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低C/N比污水生物脱氮所需外加碳源量的确定   总被引:11,自引:3,他引:8       下载免费PDF全文
利用中试规模实验装置,探讨了现有活性污泥工艺改造成间歇曝气生物脱氮工艺的实践中,碳氮比(C/N)对废水生物脱氮效率、脱氮反应速度的影响,分析了脱氮容量,确定了所需外加碳源量.   相似文献   
2.
We examined the concentration, size distribution, redox state and isotopic composition of plutonium (Pu) in groundwater at the 100K-Area at the U.S. Department of Energy's (DOE) Hanford Site. Total concentrations of Pu isotopes were extremely low (10(-4) to 10(-6) pCi/kg, approximately 10(4) to 10(6) atoms/kg) but measurable for the first time in the 100K-Area wells using mass spectrometric analyses that are much more sensitive than alpha spectroscopy methods used previously. Size fractionation data from two wells suggest that 7-29% of the Pu is associated with colloids, operationally defined here as particles between 1 kDa-0.2 microm in size. These colloids were collected using a 1 kDa cross-flow ultrafiltration (CFF) system developed specifically for groundwater actinide studies to include careful controls both in the field and during processing to ensure in situ geochemical conditions are maintained and size separations can be well characterized. Pu in this colloidal fraction was exclusively in the more reduced Pu(III/IV) form, consistent with the higher affinity of Pu in the lower oxidation states for particle surfaces. While the overall concentrations of Pu were low, the Pu isotopic composition suggests at least two local sources of groundwater Pu, namely, local Hanford reactor operations at the 100K-Area and spent nuclear fuel from the N-reactor, which was stored in concrete pools at this site. Differences between this site and the Savannah River Site (SRS) are noted, since groundwater Pu at the F-Area seepage basin at SRS has been found using these same methods, to be characterized by lower colloidal abundances and higher oxidation states. This difference is not directly attributable to groundwater redox potential or geochemical conditions, but rather the physical-chemical difference in Pu sources, which at SRS appear to be dominated downstream from the seepage basins by decay of 244Cm, resulting in more oxidized forms of 240Pu. There is no clear evidence for colloid facilitated transport of Pu in groundwater at the Hanford Site, since downstream wells have both an order of magnitude lower concentrations of Pu and a lower fractional colloidal distribution.  相似文献   
3.
Data are presented here on the distribution of 239,240Pu in the pore waters of two cores taken from a seasonally anoxic lake. The pore water 239,240Pu profile exhibits a subsurface activity maximum of 230 ± 30 μBqkg?1 in the 3–6 cm interval in June, as compared to an activity of 5 ± 3 μBqkg?1 in the overlying water. The pore water 239,240Pu profile in June follows the solid phase distribution pattern of 239,240Pu and also the pore water distributions of Fe and Mn. Under more reducing conditions in August, pore water 239,240Pu activities drop off to undetectable levels at all depths. This rapid change in the pore water 239,240Pu activity reflects the dynamic nature of Pu diagenesis in these sediments. Potential diffusional fluxes of 239,240Pu into the lake's hypolimnion in June are calculated to be on the order of 2·5 μBq cm?2y?1. This flux would not be significant in altering the solid phase 239,240Pu inventory (2·8 × 104μBqcm?2).  相似文献   
4.
Under an IAEA's Co-ordinated Research Project "Worldwide Marine Radioactivity Studies (WOMARS)" 90Sr, 137Cs and (239,240)Pu concentration surface water time series in the Pacific and Indian Oceans have been investigated. The Pacific and Indian Oceans were divided into 17 latitudinal boxes according to ocean circulation, global fallout patterns and the location of nuclear weapons test sites. The present levels and time trends in radionuclide concentrations in surface water for each box were studied and the corresponding effective half-lives were estimated. For the year 2000, the estimated average 90Sr, 137Cs and (239,240)Pu concentrations in surface waters of the Pacific and Indian Oceans varied from 0.1 to 1.5 mBq/L, 0.1 to 2.8 mBq/L, and 0.1 to 5.2 microBq/L, respectively. The mean effective half-lives for 90Sr and 137Cs in surface water were 12+/-1 years for the North, 20+/-1 years for the South and 21+/-2 years for the Equatorial Pacific. For (239,240)Pu the corresponding mean effective half-lives were 7+/-1 years for the North, 12+/-4 years for the South and 10+/-2 years for the Equatorial Pacific. For the Indian Ocean the mean effective half-lives of 137Cs and (239,240)Pu were 21+/-2 years and 9+/-1 years, respectively. There is evidence that fallout removal rates before 1970 were faster than those observed during recent decades. The estimated surface water concentrations of 90Sr, 137Cs and (239,240)Pu in latitudinal belts of the Pacific and Indian Oceans for the year 2000 may be used as the average levels so that any new contribution from nuclear facilities, nuclear weapons test sites, radioactive waste dumping sites and from possible nuclear accidents can be identified.  相似文献   
5.
为考察污泥基生物炭对餐厨垃圾厌氧消化的影响,以餐厨垃圾为基质,设置4种不同接种比(inoculum to substrate ratio, ISR)的批次实验,以得到不同酸化程度的厌氧消化体系;检测空白组、餐厨垃圾对照组和生物炭实验组的产甲烷情况和微生物群落结构的变化。结果表明:当ISR=2时,生物炭对餐厨垃圾厌氧消化效果不明显;当ISR=0.5时,生物炭使其停滞期缩短28.9%左右;ISR越小,生物炭对酸化停滞时间缩短以及产甲烷速率提高的效果越明显。同时,生物炭可以促进Chloroflex,Proteobacteria,Bacteroidetes的生长,从而提高厌氧消化中间产物的产生。当ISR较大时,厌氧消化系统的产甲烷途径以乙酸利用型为主,投加生物炭可以促进乙酸型产甲烷;随着ISR减小,产甲烷途径有逐渐向氢利用型转变的趋势,同时Methanosacrina逐渐替代Methanosaeta利用乙酸产甲烷。本研究结果可为污泥基生物炭在餐厨垃圾厌氧消化的实际应用提供参考。  相似文献   
6.
Size-fractionated plutonium isotopes in a coastal environment   总被引:1,自引:0,他引:1  
We have examined the distribution of individual Pu isotopes (239Pu, 240Pu, and 241Pu) in seawater from the Gulf of Maine (GOM). Samples were size-fractionated with a 1 kD cross-flow ultrafiltration (CFF) membrane. Subfractioned samples were radiochemically purified and Pu isotopes were analyzed using a three-stage thermal ionization mass spectrometer (TIMS). To our knowledge, this is the first time that both size class and Pu isotopic data have been obtained for seawater samples. Within measurement uncertainties a single 240Pu/239Pu atom ratio of 0.18 was found for all sample collection depths and sample size fractions. This signifies a current, single Pu source in GOM waters, namely global fallout, and suggests that no measurable isotopic fractionation occurred during CFF processing. The majority of Pu was found in the low molecular weight fraction (< 1 kD). Colloidal Pu varied from 8% of the total in surface waters to < 1% in the deepest (250 m) seawater sample. Evidence suggests that the vertical distribution of Pu in GOM is primarily controlled by conservative mixing processes. The high Pu fraction found in the low molecular size fraction implies that most of the Pu is in the non-particle-reactive oxidized fraction, and is consistent with the conservative Pu behavior. The activity levels are in agreement with other studies which show a slow decrease in Pu with time due to continued mixing and relatively slow particle removal.  相似文献   
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