme Janne Kärki 《Waste management (New York, N.Y.)》2014,34(8):1398-1407
This paper presents the mass, energy and material balances of a solid recovered fuel (SRF) production process. The SRF is produced from commercial and industrial waste (C&IW) through mechanical treatment (MT). In this work various streams of material produced in SRF production process are analyzed for their proximate and ultimate analysis. Based on this analysis and composition of process streams their mass, energy and material balances are established for SRF production process. Here mass balance describes the overall mass flow of input waste material in the various output streams, whereas material balance describes the mass flow of components of input waste stream (such as paper and cardboard, wood, plastic (soft), plastic (hard), textile and rubber) in the various output streams of SRF production process. A commercial scale experimental campaign was conducted on an MT waste sorting plant to produce SRF from C&IW. All the process streams (input and output) produced in this MT plant were sampled and treated according to the CEN standard methods for SRF: EN 15442, EN 15443. The results from the mass balance of SRF production process showed that of the total input C&IW material to MT waste sorting plant, 62% was recovered in the form of SRF, 4% as ferrous metal, 1% as non-ferrous metal and 21% was sorted out as reject material, 11.6% as fine fraction, and 0.4% as heavy fraction. The energy flow balance in various process streams of this SRF production process showed that of the total input energy content of C&IW to MT plant, 75% energy was recovered in the form of SRF, 20% belonged to the reject material stream and rest 5% belonged with the streams of fine fraction and heavy fraction. In the material balances, mass fractions of plastic (soft), plastic (hard), paper and cardboard and wood recovered in the SRF stream were 88%, 70%, 72% and 60% respectively of their input masses to MT plant. A high mass fraction of plastic (PVC), rubber material and non-combustibles (such as stone/rock and glass particles), was found in the reject material stream. 相似文献
585.
武汉市陈家冲循环经济产业园规划建设的思考 总被引:1,自引:0,他引:1
通过对循环经济和陈家冲循环经济产业园需承担功能的分析,提出规划建设思路和循环经济的实现途径。 相似文献
586.
Chaoxian Guo 《中国人口.资源与环境(英文版)》2015,13(3):223-230
The industrial sector is usually the largest economy sector for carbon emissions in many countries, which made it the sector with greatest potential for carbon reduction although the process duration might be very long. Studying the potential of industrial emission reduction has great significance in estimating the carbon emission peak of China on the one hand, and adjusting its strategy in international climate change negotiations. By employing the economic accounting method, this article estimates the emission reduction potential of China’s Industrial sector for the period of 2010–2050. It reveals that, taking 2030 as the year when the emission reaches the peak, the total reduction can be 8.38 billion tons (bts) for the period of 2010–2030, with 3.12 bts from structural reduction while 5.26 bts from intensity reduction. Afterwards, reduction will continue with a total amount of 6.59 bts for the period of 2030–2050, where the structural reduction accounts for 2.47 bts, and intensity reduction 4.115 bts. If both industrial and energy consumption structures are improved during the above period, the reduction potential can be even greater, e.g. the emission peak can arrive five years earlier (in the year of 2025) and the peak value can decline by about 8% as compared to the original estimation. Reviewing the trajectory of emission changes in developed countries indicates that the industry sector can contribute to the overall reduction targets through the dual wheels of structural reduction and intensity reduction, even beyond the emission peak. This article concludes with the following policy suggestions. (1) Our estimation on the emission peak of the industrial sector suggests that China should avoid any commitment earlier than 2030 on the timeline of the overall emission peak; (2) the great potential of industrial emission reduction can improve the situation of China in climate change negotiation, where the intensity reduction can serve as an important policy option. (3) Reduction potential can be further enhanced through technology advancement, which requires furthering of market oriented reforms and improvement of institutional design. (4) To secure the reduction effects of the industrial structure adjustment, the balanced development among different regions should be encouraged in order to avoid the reverse adjustment caused by industrial transferring. (5) International cooperation promoting the application and development of industrial emission reduction technologies, including carbon capture, utilization and storage, should be encouraged. 相似文献
587.
当前,在中国奋力实现"碳达峰"碳中和"目标的背景下,不仅给碳排放量相对较高的工业企业带来较大环境治理压力,同时也给其在经济增长方面带来较大冲击.对其随着碳交易政策的提出,是否能够产生"减碳促经"效果展开深入研究.基于2005~2019年30个省市数据,通过双重差分等方法和多重中介效应模型对碳交易政策与工业碳生产率的影响效果和作用路径展开深入分析.结果表明,碳交易政策能够明显提升工业碳生产率水平;同时该种作用效果会随着试点区域的不同存在明显差异;该政策能够产生显著的环境规制、结构优化、技术和能源结构优化效应.建议通过加速完善环境规制层面法律制度、加快构建环保产业发展新体系、加强绿色技术创新研发力度和加速优化能源结构方面促进中国工业经济向低碳化发展转型. 相似文献
588.
文章运用灰色关联分析方法,分别以经济发展指标GDP和环境污染指标废气、废水和固废排放量为参考序列,以产业发展经济数据为比较序列,进行灰色关联度分析,结果发现,杭州现有产业结构初步适应了经济与环境相协调的发展理念,但是有些部门产业或行业仍对环境的污染产生着重要影响。 相似文献
589.
以益阳沅江市经济开发区扩区环评为例,围绕老经济开发区固有问题以及扩区的制约因素展开分析和评价,提出解决方案,找到发展和保护的平衡点。 相似文献
590.