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131.
132.
环境规划指标体系是环境规划的核心内容,具有重要意义.环境规划能否切实发挥重要功能,与其规划实施评估有着密不可分的关系.环境规划评估指标体系的建立有利于系统有效地分析和评估环境规划实施效果和问题.通过分析定性评估、定量评估、层次分析法、逻辑框架法等评估方法,并实证分析环境规划评估指标体系的建立,对比分析发现,逻辑框架法可有效地分析环境规划实施过程中存在的问题,从而从总体上构建评估指标体系,可为环境规划的实施评估提供有效的参考. 相似文献
133.
巢湖周边表土中有机质、全氮和全磷空间分布及其相关性 总被引:3,自引:1,他引:2
测定了巢湖周边3 528 km2范围内60个混合土样中的有机质(organic matter,OM)、全氮(total nitrogen,TN)和全磷(total phosphorus,TP)含量,通过GS 7.0+地统计学分析软件、Surfer 8.0及Mapinfo 8.5软件研究了这3种营养盐的空间分布,并使用SPSS 17.0软件对各指标间的相关性进行了分析.结果表明:①巢湖周边表土中ω(OM)、ω(TN)和ω(TP)平均值依次为19 500、1 027和483 mg.kg-1,东巢湖表土中ω(OM)和ω(TN)均值高于西巢湖,而磷矿的存在导致了ω(TP)均值西高东低;②位于巢湖西南的杭埠-丰乐河和白石天河周边表土中(TP)本底值较高,且水土流失十分严重,巢湖面源污染管理必须高度重视该两河的TP控制;③在线性模型下,巢湖周边表土中ω(OM)、ω(TN)和ω(TP)的块金值/基台值依次为0.015、0.202和0.128.巢湖周边表土中ω(OM)、ω(TN)和ω(TP)具有极强的空间自相关性,三者Pearson检验为两两显著相关,巢湖周边表土中ω(TN)和ω(TP)可由ω(OM)通过文中所得的公式估算,精度能满足日常管理需要. 相似文献
134.
通过室内土柱淋溶试验,对2种磺胺类抗生素——磺胺嘧啶和磺胺甲基异噁唑在土壤中的淋溶行为,及其受到淋溶流速、淋溶浓度和不同剖面土壤理化性质的影响进行了研究.结果表明,随着剖面土层深度增加磺胺类抗生素的淋出速率变快且在土柱中的残留量减少,磺胺甲基异噁唑在0~20 cm土层土柱中的残留含量是其在40~60 cm土层土柱中的2倍.淋溶流速越快,淋出液中磺胺类抗生素浓度越大且在土柱中的残留含量越低.用浓度为500μg·L-1淋溶液以2 mL·min-1的速度淋溶时,淋出液中磺胺类抗生素的浓度接近500μg·L-1,而以1 mL·min-1和1.5 mL·min-1速度淋溶时,其浓度仅为100~200μg·L-1.随淋溶液浓度升高,磺胺类抗生素淋溶性增强,其在土柱中的残留含量也明显增高.用浓度为250μg·L-1和125μg·L-1淋溶液以2 mL·min-1进行淋溶时,磺胺甲基异噁唑在淋出液中仅有少量检出,而用浓度为500μg·L-1淋溶液淋洗时,其在淋出液中的浓度接近500μg·L-1,其在土柱中的残留含量是低浓度淋溶液淋溶时的2~3倍.本研究结论可为管理含磺胺类抗生素的水源灌溉方式提供理论依据. 相似文献
135.
采用铁炭微电解-Fenton联合工艺处理制药废水生化出水,探讨了初始pH对微电解过程COD降解速率、出水中Fe2+和Fe3+变化规律以及后续Fenton氧化效果的影响,为优化联合工艺提出了微电解反应pH过程控制的理论。采用pH过程控制时,微电解对COD降解速率大大提高,降解过程基本符合零级反应动力学,同时可大大提高Fe2+和Fe3+浓度及总铁析出量。试验结果表明:当初始pH=2.5,以3.0L/h连续性投加稀硫酸100 min,曝气微电解反应2 h,出水再投加1.0mL/L的H2O2进行Fenton氧化2 h,出水COD总去除率可达85.6%;采用pH过程控制可将微电解出水ρ(Fe2+)浓度从48.6 mg/L提高至149 mg/L,COD降解速率从10.9 mg/(L·h)提高至23.8 mg/(L·h)。 相似文献
136.
对湿法脱硫石膏脱水系统进行研究,分析了几种常见的石膏脱水系统的设计方案,提出了石膏脱水系统的优化设计方案,并与变频泵配合使用,从而达到优化系统提高整个FGD经济性的目的。 相似文献
137.
We have created a new method of ZnS nanospheres synthesis. By interface-mediated precipitation method (IMPM), monodisperse ZnS nanoparticles was synthesized on the particle surface of sulfate-reducing bacterium nutritious agar culture. Sulfate-reducing bacterium (SRB) was used as a sulfide producer because of its dissimilatory sulfate reduction capability, meanwhile produced a variety of amino acids acting as templates for nanomaterials synthesis. Then zinc acetate was dispersed into nutritious agar plate. Subsequently agar plate was broken into particles bearing much external surface, which successfully mediated the synthesis of monodisperse ZnS nanoparticles. The morphology of monodisperse ZnS nanospheres and SRB were examined by scanning electron microscopy (SEM), and the microstructure was investigated by X-ray diffraction (XRD). The thermostability of ZnS nanoparticles was determined by thermo gravimetric-differential thermo gravimetric (TG-DTG). The maximum absorption wavelengh was analysed with an ultraviolet-visible spectrophotometer within a range of 199–700 nm. As a result, monodisperse ZnS nanoparticles were successfully synthesized, with an average diameter of 80 nm. Maximum absorption wavelengh was 228 nm, and heat decomposed temperature of monodisperse ZnS nanoparticles was 596°C. 相似文献
138.
Zhanguo Liang Jun Mu Ying Mu Jiaming Shi Wenjing Hao Xuewei Dong Hongquan Yu 《环境科学学报(英文版)》2013,(S1):S106-S109
We have created a new method of ZnS nanospheres synthesis. By interface-mediated precipitation method (IMPM), monodisperse ZnS nanoparticles was synthesized on the particle surface of sulfate-reducing bacterium nutritious agar culture. Sulfate-reducing bacterium (SRB) was used as a sulfide producer because of its dissimilatory sulfate reduction capability, meanwhile produced a variety of amino acids acting as templates for nanomaterials synthesis. Then zinc acetate was dispersed into nutritious agar plate. Subsequently agar plate was broken into particles bearing much external surface, which successfully mediated the synthesis of monodisperse ZnS nanoparticles. The morphology of monodisperse ZnS nanospheres and SRB were examined by scanning electron microscopy (SEM), and the microstructure was investigated by X-ray diffraction (XRD). The thermostability of ZnS nanoparticles was determined by thermo gravimetric-differential thermo gravimetric (TG-DTG). The maximum absorption wavelengh was analysed with an ultravioletvisible spectrophotometer within a range of 199-700 nm. As a result, monodisperse ZnS nanoparticles were successfully synthesized, with an average diameter of 80 nm. Maximum absorption wavelengh was 228 nm, and heat decomposed temperature of monodisperse ZnS nanoparticles was 596℃. 相似文献
139.
Falin Chen Hua Zheng Kai Zhang Zhiyun Ouyang Huailin Li Bing Wu Qian Shi 《环境科学学报(英文版)》2013,25(10):2102-2111
Many studies have shown soil degradation after the conversion of native forests to exotic Eucalyptus plantations. However, few studies have investigated the long-term impacts of short-rotation forestry practices on soil microorganisms. The impacts of Eucalyptus successive rotations on soil microbial communities were evaluated by comparing phospholipid fatty acid (PLFA) abundances, compositions, and enzyme activities of native Pinus massoniana plantations and adjacent 1st, 2nd, 3rd, 4th generation Eucalyptus plantations. The conversion from P. massoniana to Eucalyptus plantations significantly decreased soil microbial community size and enzyme activities, and increased microbial physiological stress. However, the PLFA abundances formed "U" shaped quadratic functions with Eucalyptus plantation age. Alternatively, physiological stress biomarkers, the ratios of monounsaturated to saturated fatty acid and Gram+ to Gram- bacteria, formed "∩" shaped quadratic functions, and the ratio of cy17:0 to 16: 1ω7c decreased with plantation age. The activities of phenol oxidase, peroxidase, and acid phosphatase increased with Eucalyptus plantation age, while the cellobiobydrolase activity formed "U" shaped quadratic functions. Soil N:P, alkaline hydrolytic nitrogen, soil organic carbon, and understory cover largely explained the variation in PLFA profiles while soil N:P, alkaline hydrolytic nitrogen, and understory cover explained most of the variability in enzyme activity. In conclusion, soil microbial structure and function under Eucalyptus plantations were strongly impacted by plantation age. Most of the changes could be explained by altered soil resource availability and understory cover associated with successive planting of Eucalyptus. Our results highlight the importance of plantation age for assessing the impacts of plantation conversion as well as the importance of reducing disturbance for plantation management. 相似文献
140.