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151.
152.
水溶性有机物电子转移能力与荧光峰强度的关系研究 总被引:2,自引:1,他引:1
以不同来源的水溶性有机物(DOM)为供试材料,采用电化学方法和荧光光谱法研究了DOM电子转移能力及其与荧光峰强度的关系.采用库仑安培法测定DOM电子转移能力,其中测得的电子接受能力为635.6~1 049.3μmol.(g.C)-1,电子供给能力为27.3~42.3μmol.(g.C)-1.利用循环伏安法研究DOM电化学活性,发现其氧化还原电位在-731~-996 mV(vs.Ag/AgCl)之间.经过电位跃阶法三次氧化还原循环后电子转移能力仍可维持在232.1~897.2μmol.(g.C)-1之间,电子循环率为36.7%~78.2%,说明DOM具有重复利用、反复转移电子的特性.采用荧光激发发射光谱法(EEMS)测定DOM的类富里酸荧光峰强度并比较其与DOM电子转移能力的关系,发现DOM的类富里酸荧光峰强度与DOM的电子循环率具有显著相关(r2=0.92).实验结果为理解DOM在元素循环、污染物降解以及生物地球化学循环中的作用提供科学依据. 相似文献
153.
营养盐水平对念珠藻胞外有机物产生的影响 总被引:2,自引:1,他引:1
以我国湖泊典型固氮蓝藻发状念珠藻(Nostoc flagelliforme)为研究对象,考察了氮、磷营养盐对发状念珠藻生长特性及其胞外有机物产生的影响.采用藻细胞浓度计数法表征发状念珠藻生长特性;分别采用溶解性有机碳(DOC)、三维荧光光谱(EEM)和紫外-可见光谱法,从总量和主要物质方面分析了发状念珠藻胞外有机物的产生规律.结果表明,在不同氮、磷营养水平下,发状念珠藻的4个关键生长时期基本相同,氮是控制发状念珠藻生长的关键营养控制要素;氮营养元素浓度的增高,有利于发状念珠藻产生胞外有机物,其产生量逐渐增大,而磷营养元素浓度的增高对胞外有机物产生量贡献较小,氮营养盐是发状念珠藻产生胞外有机物的关键限制因子;通过EEM谱图分析,发状念珠藻胞外有机物主要以类氨基酸类物质和类富里酸物质为主.以磷为控制营养盐时,类富里酸是主要的胞外有机物之一,以氮为控制营养盐时,类富里酸产生量极低;作为主要的胞外有机物,蛋白质和碳水化合物的产生规律显著不同,其中蛋白质含量显著高于碳水化合物含量. 相似文献
154.
粒级、pH和有机质对汞在松花江沉积物表面吸附-解吸的影响 总被引:8,自引:1,他引:7
为进一步揭示汞在松花江沉积物表面的环境行为,通过模拟实验,研究粒级、pH和溶解性有机质(DOM)对汞在松花江沉积物表面吸附-解吸量的影响.结果表明,不同粒级沉积物的吸附能力差别较大,本实验条件下,沉积物粒级越小,其吸附能力越强.在各种浓度的实验设计组中均有:pH由3.5升高至4.5时,吸附量增加,当pH4.5时,随pH的继续升高吸附量开始降低;沉积物中汞的解吸量随pH的增加呈先下降后上升的趋势变化,各体系的最小值均出现在pH5.柠檬酸对沉积物吸附汞的影响以抑制作用为主,其抑制作用强度与吸附体系中汞浓度有关;柠檬酸对解吸量的影响也比较明显,随着柠檬酸浓度的增加,对沉积物中汞解吸作用的影响表现为促进-抑制-稳定的变化趋势.因此,以上因素对汞在沉积物表面吸附-解吸的影响较大,在进行河流汞污染控制及突发污染事件处理时,有必要充分考虑以上因素的影响. 相似文献
155.
污水污泥间壁热干燥实验研究 总被引:5,自引:1,他引:4
研究了污泥间壁热干燥的工艺过程,分析了其工艺参数、冷凝水水质和产生的污染气体,探讨了有机物水解机理.结果表明,污泥含水率与停留时间呈负指数函数相关.收集到的干燥冷凝水属高浓度有机废水,其总有机碳(TOC)、挥发性有机酸(VFA)和氨氮(NH3-N)浓度均很高,pH值保持在9~9.5.干燥冷凝水中挥发性有机酸和氨氮来源于2部分:低温110 ~130℃时,主要发生蛋白质的水解,生成有机酸和氨氮;高温140~150℃时,主要发生脂肪类的水解,生成有机酸.干燥温度低于150 ℃时,污泥间壁热干燥过程无污染气体产生. 相似文献
156.
Transformations of particles, metal elements and natural organic matter in different water treatment processes 总被引:1,自引:0,他引:1
YAN Ming-quan WANG Dong-sheng SHI Bao-you WEI Qun-shan QU Jiu-hui TANG Hong-xiao 《环境科学学报(英文版)》2007,19(3):271-277
Characterizing natural organic matter (NOM), particles and elements in different water treatment processes can give a useful information to optimize water treatment operations. In this article, transformations of particles, metal elements and NOM in a pilot-scale water treatment plant were investigated by laser light granularity system, particle counter, glass-fiber membrane filtration, inductively coupled plasma-optical emission spectroscopy, ultra filtration and resin absorbents fractionation. The results showed that particles, NOM and trihalomethane formation precursors were removed synergistically by sequential treatment of different processes. Preozonation markedly changed the polarity and molecular weight of NOM, and it could be conducive to the following coagulation process through destabilizing particles and colloids; mid-ozonation enhanced the subsequent granular activated carbon (GAC) filtration process by decreasing molecular weight of organic matters. Coagulation-flotation and GAC were more efficient in removing fixed suspended solids and larger particles; while sand-filtration was more efficient in removing volatile suspended solids and smaller particles. Flotation performed better than sedimentation in terms of particle and NOM removal. The type of coagulant could greatly affect the performance of coagulation-flotation. Pre-hydrolyzed composite coagulant (HPAC) was superior to FeCl3 concerning the removals of hydrophobic dissolved organic carbon and volatile suspended solids. The leakages of flocs from sand-filtration and microorganisms from GAC should be mitigated to ensure the reliability of the whole treatment system. 相似文献
157.
Overwhelming evidence reveals that concentrations of dissolved organic carbon (DOC) have increased in streams which brings negative environmental impacts. DOC in stream flow is mainly originated from soil-water solutions of watershed. Wetlands prove to be the most sensitive areas as an important DOC reserve between terrestrial and fluvial biogeosystems. This reported study was focused on the distribution characteristics and the controlling factors of DOC in soil-water solutions of annular wetland, i.e., a dishing wetland and a forest wetland together, in the Sanjiang Plain, Northeast China. The results indicate that DOC concentrations in soilwater solutions decreased and then increased with increasing soil depth in the annular wetland. In the upper soil layers of 0-10 cm and 10-20 cm, DOC concentrations in soil-water solutions linearly increased from edge to center of the annular wetland (R^2 = 0.3122 and R^2 = 0.443). The distribution variations were intimately linked to DOC production and utilization and DOC transport processes in annular wetland soil-water solutions. The concentrations of total organic carbon (TOC), total carbon (TC) and Fe(II), DOC mobility and continuous vertical and lateral flow affectext the distribution variations of DOC in soil-water solutions. The correlation coefficients between DOC concentrations and TOC, TC and Fe(II) were 0.974, 0.813 and 0.753 respectively. These distribution characteristics suggested a systematic response of the distribution variations of DOC in annular wetland soil-water solutions to the geometry of closed depressions on a scale of small catchments. However, the DOC in soil pore water of the annular wetland may be the potential source of DOC to stream flow on watershed scale. These observations also implied the fragmentation of wetland landscape could bring the spatial-temporal variations of DOC distribution and exports, which would bring negative environmental impacts in watersheds of the Sanjiang Plain. 相似文献
158.
试验考察了东阿县污水处理厂一期A2/O工艺厌氧池去除有机污染物效能,当进水ρ(COD)为548.3 mg/L时,厌氧池平均去除率达78.7%。同时探讨了几种常见数学模型模拟厌氧池去除有机物规律情况,根据实际工程监测数据确定有机底物降解动力学常数,得出Grau模型、Stover-kincannon模型和改进的Monod模型较适合模拟厌氧池去除有机物的规律,并对模型进行了检验。 相似文献
159.
Seepage from Hg mine wastes and calcines contains high concentrations of mercury (Hg). Hg pollution is a major environmental
problem in areas with abandoned mercury mines and retorting units. This study evaluates factors, especially the hydrological and
sedimentary variables, governing temporal and spatial variation in levels and state of mercury in streams impacted by Hg contaminated
runo . Samples were taken during di erent flow regimes in theWanshan Hg mining area in Guizhou Province, China. In its headwaters
the sampled streams/rivers pass by several mine wastes and calcines with high concentration of Hg. Seepage causes serious Hg
contamination to the downstream area. Concentrations of Hg in water samples showed significant seasonal variations. Periods of
higher flow showed high concentrations of total Hg (THg) in water due to more particles being re-suspended and transported. The
concentrations of major anions (e.g., Cl??, F??, NO3?? and SO4
2??) were lower during higher flow due to dilution. Due to both sedimentation
of particles and dilution from tributaries the concentration of THg decreased from 2100 ng/L to background levels (< 50 ng/L) within
10 km distance downstream. Sedimentation is the main reason for the fast decrease of the concentration, it accounts for 69% and 60%
for higher flow and lower flow regimes respectively in the upper part of the stream. Speciation calculation of the dissolved Hg fraction
(DHg) (using Visual MINTEQ) showed that Hg(OH)2 associated with dissolved organic matter is the main form of Hg in dissolved
phase in surface waters in Wanshan (over 95%). 相似文献
160.