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1.
巢湖溶解性有机物时空分布规律及其影响因素   总被引:2,自引:2,他引:2  
为研究巢湖溶解性有机物(dissolved organic matter,DOM)的时空分布规律及其影响因素,于2013年4月至2014年4月每月在巢湖3个不同湖区17个点位采集表层水样,测定了水体溶解性有机碳(dissolved organic carbon,DOC)和溶解性有机氮(dissolved organic nitrogen,DON)浓度.结果表明,东部、中部和西部这3个湖区DON浓度具有显著差异(P0.01,n=13),这可能与西湖区入湖河流的外源输入以及DON的可利用性有关.水华期间,水体总氮总磷比、总溶解性氮磷比以及溶解性无机氮(dissolved inorganic nitrogen,DIN)与溶解性活性磷(soluble reactive phosphorus,SRP)比值迅速降低,其中西湖区DIN/SRP在2013年8月降至5±7,表明水体出现氮限制.此外,DON浓度迅速降低,西部湖区叶绿素浓度与DON显著负相关(r=-0.265,P0.05,n=91),表明在氮限制条件下,DON具有一定生物可利用性.DOC浓度不存在显著空间差异,水温是控制这3个湖区DOC浓度变化的重要因素.东部和中部湖区DOC浓度还受叶绿素和硝态氮浓度的影响.此外,巢湖DOC/DON变幅较大,由于含氮化合物更易降解,因此DON是影响碳氮比值的主导因子,是表征DOM可利用性的重要组分.  相似文献   

2.
贵州红枫湖水体溶解有机质的剖面特征和季节变化   总被引:16,自引:2,他引:16  
溶解有机氮(dissolved organic nitrogen,DON)与溶解有机碳(dissolved organic carbon,DOC)相结合在湖泊水体溶解有机质(dissolved organic matter,DOM)的研究中少有报道.本研究对贵州喀斯特地区高原性湖泊———红枫湖水体DOC和DON的含量进行了近2a的测定,研究了DOM的剖面特征和季节变化,并探讨了DOM垂向分布和季节变化的影响因素.结果表明,红枫湖DOC的浓度范围为1.60~3.08 mg·L-1,DON的浓度范围为0.10~0.37 mg·L-1.在湖水混合期表层和底层的DOC和DON的浓度基本一致,在湖水分层期DOC和DON浓度表现出从表层往底层减小的趋势.表层水体(0~2m或3m)DOC的浓度在春末夏初或夏季达到最大,DON的浓度在春末夏初稍高于其它月份.结合叶绿素和降雨的数据分析认为,藻类活动和陆源输入直接导致了表层水体DOM的季节变化模式.DOM的C/N在一般情况下向下增大,但在夏季南湖的垂向水柱上,DOC和DON的浓度在12m以下增大,C/N从12m的18.1下降为14m的14.9,并向下持续减小,这很有可能是颗粒态有机质发生降解释放出C/N较低的DOM,成为水体内DOM的一个内源.  相似文献   

3.
Algal uptake of dissolved organic nitrogen in wastewater treatment plants   总被引:1,自引:0,他引:1  
The algal uptake of dissolved organic nitrogen(DON) in the anaerobic–anoxic–oxic(A_2O)process was investigated in this study. Anaerobic, aerobic and effluent DON samples from two wastewater treatment plants(WWTPs) were separated into hydrophilic and hydrophobic fractions using a DAX-8 resin coupled with an anion exchange resin and a nanofiltration(NF)pretreatment. Hydrophilic DON accounted for 66.66%–88.74% of the entire DON for the two plants evaluated. After a 15-day incubation, 16.95%–91.75% DON was bioavailable for algal growth, and untreated samples exhibited higher DON bioavailability, with 52.83% DON average uptake rates, compared with the hydrophilic and hydrophobic fractions(45.53% and 44.40%, respectively) because the pretreatment caused the inorganic salt to be resistant to algae. Anaerobic untreated samples, hydrophilic fractions and hydrophobic fractions showed higher DON reduction rates and higher biomass accumulation compared with the other DON fractions due to the decomposition of resistant organics by anaerobic and anoxic bacteria.DON in aerobic and effluent samples of plant A was more bioavailable than that of plant B with usages of 27.49%–55.26% DON. DON bioavailability in the anaerobic–anoxic–oxic process decreased in the following order: anaerobic effluent aerobic. The DON contents were reduced after anaerobic treatment in the two plants. The EEM-PARAFAC model identified three DON components, including two humic acid-like substances and one protein-like substance in plant A and two protein-like substances and one humic acid-like substance in plant B.  相似文献   

4.
Modified soils(MSs) are being increasingly used as geo-engineering materials for the sedimentation removal of cyanobacterial blooms. Cationic starch(CS) has been tested as an effective soil modifier, but little is known about its potential impacts on the treated water.This study investigated dissolved organic matters in the bloom water after algal removal using cationic starch modified soils(CS-MSs). Results showed that the dissolved organic carbon(DOC) could be decreased by CS-MS flocculation and the use of higher charge density CS yielded a greater DOC reduction. When CS with the charge density of 0.052, 0.102 and0.293 meq/g were used, DOC was decreased from 3.4 to 3.0, 2.3 and 1.7 mg/L, respectively.The excitation–emission matrix fluorescence spectroscopy and UV254 analysis indicated that CS-MS exhibits an ability to remove some soluble organics, which contributed to the DOC reduction. However, the use of low charge density CS posed a potential risk of DOC increase due to the high CS loading for effective algal removal. When CS with the charge density of 0.044 meq/g was used, DOC was increased from 3.4 to 3.9 mg/L. This study suggested, when CS-MS is used for cyanobacterial bloom removal, the content of dissolved organic matters in the treated water can be controlled by optimizing the charge density of CS. For the settled organic matters, other measures(e.g., capping treatments using oxygen loaded materials) should be jointly applied after algal flocculation.  相似文献   

5.
选取青藏高原多年冻土区12条河流样品进行分析,结合流域内植被类型、流量大小、多年冻土面积与河流溶解性有机碳(DOC)的质量浓度、化学组成、生物可利用性之间的关系及分解动力学进行讨论.结果表明,分别在高寒草甸(AM)、高寒沼泽草甸-高寒草甸(ASM-AM)、高寒草甸-高寒草原(AM-AS)、高寒草甸-高寒草原-裸地(AM-AS-BL)为主的流域内,河流DOC的质量浓度依次为(5.17±0.21)、(5.02±0.50)、(3.55±0.25)和(2.79±0.41)mg·L-1,DOC的生物可降解性程度(BDOC)依次为(23.54±2.62)%、(23.66±3.31)%、(18.17±5.26)%和(11.72±15.56)%;相应地,流域内植被覆盖度越小,河流DOC的芳香性程度越大,DOC的可生物降解性和降解速率随着降低,并且BDOC在培养的过程中的反应遵循一级反应动力学原理;此外,连续多年冻土区河流的BDOC大于非连续多年冻土区的河流BDOC,大河的BDOC小于源头小河的BDOC.研究表明,流域内植被类型是影响多年冻土区河流BDOC的主要影响因素,同时,流量大小和多年冻土对BDOC也有一定的影响.  相似文献   

6.
以贵阳市阿哈水库五条入库河流为研究对象,研究了阿哈水库枯水期入库河流水体可溶性氮、磷含量分布特征,可溶性氮组分比例及沿程变化规律。结果表明:五条入库河流水体可溶性氮、磷含量差异较大,可溶性总氮(DTN)、可溶性总磷(DTP)平均含量分别为1.71~9.74 mg/L和0.03~0.52 mg/L。蔡冲河、烂泥沟河、金钟河受人类活动影响较大,水体DTN、DTP含量较高。不同河流水体可溶性氮组分比例差异显著,受人类活动影响小的游鱼河、白岩河,其水体可溶性氮以可溶性有机氮(DON)为主,DON占DTN的比例高达94%。受人类活动影响大的蔡冲河、烂泥沟河、金钟河则相反,以可溶性无机氮(DIN)为主。不同河流氮、磷含量自上到下游沿程波动较大,人为源造成的氮、磷污染远高于自然源。金钟河的DTN、DTP年输入量分别为97.03 t、46.64 t,对阿哈水库的DTN、DTP输入贡献最大,分别达到45%和66%。  相似文献   

7.
为阐明施肥通过增加植物同化能力,是否可影响土壤可溶性有机碳(DOC)、氮(DON)为目的,采用田间试验,研究了施肥对黄土高原水蚀风蚀交错区黑麦草生长农田DOC及DON含量及累积量的影响。结果表明,不论施氮或施磷,均能提高黑麦草冠层和根系生物量,且施氮水平与黑麦草冠层和根系生物量之间均呈极显著正相关关系。施磷对土壤DOC含量影响相对较小;土壤DOC含量随施氮水平增加呈现减少趋势,0~20 cm土层土壤DOC含量下降幅度最高达25.9%;施氮后不同土层土壤DON含量及累积量增加,0~100 cm土层DON累积量与施氮量呈显著正相关关系;单施磷时0~60 cm土层土壤DON含量较不施肥对照减少,但差异不显著。以上结果表明,在黄土高原水蚀风蚀交错区,高量无机氮肥投入可增加该区植物产量及土壤DON,但不利于土壤DOC累积,说明氮肥投入对改善该地区土壤供氮能力有积极意义。  相似文献   

8.
湿地垦殖对土壤微生物量及土壤溶解有机碳、氮的影响   总被引:8,自引:4,他引:8  
对三江平原天然沼泽湿地及湿地垦殖后的农田、弃耕还湿地、人工林地等不同土地利用方式下表层土壤(0~10cm)的活性碳、氮组分:微生物量碳(MBC)、微生物量氮(MBN)、溶解有机碳(DOC)、溶解有机氮(DON)进行了研究.结果表明,天然小叶章沼泽湿地垦殖为农田后,表层土壤各活性碳、氮组分显著降低:MBC减少了63.8%~80.5%; MBN减少了56.3%~67.1%; DOC减少了43.1%~44.3%; DON减少了25.2%~56.1%.农田弃耕还湿和人工造林后表层土壤的活性碳、氮组分有明显恢复的趋势,各组分恢复到天然小叶章湿地土壤水平的36.1%~59.9%(MBC);46.7%~65.9%(MBN);67.0%~69.3%(DOC);81.2%~88.3%(DON),土地利用方式是影响土壤MBC、MBN、DOC、DON变化的重要因素;各土地利用方式表层土壤的DOC、DON、MBC、MBN呈显著的正相关关系,土地利用方式对表层土壤DOC的影响大于对DON的影响;各土地利用方式下土壤微生物可利用碳、氮的来源不同是影响DOC、DON与MBC、MBN相关性差别明显的主要原因.  相似文献   

9.
Dissolved organic nitrogen(DON)extracted from Lake Shankou sediments using KCl was isolated into hydrophobic and hydrophilic fractions.The bioavailabilities of the hydrophobic and hydrophilic fractions to three types of bacterial communities collected from sediments,activated sludge and compost products were examined.The DON recoveries obtained by DAX-8 and cation exchange resins treatment were 96.17% ± 1.58% and 98.14% ±0% for the samples obtained from N4 and N14 stations,respectively.After 25 days of incubation at 25°C,most DON(59% to 96%)was degraded.Hydrophilic DON exhibited a higher reduction rate than hydrophobic DON during the growth phase.Untreated wastewater from Changshuihe town was the main degradable DON source to station N4,and 93% of hydrophilic DON and 80% of hydrophobic DON were degraded.Station N14 received a large amount of refractory DON from forest soils and exhibited DON degradation rates of 82% and 71% for the hydrophilic and hydrophobic fractions,respectively.Amino acid contents and fluorescence intensities were also analyzed.Approximately 27% to 74% of amino acids were taken up by day 5,and their concentration gradually increased in the following days due to the decomposition of dissolved proteins.Parallel factor analysis resulted in identification of tryptophan-like proteins,tyrosine-like proteins and FA-like substances.During the growth phase,40%–51% of the tryptophan-like proteins were taken up by bacteria,and the accumulation of tyrosine-like proteins was attributed to the release of biotic substances.The concentration of the FA-like substances decreased due to microbial decomposition.  相似文献   

10.
城市景观水体混凝除藻过程对氮元素协同去除特性初探   总被引:2,自引:1,他引:1  
以城市景观水体净化为目标,考察混凝除藻同时去除氮元素的特性和影响因素. 结果发现,水体内较高的DOC(溶解性有机质)含量会阻碍藻浊度的去除. 聚合氯化铝(PACl)以及PACl与硫酸铝(Alum)的复合剂(PACl+Alum)对藻浊度的去除效果均相对单独使用PACl或Alum较好,其中PACl+Alum对其他物质(如氮、DOC等)的去除效果也相对单独使用PACl或Alum更佳;在同样的最佳投药量时,低pH条件能获得更好的藻浊度去除率;对氮元素去除的进一步研究发现,DON(溶解性有机氮)的去除特征和过程与TN(总氮)非常一致,表明该水体TN的去除主体上是通过DON的去除实现的;低pH条件同样有利于氮和DOC的去除;但DOC与DON去除的不同步性,说明DOC中的DON成分和性质是非均一性的,是未来可进一步深入研究的重要方向.   相似文献   

11.
Nutrients, dissolved and particulate organic carbon and plankton (bacterio-, phyto- and zoo-) were compared in the turbidity maximum zone (TMZ) and adjacent areas (non-TMZ) in the Pearl River estuary. Our results showed that high levels of suspended substances had marked effect on dynamics of nutrients and plankton in the TMZ. Based on the cluster analysis of total suspended solids (TSS) concentrations, all stations were divided into two groups, TMZ with average TSS of 171 mg/L and non-TMZ of 45 mg/L. Suspended substances adsorbed PO43 − and dissolved organic carbon, resulting in higher particulate phosphorus and organic carbon (POC) and lower PO43 − and DOC in the TMZ, compared to the non-TMZ. However, suspended substances had limited effect on nitrogenous nutrients. Phytoplankton growth was light-limited due to high concentrations of suspended substances in the TMZ and a peak of phytoplankton abundance appeared in the non-TMZ. In contrast, the highest bacterial abundance occurred in the TMZ, which was likely partly responsible for low DOC levels. Two peaks of zooplankton abundance observed in the TMZ and non-TMZ in the Pearl River estuary were primarily supported by bacteria and phytoplankton, respectively. Our finding implied that high levels of suspended solids in the TMZ affect the trophic balance.  相似文献   

12.
Nitrate-nitrogen(NO_3~--N) always accumulates in commercial recirculating aquaculture systems(RASs) with aerobic nitrification units. The ability to reduce NO_3~--N consistently and confidently could help RASs to become more sustainable. The rich dissolved oxygen(DO)content and sensitive organisms stocked in RASs increase the difficulty of denitrifying technology. A denitrifying process using biologically degradable polymers as an organic carbon source and biofilm carrier was proposed because of its space-efficient nature and strong ability to remove NO_3~--N from RASs. The effect of dissolved oxygen(DO) levels on heterotrophic denitrification in fixed-film reactors filled with polycaprolactone(PCL) was explored in the current experiment. DO conditions in the influent of the denitrifying reactors were set up as follows: the anoxic treatment group(Group A, average DO concentration of 0.28 ± 0.05 mg/L), the low-oxygen treatment DO group(Group B, average DO concentration of 2.50 ± 0.24 mg/L) and the aerated treatment group(Group C, average DO concentration of 5.63 ± 0.57 mg/L). Feeding with 200 mg/L of NO_3~--N, the NO_3~--N removal rates were 1.53, 1.60 and 1.42 kg/m3PCL/day in Groups A, B and C, respectively. No significant difference in NO_3~--N removal rates was observed among the three treatments. It was concluded that the inhibitory effects of DO concentrations lower than 6 mg/L on heterotrophic denitrification in the fixed-film reactors filled with PCL can be mitigated.  相似文献   

13.
Effluent dissolved organic nitrogen (DON) is problematic in nutrient sensitive surface waters and needs to be reduced to meet demanding total dissolved nitrogen discharge limits. Bioavailable DON (ABDON) is a portion of DON utilized by algae or algae + bacteria,while biodegradable DON (BDON) is a portion of DON decomposable by bacteria. ABDON and BDON in a two-stage trickling filter (TF) wastewater treatment plant was evaluated using three different microalgal species, Selenastrum capricornutum, Chlamydomonas reinhardtii and Chlorella vulgaris and mixed cultured bacteria. Results showed that up to 80% of DON was bioavailable to algae or algae + bacteria inoculum while up to 60% of DON was biodegradable in all the samples. Results showed that C. reinhardtii and C. vulgaris can be used as a test species the same as S. capricornutum since there were no significant differences among these three algae species based on their ability to remove nitrogen species.  相似文献   

14.
土壤溶解性有机碳(DOC)是土壤有机碳库的活性组分,DOC降解影响土壤有机碳的迁移转化过程、生态系统的养分平衡和微生物的能源供给。当前大气氮沉降的增加是影响我国南方森林生态系统碳固定过程的重要因素,已引起各方广泛关注。论文基于中亚热带红壤丘陵区三种人工针叶林过去5 a 的施肥试验,重点分析了不同树种土壤DOC季节及0~30 cm土壤垂直剖面上的动态变化特征,对比分析了施肥对于不同人工林土壤DOC的影响。研究发现:① DOC浓度季节变化:湿地松林为秋季 >春季 >夏季 >冬季;马尾松林为秋季 >春季 >冬季 >夏季;杉木林为秋季>夏季>冬季>春季。DOC浓度剖面变化特征如下:湿地松林为10 cm>20 cm>30 cm;马尾松林为20 cm >10 cm >30 cm;杉木林为20 cm >30 cm >10 cm。②湿地松林土壤DOC浓度:施P肥 >对照 >施N+P肥 >施N肥;马尾松林土壤DOC浓度:对照、施N+P肥>施N肥>施P肥;杉木林:对照>施P肥>施N肥、施N+P肥。论文通过研究不同施肥条件下人工林DOC浓度在季节和剖面上的变化,可为了解大气氮沉降对中亚热带人工针叶林土壤DOC的可能影响提供重要的科学依据。  相似文献   

15.
为了解三峡库区水体中可溶性C、N的变化,本研究于2011年3月至2012年8月在三峡水库涪陵段进行了每周一次的水样采集,分析其中可溶性C、N成分的变化及其来源特征.结果表明,库区水中DOC浓度范围为0.64~9.07 mg·L~(-1),且有明显的季节变化,表现为:夏季春季、秋季冬季,DOC年入库总量为1.78×109kg,入库量具有与浓度相似的季节变化趋势;DTN的浓度范围为2.59~4.35 mg·L~(-1),春季冬季夏季秋季,年入库总量为1.32×109kg,入库量的季节变化特征:夏季秋季春季冬季,其中DON、NO-3-N分别占DTN的30.35%~63.45%、35.87%~67.72%.DOC受降水和温度的影响明显,水中DOC主要来自外源输入,春季、夏季降雨径流其外源输入量增加,而秋季、冬季则内源贡献有所增加;DTN受人为排放和水体稀释的影响相对较大.相关分析表明,DOC与DON呈显著负相关(P0.05),通常以DOC/DON比值反映水中DOM的来源,库区DOC/DON范围为0.35~7.28,DOM来源具有明显的季节特征.夏季DOC/DON较高,DOM主要来自流域侵蚀;冬季DOC/DON较低,DOM主要来自生活污水排放和内源现场产生;春季、秋季DOC/DON介于两者之间,DOM来源包括流域侵蚀、生活污水排放及现场产生等.  相似文献   

16.
祁心  江长胜  郝庆菊  李鉴霖 《环境科学》2015,36(10):3816-3824
以位于重庆市北碚区的缙云山为研究对象,通过采集亚热带常绿阔叶林(以下简称林地)、撂荒地、果园、坡耕地0~60cm深度的土壤样品,测定其MBC(微生物生物量碳)、MBN(微生物生物量氮)、DOC(可溶性有机碳)、DON(可溶性有机氮)含量,探讨土地利用方式对土壤活性有机碳、氮组分的影响.结果表明,4种土地利用方式下土壤MBC、MBN、DOC、DON含量均随着土壤深度的增加而降低.在0~60 cm的土壤深度内,土地利用方式对土壤MBC、MBN和DON含量的影响并不明显;撂荒地DOC含量显著高于其它3种土地利用方式,说明坡耕地撂荒能显著提高土壤DOC含量.在0~60 cm土层,林地、撂荒地、果园、坡耕地间MBN、DOC、DON分配比例均无显著差异,但坡耕地MBC分配比例显著高于其它3种土地利用方式,表明坡耕地土壤有机碳具有较高的生物活性,这可能是由于坡耕地施加绿肥以及粪肥等有机肥所致.各土地利用方式下DOC/DON最高,MBC/MBN次之,SOC/TN最低,说明可溶性有机质的生物固化作用最强,而土壤总有机质的矿化作用最明显.4种土地利用方式下SOC/TN、MBC/MBN及DOC/DON均为坡耕地最低,且比值都低于20,表明坡耕地土壤有机质的矿化作用较强,容易造成土壤碳的损失.  相似文献   

17.
Hydroclimatic variability and plant species ecology cause mosaics in forested watersheds in permafrost zones. Measurements of organic matter accumulation, stock of dissolved organic carbon (DOC), DOC concentrations in litter leachates, subsurface flow, stream and seasonal and annual export were made in two contrasting slopes and valleys in the northern taiga of Central Siberia. Increased organic carbon accumulation in litter was found in poor hydroclimatic conditions of the north-facing slope and bottom valleys. In contrast, DOC contents and its export to soil were almost two-fold higher in warmer well-drained sites of the south-facing slope. The overall DOC flux to mineral soil from the beginning of June to mid-September was 17 g C m−2 in the south-facing slope sites and only 9 g C m−2 in the north-facing slope sites. DOC export was positively correlated with precipitation stimulating leaching of mobilizable organic matter. Accordingly intra-seasonal and inter-annual variability of the DOC fluxes was tightly coupled with water input. Meanwhile DOC export in Sphagnum and feathermoss sites showed different behavior in dry and wet years. The presence of permafrost preventing deep seepage of organic solutes results in higher stream DOC fluxes compared to permafrost-free or island permafrost regions. However, thawing of seasonally frozen soil layer during the growing season led to the decreasing concentrations of DOC in the stream from June to September. For two seasons of continuous stream water sampling (June and August–September), the riverine DOC flux constituted about 14% of DOC entering mineral soil on both slopes. The ratio of hydrologic DOC loss to NPP of larch forests of the region was estimated to be 1.1%.  相似文献   

18.
刘堰杨  孙辉  刘琛  王小沁 《环境科学》2019,40(12):5318-5329
川西高原部分河流溶解性有机碳(DOC)含量极高,因有色溶解性有机质(CDOM)具有独特的光学特性,其光降解特征与规律对于分析高寒区天然水体DOC动态及区域水-陆碳循环具有重要的环境意义.本文选取川西高原两种主要地貌类型的河流共5条,即高山峡谷区河流杂谷脑河、抚边河及岷江,丘状高原区河流白河、黑河,对河流水体CDOM三维荧光光谱(EEMs)与紫外-可见光吸收光谱(UV-Vis)采用平行因子分析(PARAFAC)与二维相关光谱(2D-COS)进行分析.结果表明:①白河和黑河CDOM的5 d降解率分别为64. 85%和63. 43%,光降解速率常数分别为0. 167 d-1和0. 173 d-1;抚边河CDOM浓度低(0. 71 m-1)光降解现象不明显,杂谷脑河和岷江CDOM光降解行为较为复杂;②在光降解过程中,除岷江外其余4条河流荧光溶解性有机质(FDOM)内源特征(FI)逐渐减弱,黑河和白河CDOM芳香性、疏水性特征(SUVA254和SUVA260)及腐殖化程度(HIXa)逐渐降低;③川西高原5条河流中FDOM组分均呈2类4个组分,即C1(275/310 nm,类酪氨酸)、C2 [280(250)/400 nm,UVA类腐殖质]和C3(255/440 nm,UVA类腐殖质)、C4[270(360)/492 nm,UVA类腐殖质],类腐殖质FDOM较易光降解;④5条河流中UVA类腐殖质FDOM(尤其是500 nm发射波段)光降解反应先于类酪氨酸物质;丘状高原河流中UVA类腐殖质FDOM对于光照的敏感度大于高山峡谷区河流;⑤白河的主成分分析中识别出了2个因子,解释了这些参数变化的87. 28%,反映了光降解过程对于CDOM特征、荧光组分等方面的影响.  相似文献   

19.
It is generally accepted that a low dissolved oxygen(DO) concentration is more beneficial for achieving partial nitrification than high-DO. In this study, partial nitrification was not established under low-DO conditions in an intermittent aeration reactor for treating domestic wastewater. During the operational period of low-DO conditions(DO: 0.3 ±0.14 mg/L), stable complete nitrification was observed. The abundance of Nitrospira-like bacteria, which were the major nitrite-oxidizing bacteria, increased from 1.03 × 10~6to2.64 × 10~6cells/m L. At the end of the low-DO period, the batch tests showed that high-DO concentration(1.5, 2.0 mg/L) could inhibit nitrite oxidation, and enhance ammonia oxidation. After switching to the high-DO period(1.8 ± 0.32 mg/L), partial nitrification was gradually achieved. Nitrospira decreased from 2.64 × 10~6 to 8.85 × 10~5cells/m L. It was found that suddenly switching to a high-DO condition could inhibit the activity and abundance of Nitrospira-like bacteria, resulting in partial nitrification.  相似文献   

20.
为给进一步实施滇池入湖污染控制及小流域污染治理提供依据,以滇池环湖28条河流入湖水量及水体中不同形态氮的质量浓度逐月调查数据为基础,研究了滇池河流不同形态氮的入湖浓度(ρ)和入湖负荷的时空变化,并探讨了不同形态氮的入湖负荷贡献. 结果表明:①滇池河流入湖ρ(TN)在2.91~94.01 mg/L之间,以ρ(DIN)(DIN为溶解性无机氮)最高,而ρ(DON)(DON为溶解性有机氮)和ρ(PN)(PN为颗粒态氮)均较低. ②滇池河流氮入湖负荷总量为6 908.47 t/a,绝大多数河流以DIN负荷为主,平均贡献为67.15%;DON和PN入湖负荷贡献相近,平均分别为17.86%和14.99%. ③不同形态氮入湖负荷贡献的季节性差异明显,DIN入湖负荷较高值出现在春夏季(3—9月),平均贡献达74.01%;DON入湖负荷较高值则出现在秋冬季(9月—翌年1月),平均贡献达33.42%;PN入湖负荷贡献月份变化差异较小,最高值出现在2月,贡献为40.19%. ④滇池河流氮入湖负荷不仅要考虑DIN的贡献,也应重视DON和PN负荷,控制滇池河流氮入湖负荷需要考虑不同河流不同形态氮负荷组成及其季节性差异,有针对性地采取相应措施.   相似文献   

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