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81.
SBR快速实现短程硝化及影响因素 总被引:5,自引:0,他引:5
基于建立的序批式反应器(SBR),探索实现城市生活污水短程硝化的主要控制因素。研究结果表明,废水温度维持在(30±1)℃、p H值为7.8~8.2的条件下,采用间歇曝气的运行方式,仅驯化培养29 d,成功实现短程硝化,亚硝氮积累率为95%左右。通过对比发现,间歇曝气方式优于连续曝气方式,间歇曝气能有效地将溶解氧(DO)浓度控制在1.0mg/L以下,从而有利于进行短程硝化反应。此外,温度和p H可以影响亚硝氮的积累效果;当温度在25~35℃、进水p H为7.8~8.2时,亚硝氮的积累情况较好,积累率在91%以上。 相似文献
82.
83.
泥石流堵塞坝溃决模式实验 总被引:4,自引:1,他引:3
为了研究泥石流堵塞坝溃决的模式,采用模型实验对堵塞坝溃决的过程进行模拟,实验历时2个月,共13组.实验中,通过改变主沟的水力参数和坝体参数研究泥石流堵塞坝溃决的全过程,并作了相关记录.通过对理论和实验数据的分析,泥石流堵塞坝的溃决形式有3种:冲刷溃决、有表面流的泥石流堆积体水力再启动、没有表面流的泥石流堆积体重力再启动.讨论了冲刷溃决中颗粒启动和有面流泥石流水力再启动的临界条件,并分析了启动流速u0和颗粒粒径D之间的关系;分析了泥石流重力再启动时堵塞坝坡面破坏的一般形式和特征;通过实验数据对不同溃决形式的溃决条件进行了验证,结果比较吻合. 相似文献
84.
85.
针对传统无砾石管式地下渗滤系统存在的易堵塞,大气复氧率低和通量低等问题,采取了优选植物、改进渗滤管结构和布水方式等措施。在前期小试的基础上,研究了大管径和小管径在处理生活污水时的效果。结果表明,采用大管径可在一定程度上提高系统的复氧效率,对污染物的去除效果优于小管径,其COD、TP、NH4+-N和TN的平均去除率分别达到87.07%、84.97%、45.6%和52.67%。对氨氮和总氮的去除机理的分析表明,由硝化/反硝化实现生物脱氮是地下渗滤系统去除总氮的主要途径,氨氮的去除率大小反映了硝化反应的强度,改善水力负荷和土壤环境以促进硝化作用是使该系统提高氨氮和总氮去除率的关键。 相似文献
86.
石油污染土壤中芘高效降解菌群的筛选及降解特性研究 总被引:3,自引:0,他引:3
从长期受石油污染土壤中驯化筛选到能以芘为惟一碳源生长的混合菌群GP3,其主要由假单胞菌株GP3A(Pseudomonas sp.)和菌株GP3B(Pandoraea pnomenusa)组成.采用摇瓶振荡培养方法,研究了不同环境条件对混合菌GP3降解芘效能的影响.结果表明,在30℃,150 r/min振荡培养下,混合菌GP3对15 mg/L芘的7 d降解率为90.6%.混合菌GP3降解芘的最适宜温度为35℃,最佳pH值为6.2.加入低浓度葡萄糖(100 mg/L)或菲(10 mg/L)作为共代谢底物,均可提高GP3对芘的降解率.混合菌对芘的降解速率(PDR)与芘的初始浓度呈正相关.研究重金属离子胁迫下GP3对芘的降解时发现,10 ms/L Zn2 的存在对芘降解效能影响较小,Cu2 对芘的降解有抑制作用,Cd2 对混合菌GP3有很强的毒性. 相似文献
87.
草甘膦暴露可能对某些水生动物具有致死及亚致死毒性,但未见有涉及龟鳖类动物的行为毒理学的研究报道。用不同浓度草甘膦铵盐处理孵化中的乌龟卵来检测草甘膦暴露对其胚胎发育、孵出幼体大小、翻身能力以及空间学习能力的影响。结果表明,2~2 000 mg·L~(-1)浓度范围内的草甘膦铵盐暴露并不会影响乌龟卵孵化成功率、胚胎发育速率以及孵出个体的体质量和翻身时间,但对孵出幼体的空间学习能力产生一定影响。较高浓度的草甘膦铵盐暴露会导致孵出幼体的觅食时间延长、觅食过程中的运动距离增大。因此,胚胎期草甘膦铵盐暴露可能对乌龟孵出幼体的后续生长和存活有一定的负面效应。 相似文献
88.
Concentrations of heavy metals were determined in the water column (including the sea-surface microlayer, subsurface, mid-depth
and bottom water) and sediments from Singapore’s coastal environment. The concentration ranges for As, Cd, Cr, Cu, Ni, Pb
and Zn in the seawater dissolved phase (DP) were 0.34–2.04, 0.013–0.109, 0.07–0.35, 0.23–1.16, 0.28–0.78, 0.009–0.062 and
0.97–3.66 μg L−1 respectively. The ranges for Cd, Cr, Cu, Ni, Pb and Zn in the suspended particulate matter (SPM) were 0.16–0.73, 6.72–53.93,
12.87–118.29, 4.34–60.71, 1.10–6.08 and 43.09–370.49 μg g−1, respectively. Heavy metal concentrations in sediments ranged between 0.054–0.217, 37.48–50.52, 6.30–21.01, 13.27–26.59,
24.14–37.28 and 48.20–62.36 μg g−1 for Cd, Cr, Cu, Ni, Pb and Zn, respectively. The lowest concentrations of metals in the DP and SPM were most frequently found
in the subsurface water while the highest concentrations were mostly observed in the SML and bottom water. Overall, heavy
metals in both the dissolved and particulate fractions have depth profiles that show a decreasing trend of concentrations
from the subsurface to the bottom water, indicating that the prevalence of metals is linked to the marine biological cycle.
In comparison to data from Greece, Malaysia and USA, the levels of metals in the DP are considered to be low in Singapore.
Higher concentrations of particulate metals were reported for the Northern Adriatic Sea and the Rhine/Meuse estuary in the
Netherlands compared to values reported in this study. The marine sediments in Singapore are not heavily contaminated when
compared to metal levels in marine sediments from other countries such as Thailand, Japan, Korea, Spain and China. 相似文献
89.
广州分公司外输成品油埋地管线运行多年,已达到或接近设计使用寿命。通过对管线运行情况以及管线周边状况对管线安全影响的分析,认为这些外输埋地成品油管线运行现状存在安全隐患,应采取整改措施。 相似文献
90.
Contamination by selected chlorinated pesticides in surface waters in Hanoi, Vietnam 总被引:2,自引:0,他引:2
Fifteen insecticides, which were banned in Vietnam in the period from 1990 to 1998, were chosen for the investigation of surface water samples in Hanoi and its surroundings. The investigation was focused on an area of approximately 30 by 20 km. Thirty water samples, in total were analysed: 11 samples from the Red river, seven from the Duong river, four from various lakes (West lake, Thuyen Quang, Bay Mau, Ba Mau), six from irrigation canals and two samples from wells. The procedure was repeated in November 1998 and in August 1999. The results showed that the contamination of the banned pesticides was highest in the rivers and then in the irrigation canals, followed by the lakes and wells. These pesticides could hardly be determined in just two drinking water samples (wells) and their concentrations rarely exceeded detection limits (0.05-0.25 ng l(-1)). The mean concentrations of sigmaHCHs (alpha, beta, gamma, delta-HCH) and sigmaDDTs (2,4'-, 4,4'-DDE; 2,4'-, 4,4'-DDD; 2,4'-, 4,4'-DDT) in the rivers were 17.2 +/- 71.8 and 43.7 +/- 79.9 ng l(-1) in the dry season (DS, November 1998), 29.3 +/- 117 and 56.1 +/- 65.6 ng l(-1) in the rainy season (RS, August 1999), respectively. However, the highest concentration of DDTs detected in a river sample (DS): 0.324 microg l(-1) was much lower than their allowable limit of concentration in surface waters, which is accorded with Criteria of Vietnam (1995) (DDTs < 10 microg l(-1)). Moreover, endrin, heptachlor, aldrin were also detected in most of water samples with considerable mean concentrations in rivers: 25.3 +/- 40.5, 17.4 +/- 23.8, 11.0 +/- 9.02 ng l(-1) in the DS and 18.5 +/- 23.2, 19.3 +/- 29.0, 12.8 +/- 8.44 ng l(-1) in the RS, respectively. Heptachlor epoxide (isomer A) and dieldrin were detected in some water samples with lowest concentrations. 相似文献