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891.
With rapid economic growth and urbanization, the Yangtze River Delta(YRD) region in China has experienced serious air pollution challenges. In this study, we analyzed the air pollution characteristics and their relationship with emissions and meteorology in the YRD region during 2014–2016. In recent years, the concentrations of all air pollutants, except O_3,decreased. Spatially, the PM_(2.5), PM_(10), SO_2, and CO concentrations were higher in the northern YRD region, and NO_2 and O_3 were higher in the central YRD region. Based on the number of non-attainment days(i.e., days with air quality index greater than 100), PM_(2.5) was the largest contributor to air pollution in the YRD region, followed by O_3, PM_(10), and NO_2.However, particulate matter pollution has declined gradually, while O_3 pollution worsened.Meteorological conditions mainly influenced day-to-day variations in pollutant concentrations. PM_(2.5) concentration was inversely related to wind speed, while O_3 concentration was positively correlated with temperature and negatively correlated with relative humidity.The air quality improvement in recent years was mainly attributed to emission reductions.During 2014–2016, PM_(2.5), PM_(10), SO_2, NO_x, CO, NH_3, and volatile organic compound(VOC)emissions in the YRD region were reduced by 26.3%, 29.2%, 32.4%, 8.1%, 15.9%, 4.5%, and0.3%, respectively. Regional transport also contributed to the air pollution. During regional haze periods, pollutants from North China and East China aggravated the pollution in the YRD region. Our findings suggest that emission reduction and regional joint prevention and control helped to improve the air quality in the YRD region.  相似文献   
892.
为研究施用餐厨垃圾调理剂对土壤有机碳组分的影响,以果园土壤为研究对象,从时间、空间维度解析长期施用餐厨垃圾调理剂对土壤有机碳积累、组成及其分布规律的影响,结合CPMI(碳库管理指数)和相关性分析,揭示施用餐厨垃圾调理剂对土壤碳汇的影响机制.结果表明,施用餐厨垃圾调理剂可显著提高土壤中w(TOC)(TOC为总有机碳),并随施用时间的增加逐渐向深层土壤迁移,改善TOC分布状况.随着施用餐厨垃圾调理剂时间的增加,0~20 cm土壤层中w(NOC)(NOC为非活性有机碳)和30~40 cm土壤层中w(AOC)(AOC为活性有机碳)呈增加趋势,AOC分配比例低于NOC分配比例.随着施用时间的增长,0~30 cm土壤层中w(POC)(POC为颗粒有机碳)显著提高,最大值为42.94 mg/g,MOC(矿质结合态有机碳)分配比例与POC分配比例呈相反变化趋势,有利于提高土壤碳稳定性.各土壤层中CPMI均大于空白对照组,最大值为154.437,表明施用餐厨垃圾调理剂有利于提升土壤肥力.相关性分析表明,w(POC)与pH呈负相关,与含水率、EC(电导率)、w(OM)(OM为有机质)呈正相关,其中与含水率相关性最高(R=0.91).可见,长期施用餐厨垃圾调理剂对提高果园土壤碳汇、改善土壤肥力具有重要意义,研究结果有助于进一步提升土壤碳汇的新型土壤调理剂的研发与应用.   相似文献   
893.
魏钰  雷光春 《自然资源学报》2019,34(9):1820-1832
自然保护事业已经进入人与自然和谐的综合保护阶段,突破传统生物群落保护的要素式思维,从生态特征、生态系统健康和自组织能力等视角系统实施生态系统完整性保护,已基本成为共识。中国经历了长期部门化割裂管理,在国家公园体制建设过程中开始由分散走向统一,要求将山水林田湖草作为生命共同体进行生态系统完整性保护。基于集合种群等空间生态学理论,提出国家公园生态系统完整性不仅意味着内部自然空间的完整,更需着眼国家生态安全的大局和自然保护地体系的战略布局。国家公园只有成为生态地理区的节点并辐射周边区域,有效平衡行政区域之间以及人与自然之间的关系,才能真正实现完整生态系统的长效保护。目前,国内既有研究在指导全域布局和平衡人地关系方面仍考虑不足,试点过程中还存在管理型技术方法欠缺、空间边界受限于行政边界、未能从全局着眼构建以国家公园为核心的生态系统完整性网络、未充分考虑差异化的人地关系等问题。未来需要着眼大局,有效平衡国家公园及其周边区域的关系、不同行政区域之间的关系、国家公园人与自然的关系,从而实现生态系统完整性的长效保护。  相似文献   
894.
采用膜生物反应器(MBR)研究了厌氧氨氧化细菌在富集过程中的活性变化,在启动全程自养脱氮(CANON)工艺中以恒定曝气量,通过优化停曝比实现氨氧化细菌(AerAOB)和厌氧氨氧化细菌(AnAOB)协同脱氮并且有效抑制亚硝酸盐氧化菌(NOB)的活性,然后添加有机物(乙酸钠)逐步启动同步亚硝化-厌氧氨氧化耦合异养反硝化(SNAD)工艺.结果表明,在厌氧氨氧化细菌富集过程中,通过不断缩短水力停留时间(HRT)提高进水氮负荷的方式强化厌氧氨氧化细菌活性,其平均活性由0.603mgN/(h·gVSS)提高到了8.1mgN/(h·gVSS);当恒定曝气量为50mL/min,停曝比为4:10(min:min)时,AerAOB和AnAOB对氨氮的去除量分别占总氨氮去除量的58.8%和41.2%,NOB氧化亚硝态氮的量占总硝态氮生成量的15.3%,成功抑制了NOB的活性;当C/N比为0.5,调整停曝比为4:15后,反硝化过程氮去除量占总氮去除率的20.9%,厌氧氨氧化过程氮去除量占总氮去除率的79.1%,实现了AerAOB、AnAOB和反硝化细菌(DNB)协同脱氮的目的.  相似文献   
895.
固定化小球藻对海水养殖废水氮磷的处理   总被引:1,自引:0,他引:1  
本研究利用海藻酸钠(SA)作为载体、以氯化钙(CaCl2)为交联剂,探究小球藻最佳固定化条件及其对海水养殖废水氨氮和磷酸盐的处理效果.通过对比不同浓度SA和CaCl2对小球藻生长的影响及不同固定化条件的藻球对氨氮、磷酸盐处理效果,确定最佳固定化条件为2.0% SA和2.0% CaCl2.对比固定化藻球和悬浮小球藻对模拟海水养殖废水氨氮、磷酸盐去除效果,结果表明固定化藻球比悬浮藻液对氮、磷处理效果更好.其中低接种率(1:10)固定化藻球的最大氨氮、磷酸盐去除率分别为63.26%和62.76%.固定化小球藻浓度越高,其净化能力越强,高接种率(1:1)固定化藻球的最大氨氮、磷酸盐去除率分别是85.16%和75.94%.连续流运行下固定化藻球对海水养殖废水氨氮、磷酸盐的平均去除率分别为84.49%和72.17%.小球藻固定化态保留并延长了悬浮态生长活性,提高了对海水养殖废水脱氮除磷效果.  相似文献   
896.
使用气相色谱-电子捕获负化学电离质谱(GC-ECNI-MS),对包含CP-42、CP-52和CP-70三种常见氯含量的22个CPs产品进行了测定,分析了不同氯含量的CPs产品中短链氯化石蜡(SCCPs)和中链氯化石蜡(MCCPs)同系物的分布模式.SCCPs同系物呈现5种分布特征,分别是CP-42型、三类CP-52型和CP-70型,MCCPs同系物呈现4种分布特征,分别是CP-42型和三类CP-52型,CP-70产品中MCCPs同系物未呈现出一致的分布规律.CPs生产原料石蜡中烷烃的成分组成和CPs生产工艺的不同,是造成产品同系物分布模式不一致的原因.通过统计学分析,得到CPs产品中SCCPs和MCCPs同系物的指纹分布,这是开展环境中CPs的源解析、迁移转化、归趋和毒性风险评价等研究的有利工具.  相似文献   
897.
A wide range of compounds with various structural features can cause taste and odor(TO)problems in drinking water. It would be desirable to determine all of these compounds using a simple analytical method. In this paper, a sensitive method combining liquid–liquid extraction(LLE) with gas chromatography-triple quadrupole tandem mass spectrometry(GC–MS/MS)was established to simultaneously analyze 51 odor-causing compounds in drinking water,including organic sulfides, aldehydes, benzenes, phenols, ethers, esters, ketones, nitrogenous heterocyclic compounds, 2-methylisoborneol and geosmin. Three deuterated analogs of target analytes, dimethyl disulfide-d6, benzaldehyde-d6 and o-cresol-3,4,5,6-d4,were used to correct the variations in recovery, and five isotope-labeled internal standards(4-chlorotoluene-d4, 1, 4-dichlorobenzene-d4, naphthalene-d8, acenaphthene-d10, phenanthrene-d10 respectively) were used prior to analysis to correct the variations arising from instrument fluctuations and injection errors. The calibration curves of the target compounds showed good linearity(R2 0.99, level = 7),and method detection limits(MDLs) below 1/10 of the odor threshold concentrations were achieved for most of the odorants(0.10–20.55 ng/L). The average recoveries of most of the analytes in tap water samples were between 70% and 120%, and the method was reproducible(RSD 20%, n = 7). Additionally, concentrations of odor-causing compounds in water samples collected from three drinking water treatment plants(DWTPs) were analyzed by this method.According to the results, dimethyl trisulfide, dimethyl disulfide and indole were considered to be the key odorants responsible for the swampy/septic odor. 2-Methylisoborneol and geosmin were detected as the main odor-causing compounds for musty/earthy odor in DWTP B.  相似文献   
898.
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   
899.
Enzymatic electrolysis cell(EEC) has advantages over microbial electrolysis cell(MEC) due to the needless of microbe inoculation and high-efficiency of enzymatic reaction. In this study, an EEC was first applied to achieve the effective degradation of halogenated organic pollutants and dichloromethane(CH_2Cl_2) was utilized as a model pollutant. The results indicate that the degradation efficiency of CH_2Cl_2 after 2 hr reaction in the EEC was almost100%, which was significantly higher than that with enzyme(51.1%) or current(19.0%). The current induced the continuous regeneration of reduced glutathione(GSH), thus CH_2Cl_2 was degraded under the catalysis of GSH-dependent dehalogenase through stepwise dechlorination, and successively formed monochloromethane(CH_3Cl) and methane(CH_4). The kinetic result shows that with a current of 15 mA, the maximum specific degradation rate of CH_2Cl_2(3.77 × 10~(-3) hr~(-1)) was increased by 5.7 times. The optimum condition for CH_2Cl_2 dechlorination was also obtained with pH, current and temperature of 7.0, 15 mA and 35°C,respectively. Importantly, this study helps to understand the behavior of enzymes and the fate of halogenated organic pollutants with EEC, providing a possible treatment technology for halogenated organic pollutants.  相似文献   
900.
目的制备新型的光催化复合材料,提高其光催化性能。方法通过水热法和原位生长法制备不同摩尔比的AgBr/Ag_2MoO_4@AgVO_3光催化剂。采用X射线衍射(XRD)、扫描电镜(SEM)和高分辨透射电子显微镜(HRTEM)等一系列手段对所制备的光催化剂进行表征,并以可见光为光源,有机污染物罗丹明B(RhB)为降解对象,进行光催化活性测试,考察不同复合量的光催化剂对反应活性的影响。同时,以铜绿假单胞菌细胞、金黄色葡萄球菌和大肠杆菌为模式菌,进行抗菌试验考察光催化剂的杀菌性能。结果该复合材料通过AgVO_3的(501)晶面、Ag_2MoO_4的(311)面和AgBr的(200)晶面紧密连接。在罗丹明B(RhB)溶液中加入该复合材料,120 min内降解率达到了94.9%,而纯AgVO_3的降解率为7.8%,说明复合后的材料光催化性能明显提高。此外,在光催化杀菌实验中,超过99.99%的大肠杆菌、金黄色葡萄球菌和铜绿假单胞菌细胞均在90 min内被杀死。结论复合后的AgBr/Ag_2MoO_4@AgVO_3异质结光催化剂具有优异的光催化降解性能、杀菌性能和稳定性,该催化剂对于环境污染的治理以及海洋杀菌防污处理都起到一定的作用。  相似文献   
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