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951.
由农业产生的非点源污染是湖泊的主要污染源。为了研究太湖流域非点源污染负荷流失规律,选择了宜兴梅林小流域为研究对象,对降雨过程中径流流量及其污染物浓度随降雨—径流变化过程进行监测研究。采用统计和系统分析方法,建立径流量和非点源污染负荷输出量之间的数学统计模型,得出该流域非点源污染物流失规律,此方法可以推广到与该流域相似的其它地区的非点源污染研究中,应用于太湖流域水污染综合治理。  相似文献   
952.
洪湖历史时期人类活动的湖泊沉积环境响应   总被引:9,自引:1,他引:8  
以洪湖北部和南部两个短柱钻孔(HN和HS)研究湖泊沉积,采用137Cs定年,沉积速率为0.155 cm/a。沉积物的总有机碳、总氮、磷以及元素和磁化率等指标分析表明:1840年前洪湖地区人类活动较弱,在湖泊沉积物中基本没有早期的人类活动信号的记录;1840年以后由于人口大量增加,人类活动增强,湖泊的营养水平有所增加,尤其是1950年以来沉积物中营养元素急剧增加;近50年来的湖泊营养程度的加重主要与流域内大量营养物质进入湖泊,以及大面积的围垦造成湖泊面积减小、自我调节能力降低有关。洪湖两孔的对比研究表明,不同区域之间存在着差异,可能与洪湖湖流作用及人类活动的影响差异有关。  相似文献   
953.
光合细菌对2,4,6-三氯苯酚的降解特性研究   总被引:3,自引:1,他引:2       下载免费PDF全文
研究了混合光合细菌PSB-DR在不同光照、接种量和pH值下对2,4,6-三氯苯酚(2,4,6-TCP)的生物降解特性,确定了PSB-DR生物降解2,4,6-TCP的优化控制条件.结果表明,光照培养下,接种量30%,初始pH值7.0时2,4,6-TCP降解效率最高.在此条件下,50mg/L的2,4,6-TCP经5d后降解率达到82.3%.培养基中醋酸钠的加入对2,4,6-TCP降解有明显的抑制作用.PSB-DR静息细胞对2,4,6-TCP的降解符合高浓度底物抑制的酶促反应类型,其降解动力学参数rmax=1.746h-1,Km=38.333mg/L,Ki=260.87mg/L.  相似文献   
954.
An evaluation of the interactions between vegetation, overland and soil erosion can provide valuable insight for the conservation of soil and water. An experiment was conducted to study water infiltration, runoff generation process, rate of sediment erosion, and hydrodynamic characteristics of overland flow from a sloping hillside with different draw-off discharges from alfalfa and control plots with 20° slope. The effect of alfalfa on runoff and sediment transport reduction was quantitatively analyzed. Alfalfa was discussed for its ability to reduce the overland flow scouring force or change the runoff movement. Compared to the bare-soil plots, alfalfa plots generated a 1.77 times increase in infiltration rate. Furthermore, the down-slope water infiltration rate for the bare soil plots was higher than in the up-slope, while the opposite was found in the alfalfa plots. In addition, alfalfa had a significant effect on runoff and sediment yield. In comparison to the control, the runoff coefficient and sediment transportation rate decreased by 28.3% and 78.4% in the grass slope, respectively. The runoff generated from the alfalfa and bare-soil plots had similar trends with an initial increase and subsequent leveling to a steady-state rate. The transport of sediment reduced with time as a consequence of the depletion of loose surface materials. The maximum sediment concentration was recorded within the first few minutes of each event. The alfalfa plots had subcritical flow while the bare-soil plots had supercritical flow, which indicate that the capability of the alfalfa slope for resisting soil erosion and sediment movement was greater than for bare soil plots. Moreover, the flow resistance coefficient and roughness coefficient for the alfalfa plots were both higher than for the bare-soil plots, which indicate that overland flow in alfalfa plots had retarded and was blocked, and the flow energy along the runoff path had gradually dissipated. Finally, the ability to erode and transport sediment had decreased.  相似文献   
955.
An anaerobic contact reactor (ACR) system comprising a continuous flow stirred tank reactor (CSTR) with settler to decouple the hydraulic retention time (HRT) from solids retention time (SRT) was developed for fermentative hydrogen production from diluted molasses by mixed microbial cultures. The ACR was operated at various volumetric loading rates (VLRs) of 20–44 kgCOD·m-3·d-1 with constant HRT of 6 h under mesophilic conditions of 35°C. The SRT was maintained at about 46–50 h in the system. At the initial VLR of 20 kgCOD·m-3·d-1, the hydrogen production rate dropped from 22.6 to 1.58 L·d-1 as the hydrogen was consumed by the hydrogentrophic methanogen. After increasing the VLR to 28 kgCOD·m-3·d-1 and discharging the sludge for 6 consecutive times, the hydrogentrophic methanogens were eliminated, and the hydrogen content reached 36.4%. As the VLR was increased to 44 kgCOD·m-3·d-1, the hydrogen production rate and hydrogen yield increased to 42.1 L·d-1 and 1.40 mol H2·molglucose-consumed-1, respectively. The results showed that a stable ethanol-type fermentation that favored hydrogen production in the reactor was thus established with the sludge loading rate (SLR) of 2.0–2.5 kgCOD·kgMLVSS-1·d-1. It was found that the ethanol increased more than other liquid fermentation products, and the ethanol/acetic acid (mol/mol) ratio increased from 1.27 to 2.45 when the VLR increased from 28 to 44 kgCOD·m-3·d-1, whereas the hydrogen composition decreased from 40.4% to 36.4%. The results suggested that the anaerobic contact reactor was a promising bioprocess for fermentative hydrogen production.  相似文献   
956.
Effect of pH ranging from 4.0 to 11.0 on co-fermentation of waste activated sludge (WAS) with food waste for short-chain fatty acids (SCFAs) production at ambient temperature was investigated in this study. Experimental results showed that the addition of food waste significantly improved the performance of WAS fermentation system, which resulted in the increases of SCFAs production and substrate reduction. The SCFAs production at pH 6.0, 7.0, 8.0, and 9.0 and fermentation time of 4 d was respectively 5022.7, 6540.5, 8236.6, and 7911.7 mg COD·L-1, whereas in the blank tests (no pH adjustment, pH 8.0 (blank test 1), no food waste addition, pH 8.0 (blank test 2), and no WAS addition (blank test 3)) it was only 1006.9, 971.1, and 1468.5 mg COD·L-1, respectively. The composition of SCFAs at pH from 6.0 to 9.0 was also different from other conditions and propionic acid was the most prevalent SCFA, which was followed by acetic and n-butyric acids, while acetic acid was the top product under other conditions. At pH 8.0 a higher volatile suspended solids (VSS) reduction of 16.6% for the mixture of WAS and food waste than the sole WAS indicated a synergistic effect existing in fermentation system with WAS and food waste. The influence of pH on the variations of nutrient content was also studied during anaerobic fermentation of the mixture of WAS and food waste at different pH conditions. The release of NH4+-N increased with fermentation time at all pH values investigated except 4.0, 5.0 and in blank test one. The concentrations of soluble phosphorus at acidic pHs and in the blank test one were higher than those obtained at alkaline pHs. Ammonia and phosphorus need to be removed before the SCFAs-enriched fermentation liquid from WAS and food waste was used as the carbon source.  相似文献   
957.
Soil aggregation plays an important role in agricultural production activities. However, the structure of soil aggregation is destroyed by the natural environment and unreasonable farming management, resulting in the loss of water, fertilizers and pesticides in soil. At present, hydrogels have been widely reported to promote the formation of soil aggregation. In this paper, amphiphilic calcium alginate (ASA/Ca2+) was applied to promote the formation of soil aggregation and enhance pesticide retention. Initially, an ASA was obtained through the one-pot Ugi condensation (a four-component green chemical reaction). Then, ASA/Ca2+ hydrogel is prepared by Ca2+ cross-linking. The formation of soil aggregation was determined through the Turbiscan Lab Expert stability analyzer, Confocal Laser Scanning Microscope (CLSM), and Transmission Electron Microscope (TEM). And the effect of soil aggregation on acetamiprid environmental behavior was investigated by adsorption kinetics, adsorption isotherms, and leaching. The results shown that the three-dimensional network structure of ASA/Ca2+ hydrogel can promote the formation of soil aggregation. Aggregate durability index (ADI) was 0.55 in the presence of ASA/Ca2+ hydrogel, indicating that amphiphilic hydrogel can enhance the stability of soil aggregation. The adsorbing capacity of acetamiprid was 1.58 times higher than pure soil, and the release of acetamiprid only about 20% in the presence of ASA/Ca2+ hydrogel. These results would be helpful for the formation of soil aggregation and pesticides adsorption on soil aggregation. Thus, ASA/Ca2+ hydrogel is likely to improve soil quality, simultaneously it can minimize the mobility of pesticides in the agricultural system.  相似文献   
958.
在实际工程应用中,对于结构复杂安全等级高的核电水工结构,相关的通用设计软件尚未形成。利用ANSYS二次开发工具APDL、UIDL以及Tcl/Tk可视化工具命令语言,针对核电站取水构筑物开发了一整套程序,包括了建模、计算以及后处理,后处理部分为内力计算和配筋可视化程序,简化了操作流程。算例表明,内力提取程序运算结果精度良好,可以用于配筋设计,利用配筋可视化程序对工程实例进行的配筋及裂缝验算,结果符合工程要求,针对配筋结果提出了墙体优化设计的建议。通过在ANSYS中实现内力计算和可视化配筋程序,可用于解决核电水工结构设计问题,有良好的工程适用性。  相似文献   
959.
利用简便的方法制备了一种新型的海藻酸钠/锆@钙(SA/Zr@Ca)水凝胶材料,采用SEM、XRD对该材料进行了表征,并通过拟合吸附等温模型及吸附动力学模型,结合XPS和Zeta电位分析,研究了该材料对磷酸盐吸附的性能和机理.结果表明,该材料为非晶态的无定型材料.在溶液初始pH为2~7时,SA/Zr@Ca对磷酸盐(以PO...  相似文献   
960.
基于径向基函数神经网络方法的城市生态压力预测   总被引:2,自引:0,他引:2  
针对城市生态压力影响因素复杂,难以对城市未来可持续发展状况做出准确判断的问题,提出了城市生态压力的径向基函数神经网络预测模型,分析了影响城市生态系统的主要因素.以抚顺市1995-2009年数据为基础,验证了模型的准确性并预测了该市2010-2015年城市生态系统的压力情况.研究结果表明:能源消耗指标是影响城市生态系统压力的主要因素;运用径向基函数神经网络模型对训练样本的拟合精度以及对测试样本的仿真精度分别达97.91%和94.16%;抚顺市2015年的人均生态足迹、 生态承载力和生态赤字分别达到7.013、 0.523和6.49 hm2/人.  相似文献   
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