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941.
科学估算气候变化和人类活动对河川径流的影响,可以更为合理地规划利用地球水资源。针对丹江口水库入库径流的减少问题,分别采用Mann-Kendall方法和Pettitt检验,对1960~2012年间丹江口水库入库径流的年际和年内变化趋势进行了分析,并与同时期汉江上游20个地面观测站的降水、气温的年际和年内演化趋势进行了比较,从气候变化和人类活动影响的两个方面分析了入库径流减少的原因。在此基础上,利用气候弹性模型分别估算了气候变化和人类活动对径流的影响度。结果表明:近年来丹江口入库径流的减少主要受春季和秋季径流减少的影响,在春季径流的减少总量中,气候变化的贡献度为67%,人类活动为33%;秋季径流的减少总量中,气候变化的贡献度为88%,人类活动为12%。气候变化是导致丹江口入库径流减少的主要原因。  相似文献   
942.
利用山东省统计年鉴数据和联合国政府间气候变化专门委员会(IPCC)公布的碳排放计算公式和碳排放系数,对山东省2001-2010年的能源消费和碳排放情况进行分析。结果表明:山东省一次能源消费由2001年的11 649.88万t标准煤增长到2010年36 357.25万t标准煤,年均增长12.05%;碳排放量由2001年12 308.17万t增长到2010年30 881.45万t,年均增长9.64%,由煤炭引起的碳排放量占73.09%;碳排放强度呈下降趋势,由2001年的1.21 t/万元下降到2010年0.78 t/万元,年均下降4.23%。针对山东省能源消费与碳排放现状,提出了相关建议。应大力发展低碳经济,改变高耗能的发展方式,积极促进山东省产业结构调整和升级,实现经济社会可持续发展。  相似文献   
943.
中国水资源消耗配置的灰色关联度与适宜度测算   总被引:4,自引:0,他引:4  
水资源作为一种可耗竭性资源,在农业、工业和生活部门的消耗量非常大,这种消耗配置格局是否合理有待于研究。本文运用灰色关联分析法对2000-2008年中国水资源消耗总量与农业、工业和生活部门耗水量的配置进行关联度测算,以探求各部门耗水量配置对水资源消耗总量的影响程度,继而将生态学中的生态位评估模型引入到水资源消耗配置评价中,对水资源消耗总量在各部门的消耗配置进行适宜度测算,研究结果表明:①工业部门耗水量与中国水资源消耗总量的灰色关联程度最高;②2008年中国水资源消耗配置的适宜度水平最高,水资源消耗总量在农业、工业和生活部门实现较优配置。通过对中国水资源消耗总量在各部门配置的关联度和适宜度测算,研究认为:提高水资源消耗总量在农业、工业和生活部门配置的适宜度,关键在于减少水资源在各部门的浪费性消耗,提高水资源利用效率,使各部门的水资源消耗值均接近最佳生态位,从而实现水资源消耗总量在各部门的消耗配置接近最优化水平。  相似文献   
944.
面对日益突出的水污染问题,我国现行《水污染防治法》难以适应水污染防治的要求,《水污染防治法》的修订及相关立法问题在国家立法机构、行政部门和环境法学界因而备受关注。对当前我国环境法理论界和实践部门关于水污染防治立法的观点和主张以及相关研究进展和成果进行了系统分析和整理,从为完善我国《水污染防治法》提供立法参考的目的出发,运用概括、分类和归纳的方法,对我国水污染防治立法理念、机制和制度创新进行了分析和归纳,并提出了具体的立法建议。  相似文献   
945.
基于探索性数据分析的汉丰湖富营养化驱动因子研究   总被引:2,自引:0,他引:2  
为了探究汉丰湖富营养化驱动因子和营养状况,基于2014年水质监测数据,应用探索性数据分析方法初步研究了汉丰湖水动力条件与环境因子的相关性、水质主成分、相关环境因子熵权和营养健康指数。回归分析结果表明:水位与透明度呈正相关,流量与DO呈负相关,与流速呈负相关的因子为Chla、CODMn、NH+4-N和DTP;主成分分析提取的3个主成分分别反映了营养盐、有机污染以及藻类信息;DO、TN和TP的熵权表明汉丰湖水体的富营养状况受制于耗氧有机污染和氮、磷营养盐;营养健康指数S1>S3>S6(湖心)>S7(湖尾)>S5(湖首)>S4>S2。汉丰湖水体营养状况介于中营养到轻富营养,其中南河营养状态较高,湖心营养程度高于湖首和湖尾。减少有机污染物、营养盐的输入和改善局部水域的水动力条件可抑制藻类生长,有利于防治富营养化。 关键词: 探索性数据分析;汉丰湖;富营养化;驱动因子;水动力条件;主成分;熵权;营养健康指数  相似文献   
946.
Liquid hot water (LHW), an environmental-friendly physico-chemical treatment, was applied to pretreat the sugarcane bagasse (SCB). Tween80, a non-ionic surfactant, was used to enhance the enzymatic hydrolysis of the pretreated SCB. It found that 0.125 mL Tween80 /g dry matter could make the maximum increase (33.2%) of the glycan conversion of the LHW-pretreated SCB. A self-designed laboratory facility with a plate-and-frame impeller was applied to conduct batch hydrolysis, fed-batch hydrolysis, and the process of high-temperature (50°C) fed-batch hydrolysis following low-temperature (30°C) simultaneous saccharification and fermentation (SSF) which was adopted to overcome the incompatible optimum temperature of saccharification and fermentation in the SSF process. After hydrolyzing LHW-pretreated SCB for 120 h with commercial cellulase, the total sugar concentration and glycan conversion obtained from fed-batch hydrolysis were 91.6 g/L and 68.3%, respectively, which were 9.7 g/L and 7.3% higher than those obtained from batch hydrolysis. With Saccharomyces cerevisiae Y2034 fermenting under the non-sterile condition, the ethanol production and theoretical yield obtained from the process of SSF after fed-batch hydrolysis were 55.4 g/L and 88.3% for 72h, respectively, which were 15.5 g/L and 24.7% higher than those from separate fed-batch hydrolysis and fermentation. The result of this work was superior to the reported results obtained from the LHW-pretreated SCB.  相似文献   
947.
环境管理战略转型研究综述   总被引:1,自引:1,他引:0  
王加平  张伟 《中国环境管理》2016,8(2):85-88,115
由于经济社会的发展伴随的环境问题越来越复杂,资源相对不足、环境容量有限越来越突出,环境管理转型问题引起越来越多的国内外学者关注。所谓环境管理转型,是指环境管理思维、策略和方式的转变,是以环境质量为目标导向,从被动应对向主动防控的转变。本文通过文献梳理的方法,综述了国内外学术界对于环境管理战略进行的多角度探讨。通过综述发现,国外学者主要注重环境管理理论研究,如环境管理的模型研究和不同环境管理战略的研究,且国外学者在研究不同环境管理战略时,研究对象多为微观层面的企业组织;而我国学者的研究则主要集中在宏观层面,即从国家的角度来探讨环境管理战略如何完成转型,从而促进我国经济社会的良性发展。现有的国内外研究是环境管理战略相关理论发展和实践推行的重要基础,在环境管理战略研究领域,本文认为还有一些问题需要进一步研究:一是环境管理的转型不仅需要宏观层面的统筹、微观方面的变革,也需要从中观层面来推进,所以中观层面的环境管理研究同样具有重要的现实意义。二是环境管理的转型不仅需要法律手段的支撑、经济手段的配置,也需要公民环保意识的觉醒,所以关于公民环保意识层面的研究也需要加强。  相似文献   
948.
The residual levels of phthalate esters (PAEs) in the surface and two core sediments from Lake Chaohu were measured with a gas chromatograph–mass spectrometer (GC–MS). The temporal–spatial distributions, compositions of PAEs, and their effecting factors were investigated. The results indicated that di-n-butyl phthalate (DnBP), diisobutyl phthalate (DIBP), and di(2-ethylhexyl) phthalate (DEHP) were three dominant PAE components in both the surface and core sediments. The residual level of total detected PAEs (∑PAEs) in the surface sediments (2.146?±?2.255 μg/g dw) was lower than that in the western core sediments (10.615?±?9.733 μg/g) and in the eastern core sediments (5.109?±?4.741 μg/g). The average content of ∑PAEs in the surface sediments from the inflow rivers (4.128?±?1.738 μg/g dw) was an order of magnitude higher than those from the lake (0.323?±?0.093 μg/g dw), and there were similar PAE compositions between the lake and inflow rivers. This finding means that there were important effects of PAE input from the inflow rivers on the compositions and distributions of PAEs in the surface sediments. An increasing trend was found for the residual levels of ΣPAEs, DnBP, and DIBP from the bottom to the surface in both the western and eastern core sediments. Increasing PAE usage with the population growth, urbanization, and industrial and agricultural development in Lake Chaohu watershed would result in the increasing production of PAEs and their resulting presence in the sediments. The significant positive relationships were also found between the PAE contents and the percentage of sand particles, as well as TOC contents in the sediment cores.  相似文献   
949.
Phosphorus (P) in agricultural ecosystems is an essential and limited element for plants and microorganisms. However, environmental problems caused by P accumulation as well as by P loss have become more and more serious. Oxygen isotopes of phosphate can trace the sources, migration, and transformation of P in agricultural soils. In order to use the isotopes of phosphate oxygen, appropriate extraction and purification methods for inorganic phosphate from soils are necessary. Here, we combined two different methods to analyze the oxygen isotopic composition of inorganic phosphate (δ18OP) from chemical fertilizers and different fractions (Milli-Q water, 0.5 mol L?1 NaHCO3 (pH = 8.5), 0.1 mol L?1 NaOH and 1 mol L?1 HCl) of agricultural soils from the Beijing area. The δ18OP results of the water extracts and NaHCO3 extracts in most samples were close to the calculated equilibrium value. These phenomena can be explained by rapid P cycling in soils and the influence of chemical fertilizers. The δ18OP value of the water extracts and NaHCO3 extracts in some soil samples below the equilibrium value may be caused by the hydrolysis of organic P fractions mediated by extracellular enzymes. The δ18OP values of the NaOH extracts were above the calculated equilibrium value reflecting the balance state between microbial uptake of phosphate and the release of intracellular phosphate back to the soil. The HCl extracts with the lowest δ18OP values and highest phosphate concentrations indicated that the HCl fraction was affected by microbial activity. Hence, these δ18Op values likely reflected the oxygen isotopic values of the parent materials. The results suggested that phosphate oxygen isotope analyses could be an effective tool in order to trace phosphate sources, transformation processes, and its utilization by microorganisms in agricultural soils.  相似文献   
950.

Silicon-based fertilizers and soil amendments can have direct and indirect positive influences on cultivated plants. The solid forms of Si-based substances, the most widespread in use, are efficient only at high application rates due to their low level of solubility. Several types of Si-based substances such as fumed silica, slags from the iron and steel industry, modified slags, and a Si-rich product were tested using barley and pea as silicon accumulative and non-accumulative plants, respectively, at two application rates. The plants were grown under toxic concentrations of heavy metals in a greenhouse. Si-rich materials high in water-soluble Si had a positive effect at both the low and high application rates, and for both plant species. This type of substance can be regarded as Si fertilizer, demonstrating greater efficiency at a low application rate and lessened efficiency at a high application rate for protection of the cultivated plants against accumulation of the heavy metals.

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