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| 1 | Study on RS-and GIS-based ecological capital assessment in arid areas显示文摘生态的大写的评价当前是生态学,资源经济,环境经济和生态的经济的学科交差的领域里的重要研究内容之一。为了科学地估计生态的资本,增加到决策人在经济开发考虑生态的费用,并且为在干旱区域的持续经济开发也是必要的。基于风景生态学的理论,在这篇论文生态的资本在干旱区域珍视的per 单位区域被使用 Landsat TM 数据, CBERS 卫星数据,气象学的数据, MODIS 卫星数据和另外的生态的数据研究,并且 RS --并且在干旱区域估计生态的大写的价值的官方补给底的模型被开发。而且基于测量地的数据,在在威信河盆的生态的大写的评价以后的案例研究,在 2003 的 Xinjiang 被执行。盆被划分成 4 个生态的大写的区域以便份量上计算生态系统的生态的大写的价值,分析生态的资本的空间分发,并且制定生态的资本的空间分发的地图。结果证明在在 2003 的威信河盆的生态系统的全部的生态的大写的价值是 1.494 54 癮 吗?? | ZHOU Kefa CHEN Xi ZHOU Huarong ZHANG Qing ZUO Qiting ZHANG Haibo YAN Jinfeng CHEN Chuan | 2006 | Chinese Science Bulletin2006,51,A01: | 3 |
| 2 | A low-cost green approach for synthesis of lead oxide from waste lead ash for use in new lead-acid batteries显示文摘This paper proposes a novel method relating to the recycling of waste lead ash originated from procedure of lead alloy production.The spent lead ash was first disposed by acetic acid leaching system,where lead ash structure wrapping impurities would be destroyed.The synthesis of lead oxide products was conducted at a lower temperature of 90℃.The effect of molar ratio of CH3 COOH to lead content of the ash on leaching efficiency was studied through the acetic acid leaching system.The results demonstrate that 84.6%of lead could be obtained in the leaching solution,while merely 0.7%of Fe blend in solution within a leaching time of 120 min.In the stage of lead oxide synthesis from leaching solution,the yield of lead oxide products could reach up to 94.4%when the molar ratio of NaOH to lead in filtrate was 2.5.This novel green method could shed light on the reuse of lead from exhausted ash with a much more convenient and environmentally friendly procedure. | Wei Zhang Gang Tang Xiaoqin Xiang Renyu Wang Shuangquan Gao Xinfeng Zhu Qiting Zuo | 2019 | Chinese Journal of Chemical Engineering2019,27,7: | 2 |
| 3 | China pursues a strict water resources management system显示文摘 | Qiting Zuo Runfang Jin Junxia Ma Guotao Cui | 2014 | Environmental Earth Sciences2014,,6: | 2 |
| 4 | Chemical leaks contaminate Chineseriver: viewing environmental emergency response of China显示文摘 | ZUO Qiting CUI Guotao | 2013 | Environmental Earth Sciences2013,69,8: | 1 |
| 5 | Experi- mental Analysis of the Impact of Sluice Regulation on Water Quality in the Highly Polluted Huai River Basin, China 显示文摘 | Zuo Qiting Chen Hao Dou Ming | 2015 | Environmental Monitoring and Assessment2015,187,45: | 1 |
| 6 | Physically-based Model for Studying the Salinization of the Bosten Lake in China显示文摘 | Zuo Qiting Dou Ming Chen Xi Zhou Kefa | 2006 | Hydrological sciences Journal2006,51,3: | 1 |
| 7 | Physically-based model for studying the salinization of the Bosten Lake in China 显示文摘 | Zuo Qiting Dou Ming Chen Xi | 2006 | Hydrological Sciences Journal2006,51,3: | 1 |
| 8 | Concept and model of 'supporting capacity of water resources' in urban areas显示文摘 | Zuo Qiting Ma Junxia Wu Zening | 2005 | Sustainable Water Management Solutions for Large Cities IAHS Publication2005,293,: | 1 |
| 9 | Climate Change and its Impact on Water Resources in the Huai River Basin显示文摘Rainfall and air temperature data from six meteorological stations above the Bengbu Sluice and hydrological and water resources evaluation data from the Bengbu Hydrological Station in the Huai River Basin from 1961 to 2008 are used to analyze the impact of changes in climatic factors on the amount of water resources in the Basin. There was a general trend of rise in its average annual air temperature, with the highest increase of 0.289oC/10a recorded at Bengbu in Anhui Province. Rising rainfall was mainly observed in the western part of the study area, while rainfall actually declined in the eastern part, i.e. the middle reaches of the Huai River. The Average rainfall in the study area was in a vaguely declining trend. In other words, the rainfall in the Basin is still much affected by natural fluctuations. On the whole, there was a trend of gradual decrease in the quantity of the Basin's water resources for the period under study. Water resources quantity is found to fall with decreasing rainfall and rising air temperature. Regression analysis is used to establish a mathematical model between water resources quantity and climatic factors (i.e. air temperature and rainfall) in order to explore the impact of climate change on water resources in the Basin. Moreover, various scenarios are set to quantitatively analyze the response of water resources to climate change. Sensitivity analysis shows that changes in rainfall have a much bigger impact on its water resources quantity than changes in its air temperature. | ZUO Qiting CHEN Yaobin TAO Jie | 2012 | Bulletin of the Chinese Academy of Sciences2012,26,1: | 1 |
| 10 | Concept and Model of Supporting Capacity of Water Resources in Urban Areas显示文摘 | Zuo Qiting Ma Junxia Wu Zening | 2005 | Sustainable Water Management Solutions for Large Cities IAHS Publication2005,293,: | 1 |
| 11 | Land use/land cover change responses to ecological water conveyance in the lower reaches of Tarim River,China显示文摘The Tarim River is the longest inland river in China and is considered as an important river to protect the oasis economy and environment of the Tarim Basin.However,excessive exploitation and over-utilization of natural resources,particularly water resources,have triggered a series of ecological and environmental problems,such as the reduction in the volume of water in the main river,deterioration of water quality,drying up of downstream rivers,degradation of vegetation,and land desertification.In this study,the land use/land cover change(LUCC)responses to ecological water conveyance in the lower reaches of the Tarim River were investigated using ENVI(Environment for Visualizing Images)and GIS(Geographic Information System)data analysis software for the period of 1990-2018.Multi-temporal remote sensing images and ecological water conveyance data from 1990 to 2018 were used.The results indicate that LUCC covered an area of 2644.34 km^(2) during this period,accounting for 15.79%of the total study area.From 1990 to 2018,wetland,farmland,forestland,and artificial surfaces increased by 533.42 km^(2)(216.77%),446.68 km^(2)(123.66%),284.55 km^(2)(5.67%),and 57.51 km^(2)(217.96%),respectively,whereas areas covered by grassland and other land use/land cover types,such as Gobi,bare soil,and deserts,decreased by 103.34 km2(14.31%)and 1218.83 km2(11.75%),respectively.Vegetation area decreased first and then increased,with the order of 2010<2000<1990<2018.LUCC in the overflow and stagnant areas in the lower reaches of the Tarim River was mainly characterized by fragmentation,irregularity,and complexity.By analyzing the LUCC responses to 19 rounds of ecological water conveyance in the lower reaches of the Tarim River from 2000 to the end of 2018,we proposed guidelines for the rational development and utilization of water and soil resources and formulation of strategies for the sustainable development of the lower reaches of the Tarim River.This study provides scientific guidance for optimal scheduling of water resources in the region. | WANG Shanshan ZHOU Kefa ZUO Qiting WANG Jinlin WANG Wei | 2021 | Journal of Arid Land2021,13,12: | 0 |
| 12 | Utilization and Protection of Water Resources in China: 1978–2018显示文摘Since the reform and opening up,China has undergone fundamental economic and social changes,along with which the concepts,researches,and practices related to the utilization and protection of water resources have also changed dramatically.Therefore,it is of great significance to systematically summarize China’s 40-year history of water use and protection,and look to the future demand in the new era.By consulting the literature,the authors have sorted out the process of water resources utilization and protection in China between 1978 and 2018,and divided it into development-focused stage(1978–1999),comprehensive utilization stage(2000–2012)and protection-focused stage(2013 to present).Based on the development demand in the new era,the authors believe that the protection-focused stage will continue for a period of time(till 2025 or so),and a smart water use stage will emerge in the years to come.The authors have also proposed the priorities and directions for future research on water resources utilization and protection in the construction of the Belt and Road,the development of the Yangtze River Economic Zone,the coordinated development of Beijing–Tianjin–Hebei region,the construction of the Xiong’an New Area,and the implementation of the Rural Revitalization Strategy. | XIA Jun ZUO Qiting | 2018 | Chinese Journal of Urban and Environmental Studies2018,6,4: | 0 |