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961.
Polyvinyl alcohol is a refractory compound widely used in industry. Here we report supercritical water oxidation of polyvinyl alcohol solution and desizing wastewater with and without sodium hydroxide addition. However, it is difficult to implement complete degradation of organics even though polyvinyl alcohol can readily crack under supercritical water treatment. Sodium hydroxide had a significant catalytic effect during the supercritical water oxidation of polyvinyl alcohol. It appears that the OH ion participated in the C-C bond cleavage of polyvinyl alcohol molecules, the CO2-capture reaction and the neutralization of intermediate organic acids, promoting the overall reactions moving in the forward direction. Acetaldehyde was a typical intermediate product during reaction. For supercritical water oxidation of desizing wastewater, a high destruction rate (98.25%) based on total organic carbon was achieved. In addition, cases where initial wastewater was alkaline were favorable for supercritical water oxidation treatment, but salt precipitation and blockage issues arising during the process need to be taken into account seriously.  相似文献   
962.
The photocatalytic degradation kinetics of carbofuran was optimized by central composite design based on response surface methodology for the first time. Three variables, TiO2 concentration, initial pH value and the concentration of carbofuran, were selected to determine the dependence of degradation efficiencies on independent variables. Response surface methodology modeling results indicated that the degradation efficiency of carbofuran was highly affected by the initial pH value and the concentration of carbofuran. Then nine degradation intermediates were detected by HPLC/MS/MS. The Frontier Electron Densities of carbofuran were calculated to predict the active sites on carbofuran attacked by hydroxyl radicals and photoholes. Point charges were used to elucidate the chemisorption pattern on TiO2 catalysts during the photocatalytic process. By combining the experimental results and calculation data, the photocatalytic degradation pathways of carbofuran were proposed, including the addition of hydroxyl radicals and the cleavage of the carbamate side chain.  相似文献   
963.
Dissolved organic matter (DOM) represents one of the most mobile and reactive organic compounds in ecosystem and plays an important role in the fate and transport of soil organic pollutants, nutrient cycling and more importantly global climate change. Electrochemical methods were first employed to evaluate DOM redox properties, and spectroscopic approaches were utilized to obtain information concerning its composition and structure. DOM was extracted from a forest soil profile with five horizons. Differential pulse voltammetry indicated that there were more redox-active moieties in the DOM from upper horizons than in that from lower horizons. Cyclic voltammetry further showed that these moieties were reversible in electron transfer. Chronoamperometry was employed to quantify the electron transfer capacity of DOM, including electron acceptor capacity and electron donor capacity, both of which decreased sharply with increasing depth. FT-IR, UV-Vis and fluorescence spectra results suggested that DOM from the upper horizons was enriched with aromatic and humic structures while that from the lower horizons was rich in aliphatic carbon, which supported the findings obtained by electrochemical approaches. Electrochemical approaches combined with spectroscopic methods were applied to evaluate the characteristics of DOM extracted along a forest soil profile. The electrochemical properties of DOM, which can be rapidly and simply obtained, provide insight into the migration and transformation of DOM along a soil profile and will aid in better understanding of the biogeochemical role of DOM in natural environments.  相似文献   
964.
Yanghe Reservoir is an important source of drinking water for Qinhuangdao City,North China;however,in recent decades this water source has been eutrophic with recurrent summer cyanobacterial blooms.The trophic grade of the system in summer was mesotrophiceutrophic in 1990 and became hypertrophic in 2011.The nutrient availability is extremely high during the entire year,and the water temperature should be the primary driver of the summer blooms.In May-October of 2010 and 2011,abrupt variations were observed in the Secchi depth(SD) and chlorophyll a(Chl-a),and both the correlated analysis of Chl-a-SD and trophic status indices(TSI) deviation(TSI Chl-a-TSI SD) showed that algal cell density dominated light attenuation.During the algal bloom outbreak,the microcystin concentration was found to vary between 0.35-2.12 μg/L in 2010 and 0.11-1.86 μg/L in 2011.The maximum microcystin content was more than two times the safety limit required for drinking water.Inflow discharges were most concentrated in the summer,with periods of lower residence time and the largest water level fluctuation over the entire year.When a high availability of nutrients promoted a high Chl-a concentration in the whole system,it appeared that the instability caused by the decrease in residence time could not produce effective changes in the cyanobacterial abundance.The results indicated that nutrient enrichment in the aquatic systems of Yanghe Reservoir is the most serious problem and that the status would not been modified effectively by increasing hydrological fluctuations(e.g.,decreasing the residence time).Therefore,decreasing the nutrient concentrations is the only route to improve the water quality of this reservoir.  相似文献   
965.
基于熵权的长沙市城市生态安全综合评估与预测   总被引:3,自引:0,他引:3  
城市是一个社会-经济-自然复合生态系统,区域资源与城市自然系统是城市社会经济发展的重要基础和载体。城市生态安全评估是对未来的安全状态进行预测,以实现城市的可持续发展。文章以长沙市为例,在城市生态安全主要影响因素识别的基础上,应用PSR模型、熵权法等建立城市生态安全评估指标及计算方法,研究了长沙市近11年来生态安全的变化趋势。研究结果表明,1999-2009年间长沙生态安全的趋势由较不安全向较安全状态发展,生态安全值从25.4提高到60.7,人文环境响应是长沙生态安全改善的主导因素,资源环境压力,水土资源保持是限制长沙市生态安全的主要因素。  相似文献   
966.
化学铁盐辅助除磷对生物除磷的影响研究   总被引:1,自引:0,他引:1  
化学辅助除磷有助于污水厂实现磷达标,但其对生物系统存在潜在的影响。针对除磷药剂对生物除磷过程的影响展开研究,选用硫酸亚铁进行化学辅助除磷。药剂形成的化学污泥干扰生物除磷过程且成分复杂,故以磷酸铁、氢氧化铁模拟化学污泥,由钾离子、K/P摩尔比计算出同步除磷中的生物除磷,来探讨化学污泥对聚磷菌释磷/吸磷过程的影响。结果表明,连续投加硫酸亚铁使聚磷菌的释磷量、吸磷量降低;系统中磷酸铁含量0.075 mmol/L时聚磷菌的释磷和吸磷能力提高了约25%,磷酸铁含量0.15 mmol/L时对聚磷菌吸磷有抑制作用;氢氧化铁对聚磷菌释磷、好氧初期吸磷均有抑制作用。生物污泥与化学污泥存在交互作用。  相似文献   
967.
以重铬酸钾为供试物,用固体平板法和还原实验对铬(Ⅵ)土著还原菌进行筛选,用载片培养法、革兰氏染色法、鞭毛染色法、芽孢染色法对还原菌做初步的鉴定,共筛选出16株铬(Ⅵ)土著还原菌,并挑选出还原率相对较高的Z2(35.2%)、Z3(45.2%)、Z4(38.6%)、X8(30.4%)、X10(29.4%)作为铬(Ⅵ)的优势还原菌株。经初步鉴定,土著真菌Z2为黑曲霉(Aspergillusniger),Z3、Z4为镰刀菌属(Fusariumsp.),土著细菌X8、X10为芽孢杆菌(Bacillussp.)。实验的方法和成果将为铬(Ⅵ)污染土壤微生物治理技术的推广应用提供技术支持。  相似文献   
968.
以修正A值法估算渭南市大气环境容量,为渭南市大气总量控制提供科学依据。以箱模型为基本模型,利用陕西省气象台整编的1961-2008年气象资料,推导出宏观总量控制修正A值法,除韩城市、潼关县、浦城县、白水县和富平县A值大于国标A值,其余渭南各市县A值小于国标A值。在新空气质量标准标准的要求下,渭南市SO2、NOx、PM10环境容量分别为19.55×104t/a、10.50×104t/a和18.97×104t/a。为了保证各分区的环境质量,中架点源排放量与低源排放量之和应小于各分区容量,韩城市应注意改善中、低源NO x排放,其它区县NO x剩余容量有限,在严格的新空气质量标准的要求下,应加强对各区县中架点源与低架源的NO x控制,重点控制水泥行业、炼焦业和机动车的NO x排放。从整个城市考虑,从整个渭南市污染源排放来看,SO2总体排放量超过环境容量12.917×104t/a,NO x总体排放量超过环境容量8.016×104t/a,为了减少其对周边城市的影响,应提高火电厂脱硫效率,重点加快电厂脱硝设施建设。  相似文献   
969.
环境风险评价是目前我国环境保护工作发展的必然结果,是进行环境管理的重要依据。文章对环境风险评价的概念及分类、国内外研究进展、程序内容及技术方法进行了综述。文章根据《建设项目环境风险评价技术导则》要求,结合湖北某制药建设项目,从风险识别、风险预测及评价、风险事故防范措施等方面论述了项目环境风险评价的基本概念及一般程序。分析了目前环境风险评价存在的问题,并据此初步提出今后环境风险评价的发展方向和建议。  相似文献   
970.
采用差速离心法和逐步提取法,分析Cd超积累植物小飞扬草根、茎、叶中Cd的亚细胞分布和化学形态。培养液中Cd浓度5mg/L和10mg/L条件下,在小飞扬草根、茎、叶中,细胞壁和细胞膜是Cd主要的结合场所,含量分别占总量的47.1%~49.0%、39.7%~41.4%、42.9%~56.2%,其次是胞液组分,含量分别占37.5%~41.4%、28.2%~40.7%、35.2%~46.8%,细胞器组分中Cd含量较少。Cd在小飞扬草根、茎、叶中均以氯化钠提取态为主,含量分别占70.5%~84.8%、72.4%~83.0%、50.0%~74.8%。根部各提取态含量依次为CNaCl>CHAC>CEtOH>CHCl>CW>CR,茎、叶中各提取态含量依次为CNaCl>CHCl>CHAC>CEtOH>CW>CR。在小飞扬草中,Cd与细胞壁和细胞膜中的果胶酸和蛋白质等物质结合固定,而进入细胞的Cd大部分与有机酸络合而隔离于液泡内,这可能是小飞扬草忍耐并超积累Cd的机制。  相似文献   
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