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91.
土地利用方式改变对红树林沉积物中营养元素含量的影响   总被引:1,自引:0,他引:1  
以广西、广东、海南等地代表性红树林湿地为对象,研究红树林湿地利用方式的改变对沉积物有机碳、总硫、总氮和总磷等营养元素的含量变化和影响,结果表明:1)广东和海南红树林区总氮和总磷变化相似,均为:沉积物〉农田〉鱼塘〉光滩,广西大冠沙稍有不同,光滩的氮磷含量最低;有机碳和总硫含量各地稍有差异,但是红树林沉积物中的有机碳,总硫...  相似文献   
92.
为了考察氮磷同时缺乏对活性污泥系统的影响,采用2个序批式间歇反应器(SBR),按照缺氧/好氧的方式平行运行,通过调节不同的进水COD/N/P比,考察了氮磷同时缺乏状态下活性污泥系统的污泥沉降性、絮体形态、出水水质以及比耗氧速率等方面的表现。结果表明,在氮磷同时缺乏时,当进水COD/N/P比为100/2/0.4时,活性污泥系统会发生丝状菌膨胀,而当进水COD/N/P为100/0.5/0.1时,污泥沉降性保持良好;各反应器的活性污泥浓度均在逐渐地下降,MLSS由约2200mg/L下降至1800mg/L以下;各反应器的比耗氧速率均呈现逐渐上升的趋势,COD的去除率呈现逐渐下降的趋势。  相似文献   
93.
崔经国  单保庆  王帅 《环境科学》2012,33(4):1108-1113
研究了潮白河流域中污染水体对周丛生物群落的碳(C)、氮(N)、磷(P)元素含量以及生态计量组成的影响.结果表明,下游潮白河NH4+-N、NOx--N分别占TN的52%和28%;上游白河则分别占1.6%和38%.潮白河TP含量(0.104 mg.L-1)为白河TP含量(0.005 mg.L-1)的21倍.白河和潮白河周丛生物C、N、P元素的变异系数分别为0.55、0.41、0.62和0.24、0.13、0.18,表明生长于白河周丛生物的元素结构变化更大.无周丛生物的水体NH4+-N和TP的浓度分别为有周丛生物的21倍和11倍.通过对TOC、TN、NOx--N、NH4+-N、TP、pH、氧化还原电位(ORP)和电导率(conductivity)等水质指标进行二元Logistic回归分析得知,水体TP为影响潮白河周丛生物生存的主要因素,其预测正确率为87.3%.周丛生物C、N、P元素间有强相关性,其中N起了"桥梁"作用.生态计量学分析进一步显示周丛生物的N∶P的比值追随水体TN∶TP的变化;并且该比值主要受水体TP浓度影响.周丛生物N∶P可用于水体TN∶TP变化的生态计量学的指示因子.本研究为进一步探究周丛生物群落结构变化,以及对高一级营养级生物群落结构和元素循环的影响奠定了基础.  相似文献   
94.
一种新型电化学法处理硝态氮废水的初步研究   总被引:2,自引:0,他引:2  
叶舒帆  胡筱敏  张杨  董俊 《环境科学》2010,31(8):1827-1833
通过对Pd-Me双金属催化还原NO 3--N和折点氯化法处理NH 4+-N的相关理论分析,提出了一种基于电化学法的新型NO 3--N废水处理工艺.即利用具有电子空轨的常见金属元素修饰Ti基获得催化阴极,在电场的作用下,将NO 3--N催化还原;通过调整催化元素的配比和电解条件,控制NO 3--N还原产物主要为NH 4+-N;利用阳极氧化Cl-生成高氧化性物质HOCl,将NH 4+-N氧化为无害产物N2-N.结果表明,金属元素Co和Cu修饰Ti基制得阴极可以有效地催化还原模拟废水中的NO 3--N;按前驱物溶液金属元素摩尔比1∶1制得Ti基Co-Cu复合涂层催化阴极,可以将NO 3--N高效催化还原为NH 4+-N;电解体系中引入Cl-后,通过阳极作用可将NO 3--N还原生产的NH 4+-N有效地氧化为N2-N.在100 mg/L NO 3--N模拟废水中添加1 000 mg/L Cl-,设置极板间距6 mm、电流400 mA,电解2.5 h后出水NO 3--N、NO 2--N、NH 4+-N和TN分别为2.9、0.5、1.7和6.0 mg/L.  相似文献   
95.
三阶段温度控制堆肥接种法对有机氮变化规律的影响   总被引:1,自引:0,他引:1  
利用原生生活垃圾,通过三阶段温度控制技术进行堆肥试验,探讨在堆肥过程中有机态氮组分的动态变化规律.结果表明,全氮、酸水解有机态氮、氨基酸态氮均在堆肥的前期呈明显的下降趋势,呈较好的相关性.与CK(对照组)处理相比,在堆肥的后期,三阶段温度控制堆肥酸水解有机态氮、氨基酸态氮、氨基糖态氮及酸解未知态氮含量呈不同程度的上升趋势,增加幅度依次为:10.67%、16.17%、7.17%、22.44%.表明三阶段温度控制技术能减少堆肥中氮素的损失,堆肥产品施入土壤后,可提高土壤的供氮潜力.  相似文献   
96.
以昆山市为典型区,采集了126个表层土壤样品,通过多元统计学、地统计学与GIS技术相结合,采用基于协同区域化理论的因子克立格法探讨了长三角多个土壤重金属有效态的区域分异,并在剖析不同空间尺度有效态重金属的空间结构特征基础上,应用空间相关分析和空间主成分分析来揭示引起这种分布格局的成因和污染来源,结果表明,昆山土壤有效态重金属服从正态或对数正态分布,变异系数较大,有效态Cd污染最重.重金属有效态在空间上可划分为块金尺度、小空间尺度(15 km左右)和大空间尺度(40 km左右),它可用3个尺度的实验(交叉)变异函数的协同区域化模型线性拟合.空间相关分析中,Cd和Zn在3个尺度中的相关性均极显著,且元素在小尺度和大尺度的相关性比块金尺度更强,大尺度的负相关特征较其它尺度明显.空间主成分分析表明,不同尺度的空间污染来源不同.重金属有效态第一、二主成分的空间分布格局结果表明重金属有效态含量与工业活动、污水灌溉和土壤性质密切相关.  相似文献   
97.
黄河口无机碳输运过程对pH异常增高现象的响应   总被引:5,自引:1,他引:4  
张向上  张龙军 《环境科学》2007,28(6):1216-1222
为研究黄河无机碳的输运过程及有效入海通量,通过对2004年至2006年黄河口汛期和非汛期淡水-海水混合过程中无机碳参数、溶解氧饱和度、叶绿素和NH+4、 PO3-4的分析得出,黄河口低盐度区pH出现相对于淡水端异常增高现象,而恰在此区域DIC出现亏损现象,黄河口淡-咸水混合区域pH异常增高现象可以表征无机碳的沉降作用.淡咸水混合初期生物好氧呼吸作用的降低能够导致pCO2的迅速降低是造成低盐度区pH出现相对于淡水端异常增高现象的主要原因.根据河口溶解物质的保守混合模型,发现混合过程中ΔDIC与ΔTA是1∶1的关系,表明DIC出现亏损是由于HCO-3清除造成的,汛期和非汛期黄河口无机碳的沉降作用能够清除输入到河口DIC总量的10%,即黄河口每年可清除1.21×105 t河流输入的溶解无机碳,DIC的有效入海通量约为10.86×105 t,通过评估,黄河流域风化作用吸收的大气CO2量将有10%左右被河口无机碳沉降作用重新释放到大气中,而流域风化作用固定的CO2在河口将有2.24×105 t(以CO2计)重新释放到大气中.  相似文献   
98.
Alga-lysing bacteria have been paid much attention to in recent years. In this study, the alga-lysing strain P05 which was isolated from an immobilizing biosystem was immobilized by coke and elastic filler, forming two biological reactors. The removal efficiencies of algae, NH4^+-N and organic matter using the two reactors were studied. The results showed that strain P05 was an ideal algal-lysing bacteria strain because it was easy to be immobilized by coke and elastic filler which are of cheap, low biodegradability and the simple immobilization procedure. After 7 d filming, the biological film could be formed and the reactors were used to treat the eutrophic water. These two reactors were of stability and high effect with low cost and easy operation. The optimal hydraulic retention time (HRT) of each reactor was 4 h. The algae removal rates were 80.38% and 82.1% (in term of Chl-α) of coke reactor and filler reactor, respectively. And that of NH4^+-N were 52.3% and 52.7%. The removal rates of CODMn were 39.03% and 39.64%. The strain P05 was identified as Bacillus sp. by PCR amplification of the 16S rRNA gene, BLAST analysis, and comparison with sequences in the GenBank nucleotide database.  相似文献   
99.
Vertical and temporal distributions of N and P in soil solution in aquatic-terrestrial ecotone (ATE) of Taihu Lake were investigated, and the relations among N, P, ORP (oxidation reduction potential), TOC, root system biomass and microorganism were studied. As a whole, significant declines in TN, NO3^--N, DON (dissolved organic nitrogen) and TP concentration in soil solution have occurred with increase of the depth, and reached their minima at 60 cm depth, except for NH4^+-N, which increased with depth. The concentration of TP increased gradually from spring to winter in the topsoil, the maximum 0.08 mg/L presented in the winter while the minimum 0.03 mg/L in spring. In the deeper layer, the concentration value of TP fluctuated little. As for the NO3^--N, its seasonal variation was significant at 20 cm depth, its concentration increased gradually from spring to autumn, and decreased markedly in winter. Vertical and temporal distribution of DON is contrary to that of NO3^--N. The results also show that the variation of N and P in the percolate between adjacent layers is obviously different. The vertical variation ofTN, TP, NO3^--N, NH4^+-N and DON is significant, of which the variation coefficient of NO3^--N along the depth reaches 100.23%, the highest; while the variation coefficient of DON is 41.14%, the smallest. The results of correlation analysis show that the concentration of nitrogen and phosphorus correlate significantly with TOC, ORP, root biomass and counts of nitrifying bacteria. Most nutrients altered much from 20 to 40 cm along the depth. However, DON changed more between 60 and 80 cm. Results show that soil of 0-60 cm depth is active rhizoplane, with strong capability to remove the nitrogen and phosphorus in ATE. It may suggest that there exists the optimum ecological efficiency in the depth of above 60 cm in reed wetland. This will be very significant for ecological restoration and reestablishment.  相似文献   
100.
Overwhelming evidence reveals that concentrations of dissolved organic carbon (DOC) have increased in streams which brings negative environmental impacts. DOC in stream flow is mainly originated from soil-water solutions of watershed. Wetlands prove to be the most sensitive areas as an important DOC reserve between terrestrial and fluvial biogeosystems. This reported study was focused on the distribution characteristics and the controlling factors of DOC in soil-water solutions of annular wetland, i.e., a dishing wetland and a forest wetland together, in the Sanjiang Plain, Northeast China. The results indicate that DOC concentrations in soilwater solutions decreased and then increased with increasing soil depth in the annular wetland. In the upper soil layers of 0-10 cm and 10-20 cm, DOC concentrations in soil-water solutions linearly increased from edge to center of the annular wetland (R^2 = 0.3122 and R^2 = 0.443). The distribution variations were intimately linked to DOC production and utilization and DOC transport processes in annular wetland soil-water solutions. The concentrations of total organic carbon (TOC), total carbon (TC) and Fe(II), DOC mobility and continuous vertical and lateral flow affectext the distribution variations of DOC in soil-water solutions. The correlation coefficients between DOC concentrations and TOC, TC and Fe(II) were 0.974, 0.813 and 0.753 respectively. These distribution characteristics suggested a systematic response of the distribution variations of DOC in annular wetland soil-water solutions to the geometry of closed depressions on a scale of small catchments. However, the DOC in soil pore water of the annular wetland may be the potential source of DOC to stream flow on watershed scale. These observations also implied the fragmentation of wetland landscape could bring the spatial-temporal variations of DOC distribution and exports, which would bring negative environmental impacts in watersheds of the Sanjiang Plain.  相似文献   
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