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101.
生活污水水质对处理工艺的选择、设计参数的选取以及稳定运行十分重要。运用SPSS软件,对四川某中小城镇污水处理厂为期一年的进水指标(水量、COD、氨氮、总磷、pH、SS)进行方差和相关性分析。方差分析结果显示进水量、氨氮和SS在月份和季节之间存在显著性差异,而总磷和pH仅在月份之间存在显著差异,COD在季度和月份之间无显著性差异;指标相关性分析表明,进水量和氨氮之间呈负相关,氨氮和总磷、COD和总磷之间呈正相关,且相关性显著。在此分析的基础上对污水处理厂设计、工艺选择及运行管理提出了一些建议。  相似文献   
102.
The mutual e ects of metal cations (Cu2+, Pb2+, Zn2+, and Cd2+) and p-nitrophenol (NP) on their adsorption desorption behavior onto wheat ash were studied. Results suggested that Cu2+, Pb2+, and Zn2+ diminished the adsorption and increased the desorption of NP remarkably, while Cd2+ had no such e ect. In contrast, NP diminished the adsorption of Cu2+, Pb2+, and Zn2+ onto ash, however, this suppression e ect depended on the initial concentrations of metal cations. NP had no e ect on Cd2+ adsorption on ash. Fourier transform infrared (FT-IR) and X-ray absorption spectroscopic (XAS) studies suggested the following mechanisms responsible for the metal suppression e ect on NP adsorption: (1) large hydrated Cu2+, Pb2+, and Zn2+ shells occupied the surface of ash and prevent nonspecific adsorption of NP onto ash surface; (2) Cu2+, Pb2+, and Zn2+ may block the micropores of ash, resulting in decreased adsorption of NP; (3) complexation of Cu2+, Pb2+, and Zn2+ was likely via carboxyl, hydroxylic and phenolic groups of wheat ash and these same groups may also react with NP during adsorption. As a “soft acid”, Cd2+ is less e cient in the complexation of oxygencontaining acid groups than Cu2+, Pb2+, and Zn2+. Thus, Cd2+ had no e ect on the adsorption of NP on wheat ash.  相似文献   
103.
The effect of crystal structure on photocatalytic activities of manganese oxides and underlying reaction mechanism were investigated.  相似文献   
104.
采用Ru-Ta/Ti三元电极为阳极,以不锈钢电极为阴极对垃圾渗滤液生物处理出水进行了电解处理研究,以COD为控制指标.重点研究了电解电压、电解时间、pH值、曝气量、电解质的添加等因素对电解处理效果的影响.研究结果表明:电压为7 V、处理时间为30 min、pH=9、曝气量为0.04m3/h、添加电解质为MnⅡ的条件下电...  相似文献   
105.
评价了汉江流域水质污染现状:汉江流域干流水质好于支流,从上游至下游污染状况逐渐上升,主要污染物为COD、TP、NH3-N,污染特征为有机污染型。对汉江流域污染源进行了调查:汉江流域面源污染大于点源,排放负荷较大的是农业地表径流、城镇生活污水、畜禽养殖。  相似文献   
106.
随着国家节能减排工作的大力推进,COD作为减排中四个重要约束性指标之一,其分析的准确性极大地影响着COD减排工作的顺利实施。本文根据《水质化学需氧量的测定重铬酸盐法》(GB11914—89),结合《水质采样技术指导》(HJ494-2009)要求及笔者多年COD分析测试工作经验,着重探讨重铬酸盐法中水样中悬浮物及氯离子对测定结果的影响,以求在实际工作中能更准确、更方便地完成水样中COD的分析工作。  相似文献   
107.
建立了结构-TMD振动方程,推导了无控结构和带TMD受控结构基于功率表达的运动方程,分别解释并给出了各种功率表达参数的物理意义,推导了随机激励下结构耗能功率流均值的随机表达式,对比分析了基于功率法的结构-TMD优化方法与其他优化方法的优化分析结果,并对其减震控制效果进行了对比分析。结果表明,结构-TMD系统的参数可以通过耗能功率流随机分析方法所得均值进行优化,且通过功率法优化后,结构在减震效果上优于其他传统方法得到的结果,从耗能功率均值的随机分析和时程功率分析角度证明了TMD控制的有效性;TMD做功功率为负时对结构有控制效果,起吸收转移能量的作用,且功率幅值越大控制效果越好,做功功率为正时则相反。  相似文献   
108.
The alteration and formation of toxic compounds and potential changes in the toxicity of emissions when using after-treatment technologies have gained wide attention. Volatile organic compound(VOC), carbonyl compound and particle-phase polycyclic aromatic hydrocarbon(PAH) emissions were tested at European Steady State Cycle(ESC) to study unregulated emissions from a diesel engine with a fuel-borne catalyst and diesel particulate filter(FBC–DPF). An Fe-based fuel-borne catalyst was used for this study. According to the results, brake specific emissions of total VOCs without and with DPF were 4.7 and4.9 mg/kWh, respectively, showing a 4.3% increase. Benzene and n-undecane emissions increased and toluene emission decreased, while other individual VOC emissions basically had no change. When retrofitted with the FBC–DPF, total carbonyl compound emission decreased 15.7%, from 25.8 to 21.8 mg/kWh. The two highest carbonyls, formaldehyde and acetaldehyde, were reduced from 20.0 and 3.7 to 16.5 and 3.3 mg/kWh respectively. The specific reactivity(SR) with DPF was reduced from 6.68 to 6.64 mg/kWh. Total particle-phase PAH emissions decreased 66.4% with DPF compared to that without DPF. However, the Benzo[a]pyrene equivalent(BaPeq) with DPF had increased from 0.016 to 0.030 mg/kWh.Fluoranthene and Pyrene had the greatest decrease, 91.1% and 88.4% respectively. The increase of two- and three-ring PAHs with DPF indicates that the fuel-borne catalyst caused some gas-phase PAHs to adsorb on particles. The results of this study expand the knowledge of the effects of using a particulate filter and a Fe-based fuel-borne catalyst on diesel engine unregulated emissions.  相似文献   
109.
A high strength chemical industry wastewater was assessed for its impact on anaerobic microbial com- munity dynamics and consequently mesophilic methane generation. Cumulative methane production was 251 mL/g total chemical oxygen demand removed at standard temperature and pressure at the end of 30 days experimental period with a highest recorded methane percentage of 80.6% of total biogas volume. Volatile fatty acids (VFAs) analysis revealed that acetic acid was the major intermediate VFAs produced with propionic acid accumulating over the experimental period. Quantitative analysis of microbial communities in the test and control groups with quantitative real time polymerase chain reaction highlighted that in the test group, Eubacteria (96.3%) was dominant in comparison with methanogens (3.7%). The latter were dominated by Methanomicrobiales and Methanobacteriales while in test groups increased over the experimental period, reaching a maximum on day 30. Denaturing gradient gel electrophoresis profile was performed, targeting the 16S rRNA gene of Eubacteria and Archaea, with the DNA samples extracted at 3 different time points from the test groups. A phylogenetic tree was constructed for the sequences using the neighborhood joining method. The analysis revealed that the presence of organisms resembling Syntrophomonadaceae could have contributed to increased production of acetic and propionic acid intermediates while decrease of organisms resembling Pelotomaculum sp. could have most likely contributed to accumulation of propionic acid. This study suggested that the degradation of organic components within the high strength industrial wastewater is closely linked with the activity of certain niche microbial communities within eubacteria and methanogens.  相似文献   
110.
米槠天然林和人工林土壤呼吸的比较研究   总被引:1,自引:0,他引:1  
采用Li-8100开路式土壤碳通量系统,对福建省三明市格氏栲自然保护区米槠天然林和人工林土壤呼吸进行1 a的定位观测,分析了土壤水热因子及凋落物对土壤呼吸的影响.结果表明,米槠天然林和人工林土壤呼吸速率月变化均呈单峰型曲线,峰值分别出现在6月上旬[7.03μmol·(m2·s)-1]和7月下旬[5.12μmol·(m2·s)-1];天然林和人工林土壤呼吸速率的年均值分别为3.74μmol·(m2·s)-1和3.05μmol·(m2·s)-1,两者之间有显著差异(P<0.05);土壤温度是影响土壤呼吸的主要因素,分别可以解释天然林和人工林土壤呼吸速率月动态变化的80.1%和81.0%;天然林土壤含水量与土壤呼吸速率呈显著正相关,但人工林两者不具有相关关系;天然林和人工林土壤呼吸速率与当月凋落物量和前一个月凋落物量呈极显著的正相关关系(P<0.01);指数方程计算的天然林和人工林土壤呼吸的Q10值分别为1.86和2.01,天然林和人工林土壤呼吸年通量值分别为14.34 t·(hm2·a)-1和11.18 t·(hm2·a)-1,天然林转换为人工林后,土壤呼吸年通量下降了22.03%.  相似文献   
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