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101.
In recent years, engineered nanoparticles, as a new group of contaminants emerging in natural water, have been given more attention. In order to understand the behavior of nanoparticles in the conventional water treatment process, three kinds of nanoparticle suspensions, namely multi-walled carbon nanotube-humic acid (MWCNT-HA), multi-walled carbon nanotube-N,N-dimethylformamide (MWCNT-DMF) and nanoTiO2-humic acid (TiO2-HA) were employed to investigate their coagulation removal efficiencies with varying aluminum chloride (AlCl3) concentrations. Results showed that nanoparticle removal rate curves had a reverse “U” shape with increasing concentration of aluminum ion (Al3 +). More than 90% of nanoparticles could be effectively removed by an appropriate Al3 + concentration. At higher Al3 + concentration, nanoparticles would be restabilized. The hydrodynamic particle size of nanoparticles was found to be the crucial factor influencing the effective concentration range (ECR) of Al3 + for nanoparticle removal. The ECR of Al3 + followed the order MWCNT-DMF > MWCNT-HA > TiO2-HA, which is the reverse of the nanoparticle size trend. At a given concentration, smaller nanoparticles carry more surface charges, and thus consume more coagulants for neutralization. Therefore, over-saturation occurred at relatively higher Al3 + concentration and a wider ECR was obtained. The ECR became broader with increasing pH because of the smaller hydrodynamic particle size of nanoparticles at higher pH values. A high ionic strength of NaCl can also widen the ECR due to its strong potential to compress the electric double layer. It was concluded that it is important to adjust the dose of Al3 + in the ECR for nanoparticle removal in water treatment. 相似文献
102.
通过自主设计的燃烧装置,对云南省6种典型乔木树种的不同器官(枝、叶、皮)室内模拟阴、明燃两种燃烧过程,收集燃烧排放颗粒物(PM2.5)并测定K、Mg等8种元素排放因子,比较不同燃烧状态释放PM2.5中元素含量的差异,同时分析各元素排放因子与可燃物自身元素含量之间的相关性.结果表明:可燃物中K、Mg和Ca元素含量较高,范围为(137.74~4670.70) mg/kg,微量元素Mn含量突出;阔叶可燃物元素含量普遍高于针叶,器官间元素含量差异显著;燃烧释放PM2.5中K、Na元素排放因子较高,范围为(0.4269~4.9321)~(0.6311~3.0856) mg/kg,微量元素Zn较高、Cu最少,范围为(0.0409~0.3670)~(0.0029~0.0458) mg/kg,常量元素高于微量;树种间元素排放因子表现针叶高于阔叶,器官间较可燃物自身差异增大;燃烧状态对排放因子存在影响,常量元素普遍表现为明燃>阴燃,微量元素无明显规律;PM2.5与可燃物各元素含量比值中,Na元素最高,其余元素占比普遍0~1%范围,微量元素含量比高于常量,针叶高于阔叶;可燃物的化学性质对其排放特性影响显著,可燃物与PM2.5的元素间相关性较高,相关水平普遍达0.600以上,器官间不同元素相关水平表现为:常量元素普遍高于微量元素,针叶略高于阔叶,叶>皮>枝,明燃高于阴燃. 相似文献
103.
Mao Haobo Zhang Yingyi Wang Hong Cui Kunkun Yu Laihao Tan Tianbiao 《Environmental Chemistry Letters》2023,21(3):1659-1672
Environmental Chemistry Letters - Huge amounts of unwanted sewage sludge are generated in the process of wastewater treatment, calling for methods to recycle sewage sludges into value-added... 相似文献
104.
宁波南沙港网箱养殖水域营养状况评价及生物修复策略 总被引:1,自引:0,他引:1
根据2007年1月-2007年11月4个航次对宁波南沙港网箱养殖水域水体营养盐(NO2--N、NO3--N、NH 4+-N和PO34--P)含量的监测结果,利用营养指数E法对水体的富营养化状态进行了评价。根据网箱养殖系统物质平衡方程和现场调查实验数据,估算了南沙港网箱养殖水域的氮磷污染负荷,以溶解态氮作为平衡指标,估算了鱼藻类合理的配比模式。结果表明,南沙港水体中NO2--N、NO3--N、NH4+-N、PO4-P含量年变化范围分别为0.26μmol/L~4.86μmol/L,33.93μmol/L~82.86μmol/L,0.59μmol/L~7.86μmol/L,1.47μmol/L~2.97μmol/L,不同养殖区之间营养盐含量差异不显著(p〈0.05);营养指数E值年变化范围介于2.41~15.99之间,表明该港水体处于重度富营养化状态;养殖区N/P值的年平均值为32.95,表明南沙港海区是一个氮过剩的养殖系统。南沙港网箱养殖水域氮、磷的负荷量分别为70.43 t/a和5.96 t/a,其中溶解态氮、磷负荷量分别为49.3 t/a和2.38 t/a;南沙港的藻类养殖面积需要在现有基础上再扩大0.44倍,达到107.52 ha,才可以与网箱养殖系统的氮磷污染负荷构成平衡;网箱养殖个数与藻类养殖面积(ha)的合理配比约为1∶0.027。 相似文献
105.
106.
107.
Liu Fei Jiang Xiangkang Zhang Mao 《Environmental science and pollution research international》2022,29(5):6911-6928
Environmental Science and Pollution Research - Accidental carbon monoxide poisoning (ACOP) is the most common occupational toxic disease, but related data are scarce or non-existent in many... 相似文献
108.
Xia Xuewen Li Junqi Chen Chaoyi Lan Yuan-Pei Mao Xisong Chu Zhiyao Ning Deyang Zhang Junshan Liu Fengyuan 《Environmental science and pollution research international》2022,29(59):88866-88881
Environmental Science and Pollution Research - Tuning morphology and doping additional rare earth (RE) cations are potential techniques to promote the photocatalytic performance of ceria (CeO2),... 相似文献
109.
Under the background of global warming, the summer temperature of the North and Northeast China (NNEC) has significantly increased since 2017, which was accompanied by the aggravated ozone (O3) pollution. In 2018, the NNEC experienced a record-breaking summer of the past 40 years. Influenced by the abnormal high temperatures, a regional ozone event occurred on 2-3 August, over 63% of 79 selected cities in the NNEC were exposed to O3 pollution, and the maximum value of MDA8 O3 reached 268 μg/m3. Observations indicated that ozone concentrations agree well with the maximum temperature at 2 meters (MT2M) over NNEC with a correlation coefficient of 0.69. During the pollution episode, strong downdraft in the local high (35°N-42.5°N, 112.5°E-132.5°E; LH) over the NNEC created the favourable meteorological conditions for O3 formation. By analyzing the horizontal wind and wave activity fluxes (WAFs) at 200 hPa, we found that the LH formation was resulted from the Rossby wave propagation from upstream along the mid-latitude Asian jet. The split polar vortex intrusion further strengthened the amplitude of the Rossby wave and reinforced the LH. Moreover, a secondary circulation between Typhoon Jongdari and the LH contributed to the enhanced LH with strong subsidence. On the other hand, the stratospheric intrusions under the deep subsidence also contributed to the enhanced surface O3. In this study, the deep-seated meteorological dynamical mechanisms contributing to the abnormal high temperatures were investigated, which can lead to a better understanding of the regional O3 pollution over NNEC under the global-warming background. 相似文献
110.
Li Ying Rong Yanyu Ahmad Umme Marium Wang Xiaotong Zuo Jian Mao Guozhu 《Environmental science and pollution research international》2021,28(34):46196-46214
Environmental Science and Pollution Research - Buildings account for nearly 2/5ths of global energy expenditure. Due to this figure, the 90s witnessed the rise of green buildings (GBs) that were... 相似文献