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31.
近年来,中俄双方开展了对等联合监测,但由于国域差别,两个国家在一个项目上采取了不同的实验方法,常出现同一个样品中俄双方出现不同的实验结果,为避免分歧,我国在少数几个站进行了中俄双方实验方法的对比实验,现就水质中总磷的测定将两国的实验方法和实验结果进行了分析。 相似文献
32.
33.
选取滇池福保湾表层沉积物,以聚合氯化铝为钝化剂,研究了扰动强度对钝化剂抑制沉积物中磷释放的影响.结果表明,当扰动强度低于一定范围时,聚合氯化铝对沉积物中的磷有抑制作用,当转速为0,60,120r/min时,对应的水中磷浓度分别为初始值的62.5%,71.7%和83.4%;当转速达到240r/min时,沉积物会向水中释放大量磷,钝化作用完全被破坏,水中磷浓度为初始值的3.3倍.此外,在转速低于120r/min时,磷形态主要是以无机磷(DIP)为主的溶解性磷(DTP),而转速达到240r/min时,水中DTP/TP30%,DIP/DTP40%,即磷形态主要为不溶性磷,溶解性磷中以有机磷(DOP)为主. 相似文献
34.
亚硝酸盐积累对A~2O工艺生物除磷的影响 总被引:1,自引:1,他引:0
常温条件下,通过控制好氧区DO浓度为0.3~0.5 mg/L,同时增大系统内回流比以降低系统好氧实际水力停留时间(actual hydraulic retention time,AHRT),在处理低C/N比实际生活污水的A2O工艺中成功启动并维持了短程硝化反硝化.但随着系统出水亚硝酸盐含量的升高,系统对磷的去除效果逐渐恶化.当好氧区亚硝酸盐浓度19 mg/L时,系统出水磷浓度大于进水磷浓度,系统处于净释磷状态.通过对原水COD浓度、反应区温度、pH值、游离亚硝酸浓度(free nitrous acid,FNA)等分析,表明碳源不足及短程硝化引起的亚硝酸盐积累影响了聚磷菌厌氧释磷和好氧吸磷;尤其是好氧区较高的FNA浓度(HNO2-N 0.002~0.003 mg/L)对聚磷菌好氧吸磷的抑制是导致系统除磷效果恶化的直接原因.通过外投碳源提高原水COD浓度,提高了聚磷菌厌氧释磷合成PHA的能力;同时增强了系统的反硝化能力,降低好氧区亚硝酸盐浓度,从而降低FNA对聚磷菌好氧吸磷的抑制程度,系统的除磷性能可迅速恢复;系统对磷的去除率可达96%以上. 相似文献
35.
A~2/O-曝气生物滤池工艺处理低C/N比生活污水脱氮除磷 总被引:8,自引:0,他引:8
以低C/N比实际生活污水为研究对象,重点考查了A2/O-曝气生物滤池生化系统的脱氮除磷特性.同时,考虑到A2/O工艺的主要功能是除磷及反硝化,而曝气生物滤池则以硝化为目的.因此,通过缩短A2/O的泥龄,可将硝化过程从A2/O中分离出去,让曝气生物滤池完成硝化,实现硝化菌和聚磷菌的分离,并解决了硝化菌和聚磷菌泥龄之间的矛盾.试验结果表明,该生化系统可实现有机物、氮和磷的同步去除.在平均C/N比为4.2,内回流比R为250%的条件下,平均进水COD、TN、TP分别为239.9、57.3和5.1mg·L-1,平均最终出水COD、TN、TP分别为34.1、13.3和0.1mg·L-1,去除率分别为85.8%、76.9%和98.3%.曝气生物滤池对氨氮几乎保持了100%的去除率.序批试验表明,反硝化聚磷菌占聚磷菌的比例为40.5%. 相似文献
36.
在实验室序批式活性污泥法(SBR)处理系统中以普通活性污泥为接种污泥,采用厌氧-好氧的运行方式提高系统的除磷效果.同时培养颗粒污泥,并对系统中磷的变化和去向进行分析.结果表明,整个试验共运行146 d,成熟颗粒污泥平均粒径为603μm,污泥体积指数(SVI)约为30 mL.g-1,COD去除率可达90%,磷的去除率可达95%左右.颗粒污泥系统除厌氧放磷和好氧聚磷以外,还存在明显的污泥颗粒积磷现象.磷的去除途径主要为:系统排泥(出水悬浮物和专门排泥)和污泥积磷.由厌氧末期颗粒污泥的X射线衍射(XRD)分析结果可知,化学沉淀是污泥积磷的一种重要方式,大量的金属离子会与磷形成无机盐沉积在污泥颗粒上. 相似文献
37.
低分子量有机酸对岩源磷释放的实验研究 总被引:2,自引:0,他引:2
低分子量有机酸是微生物和植物根系分泌物中重要的组成部分.采用浸泡实验比较了4种常见低分子量有机酸(草酸、酒石酸、柠檬酸、苹果酸)对巢湖北岸东部富磷地层中岩源磷的释放量,并对浸提后的部分残渣进行磷的赋存形态分析.结果表明,当有机酸浓度小于5mmol·L-1时,柠檬酸的释磷量最大;大于5mmol·L-1时,草酸和酒石酸的释磷量最大,此时释磷量与有机酸的浓度具有一定的线性关系,其增加趋势远大于浓度小于5mmol·L-1时的增加趋势,而其中草酸和酒石酸又远大于柠檬酸和苹果酸.在有机酸溶液终止pH≥4时,有机酸溶液终止pH与释磷量有较好的线性关系.在50mmol·L-1相同浓度时,草酸对各赋存形态磷转化作用均最大,酒石酸次之.而4种酸对有机磷释放率最大,均高达97%以上,对闭蓄态磷的释放率最小. 相似文献
38.
Co-transport of dissolved organic matter and heavy metals in soils induced
by excessive phosphorus applications 总被引:2,自引:0,他引:2
To evaluate the e ects of long-term applications of phosphorus fertilizers on mobility of dissolved organic matter (DOM) and heavy
metals in agricultural soils, a sandy soil and a loamy soil were spiked with ammonium phosphate at application rates of 0, 25, 50,
100, 250, and 500 mg P per kilogram of soil. A series of 15-cm long soil columns were constructed by packing incubated soils of
varying concentrations of P. The soil columns were consecutively leached by simulated rainfalls for six cycles. The contents of water
extractable organic carbon in both sandy and loamy soils increased significantly with increasing rates of P applications. Relatively
high rates of P applications could induce a marked increase in DOM concentrations in the leachates, the e ects were larger with the
sandy soil rather than with the loamy soil. Applications of P changed the partitioning of trace metals in the soil solids and the soil
solutions. The increased P application rates also seemed to elevate the leaching of Cu, Cd, and Zn from soils. The concentrations of
Cu, Cd, and Zn in the leachates were positively correlated with DOM, probably due to the formation of metal-DOM complexes. In
contrast, Pb concentrations in the leachates were negatively correlated with DOM, and decreased with increasing rates of P applications.
The boosted leaching of DOM induced by high rates of P applications was probably due to the added phosphate ions competing for
adsorption sites in the soil solids with the indigenous DOM. 相似文献
39.
Characteristics of contaminants in water and sediment of a constructed wetland treating piggery wastewater effluent 总被引:2,自引:0,他引:2
Constructed wetland (CW) is the preferred means of controlling water quality because of its natural treatment mechanisms and function as a secondary or tertiary treatment unit. CW is increasingly applied in Korea for secondary effluent of livestock wastewater treatment. This study was conducted to recognize the characteristics of contaminants in the accumulated sediment at the bottom soil layer and to reduce the phosphorus release from sediments of the free water surface CW for the treatment of secondary piggery wastewater effluent from a livestock wastewater treatment facility. The results revealed that the dominant phosphorus existence types at near the inlet of the CW were non-apatite phosphorus (59%) and residual phosphorus (32%) suggesting that most of the particles of the influent are made up of inorganic materials and dead cells. Sediment accumulation is important when determining the long-term maintenance requirements over the lifetime of CW. Continuous monitoring will be performed for a further assessment of the CW system and design. 相似文献
40.
Low-cost, easy-maintenance and high-e ciency decentralized wastewater treatment technologies are urgently needed in rural areas
of China. Processes with high potential for phosphorus removal are of great interest. However, commonly used treatment methods often
do not meet the strict criteria for removing phosphorus from rural wastewater. In order to search an economic and simple technology
for phosphorus removal from the common bio-technologies e uent, seven soil types collected from di erent rural areas in China were
investigated for their ability to remove phosphorus. X-ray di raction (XRD) was used to analyse the mineral structure, and inductively
coupled plasma optical emission spectrometer (ICP-OES) was used to analyse the geochemical composition of the soil samples. Three
primary minerals – quartz, albite and montmorillonite – were clearly detected. The samples were divided into two soil types, acidic
soils and alkaline soils, based on their pH values. The geochemical composition study indicated that a higher percentage of Ca and Mg
occurred in alkaline soils (pH > 8) than in acidic soils (pH < 6.5). Adsorption isotherms from batch experiments fitted the Langmuir
and Freundlich models well, the maximum P adsorption capacities ranged from 0.256 to 1.598 mg P/g, indicating a high phosphorus
removal potential for all of these soils. The P fractions extracted revealed that the sum of NaOH-extracted inorganic P (NaOH-Pi) was
the major P component in the acidic soils, and CaCO3-bound phosphorus (Ca-P) in the alkaline soils. Dynamic adsorption simulation
showed that these soils have the ability to remove phosphorus from wastewater. 相似文献