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451.
湖泊富营养化与有机污染物的交互作用是当前国内外研究热点,为了建立富营养化湖泊中多环芳烃(PAHs)生态效应与底栖藻类群落之间的相关关系。本研究以白洋淀为研究区,选取8个国控样点作为采样点,依据人为干扰程度不同将8个采样点划分为3种生境:生境1(S1和S2)主要遭受上游府河废水排放影响;生境2(S3、S6和S8)主要遭受水产养殖和生活污水的影响;生境3(S4、S5和S7)遭受人为干扰较小。分别在2009年4月、8月和11月收集了底栖藻类样品,并测定了白洋淀中15种PAHs。运用RQ_((NC))和RQ_((MPC))等改进风险熵值(RQ)方法计算PAHs生态风险。研究结果表明:(1)底栖藻类群落指标AD、Chl a、Chl b/a、CHL、CYA、APA、GLU、LEU、PSC和AFDW的值在11月最高,其次是8月和4月;就空间分布而言,这些指标值在生境1中最高,其次是生境2和生境3;而Chl c/a和BAC值在8月最高,其次是11月和4月,从空间分布特征而言,这些指标值在生境3最高;(2)相关分析结果表明,Chl a、Chl b/a、CHL、CYA、APA、GLU、LEU、PSC和AFDW的指标与PAHs污染物浓度呈显著正相关,而Chl c/a和BAC指标与污染物PAHs浓度呈显著负相关;(3)就空间分异特征而言,生境1中的ΣPAHs浓度最高,就季节变化而言,PAHs的浓度从4月到8月逐渐增加,而从8月到11月逐渐下降。各类PAHs表现出与ΣPAHs相同的时空变化特征;(4)IBR与RQ_(ΣPAHs(NCs))呈正相关关系(r=0.827,P0.01);除RQAcy(NCs)外,其他种类PAHs生态风险均与IBR呈相正相关关系(r=0.699~0.899),其中RQ_(BaP(NCs))与IBR显著正相关(r=0.899,P0.01)。此外,除沉积物TP外,IBR与TSI、水中TN、水中TP和沉积物TN也呈显著正相关(r=0.722~0.862)。因此,在富营养化湖泊中应考虑运用底栖藻类IBR生态监测PAHs污染水平。  相似文献   
452.
为正确识别平原地区复合土地利用系统中氮磷流失敏感区,利用美国农业部水土保持局设计的水文模型中的CN值描述地表状况,反映不同土地利用条件下下垫面对土壤氮、磷流失的影响;运用等标污染负荷计算方法评估不同类型污染源强度;建立了复合土地利用系统中土壤氮、磷流失敏感区的综合指数评价体系.构建的氮、磷流失评价方法在浙江大学华家池校区的应用评价结果表明,氮磷流失敏感性高的区块主要为研究区内的居民区、畜牧场和一些施肥量大的种植区,而敏感性最低的区块集中在具有良好植被覆盖的绿化区.高的污染源和高的迁移因子叠加区构成了高的流失敏感区.  相似文献   
453.
采用自制微电解集成设备研究不同反应条件下对成都市长安垃圾场垃圾渗滤液的处理效果。试验主要条件为1∶1铁碳体积比填料、停留时间、极板电压、电极正负交换周期和曝气量等动态单因素。在垃圾渗滤液的初始p H条件下试验得到最佳反应参数:停留时间为120 min、电压为25 V、电极正负交换周期30 s、曝气量2 000 L/h时,对垃圾渗滤液COD、NH3-N和色度的初始去除率分别41.38%、24.52%和60.00%。经重复试验,该微电解集成设备对垃圾渗滤液有较为稳定的处理能力,可为垃圾渗滤液的预处理工程设计提供选择性参考。  相似文献   
454.
动态浸出模拟实验系统与静态浸出试验的对比   总被引:3,自引:0,他引:3  
建立了动态浸出试验--小柱模拟实验系统,研究在非饱和水条件下危险物质在填埋场中的迁移和浸出规律,并和静肪浸出实验进行比较,结果表明,在非饱和入渗条件下危险物质的浸出浓度要比静态浸出实验的结果小100倍左右,危险发的浸出速率也远小于静实验的结果,同时,危险物质的浸出速率随废物层饮水度的增加而迅速增加。  相似文献   
455.
温度与湿度对氨为添加剂脉冲放电烟气脱硫的影响   总被引:1,自引:0,他引:1  
对脉冲放电烟气脱硫的实验研究与理论分析表明,SO2的除主要取决于NH3与SO2热化学反应;在单位体积烟气注入能量为0-5W·h/m^,脉冲放电使SO2脱率提高0-25%,脱硫产物的主要组分是(NH2)2SO4,其含量随着单位体积烟气注入能量的增加而增大气光单位体积烟气注入能量为3W·h/m^3,停留时间小于10s工业应用许可的范围内,烟气脱硫最佳温度为60-65℃,最佳含水体积分数为9-11%。  相似文献   
456.
简论安全管理的警示职能——墨菲定律的启示   总被引:5,自引:0,他引:5  
通过对墨菲定律的研究,得到两点启示,进而论证了安全管理必须发挥警示职能的科学道理,同时也表明了发挥警示职能对于提高安全管理水平的重要作用  相似文献   
457.
● Environmental parameters affected functional bacteria and network associations. ● The structure and interactions of AS networks changed greatly within tanks. ● Anoxic co-occurrence network was more unstable and easily influenced. ● Composition of functional bacteria had a seasonal succession pattern. Tetrasphaera was the major PAO in spring and winter leading a better P removal. Understanding the structures and dynamics of bacterial communities in activated sludge (AS) in full-scale wastewater treatment plants (WWTPs) is of both engineering and ecological significance. Previous investigations have mainly focused on the AS communities of WWTP aeration tanks, and the differences and interactions between the communities in anaerobic and anoxic tanks of the AS system remain poorly understood. Here, we investigated the structures of bacterial communities and their inter-connections in three tanks (anaerobic, anoxic, and aerobic) and influent from a full-scale WWTP with conventional anaerobic/anoxic/aerobic (A/A/O) process over a year to explore their functionality and network differentiation. High-throughput sequencing showed that community compositions did not differ appreciably between the different tanks, likely due to the continuous sludge community interchange between tanks. However, network analysis showed significant differences in inter-species relationships, OTU topological roles, and keystone populations in the different AS communities. Moreover, the anoxic network is expected to be more unstable and easily affected by environmental disturbance. Tank-associated environmental factors, including dissolved oxygen, pH, and nutrients, were found to affect the relative abundance of functional genera (i.e., AOB, NOB, PAOs, and denitrifiers), suggesting that these groups were more susceptible to environmental variables than other bacteria. Therefore, this work could assist in improving our understanding of tank-associated microbial ecology, particularly the response of functional bacteria to seasonal variations in WWTPs employing A/A/O process.  相似文献   
458.
● All 1,4-naphthoquinone hybrids exhibited significant antimicrobial activity. ● Presence of a hydroxyl group on aromatic B-ring of juglone was crucial for activity. ● Juglone can cause DNA damage by producing ROS and downregulation of RecA. ● Juglone has the potential to become a disinfectant. The diverse and large-scale application of disinfectants posed potential health risks and caused ecological damage during the 2019-nCoV pandemic, thereby increasing the demands for the development of disinfectants based on natural products, with low health risks and low aquatic toxicity. In the present study, a few natural naphthoquinones and their derivatives bearing the 1,4-naphthoquinone skeleton were synthesized, and their antibacterial activity against selected bacterial strains was evaluated. In vitro antibacterial activities of the compounds were investigated against Escherichia coli and Staphylococcus aureus. Under the minimum inhibitory concentration (MIC) of ≤ 0.125 μmol/L for juglone (1a), 5,8-dimethoxy-1,4-naphthoquinone (1f), and 7-methyl-5-acetoxy-1,4-naphthoquinone (3c), a strong antibacterial activity against S. aureus was observed. All 1,4-naphthoquinone derivatives exhibited a strong antibacterial activity, with MIC values ranging between 15.625 and 500 μmol/L and EC50 values ranging between 10.56 and 248.42 μmol/L. Most of the synthesized compounds exhibited strong antibacterial activities against S. aureus. Among these compounds, juglone (1a) showed the strongest antibacterial activity. The results from mechanistic investigations indicated that juglone, a natural naphthoquinone, caused cell death by inducing reactive oxygen species production in bacterial cells, leading to DNA damage. In addition, juglone could reduce the self-repair ability of bacterial DNA by inhibiting RecA expression. In addition to having a potent antibacterial activity, juglone exhibited low cytotoxicity in cell-based investigations. In conclusion, juglone is a strong antibacterial agent with low toxicity, indicating that its application as a bactericidal agent may be associated with low health risks and aquatic toxicity.  相似文献   
459.
● Higher concentrations of PS, PS-NH2 and PS-SO3H inhibited seed germination. ● PS, PS-NH2 and PS-SO3H influenced seedling growth in a dose-dependent manner. ● PS, PS-NH2 and PS-SO3H reduced essential nutrients uptake and plant quality. ● PS, PS-NH2 and PS-SO3H increased antioxidant enzyme activities and MDA content. ● Nanoplastic toxicity was related to surface charges. Nanoplastic pollution has become a significant problem in farmland systems worldwide. However, research on the effects of nanoplastics (NPs) with different charges on field crops is still limited. In our study, NPs with different charges, including unmodified polystyrene nanoplastics (PS), positively charged polystyrene nanoplastics (PS-NH2), and negatively charged polystyrene nanoplastics (PS-SO3H), were investigated for their impacts on seed germination and seedling growth of rape. The results showed that seed water uptake (after 12 h), seed germination, seed vigour, and relative root elongation were all significantly reduced under exposure to NPs (200 mg/L). Similarly, remarkable decreases in plant biomass (root weight, shoot weight), growth (root length, plant height), photosynthesis ability (chlorophyll a, chlorophyll b, carotenoids), essential nutrient uptake (Fe, Mn, Zn, Cu), and plant quality (soluble protein, soluble sugar, crude fibre content) of rape seedlings were also observed after exposure to NPs. Among the three kinds of NPs, PS-NH2 showed stronger effects. Moreover, superoxide dismutase, peroxidase, and catalase activities of rape seedlings were changed, and the content of malondialdehyde was significantly increased under exposure to NPs. Furthermore, positively charged PS-NH2 showed stronger effects on the phenotype, physiology, biochemistry, nutrient uptake, and plant quality of rape. Notably, a comprehensive toxicity evaluation revealed that PS-NH2 had the strongest toxicity to rape. The present study provides important implications for the interaction and risk assessment of NPs and crops in soil-plant systems.  相似文献   
460.
厌氧 往复好氧组合式工艺是针对我国传统的工业废水生物处理方式投资高、占地大、自动化程度低的实际状况而开发的一种高效、经济的废水处理新工艺。以该工艺装置处理啤酒废水的试验结果表明 ,厌氧 往复好氧组合式工艺去除有机物以及脱氮除磷的效果较好 ,同时还具有经常性运转费用低 ,投资省 ,占地面积小等特点  相似文献   
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