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191.
Clay loam soil from agricultural fields of alluvial (AL) soil (typic udifluvent) and coastal saline (CS) soil (typic endoaquept) were investigated for the degradation and effect of pencycuron application at field rate (FR), 2-times FR (2FR) and 10-times FR (10FR) with and without decomposed cow manure (DCM) on soil microbial variables under laboratory conditions. Pencycuron degraded faster in CS soil and in soil amended with DCM. Pencycuron spiking at FR and 2FR resulted in a short-lived (in case of 10FR slightly longer) and transitory toxic effect on soil microbial biomass-C (MBC), ergosterol content and fluorescein diacetate hydrolyzing activity (FDHA). Amendment of DCM did not seem to have any counteractive effect of the toxicity of pencycuron on the microbial variables. The ecophysiological status of the soil microbial communities as expressed by microbial metabolic quotient (qCO2) and microbial respiration quotient (Q(R)) changed, but for a short period, indicating pencycuron induced disturbance. The duration of this disturbance was slightly longer at 10FR. Pencycuron was more toxic to the metabolically activated soil microbial populations, specifically the fungi. It is concluded that side effects of pencycuron at 10FR on the microbial variables studied were only short-lived and probably of little ecological significance.  相似文献   
192.
We designed a microcosm experiment to assess the influence of inoculation with Eisenia foetida earthworms and the establishment of an Avena sativa cover crop on biological (enzyme activities and labile carbon fractions) soil quality indicators in a soil treated with a composted organic residue, and to determine the contribution of these treatments to carbon dioxide emissions from the soil to the atmosphere of the microcosm. The microcosms were incubated for 53 days under 28 °C/18 °C day/night temperatures. The addition of earthworms and the planting of A. sativa increased dehydrogenase activity of compost amended soil by about 44% after 23 days of incubation. The metabolic potential, calculated as the ratio dehydrogenase activity/water soluble C, was higher in the compost amended soil planted with A. sativa. The highest total amount of CO2–C evolved occurred in the soil treated with composted residue and earthworms (about 40% of the total amount of CO2 evolved came from earthworm activity). The planting of A. sativa increased the decomposition rate constant of organic matter in the amended soil but decreased the potentially mineralizable C pool. In conclusion, the establishment of an A. sativa cover crop and the addition of E. foetida to a degraded agricultural soil treated with composted residue were effective treatments for improving the biological and biochemical quality and the metabolic potential of the soil.  相似文献   
193.
应用错流式动态膜-生物反应器(CDMBR)对己内酰胺废水进行了180 d的实验,实验过程中测定反应器的膜出水和上清液的水质,并对污泥进行了耗氧呼吸速率测定.结果表明,上清液COD一直保持在100mg/L以下,而膜出水的则保持在50 mg/L以下,膜对上清液的COD去除率达50%,而对氮的去除没有贡献.可溶性细胞产物(SMP)在反应器内容易积累,停留足够的时间后能被生物降解.通过投加抑制剂测定耗氧呼吸速率,发现异养菌、硝化细菌和亚硝化细菌的活性由于F/M的降低和SMP积累受到一定的抑制,但不影响系统的处理效率.跨膜压力、膜面流速越大,通量衰减得也就越快.  相似文献   
194.
Mechanical oscillations as well as electrical oscillations (e.g. in an electrical oscillatory circuit) can lead to resonance conditions by external agitation with the natural frequency of the system. During the microbial protein synthesis, the induction and repression mechanisms also cause oscillations in the form of varying protein concentrations. The aim of this work concentrates on an induced resonance case of the biological system, comparable with physical resonance phenomena, by external periodic stimulations. For this, system theoretical computer simulations with a structured genetic model were carried out, which built the theoretical fundament for describing the effect of 'Biological Resonance'. Based on that, lab-scale experiments using a mixed microbial culture (activated sludge) and skimmed milk as an inducing substrate revealed an enhanced microbial productivity of around 60%-75% compared to values of the productivity under steady-state conditions in a narrow range of process parameters. The optimum (resonance case) was confirmed by a repetition of the variation experiments and is characterised by a substrate supply period of approx. 18 min and a following starvation period of about 9 min. Long-term investigations under optimised process conditions indicate adaptation mechanisms of the microorganisms to evade the imposed stress conditions. The productivity will not remain constant without additional stimulation and declines to its original level. However, temporal modulation of the starvation period permanently increases the productivity (elevated catabolism) to about 60%, which was observed over a period of several weeks.  相似文献   
195.
Dechlorination of 1,2,4-trichlorobenzene in the sediment of Ise Bay   总被引:1,自引:0,他引:1  
The relation between dechlorination activities of 1,2,4-trichlorobenzene and anaerobic microbial activity were studied in the sediment collected at three sites in Ise Bay in Japan. The degradation rate of spiked 1,2,4-trichlorobenzene (3nmol ml−1) ranged from 15 to 35 pmol day−1 ml−1 wet sediment and about 1/3 to 1/2 of degraded the trichlorobenzene was recovered as dechlorinated products. Among the dichlorobenzenes, the 1,2-isomer had the highest and 1,3-isomer had the lowest production rate. Comparing the three sampling sites, the trichlorobenzene degradation and dichlorobenzenes production rates were related to the sulfate reducing activity for the unit number of sulfate reducing bacteria. Production rates of dichlorobenzenes were completely inhibited by adding molybdate (20 mM), nitrate (60 mM), and formaldehyde solution (4 %). These results indicated that dechlorination activity in the Ise Bay sediment was supported by sulfate reduction activity in the sediment, and not supported by any other anaerobic microbial activity.  相似文献   
196.
对比了过氧化氢(H2O2)、高铁酸钾(K2FeO4)和过碳酸钠(Na2CO4)3种氧化剂对自然水体中群体蓝藻生长和光合活性的影响.结果发现,3种氧化剂对蓝藻均有快速的抑制效应,且随着氧化剂浓度的增加抑制效果增强.相同氧化剂浓度下,H2O2对水华蓝藻的去除能力强于K2FeO4和Na2CO4,对蓝藻光合系统Ⅱ的最大光量子产量(Fv/Fm)和有效光量子产量(Fv'/Fm')的抑制效果也更显著.H2O2对不同浓度水华蓝藻的控制实验结果表明,初始藻细胞浓度对H2O2控藻效果影响较大,细胞密度越大,H2O2降解率增加,抑藻效果急剧下降.当初始藻密度为10μg/L和100μg/L,5mg/L H2O2的48h降解率分别为64.9%和97.5%,对藻细胞Fv/Fm的抑制率分别为10%和1%.因此,实施H2O2控制蓝藻水华的措施应该尽量在蓝藻水华形成早期,即藻密度较低的时候使用.  相似文献   
197.
本研究以实际猪场废水为原料,在中温(37±1)℃条件下利用浸没式平板膜生物反应器进行180d连续厌氧发酵试验,以水力停留时间5,3和2d的梯度变化逐渐增加容积负荷,研究反应器运行性能,污泥比产甲烷活性,膜过滤特性和膜的清洗效果.试验结果表明,随水力停留时间的缩短,反应器的容积产沼气率分别达到0.68,1.03和1.12L/(L·d),稳定运行期间出水的总挥发性脂肪酸分别为(169±41)mg/L,(15±3)mg/L和(114±45)mg/L,以乙酸为主.反应器中厌氧污泥的乙酸比产甲烷活性测试表明,以2000mg/L的乙酸为基质,HRT 3d时具有最大比产甲烷活性1.127g-COD/(g-VSS·d).本试验发生膜污染的周期约4个月.采用2%的柠檬酸浸泡3h,可以恢复膜的过滤性能.在较低通量下,反应器中7~32g/L的污泥浓度并不会明显的影响平板膜的过滤性能.本研究结果显示,厌氧膜生物反应器有处理猪场废水的可能性.  相似文献   
198.
二氧化钛纳米颗粒(TiO2NPs)的广泛应用使其环境释放量不断增加,从而影响到土壤氮的转化过程.然而,目前关于TiO2NPs对湖滨沼泽土壤氮矿化的影响机制尚不明确.因此,本研究以典型沼泽土壤为研究对象,通过室内培养实验研究不同剂量TiO2NPs处理(0 mg·kg-1(CK)、10 mg·kg-1(A10)、100 mg·kg-1(A100)、250 mg·kg-1(A250)、1000 mg·kg-1(A1000))对土壤理化性质、酶活性和氮矿化过程的影响,探讨TiO2NPs输入对土壤氮矿化过程影响的内在机制.结果表明:①不同剂量TiO2NPs处理显著降低了土壤pH和总有机碳(TOC)含量(p<0.05),A100、A250和A1000处理显著降低了硝态氮(NO3--N)含量(p<0.05).②A250和A1000处理显著抑制了过氧化氢酶活性(p<0.05);培养7 d,不同剂量TiO2NPs处理均显著促进了脲酶活性(p<0.05),抑制了脱氢酶活性(p<0.05);随着培养时间延长,TiO2NPs处理对脲酶和脱氢酶活性的抑制作用逐渐减弱,表明TiO2NPs的负面作用会随时间减弱.③不同剂量TiO2NPs处理对氨化速率没有显著影响(p>0.05),A250、A1000处理对硝化和矿化速率有显著抑制作用(p<0.01).④土壤氮矿化速率与土壤pH、总磷(TP)、NO3--N含量呈显著正相关,与脲酶、过氧化氢酶活性呈显著负相关.TiO2NPs主要通过改变沼泽土壤NO3--N含量影响氮矿化过程.本研究可为湖滨湿地保护和TiO2NPs环境风险评估提供理论依据.  相似文献   
199.
在胶州湾西北部海区和大沽河河口区选择S站和E站2个研究站位,现场采样带回实验室进行模拟培养,研究纳米银对沉积物反硝化能力、反硝化酶活性及功能基因丰度的影响.将不同剂量(0、135、1 350 mg·L~(-1))的纳米银添加至由表层沉积物和原位底层海水组成的培养体系中培养6 d,测定其在不同时间内NO_3~-和NO_2~-含量、NO_3~-还原酶和NO_2~-还原酶活性、反硝化功能基因narG和nirS相对丰度的变化,探讨纳米银对不同区域沉积物反硝化过程的影响和可能的作用途径.结果表明,纳米银胁迫对2个站位沉积物NO_3~-和NO_2~-的还原能力、NO_3~-和NO_2~-还原酶活性及narG和nirS的基因丰度均具有明显的抑制效应,纳米银浓度越高,抑制程度越强,并会导致NO_2~-累积量的增加;纳米银对NO_2~-还原酶的抑制程度明显大于NO_3~-还原酶,对功能基因nirS的抑制程度明显大于narG;纳米银胁迫对NO_3~-还原过程的影响主要通过对功能基因的抑制作用,而对NO_2~-还原过程的影响主要是通过对还原酶活性的抑制作用;纳米银对胶州湾西北部海域反硝化能力、NO_3~-还原酶和基因丰度的抑制程度大于大沽河河口区.  相似文献   
200.
为揭示黄土丘陵区植被恢复过程中土壤性质变化趋势,以黄土丘陵区10~45a的撂荒地为研究对象,分析撂荒后植被恢复过程中植物群落演变规律、土壤养分含量、4种酶活性变化及其相关关系.结果表明,随着撂荒年限的增加,恢复过程中主要群落的演变为猪毛蒿(Artemisia scoparia)→达乌里胡枝子(Lespedeza dahurica)+铁杆蒿(Artemisia sacrorum)→茭蒿(Artemisia giraldii)+铁杆蒿→白羊草(Bothriochloa flaccidum)+茭蒿,群落多样性指数整体表现为先增后减的趋势,菊科(Compositae)、禾本科(Poaceae)及豆科(Leguminosae)这3科占比从66. 67%降至50%,后上升到75%.土壤有机碳(SOC),全氮(TN)、全磷(TP)、速效氮(AN)、速效磷(AP)与碱性磷酸酶(ALP)、过氧化氢酶(CAT)、脲酶(UE)与蔗糖酶(SC)这4种酶活性呈增加趋势,但增加程度不同,化学计量比总体呈波动上升趋势.菊科、禾本科与豆科相比总科数、总属数、总种数及植物多样性,对养分和酶活性有更显著的影响,贡献率分别为72. 8%、69. 1%、66. 0%,且三大科对土壤酶的影响大于土壤养分,其中禾本科与豆科对养分及酶活性表现为正影响,而菊科表现为负影响.撂荒恢复过程中草地群落优势科占比的升高显著影响土壤酶的升高,并导致土壤养分变化.  相似文献   
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