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651.
以江苏省里下河腹部地区38个典型湖泊湖荡为研究对象,分析了春季浮游植物群落结构特征及其与环境因子的关系,运用了基于理化指标的综合营养状态指数(TLI)评价方法和基于浮游植物群落结构分析的生物指标(Shannon-Wiener多样性指数H′和Pielou均匀度指数J)评价方法,评价了湖泊湖荡营养状态.结果显示共采集到里下河腹部地区湖泊湖荡浮游植物7门50属89种,主要隶属于绿藻门(Chlorophyta)和硅藻门(Bacillariophyta);浮游植物细胞丰度介于2.3×10~5~3.7×10~7 cells·L~(-1),生物量介于0.05~15.02 mg·L~(-1),绿藻门与隐藻门(Cryptophyta)在细胞丰度上占优势,隐藻门在生物量上占优势;梅尼小环藻(Cyclotella meneghiniana)、啮蚀隐藻(Cryptomonas erosa)、尖尾蓝隐藻(Chroomonas acuta)、四尾栅藻(Scenedesmus guadricauda)为主要优势种;生物指标评价方法的结果显示湖泊湖荡总体为轻度富营养,与TLI评价方法的结果有较好一致性,表明两类评价方法在里下河腹部地区具有较强内在关联性. 相似文献
652.
传统方法使用固定的波长吸收指数来估算地壳元素或棕碳吸光,但该方法只能处理仅存在两种组分的情形(黑碳/棕碳,或黑碳/地壳元素)的吸光贡献,存在较大不确定性.为此,本文提出一种新的方法,利用武汉在线观测数据(2021年2、3、8、9月),采用铁作为地壳元素的示踪物,利用最小相关系数法(MRS)得出地壳元素的吸光贡献,在扣除地壳元素吸光之后,再得到黑碳吸光增强系数(Eabs).结果显示观测期间370nm波段地壳元素吸光贡献均值为12.3%,月均值范围5.7%~15.5%,且波长吸收指数与铁的浓度正相关,表明地壳元素吸光贡献不可忽视.地壳元素吸光贡献呈现出显著的季节特征,呈现出冬季低,春季高的特点.地壳元素吸光的分离前后计算的Eabs存在一定的差异,受到了黑碳和铁的相关性的影响.观测期间扣除地壳元素吸光后,Eabs均值为1.43±0.53,在季节性上呈现春夏高,秋冬低的特性,春季较高Eabs值与春季黑碳较高的老化程度有关.Eabs对无机盐和有机物的含量存在正的依赖关系,证明了这些包裹物质对吸光增强的影响. 相似文献
653.
Jingjing Shao Yan Cheng Chunping Yang Guangming Zeng Wencan Liu Panpan Jiao Huijun He 《环境科学学报(英文版)》2016,28(9):120-129
Naphthalene-2-ol is a typical biologically recalcitrant pollutant in dye wastewater.Solvent extraction of naphthalene-2-ol from aqueous solutions using mixed solvents was investigated.Various extractants and diluents were evaluated,and the effects of volume ratio of extractant to diluent,initial p H,initial concentration of naphthalene-2-ol in aqueous solution,extraction time,temperature,volume ratio of organic phase to aqueous phase(O/A),stirring rate and extraction stages,on extraction efficiency were examined separately.Regeneration and reuse of the spent extractant were also investigated.Results showed that tributyl phosphate(TBP) achieved 98% extraction efficiency for naphthalene-2-ol in a single stage extraction,the highest among the 12 extractants evaluated.Extraction efficiency was optimized when cyclohexane and n-octane were used as diluents.The solvent combination of 20% TBP,20% n-octanol and 60% cyclohexane(V/V) obtained the maximum extraction efficiency for naphthalene-2-ol,99.3%,within 20 min using three cross-current extraction stages under the following extraction conditions:O/A ratio of 1:1,initial p H of 3,25°C and stirring rate of 150 r/min.Recovery of mixed solvents was achieved by using 15%(W/W) Na OH solution at an O:A ratio of 1:1 and a contact time of 15 min.The mixed solvents achieved an extraction capacity for naphthalene-2-ol stably higher than90% during five cycles after regeneration. 相似文献
654.
EM菌强化SBR脱氮除磷的试验研究 总被引:11,自引:0,他引:11
重点讨论了有效微生物群(EM)在SBR反应器中对生活污水的TP,NH3-N和TN和TN的去除效昆,结果表明,当EM投加量(VEM/V污水)为1/1000-1/1000时,能显著提高SBR工艺对TP,NH3-N和TN的去除率和降解速度,具有节能降耗的优点,当EM投加量(VEM/V污水)在1/1000-5/1000范围内,TN的去除率随EM量的增加而逐渐提高。 相似文献
655.
我国经济已经从高速增长转向中高速增长的新常态阶段,经济发展方式从规模速度型粗放增长转向质量效率型集约增长,产业结构从劳动密集型向资金密集型和知识密集型转换,经济发展动力从要素驱动、投资驱动转向创新驱动。经济新常态下,环境保护将迎来难得的历史机遇,同时也面临严峻的挑战。为了深入理解和准确把握经济新常态下我国"环境态"的发展特征,本文基于中长期环境经济预测模型定量测算了2020年我国社会经济、能源和水资源以及主要污染物排放趋势和特征。结果表明,"十三五"期间,我国能源和水资源消耗总量增长将趋缓,新增消耗量进入涨幅收窄期;产业转型升级加速将从源头上减轻新增污染减排的压力,主要大气和水污染物排放将进入高位平台期,排放强度将呈现高位回落。 相似文献
656.
657.
以海藻酸铝为主要包埋材料、纳米Al_2O_3为添加剂,包埋固定红平红球菌,制得纳米Al_2O_3固定化红平红球菌菌球,并将其用于苯酚的降解。表征结果显示:菌球内部包含丰富的菌丝体;内部孔径以中孔居多。实验结果表明:菌球的最优制备方案为0.05 g纳米Al_2O_3加入3 m L海藻酸钠溶液中、海藻酸钠质量分数6%、微生物包埋量0.5 m L/m L(以海藻酸钠溶液计)、Al_2(SO_4)_3质量分数3%;在初始苯酚质量浓度为400 mg/L、反应时间为24h、菌球加入量为8 g/L、反应p H为8.0、反应温度为30℃的条件下,菌球首次使用时可使苯酚完全降解,使用5次后的苯酚降解率仍达93%以上,具有良好的循环使用性。 相似文献
658.
Black carbon (BC) is a promising sediment amendment, as proven by its considerable adsorption capacity for hydrophobic organic pollutants and accessibility, but its reliability when used for the removal of pollutants in natural sediments still needs to be evaluated. For example, the ageing process, resulting in changing of surface physicochemical properties of BC, will decrease the adsorption capacity and performance of BC when applied to sediment pollution control. In this study, how the ageing process and BC proportion affect the adsorption capacity of BC-sediment systems was modelled and quantitatively investigated to predict their adsorption capacity under different ageing times and BC additions. The results showed that the ageing process decreased the adsorption capacity of both BC-sediment systems, due to the blockage of the non-linear adsorption sites of BC. The adsorption capacity of rice straw black carbon (RC)-sediment systems was higher than that of fly ash black carbon (FC)-sediment systems, indicating that RC is more efficient than FC for nonylphenol (NP) pollution control in sediment. The newly established model for the prediction of adsorption capacity fits the experimental data appropriately and yields acceptable predictions, especially when based on parameters from the Freundlich model. However, to fully reflect the influence of the ageing process on BC-sediment systems and make more precise predictions, it is recommended that future work considering more factors and conditions, such as modelling of the correlation between the adsorption capacity and the pore volume or specific surface area of BC, be applied to build an accurate and sound model. 相似文献
659.
CMK-3 and C-FDU-15 samples were synthesized using hard-templating and evaporationinduced self-assembly(EISA) methods,respectively.The pore structures of CMK-3 and CFDU-15 as well as commercial activated carbon were characterized by means of X-ray diffraction,field emission scanning electron microscopy,transmission electron microscopy,and N_2 adsorption–desorption.Adsorption of NO was investigated by means of thermogravimetric analysis,temperature-programmed desorption of NO + O_2,and in situ diffuse reflectance Fourier transform infrared spectroscopy.The results show that the CMK-3 and C-FDU-15 materials possessed ordered and uniform structures.The coadsorption capacity of NO and O_2 decreased in the sequence CMK-3(88.6 mg/g) C-FDU-15(71.7 mg/g) AC(25.3 mg/g).There were two main adsorption species on CMK-3 and CFDU-15:nitrite and nitrate.Nitrite is converted to nitrate easily.However,the adsorption species were more complex on AC,with nitrite being the main species.Moreover,CMK-3 and C-FDU-15 exhibit excellent regeneration efficiency compared with AC.The excellent NO adsorption performance of CMK-3 and C-FDU-15 was associated with their ordered mesoporous structures and high surface areas.The research provides more options for NO adsorption in the future. 相似文献
660.