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101.
洞庭湖平原典型水稻土氮素固持动态及氮的残留形态   总被引:4,自引:1,他引:3  
以洞庭湖平原2个典型水稻土(红黄泥和紫潮泥)为对象,采用15N示踪技术,研究了淹水培养条件下稻草+硫铵配施(S+15NA)和单施硫铵(15NA)土壤微生物和粘土矿物对化肥氮的固定与释放及氮的残留形态.结果表明,淹水培养条件下BN(SMBN)总体变化趋势是在培养前期达到峰值,而后逐渐下降,最后趋于稳定.固定态铵在整个试验期间变化相对较小,但也随培养时间的延长而减少.淹水培养条件下, BN 以原有BN为主.标记底物BN的比例红黄泥为0.30%~6.67%;紫潮泥为1.00%~3.47%.微生物同化的标记底物硫铵氮的比例红黄泥为0.15%~20.65%,紫潮泥为2.06%~15.93%;有机无机配施处理(S+15NA)均大于单施化肥(15NA),红黄泥S+15NA处理平均为6.78%,高于红黄泥15NA处理;紫潮泥S+15NA处理(10.78%)也高于紫潮泥15NA处理.粘土矿物对标记底物氮的固定率,红黄泥为2.48%~10.57%,紫潮泥为12.55%~30.04%.红黄泥S+15NA处理平均为7.14%,低于红黄泥15NA 处理;紫潮泥S+15NA处理(21.53%)也低于紫潮泥15NA处理.淹水培养条件下底物硫铵氮的残留率均大于30%,有机无机配施处理提高了无机氮的残留率.红黄泥底物氮的残留形态主要为酸解有机氮(>72%),而紫潮泥以酸解有机氮(44.0%~53.2%)和固定态铵(35.2%~37.5%)为主,两种土壤底物氮矿质氮形态残留在10%~20%之间.研究表明土壤对外源无机氮的固定与释放是一个动态的过程,施肥方式和土壤粘土矿物组成对该过程有重要影响.化肥和秸秆配合施用能增强微生物对无机氮的同化,降低土壤粘土矿物对无机氮的固持.有机无机配施处理在降低化肥氮损失的同时提高了酸不溶性氮态的残留率,降低了无机氮形态(固定态铵和矿质氮)的残留.  相似文献   
102.
油田区土壤微生物种群构成及系统分类初步研究   总被引:7,自引:3,他引:4  
贾建丽  李广贺 《环境科学》2009,30(4):1185-1192
通过直接从土壤中提取总DNA,并对其16S rDNA 片段作PCR-DGGE分析,对油田区土壤微生物种群及其分布进行初步研究.结果表明,本研究改进的方法DNA提取率提高到现有方法的1.4~2.2倍,纯度提高到1.8~2.0;不同区域环境下石油污染土壤的微生物种群构成存在差异,CQ油田和DQ油田种群构成相似性较高,SL油田和YM油田则差异显著,其影响因素包括含油率、含水量等土壤基本特性;各油田土壤微生物与参考序列的相似性达89%~100%;油田区土壤香农-威纳指数分布在0.5~1.2之间,且随着微生物数量和活性的升高略有增加.通过上述研究可为评价区域环境下石油污染土壤的微生物群落结构,调控和优化污染土壤的微生态环境以及识别优势群落提供客观、可靠的技术依据.  相似文献   
103.
A2/O工艺中好氧污泥絮体的分形结构与理化特征分析   总被引:2,自引:2,他引:0  
采用图像法和沉降柱法分别研究了A2/O工艺中好氧污泥絮体的形貌、粒度分布、低维分形维数和沉降速率、有效密度、空隙率以及质量分形维数,并尝试探讨了上述相关性质与这些污泥宏观操作性质(沉降、压缩、脱水和稳定性)相关的各种理化指标以及胞外高分子物质(EPS)的含量之间的变化关系.结果表明,污泥絮体呈现不规则的形貌,表面具有空隙.其有效密度一般随着其粒径的增加而降低,而空隙率和沉降速率却呈现与有效密度相反的变化趋势,这些均表明了污泥絮体的分形结构的存在.2次所采集的污泥絮体的中位直径分别为248.81、 332.86 μm,有效密度的平均值分别为0.004 0、 0.007 2 g·cm-3,自由沉降速率的平均值分别为2.67、 4.79 mm·s-1,空隙率的平均值分别为0.94、 0.89,一维分形维数分别为1.03、 1.19,二维分形维数分别为1.64、 1.84,采用基于Logan经验公式的有效密度-最大直径的双对数关系确定的质量分形维数分别为1.74、 2.29.尽管第2次所采集的污泥絮体较为密实,但其表面粗糙程度却比第1次的低.此外,研究中发现絮凝能力较高或负电荷较高的A2/O好氧污泥絮体具有高的SVI和ZSV值;分形维数较低的污泥具有高的剪切敏感性和低絮体强度,相应的污泥稳定性低;EPS总量高的污泥脱水性能差,EPS中蛋白质含量高的污泥其表面电荷也较高.  相似文献   
104.
利用玉米浸泡液产电的微生物燃料电池研究   总被引:8,自引:3,他引:5  
以玉米淀粉生产过程中的浸泡液(玉米浸泡液)作为接种液和基质,利用“三合一”膜电极的单室空气阴极微生物燃料电池进行试验,采用在线监测电压和废水分析方法对产电功率和化学需氧量(COD)、氨氮进行测定,探讨高COD、高氨氮有机废水产电及废水处理的可行性.结果表明,经过94 d(1个周期)的连续运行(固定外电阻为1 000 Ω),17 d时输出电压达到最大(525.0 mV),稳定期最大输出功率可达169.6 mW/m2,此时电池相应的电流密度为440.2 mA/m2,内阻约为350 Ω,开路电压619.5 mV;但燃料电池电子利用效率较低(库仑效率为1.6%);1个周期结束时浸泡液的COD去除率达到51.6%,氨氮去除率25.8%.本试验利用玉米浸泡液成功获得电能,同时对浸泡液有效地进行了处理,为其资源化利用提供新途径.  相似文献   
105.
The combined pollution of heavy metal Pb2+ and bensulfuron-methyl (BSM), originating from chemical herbicides, in agroecological environments has become commonplace in southern China. The adsorption of BSM on three paddy soils in the presence of Pb2+ was examined using high-performance liquid chromatograph (HPLC). Results indicated that adsorption of BSM could accurately be described by a Freundlich isotherm equation with correlation constant (R) > 0.98, irrespective of the presence of spiked Pb2+. Of the various factors influencing BSM sorption, soil pH appeared to be the most influential. The constant Kf of Freundlich isotherm equation tended to increase with increasing Pb2+ concentration in soil which indicated that the spiked of Pb2+ in paddy soils would promote the sorption of BSM. ΔGθ of BSM in three paddy soils was less than 40 kJ/mol in all treatments, indicating the adsorption of BSM is mainly physical in nature. The elution of soil dissolved organic matter (DOM) enhanced the adsorption of BSM in paddy soils. The mechanisms involved in the promotion effects of the spiked Pb2+ on BSM adsorption might be the modified surface characteristics of paddy soil solids due to the soil acidification and the increase of soil organic matter concentration because of DOM binding.  相似文献   
106.
Degradation of chlorpyrifos at different concentrations in soil and its impact on soil microbial functional diversity were investigated under laboratory conditions. The degradation half-lives of chlorpyrifos at levels of 4, 8, and 12 mg/kg in soil were calculated to be 14.3, 16.7, and 18.0 d, respectively. The Biolog study showed that average well color development (AWCD) in soils was significantly (P < 0.05) inhibited by chlorpyrifos within the first two weeks and thereafter recovered to the similar level as the control. A similar variation in the diversity indices (Simpson index 1/D and McIntosh index U) in chlorpyrifos-treated soils was observed, no significant difference in the Shannon-Wiener index H' was found in these soils. With increasing chlorpyrifos concentration, the half-lives of chlorpyrifos were significantly (P ≤ 0.05) extended and its inhibitory effects on soil microorganisms were aggravated. It is concluded that chlorpyrifos residues in soil had a temporary or short-term inhibitory effect on soil microbial functional diversity.  相似文献   
107.
胞外酶对堆肥中微生物群落演替的影响   总被引:2,自引:0,他引:2       下载免费PDF全文
研究了添加黄孢原毛平革菌胞外酶对农业废物堆肥中木质纤维素降解及微生物群落演替的影响.结果表明,堆肥初期,胞外酶对微生物生长具有抑制作用,且随堆肥时间的延长逐渐减弱;堆肥后期,胞外酶可提高微生物群落的多样性和均匀性,并促进木质素和半纤维素的大量降解.醌指纹数据显示,胞外酶并未引起新的优势醌的出现,进入高温期后,以MK-7为主要醌类的微生物作为优势菌群,且这种优势一直存在;堆肥后期胞外酶对甲基萘醌影响较大,可促进长链甲基萘醌的出现.主成分分析表明,胞外酶对醌种类演替的影响主要作用在3d和40d,这与非相似性指数结果一致,并使真菌在整个体系中影响力加大.  相似文献   
108.
Aerobic granular sludge was cultivated in sequencing batch airlift reactors(SBAR) at 25,30,and 35°C,respectively.The effect of temperature on the granules characteristics was analyzed and the microbial community structures of the granules were probed using scanning electron microscope(SEM) and polymerase chain reaction-denaturing gradient gel electrophoresis(PCR-DGGE).The results showed that 30°C is optimum for matured granule cultivation,where the granules had a more compact structure,better settling abili...  相似文献   
109.
Constructed wetlands have emerged as a viable option for helping to solve a wide range of water quality problems. However, heavy metals adsorbed by substrates would decrease the growth of plants, impair the functions of wetlands and eventually result in a failure of contaminant removal. Typha latifolia L., tolerant to heavy metals, has been widely used for phytoremediation of Pb/Zn mine tailings under waterlogged conditions. This study examined e ects of iron as ferrous sulfate (100 and 500 mg/kg) and lead as lead nitrate (0, 100, 500 and 1000 mg/kg) on phosphorus utilization and microbial community structure in a constructed wetland. Wetland plants (T. latifolia) were grown for 8 weeks in rhizobags filled with a paddy soil under waterlogged conditions. The results showed that both the amount of iron plaque on the roots and phosphorus adsorbed on the plaque decreased with the amount of lead addition. When the ratio of added iron to lead was 1:1, phosphorus utilized by plants was the maximum. Total amount of phospholipids fatty acids (PLFAs) was 23%–59% higher in the rhizosphere soil than in bulk soil. The relative abundance of Gram-negative bacteria, aerobic bacteria, and methane oxidizing bacteria was also higher in the rhizosphere soil than in bulk soil, but opposite was observed for other bacteria and fungi. Based on cluster analysis, microbial communities were mostly controlled by the addition of ferrous sulfate and lead nitrate in rhizosphere and bulk soil, respectively.  相似文献   
110.
Using reclaimed wastewater for crop irrigation is a practical alternative to discharge wastewater treatment plant effluents into surface waters.However,biofouling has been identified as a major contributor to emitter clogging in drip irrigation systems distributing reclaimed wastewater.Little is known about the biofilm structure and its influence on clogging in the drip emitter flow path.This study was first to investigate the microbial characteristics of mature biofilms present in the emitters and the effect of flow path structures on the biofilm microbial communities.The analysis of biofilm matrix structure using a scanning electron microscopy (SEM) revealed that particles in the matrix of the biofilm coupled extracellular polysaccharides (EPS) and formed sediment in the emitter flow path.Analysis of biofilm mass including protein,polysaccharide and phospholipid fatty acids (PLFAs) showed that emitter flow path style influenced biofilm community structure and diversity.The correlations of biofilm biomass and discharge reduction after 360 h irrigation were computed and suggest that PFLAs provide the best correlation coefficient.Comparatively,the emitter with the unsymmetrical dentate structure and shorter flow path (Emitter C) had the best anti-clogging capability.By optimizing the dentate structure,the internal flow pattern within the flow path could be enhanced as an important method to control the biofilm within emitter flow path.This study established electron microscope techniques and biochemical microbial analysis methods that may provide a framework for future emitter biofilm studies.  相似文献   
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