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21.
海绵城市透水砖铺装系统(PBPS)入渗特征是产流控制及径流污染物去除的重要影响因素之一。通过渗流实验,构建系统土壤层土水特征曲线,建立降雨入渗及径流重金属污染物迁移数学模型,以阐明找平层土壤粒径、基层与垫层厚度比对产流时间及径流重金属污染物去除的影响。研究表明:综合考虑延迟产流与径流重金属去除能力,中砂作为找平层介质最佳;依据结构层出水重金属污染物浓度,基层与垫层厚度比为15∶4时,PBPS对径流中重金属污染物吸附效率最高、去除效果较好。  相似文献   
22.
随着城市化快速发展和城市人口急剧增加,城市需水量急剧增加,导致许多城市地下水被过量开采。与此同时,随着城市建设用地的增加,不透水面积比例逐年升高,阻断了雨水下渗通道,导致地下水补给量逐年减小。地下水资源的过量开采引起了地面不均匀沉降、地下水污染、海水入侵等一系列问题。针对上述问题,以某市为例,从水量、水质、工程可靠性等方面比较了人工调水回灌与海绵城市促渗补给地下水方案的综合效益。结果表明:人工调水方案地下水补给量约为779万m3/年,海绵城市建设方案地下水补给量为339万m3/年,2种方案补给水水质中污染物种类相似,但雨水径流污染物浓度波动较大。因此,人工调水具有补水量易于控制、水质相对稳定,但调水水量受可利用水源的制约。海绵城市建设在保证地下水补给效果的同时,还具有雨水径流污染控制、洪涝缓解等多重效益,综合效益相对较高,且更符合城市可持续发展的理念。  相似文献   
23.
张永平  王刚  徐敏  宋小三 《环境工程》2020,38(3):116-122
以玉米秸秆(CS)、巯基乙酸(TGA)为原料,通过化学反应制备出重金属吸附剂——巯基乙酰化玉米秸秆(MACS),考察MACS对水样中Cd (Ⅱ)的去除性能,采用单因素实验法对MACS的制备条件进行优化研究。结果表明,MACS的优化制备条件为:CS粒径为0.20 mm (80目),m(催化剂NHS):m(EDC·HCl)为0.5:1,m(CS):V(TGA)为1:5,反应介质pH值为5.0,反应温度25℃,反应时间2 h。在此条件下制备的MACS对水样中Cd (Ⅱ)的吸附效率可达到61.57%。红外分析表明,CS分子链中成功引入了巯基。  相似文献   
24.
Wastewater reclamation and reuse has been proved to be an effective way to relieve the fresh water crisis. However, toxic contaminants remaining in reclaimed water could lead to potential risk for reuse, and the conventional water quality standards have difficulty guaranteeing the safety of reclaimed water. Bioassays can vividly reflect the integrated biological effects of multiple toxic substances in water as a whole, and could be a powerful tool for evaluating the safety of reclaimed water. Therefore, in this study, the advantages and disadvantages of using bioassays for evaluating the safety of reclaimed water were compared with those of conventional water quality standards. Although bioassays have been widely used to describe the toxic effects of reclaimed water and treatment efficiency of reclamation techniques, a single bioassay cannot reflect the complex toxicity of reclaimed water, and a battery of bioassays involving multiple biological effects or in vitro tests with specific toxicity mechanisms would be recommended. Furthermore, in order to evaluate the safety of reclaimed water based on bioassay results, various methods including potential toxicology, the toxicity unit classification system, and a potential eco-toxic effects probe are summarized as well. Especially, some integrated ranking methods based on a bioassay battery involving multiple toxicity effects are recommended as useful tools for evaluating the safety of reclaimed water, which will benefit the promotion and guarantee the rapid development of the reclamation and reuse of wastewater.  相似文献   
25.
Released Ag ions or/and Ag particles are believed to contribute to the cytotoxicity of Ag nanomaterials, and thus, the cytotoxicity and mechanism of Ag nanomaterials should be dynamic in water due to unfixed Ag particle:Ag+ ratios. Our recent research found that the cytotoxicity of PVP-Ag nanoparticles is attributable to Ag particles alone in 3 hr bioassays, and shifts to both Ag particles and released Ag+ in 48 hr bioassays. Herein, as a continued study, the cytotoxicity and accumulation of 50 and 100 nm Ag colloids in Escherichia coli were determined dynamically. The cytotoxicity and mechanisms of nano-Ag colloids are dynamic throughout exposure and are derived from both Ag ions and particles. Ag accumulation by E. coli is derived mainly from extracellular Ag particles during the initial 12 hr of exposure, and thereafter mainly from intracellular Ag ions. Fe3+ accelerates the oxidative dissolution of nano-Ag colloids, which results in decreasing amounts of Ag particles and particle-related toxicity. Na+ stabilizes nano-Ag colloids, thereby decreasing the bioavailability of Ag particles and particle-related toxicity. Humic acid (HA) binds Ag+ to form Ag+-HA, decreasing ion-related toxicity and binding to the E. coli surface, decreasing particle-related toxicity. HA in complex conditions showed a stronger relative contribution to toxicity and accumulation than Na+ or Fe3+. The results highlighted the cytotoxicity and mechanism of nano-Ag colloids are dynamic and affected by environmental factors, and therefore exposure duration and water chemistry should be seriously considered in environmental and health risk assessments.  相似文献   
26.
Direct synthesis of dimethyl ether(DME) by CO_2 hydrogenation has been investigated over three hybrid catalysts prepared by different methods:co-precipitation,sol-gel,and solid grinding to produce mixed Cu,ZnO,ZrO_2 catalysts that were physically mixed with a commercial ferrierite(FER) zeolite.The catalysts were characterized by N_2 physisorption,X-ray diffraction(XRD),transmission electron microscopy(TEM),X-ray photoelectron spectroscopy(XPS),temperature programmed desorption of CO_2(CO_2-TPD),temperature programmed desorption of NH_3(NH_3-TPD),and temperature programmed H2 reduction(H_2-TPR).The results demonstrate that smaller CuO and Cu crystallite sizes resulting in better dispersion of the active phases,higher surface area,and lower reduction temperature are all favorable for catalytic activity.The reaction mechanism has been studied using in situ diffuse reflectance infrared Fourier transform spectroscopy(DRIFTS).Methanol appears to be formed via the bidentate-formate(b-HCOO) species undergoing stepwise hydrogenation,while DME formation occurs from methanol dehydration and reaction of two surface methoxy groups.  相似文献   
27.
Methylglyoxal(CH_3COCHO,MG),which is one of the most abundant α-dicarbonyl compounds in the atmosphere,has been reported as a major source of secondary organic aerosol(SOA).In this work,the reaction of MG with hydroxyl radicals was studied in a 500 L smog chamber at(293±3) K,atmospheric pressure,(18±2)% relative humidity,and under different NOx and SO_2.Particle size distribution was measured by using a scanning mobility particle sizer(SMPS) and the results showed that the addition of SO_2 can promote SOA formation,while different NOx concentrations have different influences on SOA production.High NOx suppressed the SOA formation,whereas the particle mass concentration,particle number concentration and particle geometric mean diameter increased with the increasing NOx concentration at low NOx concentration in the presence of SO_2.In addition,the products of the OH-initiated oxidation of MG and the functional groups of the particle phase in the MG/OH/SO_2 and MG/OH/NOx/SO_2 reaction systems were detected by gas chromatography mass spectrometry(GC-MS) and attenuated total reflection fourier transformed infrared spectroscopy(ATR-FTIR) analysis.Two products,glyoxylic acid and oxalic acid,were detected by GC-MS.The mechanism of the reaction of MG and OH radicals that follows two main pathways,H atom abstraction and hydration,is proposed.Evidence is provided for the formation of organic nitrates and organic sulfate in particle phase from IR spectra.Incorporation of NOx and SO_2 influence suggested that SOA formation from anthropogenic hydrocarbons may be more efficient in polluted environment.  相似文献   
28.
生物炭作为1种环境友好型吸附材料,可有效去除并回收水体中的磷,由此也成为当前的研究热点之一。综述了目前国内外生物炭吸附磷酸盐及磷素回收研究现状,主要总结了控制生物炭吸附磷酸盐的4种主要机制,阐述了影响生物炭吸附除磷过程中的主要影响因素,介绍了目前应用研究的方向并提出生物炭在实际应用中所面临的问题并对未来研究方向进行了展望,以期为未来研究及推广应用提供理论支撑。  相似文献   
29.
基于FLUS模型的湖北省生态空间多情景模拟预测   总被引:19,自引:1,他引:18  
改革开放以来,中国经济在飞速发展的同时,生态环境问题日益严峻。为保障国家和地区的生态安全,对未来生态空间进行模拟预测十分必要。在长江大保护和长江经济带绿色发展背景下,以湖北省为研究区,利用FLUS模型基于湖北省2010年、2015年土地利用数据及包含自然和人文因素的15种驱动因子数据,对2035年的湖北省生态空间进行模拟预测。结果表明:利用2010年土地利用现状模拟出的2015年湖北省土地利用变化情况,总体精度达到0.976,Kappa系数达到0.961,模拟精度较高。设置的生产空间优先、生活空间优先、生态空间优先以及综合空间优化4种不同情景,基本满足未来湖北省不同发展导向的需求。从地貌单元角度来看,在不同情景下,湖北省生态空间主要分布于湖北省边陲四大山区,中部江汉平原生态空间零星分布。从数量规模上来看,不同情景下各个用地类型数量规模差异较为明显,生产空间优先情景下耕地面积增加1216 km2,生活空间优先情景下城镇用地规模增加5959 km2,生态空间优先情景下生态空间用地增长722 km2,综合空间优化情景下生态空间用地规模变化更趋于平缓。从生态空间变化分布来看,四大山区的生态空间变化不大,但中部江汉平原生态空间变化较为明显,其中从行政区划上来看,变化范围主要分布于武汉城市圈、襄阳市、宜昌市中西部地区及随州市中部地区。总而言之,FLUS模型对于湖北省生态空间模拟的适用性较好,多情景模拟结果可为湖北省未来国土空间规划及未来生态空间管控提供多角度、多方向的政策决策参考。  相似文献   
30.
为掌握澜沧江下游流域过饱和总溶解气体时空分布特征及影响因素,文章基于2018年澜沧江下游10个断面TDG过饱和度监测数据,采用空间数据统计方法和IDW插值法探究该流域过饱和总溶解气体时空分布规律,并运用相关性分析和主成分分析探讨TDG过饱和度的影响因素。结果显示:(1)澜沧江下游干、支流水体TDG过饱和度均呈枯水期略大于丰水期和平水期的季节分布规律。(2)从空间看,干流TDG过饱和度从大朝山到允景洪水电站整体呈沿程下降趋势,但糯扎渡坝上明显高于临近的上游、下游河段;3条主要支流从上游到下游同呈下降趋势。(3)澜沧江流域下游水体TDG过饱和度与pH和溶解氧呈极显著相关关系,与氧化还原电位、总溶解固体、盐度相关性显著;主成分分析发现,影响TDG过饱和度的主要因素为固体溶解能力和氧化还原能力。  相似文献   
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