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651.
针对尾矿坝位移监测序列中噪声和真实异常值的区分问题,提出1种基于多点关联性和改进孤立森林(IF)算法的异常数据诊断模型。通过IF算法对监测序列中的各样本点异常程度进行量化计算,引入云模型(CM)算法确定IF量化的异常得分与异常概念的相互映射关系以实现异常点的初步诊断,根据Apriori算法计算多测点序列间的关联性,找出强关联序列组合,结合序列关联性以及异常点诊断结果区分噪声与真实异常值。以某尾矿坝位移监测序列为例进行模型验证。研究结果表明:基于多点关联性的异常诊断模型能够有效区分尾矿坝位移监测序列中的噪声与真实异常值,提高监测系统的准确性。 相似文献
652.
小麦与不同作物多样化轮作对土壤真菌群落的影响 总被引:2,自引:1,他引:1
为明确华北平原冬小麦与不同作物多样化轮作下的土壤真菌群落差异,为生态可持续种植制度的构建和优化提供理论依据,采用实时荧光定量PCR和高通量测序技术研究了连续冬小麦-夏玉米M、冬小麦-夏花生(夏玉米)PM和冬小麦-夏大豆(夏玉米)SM轮作处理的土壤真菌群落丰度、组成和多样性.结果表明,与连续冬小麦-夏玉米处理相比,轮作花生PM2和大豆SM2处理显著降低了土壤真菌ITS序列拷贝数,轮作花生或大豆处理增加了土壤真菌群落丰富度和多样性.非度量多维尺度分析(NMDS)结果显示,不同轮作茬口之间土壤真菌群落存在明显分离,轮作作物对土壤真菌群落结构的影响达显著水平.华北平原砂壤质潮土中不同作物轮作处理的土壤真菌群落均以Ascomycota为优势菌门,以Sordariomycetes和Eurotiomycetes为优势菌纲.不同轮作茬口土壤真菌群落组成存在差异显著的类群,Neocosmospora、Plectosphaerella和Gibellulopsis等潜在病原真菌在冬小麦-夏花生(夏玉米)轮作处理中显著富集,而Penicillium和Zopfiella等潜在有益真菌在冬小麦-夏大豆(夏玉米)轮... 相似文献
653.
Jun LI Yongjiong NI Yongzhen PENG Guowei GU Jingen LU Su WEI Guobiao CHENG Changjin OU 《Frontiers of Environmental Science & Engineering in China》2008,2(1):99-102
The objectives of this study were to establish an on-line controlling system for nitrogen and phosphorus removal synchronously
of municipal wastewater in a sequencing batch reactor (SBR). The SBR for municipal wastewater treatment was operated in sequences:
filling, anaerobic, oxic, anoxic, oxic, settling and discharge. The reactor was equipped with on-line monitoring sensors for
dissolved oxygen (DO), oxidation-reduction potential (ORP) and pH. The variation of DO, ORP and pH is relevant to each phase
of biological process for nitrogen and phosphorus removal in this SBR. The characteristic points of DO, ORP and pH can be
used to judge and control the stages of process that include: phosphate release by the turning points of ORP and pH; nitrification
by the ammonia valley of pH and ammonia elbows of DO and ORP; denitrification by the nitrate knee of ORP and nitrate apex
of pH; phosphate uptake by the turning point of pH; and residual organic carbon oxidation by the carbon elbows of DO and ORP.
The controlling system can operate automatically for nitrogen and phosphorus efficiently removal.
__________
Translated from Water & Wastewater Engineering, 2006, 26(5): 728–733 [译自: 给水排水] 相似文献
654.
655.
在铀尾矿库放射性核素泄露污染WSN监测中,针对凸规划定位精度低的问题,提出一种基于阶次序列的凸规划定位算法。通过划分子区域缩小未知节点几何约束范围,建立各子区域的重心坐标到锚节点的阶次序列表,计算未知节点序列与序列表的相关度,并以最大相关度的子区域重心坐标为定位结果。使该改进算法满足低密度条件的定位并能减少其计算量提高定位精度。经过仿真,新算法较凸规划算法在定位精度上提高了14%。 相似文献
656.
利用厌氧序批式反应器(ASBR)处理食品废水,结合三维荧光光谱技术考察不同反应时段废水中溶解性有机物(DOM)的光谱特征和物质来源,并建立DOM特征峰荧光强度与氨氮浓度的关系.工艺运行结果表明:食品废水经过ASBR处理后,进水的COD从1100mg/L降至91mg/L,COD去除率达到91.73%,说明ASBR反应器可有效降解食品废水中的有机物质.三维荧光光谱显示,5种物质的特征荧光峰,即高激发波长色氨酸(峰A)、低激发波长色氨酸(峰B)、可见光区富里酸(峰C)、紫外光区富里酸(峰D)、类腐殖酸(峰E).随着厌氧生物处理的进行,峰A、峰B和峰C的荧光强度表现为先增加后减少的趋势;峰D荧光强度表现为微弱增加趋势;峰E荧光强度为先减少后增加趋势.荧光光谱指数FI、HIX、BIX表明,废水具有明显生物源特征.建立高激发波长色氨酸、低激发波长色氨酸特征峰荧光强度与色氨酸荧光强度之和与氨氮浓度在反应周期内的相关性,其相关系数分别为0.8136、0.9390、0.9153,说明可通过三维荧光光谱技术快速监测食品废水厌氧生物处理过程中的氨氮浓度. 相似文献
657.
研究了ASBR厌氧氨氧化(ANAMMOX)反应器稳定条件下周期内的基质动力学特性以及过程抑制动力学特性,并得到适合描述上述特性的动力学模型.其中,稳态下周期内基质去除模型是首次被调查研究,研究发现,修正的Logistic模型和修正的Boltzmann模型相比Grau二级基质去除模型和修正的Gompertz模型而言,更适合描述稳态下周期内基质去除特性,并且通过模型得到了周期内任意t时刻下的出水总氮和总氮去除率预测公式.运用Haldane模型和Aiba模型建立了出水FA浓度与总氮去除负荷(TN RR)以及出水NO2--N浓度与总氮去除负荷(TN RR)之间的关系,结果表明:Haldane模型更适合用来描述基质抑制动力学特性,模型预测得到的出水FA和出水NO2--N抑制浓度分别为72.36mg/L和140.60mg/L.上述动力学模型的应用和动力学参数的获得可能会有助于ASBR反应器的优化设计和过程控制. 相似文献
658.
The process involving the combination of powdered activated carbon (PAC) and biomass in the aeration basin of conventional continuous‐flow activated sludge system, known as the PACT process, has proven to be effective for treating toxic pollutants present in industrial wastewaters. In view of the many advantages of sequencing batch reactors (SBR) operationally, the objective of this study is to evaluate the PACT process under SBR operation to treat wastewater containing Acid Blue 25 (AR) and Basic Yellow 2 dyes (BR). The SBR systems were operated with FILL, REACT, SETTLE and DRAW periods in the ratio of 0.25:3.75: 1.0:1.0 for a cycle time of 6 h. The average COD and AR removal efficiencies were 89% and 93%, respectively with PAC addition compared to 76% and 7%, respectively, without PAC addition. In the case of BR, the average removal efficiencies of COD and dye increased from 52% and 9% to 90% and 93%, respectively, with PAC addition. Kinetic study conducted for the REACT period showed that both dyes exhibited a very pronounced inhibitory effect on the activities of the microorganisms. The addition of PAC was capable of reducing the inhibitory effect of only BR but not AR on the microorganisms. 相似文献
659.
The optimal parameters for the degradation of pure terephthalic acid (PTA) wastewater by the white rot fungus Phanerochaete chrysosporium were investigated. The relative mathematical model, objective function equation, constraint equations, constraint conditions and computer program were established in the optimal method. The results showed that the optimal value of the reactor volume needed was 9798 m3. It could save 83.82% of the reactor volume, which was needed for the native bacterium YZ1. This optimal method is simple, useful and economical for average treatment plants. Using the optimal parameters and P. chrysosporium to design and operate the treatment process of PTA wastewater would increase the treatment efficiency and decrease the cost. 相似文献
660.
Wool dyeing wastewater contains xenobiotic compounds that can be removed by biotechnological processes. Studies on various dyes showed that anaerobic processes are suitable to alter azo dyes as a first step of the biodegradation process. These compounds are reduced by anaerobic consortia to aromatic amines and its ultimate degradation can be achieved by a further aerobic treatment. Studies on degradation rate of an wool acid dye were performed in batch systems inoculated with anaerobic biomass. A commercial diazo dye, Acid Red 73, was added to the synthetic medium in which glucose was used as sole carbon source. Results indicated that the Acid Red 73 was partially degraded by a mixed culture of anaerobic bacteria and a decolorization of 90% was obtained. Kinetics studies on removal of the colour showed that the decolorization rate was several times faster than the degradation rate of glucose for a range of dye concentrations between 60 mg/L and 400 mg/L. A first order kinetic model was used for dye concentrations up to 200 mg/L. For higher concentrations a model similar to the Michaelis‐Menten equation was better fitted to the experimental data. 相似文献