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331.
由于北京地区水资源严重紧缺,再生水作为补给城市河湖景观水体的重要水源,用量逐年加大,随之带来的水环境问题也引起关注,往往需要采用适宜的技术和工程改善水质.通过对北京城市部分再生水补给型河湖现有水质改善工程的调研,分析与评估北京市再生水补给城市河湖景观水体生态修复技术工程建设与运行效果,并与国内外河流、湖泊生态修复经典案例进行了对比分析.结果表明,修复工程受运行时间、季节及后续维护的影响,其运行效果不稳定且逐渐下降.受汛期降水充沛及水量人为调控影响,城市河湖6—9月水质较好;水质恶化时ρ(CODCr)为40~50 mg/L,ρ(NH3-N)为2~5 mg/L,ρ(TN)为10~15 mg/L,ρ(TP)为0.4~1.0 mg/L.水力流动循环、循环过滤、化学除藻和生物调控等单项及相应组合技术是当前北京市再生水补给型河湖水质改善的主要手段.对于水质要求较高的再生水补给型河湖,可以考虑辅膜生物反应器或生物滤池等旁路生化组合工艺.与国外的整流域近自然水生态系统修复相比,我国河湖水生态修复更注重区域水质的改善,以控制水体富营养化为主;对流域生态系统修复的整体性与长效性关注不够,缺乏与园林景观的融合.为更好地发挥河湖水体生态修复工程效果,未来应在政策法规、协调管理及投融资机制等方面加大投入力度. 相似文献
332.
Variation of haze events occurred in the Yangtze River Delta(YRD) of China, the characteristics of meteorological elements and the vertical distribution of aerosols during haze episodes were analyzed by utilizing data of ground observation, radiosonde and CALIPSO. The results illustrate that the frequency of haze events between 1981 and 2010 peaked in winter but bottomed out in summer and decreased from north to south in the YRD region, reaching at the lowest point in "low frequency center" — Shanghai. When haze happened, the most seriously affected area was 2–4 km above the ground and the concentrated range of total backscattering coefficient(TBC) that decreased with altitude was 0.8 × 10~(-3)–2.5 × 10~(-3) km~(-1)·sr~(-1). Particulate depolarization ratio(PDR) was less than 40%in a large part and 93% aerosols over the YRD area were regular particles, while the irregular ones concentrated on 2 km above the surface and the irregularity rose up but the diversity diminished when altitude increased. Color ratio(CR) was lower than 1.2 mostly at all altitudes and distributed asymmetrically above the ground. Nearly 80% aerosols under10 km were fine particles(CR 1.0) and 22.54% coarse particles(CR 1.0) clustered at 2–4 km. Large particles(CR 1.2) aggregated in lower troposphere massively yet relatively smaller ones gathered in middle and upper troposphere. In the YRD region, aerosols with more powerful capabilities were wider and less regular than the ones of Northwestern China. 相似文献
333.
用缺氧生物滤池与UASB相串联的工艺对杭州市天子岭垃圾填埋场惨滤液进行了中试试验。通过实验,总结了缺氧生物滤池的挂膜特性及UASB起动的成功经验。最终的试验结果表明:出水COD、BOD、SS分别稳定在900mg/L、150mg/L、250mg/L以下,缺氧生物滤池对渗滤液具有很好的预处理效果,不仅能脱吸部分NH3、CO2、H2S,而且能提高它的可生化性,为UASB的高效运行创造了良好的条件。 相似文献
334.
选取白洋淀中水道、沟壕、淀面和鱼塘这4种水体类型,采用改进的BCR提取法分析沉积物中Cd、Cr、Cu、Ni、Pb和Zn的形态特征,运用潜在生态风险指数、次生相与原生相(RSP)和风险评估编码(RAC)等方法对白洋淀沉积物重金属含量进行系统性的污染评估和生态风险评价.结果表明:①沉积物中重金属ω(Cd)、ω(Cu)和ω(Zn)均值分别为0.37、28.49和83.08 mg·kg-1,分别有94.91%、73.91%和46.39%的点位超过土壤背景值.② Cd以非残渣态(F1+F2+F3)为主,质量分数范围为54%~97%,Cr以残渣态(F4)为主,质量分数为87%~99%.Cu、Ni、Pb和Zn主要以残渣态存在,但在非残渣态中Cu和Ni以可氧化态(F3)为主,Pb和Zn以可还原态(F2)为主.③基于RAC评价结果:Cd在水道、沟壕、开阔淀面和鱼塘分别有68.97%、39.89%、54.84%和49.78%的点位存在风险,而Cu、Ni和Pb等重金属风险较低.总体而言,白洋淀重金属总体污染水平较低,但在南刘庄片区的府河和白沟引河入河口等部分水道区域Cd存在生态风险和较高的生物可迁移性. 相似文献
335.
336.
337.
中国东部主要河流河水腐殖酸的起源、含量及地域分异规律 总被引:7,自引:6,他引:7
测定了中国东部地区主要河流河水、悬浮物和沉积物中腐殖酸含量,研究了该地区河水腐殖酸含量的地域分异规律,并探讨了河水腐殖酸的可能来源。结果表明,所研究河流河水腐殖酸含量在0.9—14.4mg/L范围内,中值为4.16mg/L,并有北高南低的一般趋势。黑龙江上游及松花江北部支流的河水腐殖酸含量在8.5mg/L以上,滦河以北其它地区在3.9—6.4mg/L范围内,黄河以南区域则在0.9—3.3mg/L之间,所研究地区河水中的腐殖酸为混合起源的,它既来自河流悬浮物和沉积物中腐殖酸的释放,又来自流域表土中腐殖酸的淋溶。 相似文献
338.
Heavy metals in rice and garden vegetables and their potential health risks to
inhabitants in the vicinity of an industrial zone in Jiangsu, China 总被引:10,自引:0,他引:10
Contamination of soil and agricultural products by heavy metals resulting from rapid industrial development has caused major concern. In this study, we investigated heavy metal (Cu, Zn, Pb, Cr, Hg and Cd) concentrations in rice and garden vegetables, as well as in cultivated soils, in a rural-industrial developed region in southern Jiangsu, China, and estimated the potential health risks of metals to the inhabitants via consumption of locally produced rice and garden vegetables. A questionnaire-based survey on dietary consumption rates of foodstuffs showed that rice and vegetables accounted for 64% of total foodstuffs consumed, and over 60% of rice and vegetables were grown in the local region. Average concentrations of Cr, Cu, Zn, Cd, Hg and Pb were 0.75, 2.64, 12.00, 0.014, 0.006 and 0.054 mg/kg dw (dry weight) in rice and were 0.67, 1.18, 4.34, 0.011, 0.002 and 0.058 mg/kg fw (fresh weight) in garden vegetables, respectively. These values were all below the maximum allowable concentration in food in China except for Cr in vegetables. Leafy vegetables had higher metal concentrations than solanaceae vegetables. Average daily intake of Cr, Cu, Zn, Cd, Hg and Pb through the consumption of rice and garden vegetables were 5.66, 16.90, 74.21, 0.10, 0.04 and 0.43 μg/(kg·day), respectively. Although Hazard Quotient values of individual metals were all lower than 1, when all six metal intakes via self-planted rice and garden vegetables were combined, the Hazard Index value was close to 1. Potential health risks from exposure to heavy metals in self-planted rice and garden vegetables need more attention. 相似文献
339.
Commercial available zero valent aluminum under air-equilibrated acidic conditions (ZVAl/H+/air system) demonstrated an excellent capacity to remove aqueous organic compounds. Acetaminophen (ACTM), the active ingredient of the over-the-counter drug Tylenol®, is widely present in the aquatic environment and therefore the treatment of ACTM-contaminated water calls for further research. Herein we investigated the oxidative removal of ACTM by ZVAl/H+/air system and the reaction mechanism. In acidic solutions (pH < 3.5), ZVAl displayed an excellent capacity to remove ACTM. More than 99% of ACTM was eliminated within 16 hr in pH 1.5 reaction solutions initially containing 2.0 g/L aluminum and 2.0 mg/L ACTM at 25 ± 1\textcelsius. Higher temperature and lower pH facilitated ACTM removal. The addition of different iron species Fe0, Fe2+ and Fe3+ into ZVAl/H+/air system dramatically accelerated the reaction likely due to the enhancing transformation of H2O2 to HO. via Fenton's reaction. Furthermore, the primary intermediate hydroquinone and the anions formate, acetate and nitrate, were identified and a possible reaction scheme was proposed. This work suggested that ZVAl/H+/air system may be potentially employed to treat ACTM-contaminated water. 相似文献
340.
水位波动可有效调节湖泊生态系统的结构与功能,干湿交替过程引起的沉积物生物地球化学循环途径的改变是其重要机制之一。大量研究结果表明,干湿交替将加速沉积物有机碳的分解,强化沉积物硝化与硝化作用的偶联,促进沉积物磷的酶促水解和厌氧解离,从而增加再度淹没之后水中溶解有机碳和生物可利用性磷的浓度,并减少溶解无机态氮的浓度。有机质的分解是上述过程的关键步骤。因此,必须系统描述湖泊水陆界面土壤和沉积物基本理化性状与水生生物特征,分析干旱过程中沉积物生物地球化学循环途径的变化,了解淹没过程中水柱营养状态与浮游生物群落对沉积物营养释放的响应,从而揭示水位波动调控富营养化过程的机制,即诱发营养脉冲或维系其持续补给,改变营养阈值,进而导致稳态转换。 相似文献