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961.
Ibuprofen(IBU),a nonsteroidal anti-inflammatory drug,is becoming an important member of pharmaceuticals and personal care products(PPCPs)as emerging pollutants.To degrade IBU,magnetic Fe_3C nanoparticles embedded on N-doped carbon(Fe_3C/NC)were prepared as a catalyst by a sol–gel combustion method.As characterized,the Fe_3C/NC nanoparticles were composed of a NC nano-sheet and capsulated Fe_3C particles on the sheet.The Fe_3C/NC nanoparticles were confirmed an efficient catalyst for peroxymonosulfate(PMS)activation to generate sulfate radicals(SO_4~(·-)),single oxygen(~1O_2)and hydroxyl radicals(·OH)toward the degradation of IBU.The added IBU(10 mg/L)was almost completely removed in 30 min by using 0.1 g/L Fe_3C/NC and 2 g/L PMS.The catalyst was confirmed to have good ability and excellent reusability through leaching measurements and cycle experiments.A catalytic mechanism was proposed for the catalytic activation of PMS on Fe_3C/NC,which involves both Fe_3C reactive sites and N-doped carbon matrix as reactive sites in Fe_3C/NC.Moreover,the degradation pathway of IBU in the Fe_3C/NC-PMS system was proposed according to the detections of degradation intermediates.  相似文献   
962.
Protein-like substances always induce severe ultrafiltration (UF) membrane fouling. To systematically understand the effect of proteins, regenerated cellulose UF membrane (commonly used for protein separation) performance was investigated in the presence of bovine serum albumin (BSA) under various water conditions. Results showed that although trypsin enhanced the membrane flux via proteolysis, catalysis took a long time. Membrane fouling was alleviated at high solution pH and low water temperature owing to the strong electrostatic repulsion force among BSA molecules. Both Na+ and Ca2+ could increase membrane flux. However, Ca2+ played a bridging role between adjacent BSA molecules, whereas membrane fouling was alleviated via a hydration repulsion force with Na+. The order of influence on membrane fouling was as follows: Ca2+ concentration > Na+ concentration > pH > temperature > trypsin concentration. Furthermore, a polyvinylidene fluoride UF membrane experiment showed that Ca2+ could reduce the fouling induced by BSA. Thus, the differences in UF membrane performance will have application potential for alleviating UF membrane fouling induced by proteins during water treatment.  相似文献   
963.
Surfactants such as alkylphenol polyethoxylates (APEOs) and nonylphenol ethoxylates (NPEOs) are commonly used worldwide, but the majority of these compounds, together with their metabolites, have been reported to induce severe biological toxicity. Here, we evaluated for the first time the cytotoxicity, genotoxicity and mitochondrial damage in Chinese hamster ovary (CHO-K1) cells caused by a novel non-ionic surfactant, vanillin ethoxylates (VAEOs), an alternative to APEOs. In parallel, the same in vitro bioassays were conducted on NPEOs along with their metabolic byproducts 4-nonylphenol (4-NP) and vanillin. The results showed that the cytotoxic potency order was NPEOs?>?4-NP?>?VAEOs > vanillin using CCK-8 assays. Also, 4-NP showed potential direct DNA damage in SOS/umu tests, whereas NPEOs, VAEOs and vanillin showed no positive result with and without S9 addition. In addition, none of the test compounds showed obvious genotoxic effects with low olive tail moment value using comet assays. However, all test compounds were shown to cause mitochondrial impairment by increasing mitochondrial mass and decreasing mitochondrial membrane potential in a concentration-dependent manner. And further analysis of reactive oxygen species (ROS) and mitochondrial superoxide (MNSOD) measurement showed that mitochondrial impairment was induced by oxidative stress with intracellular ROS and MNSOD overproduction. It's worth noting that VAEOs and vanillin cause relative lower cytotoxic, genotoxic and mitochondrial damage effects than NPEOs and 4-NP, indicating that VAEOs have the potential to substitute NPEOs as suitable surfactants. Take together, this study elucidates the toxicity profiles of VAEOs and NPEOs relatively comprehensively, and further toxicity analyses are suggested in the population, community and ecosystem.  相似文献   
964.
PM2.5 concentrations have dramatically reduced in key regions of China during the period 2013–2017, while O3 has increased. Hence there is an urgent demand to develop a synergetic regional PM2.5 and O3 control strategy. This study develops an emission-to-concentration response surface model and proposes a synergetic pathway for PM2.5 and O3 control in the Yangtze River Delta (YRD) based on the framework of the Air Benefit and Cost and Attainment Assessment System (ABaCAS). Results suggest that the regional emissions of NOx, SO2, NH3, VOCs (volatile organic compounds) and primary PM2.5 should be reduced by 18%, 23%, 14%, 17% and 33% compared with 2017 to achieve 25% and 5% decreases of PM2.5 and O3 in 2025, and that the emission reduction ratios will need to be 50%, 26%, 28%, 28% and 55% to attain the National Ambient Air Quality Standard. To effectively reduce the O3 pollution in the central and eastern YRD, VOCs controls need to be strengthened to reduce O3 by 5%, and then NOx reduction should be accelerated for air quality attainment. Meanwhile, control of primary PM2.5 emissions shall be prioritized to address the severe PM2.5 pollution in the northern YRD. For most cities in the YRD, the VOCs emission reduction ratio should be higher than that for NOx in Spring and Autumn. NOx control should be increased in summer rather than winter when a strong VOC-limited regime occurs. Besides, regarding the emission control of industrial processes, on-road vehicle and residential sources shall be prioritized and the joint control area should be enlarged to include Shandong, Jiangxi and Hubei Province for effective O3 control.  相似文献   
965.
烟草是我国重要经济作物且极易吸收镉(Cd),如何降低烟草Cd含量已引起广泛关注。通过盆栽实验,在Cd(0.83 mg·kg(-1)和12 mg·kg(-1)和12 mg·kg(-1))污染土壤中添加2 g·kg(-1))污染土壤中添加2 g·kg(-1)或16 g·kg(-1)或16 g·kg(-1)石灰(Ca(OH)_2)、羟基磷灰石(HAP)或秸秆生物炭,分析3种钝化材料对土壤Cd的钝化效率及烟草Cd吸收的降低效率。结果表明:(1)种植60 d后,施用16 g·kg(-1)石灰(Ca(OH)_2)、羟基磷灰石(HAP)或秸秆生物炭,分析3种钝化材料对土壤Cd的钝化效率及烟草Cd吸收的降低效率。结果表明:(1)种植60 d后,施用16 g·kg(-1)石灰或HAP均显著(P<0.05)提高土壤pH值,轻微(0.83 mg·kg(-1)石灰或HAP均显著(P<0.05)提高土壤pH值,轻微(0.83 mg·kg(-1)Cd)、中度(12 mg·kg(-1)Cd)、中度(12 mg·kg(-1)Cd)Cd污染土壤pH值分别提高1.98~2.84和1.99~3.06;(2)3种钝化材料均使土壤Cd有效态含量降低,其中,16 g·kg(-1)Cd)Cd污染土壤pH值分别提高1.98~2.84和1.99~3.06;(2)3种钝化材料均使土壤Cd有效态含量降低,其中,16 g·kg(-1)石灰使土壤Cd有效态含量降低69.7%~71.5%;(3)生物炭(2 g·kg(-1)石灰使土壤Cd有效态含量降低69.7%~71.5%;(3)生物炭(2 g·kg(-1)和16 g·kg(-1)和16 g·kg(-1))显著(P<0.05)提高烟草生物量且降低烟草Cd含量,轻微、中度Cd污染土壤烟草生物量分别提高5.07倍~18.5倍和5.00倍~29.7倍,烟草根、茎、叶Cd含量分别降低68.7%~74.6%、32.1%~50.7%、70.2%~82.5%(轻微)和68.7%~74.6%、51.4%~59.3%、33.2%~46.5%(中度),根、茎、叶Cd富集系数亦显著降低,根(Cd_(0.83):122降至31~38.1,Cd_(12):24.7降至12.2~16.8),茎(Cd_(0.83):203降至35.6~60.6,Cd_(12):41.7降至17.6~23.1),叶(Cd_(0.83):247降至100~120,Cd_(12):48.6降至26.0~32.5);(4)溶液吸附实验发现,HAP和生物炭均通过表面吸附Cd(-1))显著(P<0.05)提高烟草生物量且降低烟草Cd含量,轻微、中度Cd污染土壤烟草生物量分别提高5.07倍~18.5倍和5.00倍~29.7倍,烟草根、茎、叶Cd含量分别降低68.7%~74.6%、32.1%~50.7%、70.2%~82.5%(轻微)和68.7%~74.6%、51.4%~59.3%、33.2%~46.5%(中度),根、茎、叶Cd富集系数亦显著降低,根(Cd_(0.83):122降至31~38.1,Cd_(12):24.7降至12.2~16.8),茎(Cd_(0.83):203降至35.6~60.6,Cd_(12):41.7降至17.6~23.1),叶(Cd_(0.83):247降至100~120,Cd_(12):48.6降至26.0~32.5);(4)溶液吸附实验发现,HAP和生物炭均通过表面吸附Cd(2+),且该吸附过程符合准二级动力学模型,表明在钝化过程中这2种钝化剂与Cd(2+),且该吸附过程符合准二级动力学模型,表明在钝化过程中这2种钝化剂与Cd(2+)发生键能结合的化学吸附。研究表明,3种钝化剂在同等剂量水平下,生物炭提高烟草生物量且降低Cd吸收最显著,可优先选作降低烟草Cd吸收的钝化剂。  相似文献   
966.
Environmental Science and Pollution Research - Noise has become an important environmental risk factor. Some studies have shown that exposure to noise can cause coronary artery disease, high blood...  相似文献   
967.
活性炭催化臭氧氧化去除水中的腐植酸   总被引:5,自引:2,他引:5  
针对模拟水样中的腐植酸,采用静态实验对比的方法,分析了单独臭氧氧化和活性炭催化臭氧氧化去除腐植酸的效果。实验结果表明:臭氧氧化和活性炭催化臭氧氧化均可去除水中的腐植酸,且后者的去除效果更佳。在水样pH为中性、反应时间为30m in的条件下,活性炭催化臭氧氧化对腐植酸和COD的去除率分别为64.9%和40.8%,比单独臭氧氧化的处理效果分别高出34.2%和26.1%。臭氧氧化和活性炭催化臭氧氧化反应均受水样pH的影响,碱性条件时,腐植酸去除效果最好,中性条件时次之,酸性条件时最差。  相似文献   
968.
以溶剂热法制备Fe_3O_4磁性粒子,通过改良的St?ber法在其上包覆Si O_2,并用3-氨丙基三乙氧基硅烷对表面进行氨基修饰,制得Si O_2-NH_2/Fe_3O_4磁性复合材料,并将其用于制药废水二级出水的吸附处理(吸附剂投加量1 g/L、吸附时间120 min)。表征结果显示:Si O_2-NH_2/Fe_3O_4为粒径(510.0±3.6)nm的球形粒子。实验结果表明:在废水p H为5时,Si O_2-NH_2/Fe_3O_4对TOC、蛋白质、腐殖酸的吸附效果最佳,三者的去除率分别达44.14%,35.58%,33.07%,与Fe_3O_4相比分别提高了25.27,21.76,21.05百分点;废水p H为6时,Si O_2-NH_2/Fe_3O_4对多糖和色度的去除效果最佳,二者的去除率分别达26.03%和62.94%,与Fe_3O_4的最高去除率(p H=5时)相比分别提高了17.84百分点和22.45百分点;Si O_2-NH_2/Fe_3O_4重复使用4次,TOC和色度去除率均达初次使用时的87%以上。  相似文献   
969.
黄淮流域夏半年旱涝概率时空分布的研究   总被引:3,自引:0,他引:3  
利用Γ分布模式拟合区域降水百分率的概率分布,由此推求黄淮流域夏半年(4~10月)旱涝概率,并探讨该区出现各级旱涝概率的时空分布特征。结果表明,该方法具有相当的客观性,为旱涝灾害研究提供了一条新途径。各级旱涝概率的空间分布反映了各地旱涝频发程度的区域特征和季节变动,揭示了大旱大涝灾害的脆弱区分布特点。文中推导的区域旱涝概率与Γ分布参数α的经验关系,为推断无资料地区旱涝概率提供了可能性。  相似文献   
970.
Oxidative transformation of organic contaminants by manganese oxides was commonly investigated with pure MnO2 suspension, which deviates from the fact that natural manganese oxides are seldom present as a pure form in the natural environment. In this study, we prepared manganese oxide-coated sand (MOCS) and evaluated its oxidative capacity using bisphenol A (BPA) as the model compound. BPA was transformed by MOCS and the reaction followed an exponential decay model. The reaction was pH dependent and followed the order of pH 4.5?>?pH 5.5?>?pH 6.5?>?pH 7.5?>?pH 8.6?>?pH 9.6, indicating that acidic conditions facilitated BPA transformation while basic conditions disfavored the reaction. Coexisting metal ions exhibited inhibitory effects and followed the order of Fe3+ > Zn2+ > Cu2+ > Ca2+ > Mg2+ > Na+. Transformation of BPA by MOCS was much slower than that by pure MnO2 suspension. However, similar transformation products were identified in both studies, suggesting the same reaction pathways. This work suggests that the reactivity of MnO2 in the environment might be overestimated if extrapolating the result from the pure MnO2 suspension because natural MnO2 is mainly present as coating on the surface of soils and sediments.  相似文献   
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