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941.
游璟  倪九派  黄容  张洋  谢德体 《环境科学》2019,40(10):4708-4717
以柑橘/大球盖菇套作模式为研究对象,利用秸秆作为大球盖菇的培养基原料,通过原位试验,连续监测大球盖菇生长期内,不同秸秆还田量(半量、全量和倍量)下土壤CO_2排放规律,并进一步对比栽培大球盖菇(HSM、ASM和DSM)和未栽培大球盖菇(HS、AS和DS)处理下土壤CO_2排放量变化及其影响因素,结合大球盖菇产量及土壤碳排放效率,分析不同秸秆还田量所产生的环境及经济效益,为合理利用柑橘园林下土地提供理论依据.结果表明:①秸秆还田处理的土壤CO_2累积排放量均高于常规种植(CK),随着秸秆还田量的增加呈增加趋势;且栽培大球盖菇处理的土壤CO_2累积排放量大于未栽培大球盖菇,表现为:DSM(52. 09 t·hm-2) ASM(41. 10 t·hm-2) HSM(33. 20 t·hm-2) DS(27. 15 t·hm-2) AS(25. 34t·hm-2) HS(18. 94 t·hm-2) CK(12. 16 t·hm-2);其中,倍量秸秆填埋还田+栽培大球盖菇(DSM)处理的土壤CO_2累积排放量增加最为显著,较CK增加了328. 37%;②对于栽培了大球盖菇的处理,土壤CO_2排放量最大时段均集中在大球盖菇菌丝生长期,其次为出菇后和出菇期;其中DSM处理在菌丝生长期的土壤CO_2累积排放量占其总累积排放量的43. 27%,其次为全量秸秆填埋还田+栽培大球盖菇(ASM,42. 63%)和半量秸秆填埋还田+栽培大球盖菇(HSM,40. 57%);③栽培大球盖菇处理降低了温度敏感系数Q10; 5cm土壤温度能解释27%~71%的土壤CO_2排放速率变化(P 0. 01),而土壤体积含水量单因子对土壤CO_2排放速率不存在显著影响;但双因子拟合发现,5 cm土壤温度和体积含水量可以解释土壤CO_2排放速率变化的36%~82%;④对于栽培了大球盖菇的处理,各处理产量分别为:DSM(49. 7 t·hm-2) ASM(47. 0 t·hm-2) HSM(23. 3 t·hm-2),其中ASM的土壤碳排放效率最高(CEE=1. 14).综上,柑橘/大球盖菇套作模式短期内会显著促进土壤CO_2排放,但同时也提高了柑橘园综合经济效益,其中全量秸秆还田能较好地协调其产生的经济及环境效益.  相似文献   
942.
通过在双金属氢氧化物MgAl-LDHs表面定向固定纳米尺度的CoZn-ZIF,并原位生长形成CoZn-ZIF/MgAl-LDHs复合材料.利用扫描电子显微镜(SEM),傅里叶变换红外光谱仪(FT-IR),X射线衍射(XRD)和热重差热综合热分析仪(TGA/DSC)分析手段对材料进行表征,考察CoZn-ZIF/MgAl-LDHs复合材料对正己烷中碘分子的吸附行为,讨论了吸附时间和吸附温度对吸附性能的影响.此外,还对吸附过程的吸附动力学和热力学进行详细的研究,考察准一级和准二级动力学模型,Langmuir和Freundlich等温吸附模型探究该材料的吸附机理.实验结果表明,CoZn-ZIF/MgAl-LDHs对碘的吸附行为符合准二级动力学模型,吸附平衡时间为225 min.通过Langmuir等温方程得到最大平衡吸附量为344.3322 mg·g~(-1),碘的吸附过程更好地拟合Freundlich等温方程,说明反应是多分子层吸附过程,同时,由热力学数据得知该吸附是以物理吸附为主的放热过程,降低温度对吸附过程更有利.  相似文献   
943.
研究了两种不同形态MnO2(δ-MnO2和胶体MnO2)对难降解有机药物卡马西平(carbamazepine,CBZ)的去除效果,并通过液相色谱质谱联用技术(LC/MS)分析了不同pH值条件下δ-MnO2和胶体MnO2氧化转化CBZ的产物,探究其氧化转化途径.结果表明,δ-MnO2和胶体MnO2能通过化学氧化作用在2h内去除约1mg/L CBZ,相比之下,胶体MnO2受pH影响较小且单位质量Mn对CBZ具有更好的去除效果.δ-MnO2和胶体MnO2与CBZ反应过程中各检出7种和4种产物.胶体MnO2具有更强的氧化能力,越过了多种中间产物的产生步骤,使CBZ的降解途径更加简明.  相似文献   
944.
Chengdu is a megacity in the southwest of China with high ozone (O3) mixing ratio. Observation of volatile organic compounds (VOCs), NO2 and O3 with high temporal resolution was conducted in Chengdu to investigate the chemical processes and causes of high O3 levels. The hourly mixing ratios of VOCs, NO2, and O3 were monitored by an online system from 28 August to 7 October, 2016. According to meteorological conditions, Chengdu, with relative warm weather and low wind speed, is favorable to O3 formation. Part of the O3 in Chengdu may be transported from the downtown area. In O3 episodes, the average mixing ratios of NO2 and O3 were 20.20?ppbv and 47.95?ppbv, respectively. In non-O3 episodes, the average mixing ratios of NO2 and O3 were 16.38?ppbv and 35.15?ppbv, respectively. The average mixing ratio of total VOCs (TVOCs) was 40.29?ppbv in non-O3 episodes, which was lower than that in O3 episodes (53.19?ppbv). Alkenes comprised 51.7% of the total O3 formation potential (OFP) in Chengdu, followed by aromatics which accounted for 24.2%. Ethylene, trans-pentene, propene, and BTEX (benzene, ethylbenzene, toluene, m/p-xylene, o-xylene) were also major contributors to the OFP in Chengdu. In O3 episodes, intensive secondary formations were observed during the campaign. Oxygenated VOCs (OVOCs), such as acetone, Methylethylketone (MEK), and Methylvinylketone (MVK) were abundant. Isoprene rapidly converted to MVK and Methacrolein (MACR) during O3 episodes. Acetone was mainly the oxidant of C3-C5 hydrocarbons.  相似文献   
945.
A pilot-scale multilevel contact oxidation reactors system, coupled with saran lock carriers,was applied for the treatment of poultry farm wastewater. The removal efficiencies of CODcr, ammonia, and the total nitrogen as well as the elimination performance of CODcr and total nitrogen along the three-level contact oxidation tanks under six designed operational models were investigated. Based on the performance of the nitrogen removal of the saran lock carriers and the distribution of anoxic–aerobic interspace under the suitable operation model, the mechanism of nitrogen removal of the system was also explored. The results revealed that the intermittent aeration under parallel model is the most suitable operation model, while the removal efficiencies of CODcr, ammonia, and the total nitrogen were 86.86%, 84.04%, and 80.96%, respectively. The effluent concentration of CODcr,ammonia, and the total nitrogen were 55.6 mg/L, 8.3 mg/L, and 12.0 mg/L, which satisfy both the discharge standard of pollutants for livestock and poultry breeding industry(GB18596–2001) and the first grade of the integrated wastewater discharge standard(GB 8978–1996). Moreover, the mechanism for the nitrogen removal should be attributed to the plenty of anoxic–aerobic interspaces of the biofilm and the three-dimensional spiral structure of the saran lock carriers, where the oxygen-deficient distribution was suitable for the happening of the simultaneous nitrification and denitrification process. Therefore, the multilevel contact oxidation tanks system is an effective pathway for the treatment of the poultry farm wastewater on the strength of a suitable operation model and novel carriers.  相似文献   
946.
High nitrate(NO_3~-)loading in water bodies is a crucial factor inducing the eutrophication of lakes.We tried to enhance NO_3~-reduction in overlying water by coupling sediment microbial fuel cells(SMFCs)with submerged aquatic plant Ceratophyllum demersum.A comparative study was conducted by setting four treatments:open-circuit SMFC(Control),closed-circuit SMFC(SMFC-c),open-circuit SMFC with C.demersum(Plant),and closed-circuit SMFC with C.demersum(P-SMFC-c).The electrochemical parameters were documented to illustrate the bio-electrochemical characteristics of SMFC-c and P-SMFC-c.Removal pathways of NO_3~- in different treatments were studied by adding quantitative~(15)NO_3~- to water column.The results showed that the cathodic reaction in SMFC-c was mainly catalyzed by aerobic organisms attached on the cathode,including algae,Pseudomonas,Bacillus,and Albidiferax.The oxygen secreted by plants significantly improved the power generation of SMFC-c.Both electrogenesis and plants enhanced the complete removal of NO_3~- from the sediment–water system.The complete removal rates of added~(15)N increased by 17.6% and 10.2% for SMFC-c and plant,respectively,when compared with control at the end of experiment.The electrochemical/heterotrophic and aerobic denitrification on cathodes mainly drove the higher reduction of NO_3~- in SMFC-c and plant,respectively.The coexistence of electrogenesis and plants further increased the complete removal of NO_3~- with a rate of 23.1%.The heterotrophic and aerobic denitrifications were simultaneously promoted with a highest abundance of Flavobacterium,Bacillus,Geobacter,Pseudomonas,Rhodobacter,and Arenimonas on the cathode.  相似文献   
947.
In this study, greatly enhanced Mn(II) adsorption was achieved by as-synthesized diethylenetriaminepentaacetate acid intercalated Mg/Al layered double hydroxides(LDHsDTPA). The adsorption capacity of LDHs-DTPA was 83.5 mg/g, which is much higher than that of LDHs-EDTA(44.4 mg/g), LDHs-Oxalate(21.6 mg/g) and LDHs(28.8 mg/g). The adsorption data of aqueous Mn(II) using LDHs-DTPA could be well described by the pseudosecond order kinetics and Langmuir isotherm model. Thermodynamics study results also showed that the adsorption process of Mn(II) by LDHs-DTPA was exothermic as indicated by the negative ΔH value. Furthermore, based on the structural, morphological and thermostable features, as well as FT-IR and XPS characterizations of LDHs-DTPA and the pristine LDHs, the adsorption mechanism of Mn(II) was proposed. The carboxyl groups of DTPA were proposed to be the main binding sites for Mn(II), and the hydroxyl groups of LDHs also played a minor role in the adsorption process. Among the three common regeneration reagents, 0.1 mol/L Na_2CO_3 was the best for reusing LDHs-DTPA in Mn(II)adsorption. Besides, the Mn(II) adsorption performance could be hindered in the presence of typical inorganic ions, especially cations. Further specific modifications of LDHs-DTPA are suggested to get more selective adsorption of Mn(II) in practical applications.  相似文献   
948.
Pathogenic viruses in drinking water are great threats to public health. Visible-light-driven photocatalysis is a promising technology for virus inactivation. However, the existing photocatalytic antiviral research studies have mostly been carried out in single-component systems, neglecting the effect of natural organic matter, which exists widely in actual water bodies. In this paper, electrospun Cu-TiO2 nanofibers were prepared as photocatalysts, and their photocatalytic antiviral performance in the presence of humic acid (HA) was comprehensively studied for the first time. The properties of the reaction mixture were measured during the reaction. In addition, the safety, reliability and stability of photocatalytic disinfection in the mixed system were evaluated. The results showed that the virus removal efficiency decreased with the increase of the HA concentration. The type of reaction solution, such as PBS buffer solution or water, did not affect the removal efficiency noticeably. Under acidic conditions, the electrostatic forces between photocatalysts and viruses were strengthened, leading to higher virus removal efficiency. As the reaction time went on, the pH value in the solution increased first and then tended to be stable, the conductivity remained stable, and the dissolved oxygen increased first and then decreased. The safety test showed that the concentration of Cu ions released into the solution was lower than specified by the international standards. No photoreactivation was observed, and the addition of HA significantly reduced the reutilization efficiency of the photocatalysts.  相似文献   
949.
Based on the measurement of major and trace elements in suspended sediments in the low reaches of the Changjiang River during throughout a whole hydrologic year, the origins, seasonal variations, and fluxes of multielements and the human impacts on multielements transport processes have been analyzed along with the influence of weathering in the Changjiang River basin. The results show that most element contents were high in both autumn and winter and low in summer, which was largely caused by the dilution of discharge. Weathering detritus in the Changjiang River basin is the main source of most elements in suspended sediments. However, riverine pollution could bring more loadings of Cd, Pb, As and Zn into river water than it did a few decades ago. The annual average fluxes of Cd, Pb and Zn, which are major contamination elements, to the sea were 179 ± 21 tons/year, 7810 ± 675 tons/year, and 12,000 ± 1320 tons/year,respectively, in which approximately 8.7%, 11.9% and 2.7% of their loadings, respectively,were contributed by pollution inputs. Element exports mainly occurred in the summer(44.4%–57.4%) in the lower part of the Changjiang River. A general relationship between sediment retention and element content suggests a positive feedback mechanism for the decreased number of particles, in which element riverine loadings are reduced due to the enhanced trapping effect by the Three Gorges Dam(TGD). Compared to those in 1980,current element shares of the Changjiang River compared to the global budget have declined due to the construction of the TGD.  相似文献   
950.
Efficient removal of non-biodegradable and hazardous dyes from wastewater remains a hot research topic. Herein, a rationally designed a Cu(Ⅱ)-based metal–organic gel(Cu-MOG) with a nanoporous 3 D network structure prepared via a simple one-step mixing method was successfully employed for the removal of cationic dyes. The Cu-MOG exhibited high efficiency, with an adsorption capacity of up to 650.32 mg/g, and rapid adsorption efficiency, with the ability to adsorb 80% of Neutral Red within 1 min. The high adsorption efficiency was attributed to its large specific surface area, which enabled it to massively bind cationic dyes through electrostatic interaction, and a nanoporous structure that promoted intra-pore diffusion. Remarkably, the Cu-MOG displayed size-selective adsorption, based on adsorption studies concerning dyes of different sizes as calculated by density functional theory. Additionally, the adsorption performance of the Cu-MOG still maintained removal efficiency of 100% after three regeneration cycles. These results suggested that the Cu-MOG could be expected to be a promising and competitive candidate to conveniently process wastewater.  相似文献   
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