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51.
竹环填料生物滤器在两种海水鱼养殖废水处理中的运行效果及微生物群落分析 总被引:2,自引:0,他引:2
以点带石斑鱼(Epinephelus malabaricas)、半滑舌鳎(Cynoglossus semilaevis)养殖排放水为处理对象,在生产现场研究了竹环填料生物滤器处理高盐度、低氨氮负荷海水养殖废水的运行效果以及挂膜阶段和稳定运行阶段微生物群落变化规律。结果表明,点带石斑鱼养殖废水进水氨氮质量浓度为0.93~1.33 mg/L,氨氮去除率达到27%~39%,挂膜时间需45 d;半滑舌鳎养殖废水进水氨氮质量浓度为0.38~0.52 mg/L,氨氮去除率达到20%~30%,挂膜时间需65 d。另外,对生物滤器挂膜阶段和稳定运行阶段的氨氧化细菌数量和亚硝酸氧化细菌数量进行了统计,氨氧化细菌的数量在点带石斑鱼和半滑舌鳎养殖排放水处理系统中分别达到104~105 CFU/mL和103 CFU/mL,亚硝酸氧化细菌数量则分别达到104 CFU/mL和103 CFU/mL,并分析了温度、进水氨氮负荷、反硝化作用对半滑舌鳎养殖废水生物滤器亚硝酸盐积累现象的影响。 相似文献
52.
Metabolism of polychaete Neanthes japonica Izuka: relations to temperature, salinity and body weight
Polychaete Neanthes japonica is a species geographically specific in China and Japan with important scientific implication and commercial value. In this
study, the relations of body weight, salinity and temperature to oxygen consumption and ammonia excretion of N. japonica were determined. Three different groups in body weight (large: 2.34±0.36 g, middle: 1.50±0.21 g and small: 0.62±0.12 g) were
set for all experiments. Results show that the body weight is negatively related to the rates of oxygen consumption and ammonia
excretion; and the relationship is significant. The oxygen consumption and ammonia excretion at 24°C decreased at salinity
from 5 to 30 and increased above 30, indicating that both lower and higher salinity are adverse and certain degree of salinity
stress is necessary for enhancing the energy demand. At salinity 30, rising temperature from 18°C to 30°C, the oxygen consumption
increased before 27°C and then decreased. However, the relation of ammonia excretion and temperature seems more complex. Two-way
ANOVA shows that salinity, temperature and body weight all have a significant effect on the oxygen consumption and ammonia
excretion of the worm. Moreover, interaction between salinity/temperature and body weight is also significant. O:N (oxygen/nitrogen)
ratio varies greatly in this case from 5.97 to 463.22, indicating that N. japonica can regulate the type of metabolic substrate against environment changes.
Supported by the National Natural Science Foundation of China (No. 30490233) and the Three-Gorge Project and the Estuarine
Environment (No. SX2004-018) from the Three Gorges Project Construction Committee 相似文献
53.
The effects of emersing oysters (Crassostrea gigas) for up to 66 h at 4 °C under humid air and nitrogen atmospheres were studied. A significant, gradual body mass loss occurred under nitrogen (8.36 ± 0.85% final weight loss) but no significant loss occurred under humid air (4.92 ± 2.67% final weight loss). Emersion duration and the mantle cavity fluid (MCF) total ammonia (TA) concentration showed a positive, linear relationship (r2 = 0.73 and 0.74 under humid air and N2, respectively). The MCF TA and trimethylamine (TMA) contents were also positively related (r2 = 0.64 and 0.69 under humid air and N2, respectively). 相似文献
54.
氨对长毛对虾幼体的毒性 总被引:4,自引:0,他引:4
氨对长对虾各期幼体的毒性试验表明:蚤状幼体对氨最每天敏感,而仔虾幼体对氨的耐受性最强,在盐度32,PH8.20,水温29.0℃时,无节幼体Ⅱ期,蚤状幼体Ⅰ期,仔虾第五天24h的LC50值分别为13.20(1.15)、9.97(0.87)、26.99(2.35)和60.81mg/dm^3ΣNH^+4(NH3)-N^1(5.30gm/dm^3NH3-N).Z1,M1,P5的48h的LC50值分别为5. 相似文献
55.
盐度对方斑东风螺耗氧率和排氨率的影响 总被引:11,自引:0,他引:11
采用实验生态学方法研究盐度对方斑东风螺Babylonia areolata耗氧率和排氨率的影响。根据方斑东风螺个体大小设立A、B、C(壳高分别为6.86±0.24、4.75±0.37、3.15±0.12cm,软体部干重分别为11.064±0.361、4.245±0.690、2.015±0.122 g)3组,盐度设13、18、23、28、33等5个梯度,实验水温为27—28℃。结果表明:(1)盐度、个体大小对方斑东风螺的耗氧率有显著的影响(p<0.01)。盐度在13—28之间时,3组方斑东风螺的耗氧率都随盐度的升高而增加;当盐度升至33时,耗氧率下降。方斑东风螺的软体部干重(W)与单位体重耗氧率(O)之间的关系符合幂函数方程O=aWb,其中a值的范围为1.365 5—3.072 2,平均值是2.236 8,b值的范围为-0.195 2—-0.093 6,平均值为-0.130 6。(2)盐度、个体大小以及二者的交互作用均对方斑东风螺的排氨率有显著的影响(p<0.01)。盐度在13—28之间时,3组方斑东风螺的排氨率随着盐度的升高而增加;当盐度升至33时,排氨率下降。方斑东风螺的软体部干重(W)与单位体重排氨率(N)之间的关系也符合幂函数方程N=c Wd,其中c值的范围为261.769 4—360.427 9,平均值为320.643 4,d值的范围是-0.325 3—-0.189 0,平均值是-0.248 5。(3)单位体重耗氧率和排氨率与盐度(S)、软体部干重(W)的二元线性回归方程分别为:O=1.208-0.039W+0.039S(R=0.578,F=10.517,显著性概率=0.000)、N=-210.442-9.255W+2.965S(R=0.813,F=40.834,显著性概率=0.000)。 相似文献
56.
1 INTRODUCTION Ammonia and nitrites are common pollutants in waters used for intensive aquiculture, and are harmful to cultured animals and their larvae when present in sufficiently high concentrations (Zhou, 1991). Ammonia in water is usually derived from animal excretion and catabolism of organic materi- als. It occurs in un-ionized and ionized forms. Un-ionized ammonia can pass through cell mem- brane and is harmful to the cells due to its fat-soluble feature (Chen, 2000; Chin, 2001).… 相似文献
57.
温度对橄榄蛏蚌耗氧率和排氨率的影响 总被引:3,自引:0,他引:3
在室内实验条件下研究了温度对不同规格橄榄蛏蚌耗氧率和排氨率的影响。实验结果表明, 15~30℃下,橄榄蛏蚌耗氧率和排氨率为大规格组均小于小规格组。耗氧率和排氨率与橄榄蛏蚌软体部干重(W)呈现明显的幂函数关系。在实验温度(15~30℃)范围内,随温度的上升,橄榄蛏蚌的耗氧率和排氨率均先逐渐增加,后随之下降,两者的高峰值分别出现在25℃和20℃。耗氧率(O)、排氨率(N)与温度(T)和橄榄蛏蚌软体部干重(W)的二元线性回归方程分别为:O=-0 .651 3+0. 053 2T+0. 107 3W,N=32. 162 6-1. 056 6T+1 .322 2W。二方程复相关系数r分别为0 .964 2和0 .892 1;F检验分别为极显著和显著。 相似文献
58.
59.
A fluorescence-based chemistry has been developed for the detection of nitrite and nitrate (as excess nitrite following reduction of nitrate to nitrite). Detection limits are 4.6 and 6.9 nM, respectively. The technique capitalizes on the triple bond between the two nitrogen atoms within the diazonium ion formed via the well-known reaction between an acidified nitrite sample and an aromatic primary amine. Fluorescence of π-electrons within this bond allows this reaction to be probed with standard fluorescence spectroscopy. Reverse Flow Injection Analysis (rFIA) is used to correct for background fluorescence from leachates and naturally occurring dissolved organic matter (DOM). Comparisons of samples analyzed for nitrite with this technique and with a highly-sensitive chemiluminescent method [Braman, R.S., Hendrix, S.A., 1989. Nanogram nitrite and nitrate determination in environmental and biological materials by vanadium (III) reduction with chemiluminescence detection. Analytical Chemistry, 61 (24) 2716–2718] showed excellent agreement between the two methods (slope=0.9996 and r2=0.9956). These fluorescent nitrite and nitrate + nitrite chemistries were coupled in a sensor package with a modified version of a fluorescent ammonia chemistry [Jones, R.D., 1991. An improved fluorescence method for the determination of nanomolar concentrations of ammonia in natural waters, Limnology and Oceanography. 36(4) 814–819], which also has a nanomolar detection limit. The throughput rate of the fully automated three-channel instrumentation is 18 samples per hour. A field experiment demonstrated the capability of the nutrient sensor package to determine horizontal gradients in nitrate, nitrite, and ammonia in oligotrophic surface waters. 相似文献
60.
利用静水密闭式呼吸仪,测定了不同温度(10、12、……、30℃)条件下褐菖鼬(Sebastiscus marmoratus)幼鱼耗氧率和排氨率变化.结果表明,温度对幼鱼耗氧率和排氨率均有显著影响(P〈0.05).温度10~30℃,幼鱼耗氧率、排氨率变化范围分别为0.02~0.30mg/(g·h)和2.64~10.01ug/(g·h),温度26、16℃时耗氧率和排氨率分别上升至峰值,分别为最小值10℃组的15.00、3.79倍;温度(F)对幼鱼耗氧率R0[mg/(g·h)]和排氨率RN[ug/(g·h)]的影响可分别用多项式表示:R0=-2.00×10^-5 T4+1.50×10^-3 T3-3.69×10^-2 T2+0.3978T-1.5376,R2=0.988和RN=3.00×10^-5 T6 -4.00×10^-3 T5+0.1996 T4-5.1111T3+70.817T2-501.10T+1415.80,R2=0.964;幼鱼的氨熵变化范围为0.02~0.19,其蛋白质供能比变化范围为5.64%~56.65%,平均蛋白质供能比为22.56%;各温度跨度代谢率Q10值均值为4.02,18~28℃代谢率Q10值为2.81±0.09与鱼类平均Q10值较接近;各温度跨度组排泄率Q10均值为0.93,对比同一温度跨度组代谢率和排泄率Q10值,代谢率Q10值均大于排泄率Q10值两倍以上,最大组间相差达7倍.因此,幼鱼能量消耗的供能物质以脂肪和碳水化合物为主,蛋白质为辅.此外,温度变化对幼鱼代谢的影响程度明显大于对排泄的影响,且其适宜生长温度为18~28℃. 相似文献