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101.
On-road driving emissions of six liquefied natural gas(LNG) and diesel semi-trailer towing vehicles(STTVs) which met China Emission Standard IV and V were tested using Portable Emission Measurement System(PEMS) in northern China.Emission characteristics of these vehicles under real driving conditions were analyzed and proved that on-road emissions of heavy-duty vehicles(HDVs) were underestimated in the past.There were large differences among LNG and diesel vehicles, which also existed between China V vehicles and China IV vehicles.Emission factors showed the highest level under real driving conditions, which probably be caused by frequent acceleration, deceleration, and start-stop.NOx emission factors ranged from 2.855 to 20.939 g/km based on distance-traveled and 6.719–90.557 g/kg based on fuel consumption during whole tests, which were much higher than previous researches on chassis dynamometer.It was inferred from tests that the fuel consumption rate of the test vehicles had a strong correlation with NOx emission, and the exhaust temperature also affected the efficiency of Selected Catalytic Reduction(SCR) aftertreatment system, thus changing the NOx emission greatly.THC emission factors of LNG vehicles were 2.012–10.636 g/km, which were much higher than that of diesel vehicles(0.029–0.185 g/km).Unburned CH_4 may be an important reason for this phenomenon.Further on-road emission tests, especially CH_4 emission test should be carried out in subsequent research.In addition, the Particulate Number(PN) emission factors of diesel vehicles were at a very high level during whole tests, and Diesel Particulate Filter(DPF)should be installed to reduce PN emission.  相似文献   
102.
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   
103.
Changes in water quality from source water to finished water and tap water at two conventional drinking water treatment plants(DWTPs) were monitored.Beside the routine water quality testing,Caenorhabditis elegans-based toxicity assays and the fluorescence excitation–emission matrices technique were also applied.Both DWTPs supplied drinking water that met government standards.Under current test conditions,both the investigated finished water and tap water samples exhibited stronger lethal,genotoxic and reprotoxic potential than the relative source water sample,and the tap water sample was more lethal but tended to be less genotoxic than the corresponding finished water sample.Meanwhile,the nearly complete removal of tryptophan-like substances and newly generated tyrosine-like substances were observed after the treatment of drinking water,and humic-like substances were identified in the tap water.Based on these findings,toxic pollutants,including genotoxic/reproductive toxicants,are produced in the drinking water treatment and/or distribution processes.Moreover,further studies are needed to clarify the potentially important roles of tyrosine-like and humic-like substances in mediating drinking water toxicity and to identify the potential sources of these contaminants.Additionally,tryptophan-like fluorescence may be adopted as a useful parameter to monitor the treatment performance of DWTPs.Our observations provided insights into the importance of utilizing biotoxicity assays and fluorescence spectroscopy as tools to complement the routine evaluation of drinking water.  相似文献   
104.
In this work, a series of Cu-ZSM-5 catalysts with different SiO2/Al2O3 ratios (25, 50, 100 and 200) were synthesized and investigated in n-butylamine catalytic degradation. The n-butylamine can be completely catalytic degradation at 350°C over all Cu-ZSM-5 catalysts. Moreover, Cu-ZSM-5 (25) exhibited the highest selectivity to N2, exceeding 90% at 350°C. These samples were investigated in detail by several characterizations to illuminate the dependence of the catalytic performance on redox properties, Cu species, and acidity. The characterization results proved that the redox properties and chemisorption oxygen primarily affect n-butylamine conversion. N2 selectivity was impacted by the Brønsted acidity and the isolated Cu2+ species. Meanwhile, the surface acid sites over Cu-ZSM-5 catalysts could influence the formation of Cu species. Furthermore, in situ diffuse reflectance infrared Fourier transform spectra was adopted to explore the reaction mechanism. The Cu-ZSM-5 catalysts are the most prospective catalysts for nitrogen-containing volatile organic compounds removal, and the results in this study could provide new insights into catalysts design for VOC catalytic oxidation.  相似文献   
105.
Ground-level ozone (O3) has become a critical pollutant impeding air quality improvement in Yangtze River Delta region of China. In this study, we present O3 pollution characteristics based on one-year online measurements during 2016 at an urban site in Nanjing, Jiangsu Province. Then, the sensitivity of O3 to its precursors during 2 O3 pollution episodes in August was analyzed using a box model based on observation (OBM). The relative incremental reactivity (RIR) of hydrocarbons was larger than other precursors, suggesting that hydrocarbons played the dominant role in O3 formation. The RIR values for NOX ranged from –0.41%/% to 0.19%/%. The O3 sensitivity was also analyzed based on relationship of simulated O3 production rates with reductions of VOC and NOX derived from scenario analyses. Simulation results illustrate that O3 formation was between VOCs-limited and transition regime. Xylenes and light alkenes were found to be key species in O3 formation according to RIR values, and their sources were determined using the Positive Matrix Factorization (PMF) model. Paints and solvent use was the largest contributor to xylenes (54%), while petrochemical industry was the most important source to propene (82%). Discussions on VOCs and NOX reduction schemes suggest that the 5% O3 control goal can be achieved by reducing VOCs by 20%. To obtain 10% O3 control goal, VOCs need to be reduced by 30% with VOCs/NOX larger than 3:1.  相似文献   
106.
近年来银川市冬季重污染过程频发,为明确银川市冬季PM2.5重污染的特征,分析其主要来源及成因,于2016年12月-2017年1月在银川市选取3个采样点开展PM2.5的样品采集与化学组分分析,利用CMB(化学质量平衡)模型对银川市冬季PM2.5进行来源解析,对比分析了重污染日与非重污染日污染特征的差异.结果表明:①银川市冬季重污染日ρ(PM2.5)[(181±33.6)μg/m3]是非重污染日的2.1倍;重污染日和非重污染日的ρ(NO3-)/ρ(SO42-)均小于1,表明燃煤仍是银川市冬季PM2.5的重要来源.银川市冬季PM2.5中ρ(SOC)为(14.4±7.34)μg/m3,约占ρ(OC)的65.2%.②与非重污染日相比,重污染日人为源无机元素As、Pb、Cd和Zn质量浓度在ρ(PM2.5)中的占比分别升高33.2%、18.4%、9.8%和2.9%,表明银川市冬季重污染主要受人为源贡献影响.③源解析结果表明,燃煤源、机动车尾气源、二次离子源和扬尘源是银川市PM2.5的主要污染源,与非重污染日相比,重污染日机动车尾气源的贡献率明显降低.研究显示,银川市冬季重污染受人为源污染物排放的影响较大,燃煤源是银川市冬季PM2.5的重要来源.   相似文献   
107.
为探究水位波动情况下苯系物的迁移转化规律,提高石油污染场地地下水污染治理精度,以西北某傍河石化场地为研究对象,基于TMVOC模型对特征污染物苯系物开展泄漏模拟,通过情景模拟比较水位波动对苯系物迁移转化的影响,并从污染分布、相间转化等方面,解析地下水位稳定和波动状态下苯系物迁移转化过程差异.结果表明:①TMVOC模型较好地模拟了水位波动状态下苯系物迁移转化过程.②相较于水位稳定状态下,水位波动作用下苯系物污染深度增加0.5 m,污染面积增加25%,总质量增加12 kg.③水位稳定和波动状态下苯系物"气-液-NAPL(Non-Aqueous Phase Liquids)相"占比分别为0.17%、2.03%、97.8%和0.04%、3.69%、96.27%.④NAPL相苯系物饱和度分布与苯系物质量分布呈正相关,水位波动造成NAPL相初始饱和度降低,且初始水位面以下NAPL相饱和度升高.⑤对于苯而言,水位波动状态下非饱和带中苯在液相中的质量是水位稳定状态下的1.11倍,饱和带为10.15倍.研究显示,水位波动显著地影响了苯系物的迁移转化过程,促进了苯系物的溶解,并使更多的苯系物残留在地下介质中.   相似文献   
108.
为研究垃圾焚烧厂运行对周边土壤二英类化合物(PCDD/Fs)含量的影响,采集了珠三角地区某垃圾焚烧厂投产前和投产后周边土壤样品,分析研究了该垃圾焚烧厂运行对周边土壤中PCDD/Fs含量和组分的变化.结果表明:①2012年(投产前)珠三角地区某垃圾焚烧厂周边土壤PCDD/Fs含量较低,范围为163~591 ng/kg(毒性当量范围为0.198~0.863 ng I-TEQ/kg,I-TEQ为国际毒性当量因子折算的毒性当量值);2017—2019年(投产后)周边土壤PCDD/Fs含量范围为151~1.75×103 ng/kg(毒性当量范围为0.812~3.88 ng I-TEQ/kg),与其他研究相比处于较低的水平.②投产后,距该垃圾焚烧厂较近(1.5 km)的采样点(S1)土壤PCDD/Fs含量逐年增长,在较远(5.2 km)但人口较密集的采样点(S3)土壤PCDD/Fs含量整体较高,但呈逐年下降趋势.③投产后,土壤中的17种PCDD/Fs单体组分中,毒性当量贡献率最高的单体为八氯二苯并二英(OCDD)和2,3,4,7,8-五氯二苯并呋喃(2,3,4,7,8-PeCDF),二者毒性当量贡献率范围为15.7%~45.4%.④在同一采样点土壤PCDD/Fs单体组分年间差异不明显,但同一年份不同采样点差异明显.研究显示,目前该垃圾焚烧厂周边土壤PCDD/Fs含量较低,但仍需要长期监测其可能带来的风险.   相似文献   
109.
土壤中铁铝氧化物在团聚体稳定性和有机碳吸附方面具有重要作用,而氮添加对土壤氮循环影响的变化也可能与其有关,但是目前尚缺乏在氮循环方面的研究.为了探究铁铝氧化物在土壤氮素转化中的作用,选择福建省建瓯罗浮栲森林土壤为研究对象,采用选择性溶提技术准备不同的土壤——未经处理(T1)的土壤和去除游离态铁铝氧化物(T2)土壤、去除非晶质铁铝氧化物(T3)土壤、去除络合态铁铝氧化物(T4)土壤,在这些土壤中添加不同形态氮(40 mg/kg)——丙氨酸(氨基酸态氮,AA)、硫酸铵(铵态氮,AN)、硝酸钠(硝态氮,NAN)和亚硝酸钠(亚硝态氮,NIN),进行室内培养试验,分析氮含量变化和氮素转化情况.结果表明:①与CK处理相比,AA和AN处理均增加了T1土壤中w(NH4+-N),NAN处理增加了w(NO3--N),但低于添加量,表明添加氨基酸和铵态氮均会促进氮矿化,添加硝态氮会增加NO3--N的固定且抑制其硝化.②在CK处理下,与T1土壤相比,T2和T4土壤中w(NH4+-N)、w(NO3--N)和w(氨基酸)均降低,但T3土壤中w(NH4+-N)和w(氨基酸)增加、w(NO3--N)降低,表明土壤中游离态氧化铁铝和络合态氧化铁铝的存在有助于氮素矿化,非晶质氧化铁铝有助于硝化.③在不同氮处理下,各土壤的氮含量及其转化速率与CK处理规律相似.与CK处理相比,各氮处理均未显著增加T2和T4土壤中w(NH4+-N),且AA和AN处理均未影响T2、T3和T4土壤中w(NO3--N)和w(氨基酸).结果显示,氮添加并没有改变铁铝氧化物的作用,其中,矿化和氨化作用均表现为游离氧化铁铝>络合氧化铁铝>非晶质氧化铁铝,硝化作用表现为非晶质氧化铁铝>游离氧化铁铝>络合态氧化铁铝.因此,土壤铁铝氧化物的不同存在状态应该是调节氮素转化的重要土壤条件.   相似文献   
110.
餐厨垃圾生物有机肥对贫瘠黄褐土改良的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
为了阐明餐厨垃圾生物有机肥改良贫瘠土壤的作用机制,以贫瘠黄褐土为研究对象,通过不施肥、长期(>5 a)施用化肥、中长期(5 a)施用少量餐厨垃圾生物有机肥和短期(1 a)施用大量餐厨垃圾生物有机肥4种施肥方式,分别记为CK组、CF组、LOF-5组和MOF-1组,对比分析不同施肥方式对土壤OM(有机质)、活性有机碳、营养元素和团聚体等的影响.结果表明:①施用餐厨垃圾生物有机肥可显著提高土壤OM、活性有机碳含量,其中,MOF-1组提高效果最显著,与CK组相比,w(OM)可提高173.29%,w(ROC)(ROC为易氧化有机碳)增加了39.17%,w(POC)(POC为颗粒有机碳)和w(DOC)(DOC为可溶性有机碳)分别是CK组的13.85和10.32倍.②中长期(5 a)施用少量餐厨垃圾生物有机肥可增加土壤中较大粒径团聚体的占比,且更有利于提高土壤团粒结构的稳定性,LOF-5组>2 mm粒级的团聚体占比是CK组的4.68倍;与CK组相比,LOF-5组MWD(平均重量直径)增加了100.00%,GMD(几何平均直径)增加了82.98%,>0.25 mm水稳定性团聚体质量占比(DR0.25)增加了27.20%.③中长期(5 a)施用少量餐厨垃圾生物有机肥可增加土壤中w(TN)(TN为全氮)和w(AN)(AN为速效氮),与CK组相比,LOF-5组w(TN)和w(AN)分别增加了77.42%和20.82%.施用餐厨垃圾有机肥也可同时增加土壤中w(AP)(AP为速效磷)和w(AK)(AK为速效钾),MOF-1组增加效果较佳,w(AP)和w(AK)分别是CK组的9.43和3.39倍.研究显示,中长期(5 a)施用少量餐厨垃圾生物有机肥可提升土壤固碳能力,提高土壤养分利用的有效性,从而提升耕地土壤质量,减少化肥施用量,是我国贫瘠黄褐土改良的有效施肥模式.   相似文献   
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