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81.
ABSTRACT

As the space carrier of the construction of ecological civilization, land’s green and efficient utilization is an important guarantee for realizing national sustainable development. Based on traditional land evaluation, this paper scientifically defines the green land use, puts land as one of the production factors, and brings energy consumption, environmental pollution, etc. into the input-output system to measure the green land utilization efficiency of the urban construction land of Beijing-Tianjin-Hebei Urban Agglomeration from 2006 to 2016. The study shows that the overall efficiency variation of the urban agglomeration is related with the land and environment policies. Efficiency of 2016 is higher than that of 2006, and energy and environment are the principal factors affecting the green land use. The efficiency of each city is positively correlated with its economic development, negatively correlated with the construction land expansion. Efficiency gaps in different cities are expanding. There is positive correlation with overall weak space between cities, and the partial spatial agglomeration phenomenon appears. Therefore, the green land use efficiency could be improved by improving land utilization efficiency, coordinating economic growth of construction land utilization with environmental protection and taking feasible ways to transregional renovation of the stock ecological land utilization, etc.  相似文献   
82.
● Collaborative treatment of plastics and OS was established to improve oil quality. ● PE addition successfully improved OS pyrolysis process by deploying H/Ceff ratio. ● Higher H/Ceff ratio promoted cracking to obtain more gas and light oil fractions. ● The degradation of PE and OS was promoted each other under their temperature range. Pyrolysis is an effective method to treat oily sludge (OS) due to its balance between oil recovery and nonhazardous disposal. However, tank bottom OS contains a high content of heavy fractions, which creates obstacles for pyrolysis due to the high activation energy. The incomplete cracking of macromolecules and secondary polymerization decreases the oil quality and causes coking during the operation process. This study introduced polyethylene (PE) into OS to deploy the H/Ceff ratio of feedstocks for pyrolysis. A strong interaction between OS and PE during copyrolysis could be observed from the TG/DTG curves. PE tightly participated in OS degradation, while OS also promoted PE degradation at high temperature. Apparent pits were generated in solid residues from copyrolysis, which was attributed to the uniform and violent gas release. In addition to HCN, other nitrogenous and sulphurous pollutants were inhibited. Accordingly, more gas products were attained after PE addition with more value-added compositions of alkanes and alkenes. Although the oil yield decreased after PE addition, the oil products from copyrolysis possessed higher heating values and higher contents of light fractions with short chains as well as paraffins. Consequently, copyrolysis of OS and PE significantly improved the pyrolysis process and resulted in high oil quality.  相似文献   
83.

Porous carbon is an excellent absorbent for pollutants in water. Here, we report a breakthrough in performance of porous carbon based on lignin prepared using sodium lignosulfonate (SLS), potassium carbonate and melamine as precursor, activator and nitrogen source, respectively. A series of characterization tests confirmed that in-situ nitrogen doping greatly enhanced porous structure, resulting in a specific surface area of 2567.9 m2 g?1 and total pore volume of 1.499 cm3 g?1, which is nearly twice that of non-nitrogen-doped porous carbon. Moreover, adsorption experiments revealed that at 303 K, the saturated adsorption capacity of chloramphenicol was as high as 713.7 mg g?1, corresponding to an improvement of 33.7%. Further, the prepared porous carbon exhibited a strong anti-interference against metal ions and humic acid. The adsorption process was confirmed to be an endothermic reaction dominated by physical adsorption, indicating that an increase in temperature is conducive to adsorption. The results of this study show that nitrogen-doped lignin-based porous carbon prepared by in-situ doping is a promising material to significantly alleviate water pollution owing to its low cost, excellent pore structure and good adsorption properties.

  相似文献   
84.
Oxidation remediation is a commonly used technology for PAHs contaminated soil presently,but the overestimate of efficiency due to ongoing remediation by residual oxidants during extraction and testing has not been paid enough attention.In this study,persulfate was activated by Fe(Ⅱ) to inve stigate the effects of residual oxidants on PAHs removal during detection process and the elimination effects of adding Na2 SO3 and extending sampling time on residual oxidants.Results ...  相似文献   
85.
大气环境质量评价的未确知测度模型   总被引:10,自引:0,他引:10  
刘开第  庞彦军  姚立根  李亚 《环境科学》2000,21(3):11-11-15
给出大气环境质量综合评价的未确知测度模型 ,并用于某大型钢铁企业的大气环境质量评价 .模型严谨 ,测度函数的构造力求符合实际 ,并且针对评价空间分割的有序性 ,引入置信度识别准则使评判结果合理 ,是大气环境质量综合评价的实用模型 .  相似文献   
86.
以天津某染化厂的酸性橙Ⅱ废水为研究对象,利用N235-煤油-H2SO4-NaOH的萃取-反萃取体系,通过静态杯皿实验,确定了萃取-反萃取过程的最佳工艺参数,使萃取效率可达90% ,出水COD值可降低到350m g/L;酸性橙Ⅱ废水的有机成分总浓缩倍数达25~40倍;废水的萃余液经二次萃取法和混凝沉淀法处理后,出水的COD值< 200m g/L,色度< 80倍,达到天津市工业废水的排放标准  相似文献   
87.
准好氧填埋渗滤液中氮转化机理   总被引:1,自引:0,他引:1  
依据准好氧填埋的原理构建了填埋试验装置,在填埋装置各个层次设计采样装置.定期采集渗滤液进行分析,测定各个层次区域渗滤液中氨氮、硝态氮、亚硝态氮和总氮的质量浓度,分析各形态氮之间的变化规律与相关性,初步探讨氮转化的机理.结果表明,准好氧填埋上层区域中,渗滤液的氨氮与硝态氮质量浓度变化相关性极显著;中层和下层区域由于处于兼氧和厌氧状态,硝化作用较弱,渗滤液中氨氮与硝态氮质量浓度变化相关性不显著.上层渗滤液中氨氮与总氮相关性不显著,中层和下层氨氮与总氮相关性极显著,表明中层和下层区域中,渗滤液的氨氮质量浓度变化是导致总氮含量变化的主要贡献因素.  相似文献   
88.
农田土壤呼吸对大气CO2浓度升高的响应   总被引:3,自引:1,他引:2  
大气CO2浓度急剧升高引起的全球气候变暖是人们关注的环境问题之一.随着气候变化对全球生态环境的影响日益增大,全球碳循环研究已经成为各国科学家研究的热点之一.模拟大气CO2浓度升高试验技术先后经历了人工气候室、开顶式气室、FACE技术(Free Air carbon dioxjde eariclament)阶段,FACE技术因其无限接近自然条件而成为研究大气CO2浓度增加对整个生态系统影响的最理想试验平台.土壤呼吸是陆地生态系统碳循环的重要环节,农田生态系统是陆地生态系统的重要组成.研究农田生态系统的土壤呼吸对大气CO2浓度增加的响应是预测和评价农田系统乃至整个陆地生态系统土壤碳周转和碳收支的重要前提与基础.文章根据现有研究成果.阐述了模拟大气CO2浓度升高的试验技术,比较了农田土壤呼吸的测定方法,总结了以FACE研究成果为主的高CO2浓度条件下农田土壤呼吸、不同地下来源贡献及环境因子影响,提出了进一步研究的方向,以期为全球气候变化背景下的农田土壤呼吸和碳固定及全球碳循环研究提供帮助.  相似文献   
89.
以漂珠(FP)为载体,采用溶胶-凝胶-浸渍法制备了漂浮负载型CdS/TiO2/FP复合膜光催化剂,通过SEM、XRD对其结构进行了表征.以甘草膦农药的光催化降解为模型反应,使用不同光源研究了CdS/TiO2/FP的光催化性能,探讨了影响催化剂活性的因素及采用太阳光做光源处理草甘膦的可行性.结果表明,经4层镀膜500℃热处理的20%(w/w)CdS/TiO2/FP光催化剂具有良好的光催化性能,最佳降解条件为:催化剂加入量3 g/L,初始pH 7~9,Fe2 浓度为2.0×10-3 mol/L.通气量200 mL/min.在最佳条件下,对135 mg/L草甘膦溶液降解率可以分别达到96.3%(125 W高压汞灯,60 min)和82.4%(太阳光,180 min).  相似文献   
90.
随着对保护生物多样性与消除城市化过程不利影响的日益重视,城市森林结构功能和发展变化已经引起广泛关注。本文基于对深圳特区城市森林详细大量的样方调查,对城市森林植物科属种的成分和地理分布进行了研究。结果表明特区共有植物106科289属445种;其中大戟科、棕榈科、桑科、樟科、桃金娘科、蝶形花科、茜草科、山茶科、禾本科、含羞草科和木兰科11科的属种数占多数,共占101属182种,占总属数的34.95%和总种数的40.9%;在289属中,种数最多的是榕属(18种),其次是冬青属(9种),木槿属(6种),蒲桃属(6种)和润楠属(6种),共占总属数的1.73%,总种数的10.11%。特区种子植物可戈Ⅱ分为13个分布区类型和14个变型。深圳特区城市森林中的热带成分共有220属,357种,分别占特区植物区系地理成分的80%和83.2%,可以看出,特区较发达的经济水平和快速城市化过程并没有改变其强烈的热带性质。城市森林作为城市生态系统中具有自净功能的重要组分受到了城市化的强烈干扰,不仅表现在景观水平上的生境破碎化,更重要的是在小尺度的物种组成结构中有明显反映,为生物多样性保护和城市森林后期更新与维护带来问题。  相似文献   
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