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131.
低C/N比污水生物脱氮所需外加碳源量的确定   总被引:8,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   
132.
盐度对污水硝化过程中N_2O产量的影响   总被引:1,自引:0,他引:1  
采用调节盐度(7.5 g/L)和未调节盐度(0.1 g/L)实际生活污水驯化的活性污泥,分别考察了其相应硝化过程中N2O的产量和转化率.结果表明,盐度7.5 g/L生活污水硝化过程中N2O产量是未调节盐度N2O产量的2.85倍.考察其他盐度下污水硝化过程中N2O产量与转化率的结果表明,盐度从7.5 g/L降低到5.0、2.5 g/L后,N2O产量变化不大,但系统比氨氧化速率随着盐度的下降有所增加;当盐度从7.5 g/L急剧增加到10 g/L后,硝化过程中N2O产量和转化率均有大幅升高,产量达到7.5 g/L时的2.2倍,比氨氧化速率大幅下降.因此处理含盐污水时,应尽量避免盐度的过高波动,防止污水硝化过程中N2O产量和转化率大幅地升高.  相似文献   
133.
四川盆地紫色丘陵区不同种植模式下氮流失特征   总被引:5,自引:2,他引:5  
氮素流失是农业面源污染的重要来源.为了解四川盆地紫色丘陵区不同种植模式下氮的流失特征,以四川盆地紫色丘陵区4种典型耕作模式紫云英-水稻(M1)、空地-大豆-空地(M2)、空地-生姜(M3)、空地-玉米+红薯(M4)等为研究对象,研究了4种模式从2008年12月到2009年8月共8次有效降雨中氮通过地表径流和渗透水的流失特征.研究期间,4种模式下氮流失量随着降雨量的增加而增加,总氮流失量表现为:M3((30.388±2.86)kg·hm-2)M4((17.118±1.677)kg·hm-2)M2((10.987±1.108)kg·hm-2)M1((6.090±1.051)kg·hm-2).相对于其它模式,M4模式下地表径流量和渗透水量在研究期间均最大,但M3模式下氮通过地表径流和渗透水的流失量最大.另外,非生长季节4个模式下氮流失量相对较低且各模式间差别较小,生长季节4个模式间可溶性氮和总氮通过地表径流和渗透水流失量均表现为M3M4M2M1.4种种植模式下氮通过地表径流和渗透水的流失形态均以硝态氮为主.渗透水中铵态氮和可溶性总氮占总氮的比例高于地表径流.这些结果为该区区域合理选择耕作模式、优化耕作方式、加强管理以控制区域农业面源污染提供了一定的基础数据.  相似文献   
134.
铁是动植物进行生命活动不可缺少的元素。在藻塘内,铁能够影响藻细胞生长与繁殖,影响水质净化效果。通过研究不同浓度Fe3+对小球藻生长影响,并设定进水C/N和N/P,确定适宜Fe3+对藻塘出水理化性质及其污染物去除的影响。结果表明:当c(Fe3+)为10 000 nmol/L时,藻细胞质量增加约25%。适宜浓度Fe3+可调节藻塘水体DO、p H及ORP,提高净化效果。Fe3+利用率与COD、TN和TP去除率呈线性正相关,且随进水N/P的提高而增高。当ρ(N)/ρ(P)为50,ρ(C)/ρ(N)=5时,加铁藻塘COD、TN、TP去除率分别为45.34%、77.14%、43.11%,与未加铁藻塘相比,去除率分别提高约3,5.47,9.64个百分点。因此,铁可以促进藻类的生长,当藻塘进水ρ(C)∶ρ(N)∶ρ(P)∶ρ(Fe)为250∶50∶5∶1时,可降低污染物浓度,提高去除效果。  相似文献   
135.
2008年5月~2011年10月,以内蒙古温带典型草原为研究对象,利用小区模拟控制试验,设置对照[0 g·(m2·a)-1]、低氮[5 g·(m2·a)-1]、中氮[10 g·(m2·a)-1]、高氮[20 g·(m2·a)-1]这4个净氮输入量处理,模拟研究了大气氮沉降水平变化对土壤总有机碳(TOC)以及溶解性有机碳(DOC)含量、年际变化及其垂直分布格局的影响,并分析了两者之间的关系.结果表明,除个别年份外,土壤TOC与DOC含量均随土壤深度增加而递减,4 a的连续施氮并未改变土壤TOC与DOC的垂直分布规律,但施氮降低了土壤TOC的垂直变异,增加了土壤DOC的垂直变异;施氮4 a对于草地表层0~20 cm土壤TOC与DOC含量的变化并未表现出显著影响(P>0.05).不同氮输入水平处理0~20 cm土层有机碳密度在3.9~5.6 kg·m-2之间变动,试验前两年不同氮处理0~20 cm土壤有机碳密度均低于对照或与对照接近,试验后两年,施氮对土壤总有机碳密度逐渐呈现出一定的促进作用,但与对照的差异仍不显著(P>0.05);不同处理0~20 cm土层DOC/TOC约为0.32%~1.09%,氮输入增加普遍降低了DOC在整个TOC中所占的比例;草地土壤TOC与DOC的变化呈显著正相关(P<0.01).不同处理草地土壤DOC随时间的变异均远大于TOC,与TOC相比,草地土壤DOC的变化更为迅速,是研究草地土壤碳库对氮沉降变化响应的重要敏感性指标.  相似文献   
136.
In Sub-Saharan Africa, conservation of available soil N during early crop growth, when N loss by leaching generally occurs, is important to improve crop productivity. In a dry tropical cropland in Tanzania, we assessed the potential role of soil microbes as a temporal N sink-source to conserve the available soil N until later crop growth, which generally requires substantial crop N uptake. We evaluated the effect of land management [i.e., no input, plant residue application before planting (P plot) with or without fertilizer application, fertilizer application alone, and non-cultivated plots] on the relationship between soil N pool [microbial biomass N (MBN) and inorganic N] and crop N uptake throughout the ∼120-d crop growth period in two consecutive years. In the P plot, MBN clearly increased (∼14.6-29.6 kg N ha−1) early in the crop growth period in both years because of immobilization of potentially leachable N, and it conserved a larger soil N pool (∼10.5-21.2 kg N ha−1) than in the control plot. Especially in one year in which N leaching was critical, increased MBN maintained a larger soil N pool in the P plot throughout the experimental period, and a delay of increased MB C:N ratio and a substantial decrease in MBN was observed, indicating better soil microbial N supply for crop N uptake during later crop growth. Therefore, plant residue application before planting should enhance the role of soil microbes as a temporal N sink-source, leading to the conservation of potentially leachable N until later phase of crop growth, especially in years in which N leaching is relatively severe. Although further studies are necessary, our results suggest that plant residue application before planting is a promising option to achieve better N synchronization.  相似文献   
137.
To understand the effects of long-term amendment of organic manure and N fertilizer on N2O emission in the North China Plain, a laboratory incubation at different temperatures and soil moistures were carried out using soils treated with organic manure (OM), half organic manure plus half fertilizer N (HOM), fertilizer NPK (NPK), fertilizer NP (NP), fertilizer NK (NK), fertilizer PK (NK) and control (CK) since 1989. Cumulative N2O emission in OM soil during the 17 d incubation period was slightly higher than in NPK soil under optimum nitrification conditions (25℃ and 60% water-filled pore space, WFPS), but more than twice under the optimum denitrification conditions (35℃ and 90% WFPS). N2O produced by denitrification was 2.1-2.3 times greater than that by nitrification in OM and HOM soils, but only 1.5 times greater in NPK and NP soils. These results implied that the long-term amendment of organic manure could significantly increase the N2O emission via denitrification in OM soil as compared to NPK soil. This is quite different from field measurement between OM soil and NPK soil. Substantial inhibition of the formation of anaerobic environment for denitrification in field might result in no marked difference in N2O emission between OM and NPK soils. This is due in part to more rapid oxygen diffusion in coarse textured soils than consumption by aerobic microbes until WFPS was 75% and to low easily decomposed organic C of organic manure. This finding suggested that addition of organic manure in the tested sandy loam might be a good management option since it seldom caused a burst of N2O emission but sequestered atmospheric C and maintained efficiently applied N in soil.  相似文献   
138.
Bagasse, a biomass fuel, is the waste generated by the sugar-making process from sugar cane. Sugar making is one of the most important agricultural-produce processing industries for developing countries in Southeast Asia, Latin America and Africa. As sugar producing plants need electric power and process steam, co-generation using bagasse as an alternate fuel for petroleum has been in use for some time. Thailand recently became one of the largest sugar exporters by enlarging plant capacities and improving equipment, thus reducing its production cost. In addition, the Thai government promotes power generation using bagasse as a means to combat global warming by raising the purchase price of the surplus power. The industry is in the process of further raising the plant capacity, and improving the power-generating efficiency. This will enable a plant to generate more electric power than its in-plant need so that the surplus power can be sold to the commercial grid. It also plans to become a local power supplier during off-season of sugar making by adding a condensing turbine generator. A typical Thai sugar plant of the latest design generates steam of 4Mpa at the bagasse boiler outlet with the temperature of 400°C at 84% boiler efficiency. With the bagasse LHV of 7,540 kJ/kg and that of fuel oil 41, 840 kJ/kg, and taking 90%as oil-burning boiler efficiency, 5.95 kg of bagasse would replace 1 kg of oil. The Kyoto Mechanism defines CO2 generation by fuel oil as 2.65 kg per liter. Using 0.85for the specific gravity of fuel oil, the amount of CO2 generation will be 3.12 kg-CO2/kg. Therefore, CO2reduction per ton of bagasse in terms of fuel oil will be: 3.12/5.95 =0.524 kg-CO2/kg-bagasse. As 1 kg of bagasse generates 2 kg of steam, the CO2reduction of a 100t/h steam boiler will be112,660 ton/year for an annual operation of4,300 hours, as follows. 0.524 × 100/2 = 26.2 t-CO2/h, 26.2 × 4,300 =112,660 t-CO2/year. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   
139.
植被类型对黄土丘陵区流域土壤有机碳氮的影响   总被引:9,自引:1,他引:9  
恢复植被是遏止水土流失和提高土壤有机碳氮(SOC,TSN)积累的重要措施。以黄土丘陵沟壑区燕沟流域为基础,分析了主要植被类型的SOC,TSN变化及其分布特征。结果表明,自然恢复的辽东栎群落SOC含量为29.5g/kg,其次为黄刺玫,狼牙刺群落11.6~21.3g/kg,铁杆蒿(+长芒草)群落为8.4~10.6g/kg。人工建造的刺槐林5.53~11.9g/kg,小叶杨12.8~18.4g/kg,沙棘群落为8.7g/kg,仁用杏为4.7g/kg,苹果园SOC含量3.4~3.9g/kg,退耕苜蓿为4.2g/kg,耕地3.3~4.8g/kg。自然恢复的灌丛群落和人工乔木群落可有效地改变坡面SOC含量与分布。土壤有机碳氮具有显著线性关系,而C/N比例和作用区间随着农田到林地的演变而变大。  相似文献   
140.
土壤pH、Eh对土壤-苦丁茶树系统中铅分布的影响   总被引:1,自引:0,他引:1  
以苫丁茶冬青(Ilex kudingcha C.J.Tseng)扦插苗(15个月生)进行盆栽实验,通过土施H2SO4、Ca(OH)2和复合肥,改变土壤pH和氧化还原电位(Eh),研究土壤pH、Eh条件对土壤-苦丁茶树系统中铅分布的影响.结果表明:在所研究的土壤pH范围内,从酸性到碱性变化,铅在土壤中含量分布趋于减少,在...  相似文献   
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