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981.
982.
983.
Zuobin Wang Jiao Zhang Xiao Guan Lu She Pengyu Xiang Siqing Xi Zhiqiang Zhang 《环境科学学报(英文版)》2019,31(11):119-128
A novel struvite crystallization method induced by bioelectrochemical acidolysis of magnesia(MgO) was investigated to recover phosphorus(P) from aqueous solution using a dual-chamber microbial electrolysis cell(DMEC). Magnesium ion(Mg~(2+)) in the anolyte was firstly confirmed to automatically migrate from the anode chamber to the cathode chamber, and then react with ammonium(NH+4) and phosphate(PO_4~(3-)) in the catholyte to form struvite. Recovery efficiency of 17.8%–60.2% was obtained with the various N/P ratios in the catholyte. When MgO(low solubility under alkali conditions) was added into the anolyte, the bioelectrochemical acidolysis of MgO naturally took place and the released Mg~(2+)induced struvite crystallization in the cathode chamber for P recovery likewise.Besides, there was a strong linear positive correlation between the recovery efficiency and the MgO dosage(R~2= 0.935), applied voltage(R~2= 0.969) and N/P ratio(R~2= 0.905). Increasing the applied voltage was found to enhance the P recovery via promoting the MgO acidolysis and the released Mg~(2+)migration, while increasing the N/P ratio in the catholyte enhanced the P recovery via promoting the struvite crystallization. Moreover, the electrochemical performance of the system was promoted due to more stable anolyte pH and lower pH gradient between the two chambers. Current density was promoted by 10%, while the COD removal efficiency was improved from 78.2% to 91.8% in the anode chamber. 相似文献
984.
Cathodic reduction of CO2 and anodic oxidation of organic matters are crucial to methane-producing microbial electrolysis cell (MEC) applied in anaerobic digestion of waste activated sludge. However, cathodic CO2 reduction is usually restrained by slow metabolism rates of H2-utilizing methanogens and low electron-capturing capacity of CO2, which consequently slows down the anodic oxidation that participates to sludge disintegration. Herein, a strategy with adding nitrate as electron acceptor to foster electronic transfer between the anode and cathode was proposed to improve anodic oxidation. Results showed that the average efficiency of anodic oxidation in the nitrate-added MEC increased by 55.9%. Accordingly, volatile suspended solid removal efficiency in the nitrate-added MEC was 21.9% higher than that of control MEC. Although the initial cumulative methane production in the nitrate-added MEC was lower than that of control MEC, the cumulative methane production in 24?days was 8.9% higher. Fourier transform infrared spectroscopy analysis indicated that anodic oxidation of MEC with nitrate accelerated the disintegration of sludge flocs and cell walls. Calculation on current signal further revealed that anodic oxidation driven by cathodic nitrate reduction was the main mechanism responsible for the improved sludge digestion. 相似文献
985.
Liang Yuan Yan Yin Hui Xiao Jian Hao Kui Chen Xingna Yu Xiaoling Zhang 《环境科学学报(英文版)》2019,31(9):21-38
In-situ measurements of aerosol optical properties were conducted at Mt. Huang from September 23 to October 28, 2012. Low averages of 82.2, 10.9, and 14.1 Mm~(-1) for scattering coefficient(σ_(sp, neph, 550)), hemispheric backscattering coefficient(σ_(hbsp, neph, 550)), and absorption coefficient(σ_(ap, 550)), respectively, were obtained. Atmospheric aging process resulted in the increase of σap, 550 but the decrease of the single scattering albedo(ω_(550)) at constant aerosol concentration. However, the proportion of non-light-absorbing components(non-BCs) was getting higher during the aging process, resulting in the increase of aerosol diameter, which also contributed to relatively higher σ_(sp, neph, 550) and ω_(550). Diurnal cycles of σ_(sp, neph, 550) and σ_(ap, 550) with high values in the morning and low values in the afternoon were observed closely related to the development of the planetary boundary layer and the mountain-valley breeze. BC mixing state, represented by the volume fraction of externally mixed BC to total BC(r), was retrieved by using the modified Mie model.The results showed r reduced from about 70% to 50% when the externally mixed non-BCs were considered. The periodical change and different diurnal patterns of r were due to the atmospheric aging and different air sources under different synoptic systems. Local biomass burning emissions were also one of the influencing factors on r. Aerosol radiative forcing for different mixing state were evaluated by a "two-layer-single-wavelength" model,showing the cooling effect of aerosols weakened with BC mixing state changing from external to core-shell mixture. 相似文献
986.
基于2016年冬季石家庄市微脉冲气溶胶激光雷达观测资料,采用归一化梯度法和梯度法两种方法反演了大气污染边界层高度,并将结果与相同时段探空资料获得的边界层高度进行对比验证,同时选取典型个例对污染边界层高度的过程演变特征进行了分析,探索了不同污染等级下污染边界层结构.结果表明,归一化、梯度法反演结果均与探空位温确定的边界层高度存在一致性,相关系数分别为0.62、0.55,均通过了0.05的显著性检验,但归一化相对误差为19%,梯度法为34%,表明归一化梯度法优于梯度法且其反演结果是可靠的.空气质量优良日,归一化梯度法反演结果准确度降低,与位温确定边界层高度最大偏差约1000m;随着污染程度加重,反演结果与位温确定边界层高度差减小,污染期间,污染边界层高度总体低于1000m,污染最重时段降到400m左右.不同空气质量等级、不同高度气溶胶消光系数垂直递减率具有明显差异,污染天气400m高度垂直递减率最大,表明该层以下为较重污染聚积层,之后随高度升高消光系数明显减小,700m以上为清洁空气. 相似文献
987.
Yanan Zheng Liudan Wei Linwei Duan Fangfang Yang Guixiang Huang Tianyi Xiao Min Wei Yanling Liang Huiting Yang Zhipeng Li Dan Wang 《环境科学学报(英文版)》2021,33(8):161-170
With increasing industrial activities, mercury has been largely discharged into environment and caused serious environmental problems. The growing level of mercury pollution has become a huge threat to human health due to its significant biotoxicity. Therefore, the simple and fast means for on-site monitoring discharged mercury pollution are highly necessary to protect human beings from its pernicious effects in time. Herein, a “turn off” fluorescent biosensor (mCherry L199C) for sensing Hg2+ was successfully designed based on direct modification of the chromophore environment of fluorescent protein mCherry. For rapid screening and characterization, the designed variant of mCherry (mCherry L199C) was directly expressed on outer-membrane of Escherichia coli cells by cell surface display technique. The fluorescent biosensor was characterized to have favorable response to Hg2+ at micromole level among other metal ions and over a broad pH range. Further, the cells of the fluorescent biosensor were encapsulated in alginate hydrogel to develop the cells-alginate hydrogel-based paper. The cells-alginate hydrogel-based paper could detect mercury pollution in 5 min with simple operation process and inexpensive equipment, and it could keep fluorescence and activity stable at 4?°C for 24 hr, which would be a high-throughput screening tool in preliminarily reporting the presence of mercury pollution in natural setting. 相似文献
988.
Yongpeng Ji Xingyu Chen Yuqi Xiao Yuemeng Ji Weina Zhang Jiaxin Wang Jiangyao Chen Guiying Li Taicheng An 《环境科学学报(英文版)》2021,33(7):56-63
Mineral particles are ubiquitous in the atmosphere and exhibit an important effect on the photooxidation of volatile organic compounds (VOCs). However, the role of mineral particles in the photochemical oxidation mechanism of VOCs remains unclear. Hence, the photooxidation reactions of acrolein (ARL) with OH radical (OH) in the presence and absence of SiO2 were investigated by theoretical approach. The gas-phase reaction without SiO2 has two distinct pathways (H-abstraction and OH-addition pathways), and carbonyl-H-abstraction is the dominant pathway. In the presence of SiO2, the reaction mechanism is changed, i.e., the dominant pathway from carbonyl-H-abstraction to OH-addition to carbonyl C-atom. The energy barrier of OH-addition to carbonyl C-atom deceases 21.33 kcal/mol when SiO2 is added. Carbonyl H-atom of ARL is occupied by SiO2 via hydrogen bond, and carbonyl C-atom is activated by SiO2. Hence, the main product changes from H-abstraction product to OH-adduct in the presence of SiO2. The OH-adduct exhibits a thermodynamic feasibility to yield HO2 radical and carboxylic acid via the subsequent reactions with O2, with implications for O3 formation and surface acidity of mineral particles. 相似文献
989.
990.
采用FLUENT模拟技术,应用可靠的物理模型、划分结构化网格,选用合理的模拟方法,对两种不同结构分离器单相流场和油气水三相分离效率开展了模拟研究,结果表明:两种结构分离器切向速度流场衰减速度均较慢,采用渐缩式内筒结构的"2"型分离器切向速度对称性、极大值均优于"1"型分离器;两种结构分离器均存在两组"零轴速包络面",不利于分离器收油操作,需设计特殊的收油装置、收油结构;两种结构分离器分离效率均随处理量、溶气水量、分流比以及溶气比的增加而增加,但"2"型分离器分离效率明显高于"1"型,"2"型分离器溶气水量、分流比最优值明显小于"1"型分离器。 相似文献