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61.
Abstract

Sewage sludge from four publicly-owned treatment works was sampled and characterized in terms of parameters affecting transport at the 106-mile deep ocean disposal site as part of the US Environmental Protection Agency's site monitoring programme. Samples from treatment plants in Passaic Valley, Rahway, and Elizabeth, New Jersey and New York City were characterized in terms of dynamic size distribution, suspended solids and density. the transport characteristics of sludge particles were measured using a 2 metre computer-interfaced laboratory settling column. Experiments were conducted at constant salinity (35 ppt) while varying hydrodynamic mixing, sludge type and concentration using a modified factorial experimental design. Hydrodynamic power dissipation was varied so that the vertical dispersion and rms fluid shear rate ranged between 0-6 cm2S?1 and 0-30s?1 respectively. Results indicate that at least 80% of suspended sludge particles will eventually settle under mixed conditions. the average settling velocities ranged between 0.05-4.05 × 10-3 cm s-1. Shear rates above 15 s?1 inhibited sludge settling due to aggregate breakup and boundary effects, but at a lower shear rate, differential settling and fluid shear were the dominant transport mechanisms. Sludge dilution (1/500-1/5000) had a limited effect on the settling rate. Results from this study can be used to calibrate particle transport models to determine the fate of sludge disposed at an ocean disposal site.  相似文献   
62.
湿地生态系统对全球碳平衡和气候变化起着极其重要的作用,而水位波动将影响湿地生物地球化学过程,导致温室气体通量变化,为了明确湿地生态系统温室气体通量以及土壤微生物活性对水位梯度的生态响应,通过野外盆栽培养试验,设T1:-5 cm,T2:0 cm,T3:5 cm,T4:10 cm 4种水位梯度,T1和T2模拟湿地非淹水的水分状况,T3和T4模拟淹水状况,研究了不同水位梯度下小叶章(Calamagrostis angustifolia)湿地CO2、CH4通量、土壤微生物量碳、氮及土壤酶活性的变化规律.结果表明:不同水位条件下,小叶章湿地系统CO2和CH4通量差异较大,-5 cm水位时小叶章湿地CO2通量为(643.35±61.89) mg·m-2·h -1,随着水位增加,CO2通量依次降低6.9%、12.1%、40.0%,且水位升高到10 cm时,小叶章湿地CO2排放量显著降低(P<0.05);而CH4通量则随水位增加呈显著增加趋势,通量变化为(1.52±0.12)~(5.34±0.61) mg·m-2·h-1;水位对微生物活性影响显著,非淹水条件下小叶章湿地土壤微生物量碳、氮含量以及土壤蔗糖酶、淀粉酶活性高于淹水土壤,且随着淹水位增加,微生物活性显著降低.  相似文献   
63.
生物炭的土壤环境效应及其机制研究   总被引:37,自引:0,他引:37  
近年来,随着土壤污染的逐渐加重以及食品安全问题的频出,生物炭作为重要的土壤改良剂以及对污染土壤修复表现出的巨大潜力引起人们的广泛关注.本文首先对国内外生物炭的土壤环境效应方面的研究以及成果进行分析总结.生物炭具有疏松多孔的性质以及巨大的表面积和阳离子交换量(CEC),可以改善土壤理化性质,能强烈吸附土壤中的污染物,降低其生物有效性和迁移转化能力;生物炭的碱性对于改良酸性土壤降低土壤中污染物的生物毒性具有很大的潜力;生物炭还可以为微生物提供生长繁殖的场所,有利于微生物对污染物的降解,但同时又可以保护被吸附的有机物免受微生物的降解,对不同的微生物影响不同;生物炭可以对蚯蚓等土壤动物的生存产生影响.在此基础上,依据生物炭的基本理化性质,对其土壤环境效应机制进行了分析.最后,从当前工作中存在的不足对今后的研究重点和方向进行了展望.  相似文献   
64.
冻融作用对土壤磷素迁移转化影响研究进展   总被引:2,自引:0,他引:2  
磷素是生态系统中重要的生源要素之一,其在土壤中的丰缺变化制约着植物的生长状况,寒冷地区土壤的结构与理化性质常年受到冻结和融化的周期性影响,而冻融作用又强烈的影响着土壤磷的迁移转化途径,磷的生物地球化学行为是生态系统初级生产力的决定因素之一。系统的归纳分析了近年来国内外关于土壤吸附作用、土壤含水率以及土壤生物对磷素迁移转化过程影响的研究报道,主要研究结论认为:(1)冻融循环导致土壤颗粒粒径变小以及铁铝化合物形态改变,进而影响了磷在冻融土壤上的吸附行为;(2)土壤水在冻融作用下的固液相转换改变了土壤浸提液中磷的含量,而土壤含水率的高低与磷在土壤中的汇聚和释放存在密切关系;(3)土壤微生物和植物体内的磷在冻融过程中成为土壤中有机磷的主要来源之一。众多研究结果显示,同一制约因素在冻融作用驱动下对土壤磷的影响效果各不相同,这是因为冻融过程中土壤成分、水分含量、冻融时间、循环次数、植被类型和微生物状况等条件共同影响着磷的迁移转化行为,众多相互关联的因子产生的综合效应导致磷在冻融土壤中的迁移转化行为各异。总结分析当前的研究成果,提出冻融作用对土壤磷的影响应在土壤景观尺度、研究方法和手段、预防和治理措施方面进行深入的研究和探索。  相似文献   
65.
In the Ohio River (OR), backwater confluence sedimentation dynamics are understudied, however, these river features are expected to be influential on the system’s ecological and economic function when integrated along the river’s length. In the following paper, we test the efficacy of organic and inorganic tracers for sediment fingerprinting in backwater confluences; we use fingerprinting results to evidence sediment dynamics controlling deposition patterns in confluences used for wetland and marina functions; and we quantify the spatial extent of tributary drainages with wetland and marina features in OR confluences. Both organic and inorganic tracers statistically differentiate sediment from stream and river end‐members. Carbon and nitrogen stable isotopes produce greater uncertainty in fingerprinting results than inorganic elemental tracers. Uncertainty analysis of the nonconservative tracer term in the organic matter fingerprinting application estimates an apparent enrichment of the carbon stable isotopes during instream residence, and the nonconservativeness is quantified with a statistical approach unique to the fingerprinting literature. Wetland and marina features in OR confluences impact 42% and 11% of tributary drainage areas, respectively. Sediment dynamics show wetland and marina confluences experience deposition from river backwaters with longitudinally linear and nonlinear patterns, respectively, from sediment sources.  相似文献   
66.
实施排污许可制度,是强化排污者责任、提高固定污染源环境管理效能、改善环境质量的重要制度保障。火电行业作为典型的高架固定源,先行试点实施排污许可制度。通过分析火电行业发展和环保现状,结合排污许可管理要点,简述排污许可制对火电行业发展的影响。  相似文献   
67.
Desertification has emerged as a serious threat to the alpine meadows of Northwest Sichuan in recent decades. Artificial vegetation had certain effects on desertification recovery, while how the CO2 flux changed and its reasons are still unclear. During the growing season in 2016 (i.e., from July to September), we selected the desertified alpine meadows with different recovery degrees, including the early stage of restoration, the middle stage of restoration, the late stage of restoration, and control (the unrecovered desertification meadow) as four transects. CO2 flux was measured by the instrument LI-8100, and the microenvironment factors that affected CO2 flux changes were analyzed. The results showed that the carbon sequestration function of desertified alpine meadows gradually increased with the degree of recovery. Net ecosystem exchange (NEE) were -1.61, -3.55, and -4.38 μmol m-2 s-1 in the early, mid-term, and late transects, respectively, and the most dramatic changes occurred from the early stage to mid-term stage, increasing by 120.50%. Both ecosystem respiration (ER) and soil respiration (SR) were enhanced significantly with restoration (P < 0.05). In mid or late July, NEE, ER, and SR reached their maximum values, and thereafter, the indicators varied to near zero (P < 0.05). During the whole growing season, the daily dynamic in CO2 flux for the control alpine meadow was mild and retained the trend of continuous release all day, but that in the desertified alpine meadow was a single peak pattern. Moreover, with restoration process, the peak of CO2 flux increased and reached a peak in the late stage of the recovery process. The regression analysis showed that there was a significant positive correlation between CO2 flux and vegetation coverage, aboveground biomass, and soil moisture (0-5 cm) (P < 0.01), and a weak correlation with 0-5-cm soil temperature (P < 0.01). This indicates that topsoil moisture (5 cm) is a more significant factor for CO2 flux than topsoil temperature during the growing season in the restoration of desertified alpine meadows in Northwest Sichuan. In general, the vegetation recovery significantly improved the carbon-sequestration ability of the desertified alpine meadows during the growing season in Northwest Sichuan, and at the middle stage of restoration, the carbon-sequestration ability improved significantly due to vegetation restoration and increase in topsoil (0-5 cm) moisture. © 2018 Science Press. All rights reserved.  相似文献   
68.
对内置转盘式PVDF膜生物反应器(SRMBR)处理污水工艺及膜清洗进行了研究.SRMBR处理污水可以长期稳定运行,在实验模拟污水COD为180~368 mg/L时,出水COD在运行1d后稳定在20 mg/L以内,COD去除率>93%.增大转盘式平板膜组件转速可以增大SRMBR的平衡水通量,转速从15 r/min增大到25 r/min,平衡水通量从42.5 L/(m2·h)增大到47.5L/(m2·h).在一定自吸泵停抽时间内(0~1 min),延长停抽时间有利于减缓膜污染、提高平衡水通量.对污染的膜进行水洗、水洗 碱洗、水洗 碱洗 酸洗,3种清洗方式分别使膜平衡水通量恢复至新膜平衡水通量的48.4%、83.5%、90.2%.  相似文献   
69.
Compacted bentonite is foreseen as buffer material for high-level radioactive waste in deep geological repositories because it provides hydraulic isolation, chemical stability, and radionuclide sorption. A wide range of laboratory tests were performed within the framework of FEBEX (Full-scale Engineered Barrier EXperiment) project to characterize buffer properties and develop numerical models for FEBEX bentonite. Here we present inverse single and dual-continuum multicomponent reactive transport models of a long-term permeation test performed on a 2.5 cm long sample of FEBEX bentonite. Initial saline bentonite porewater was flushed with 5.5 pore volumes of fresh granitic water. Water flux and chemical composition of effluent waters were monitored during almost 4 years. The model accounts for solute advection and diffusion and geochemical reactions such as aqueous complexation, acid-base, cation exchange, protonation/deprotonation by surface complexation and dissolution/precipitation of calcite, chalcedony and gypsum. All of these processes are assumed at local equilibrium. Similar to previous studies of bentonite porewater chemistry on batch systems which attest the relevance of protonation/deprotonation on buffering pH, our results confirm that protonation/deprotonation is a key process in maintaining a stable pH under dynamic transport conditions. Breakthrough curves of reactive species are more sensitive to initial porewater concentration than to effective diffusion coefficient. Optimum estimates of initial porewater chemistry of saturated compacted FEBEX bentonite are obtained by solving the inverse problem of multicomponent reactive transport. While the single-continuum model reproduces the trends of measured data for most chemical species, it fails to match properly the long tails of most breakthrough curves. Such limitation is overcome by resorting to a dual-continuum reactive transport model.  相似文献   
70.
When plants are observed under a low dose of ozone, some physiological and metabolic shifts occur. Barring extreme injury such as tissue damage or stomata closure, most of these disruptive changes are likely to have been initiated at the level of gene expression. The belief is oxidative products formed in ozone exposed leaves, e.g. hydrogen peroxide, are responsible for much of the biochemical adjustments. The first line of defense is a range of antioxidants, such as ascorbate and glutathione, but if this defense is overwhelmed, subsequent actions occur, similar to systemic acquired resistance or general wounding. Yet there are seemingly unrelated metabolic responses which are also triggered, such as early senescence. We discuss here the current understanding of gene control and signal transduction/control in order to increase our comprehension of how ozone alters the basic metabolism of plants and how plants counteract or cope with ozone.  相似文献   
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