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871.
1995-2015年江苏省土地利用功能转型特征及其协调性分析   总被引:13,自引:3,他引:10  
土地利用功能转型可实现土地利用功能协调,是实施区域可持续发展的重要路径。从功能协调角度构建土地利用功能转型分析框架,利用江苏省1995年、2000年、2005年、2010年和2015年5期遥感影像及相关资源利用和社会经济数据,构建三级土地利用功能评价体系,以县域为评价单元,通过三角模型和空间相关分析等方法,定量解析江苏省土地利用功能时空演变特征及其与土地可持续利用目标的协调状况。研究结果显示:(1)研究期内,江苏省土地利用功能总水平提升减慢,其中生产、生活功能不同程度提升,生态功能明显下降。(2)生产、生活功能空间集聚不突出,生态功能的热点、冷点区域呈“Y”型集聚分布。(3)不同功能区功能协调性态势不一,重点开发区和限制开发区可持续发展态势总体良好,优化开发区可持续发展程度较弱并持续恶化。建议江苏省在落实发展蓝图和空间规划的过程中,应优先推进苏南现代化示范区建设,重点实施重点开发区生活功能转型、Ⅰ类限制开发区生产功能转型策略,并严格落实禁止开发区的生态保护责任等差别化管理策略。  相似文献   
872.
以长江三角洲(以下简称长三角)为研究区,基于2017年10~12月内共16d 94景的晴空静止卫星GOCI L1B图像和6S模型,采用深蓝算法反演长三角地区气溶胶光学厚度(AOD),并利用2个实测站数据进行验证.再通过反演得到的AOD结果进一步模拟计算该区域地表和大气层顶的气溶胶直接辐射效应(ADRE),并结合典型的雾霾天气进行分析.结果表明:利用GOCI数据反演的AOD具有较高拟合精度,北辰楼站点拟合相关性R2为0.68,太湖站点为0.67.空间上,由于气溶胶存在制冷效应,AOD和地表面、大气层顶气溶胶直接辐射强度均呈现出显著的线性关系.时间上,由于气溶胶扩散和风向等因素,早上和下午辐射效应强度较高,中午较低.其中10:00和11:00影像可以较好地模拟日均ADRE的特征,利用ADRE日内变化成功捕捉到一次雾霾爆发并消失的现象,对气象部门监测近地表气温和分析灰霾的形成等具有重要意义.  相似文献   
873.
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   
874.
Single-chamber sediment microbial fuel cells(SSMFCs) have received considerable attention nowadays because of their unique dual-functionality of power generation and enhancement of wastewater treatment performance. Thus, scaling up or upgrading SSMFCs for enhanced and efficient performance is a highly crucial task. Therefore, in order to achieve this goal, an innovative physical technique of using interface layers with four different pore sizes embedded in the middle of SSMFCs was utilized in this study.Experimental results showed that the performance of SSMFCs employing an interface layer was improved regardless of the pore size of the interface material, compared to those without such layers. The use of an interface layer resulted in a positive and significant effect on the performance of SSMFCs because of the effective prevention of oxygen diffusion from the cathode to the anode. Nevertheless, when a smaller pore size interface was utilized, better power performance and COD degradation were observed. A maximum power density of 0.032 mW/m~2 and COD degradation of 47.3% were obtained in the case of an interface pore size of 0.28 μm. The findings in this study are of significance to promote the future practical application of SSMFCs in wastewater treatment plants.  相似文献   
875.
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   
876.
The impact of air masses motion on marine aerosol properties was investigated using an on-board single particle mass spectrometer(SPAMS) deployed for the determination of single particle size resolved chemical composition over Southeast China Sea. Two aerosol blooms(E1 and E2) were observed during the cruise. High average particle number count occurred in E1(7320), followed by E2(5850), which was more than 100–150 times of the average particle number count during normal periods. Particles were classified as four major sources, including continental source, shipping source, marine source, and transport source based on the mass spectral similarity. Transport source was identified as those particles with high particle number count occurred only during aerosol bloom period. Three sub-types of EC-Ca, OC-Ca, and Al-rich were classified as transport source.EC-Ca was the dominant particles of the transport source, accounting for more than 70%of the total particles in aerosol bloom events. A uni-modal size distribution in the size range of 0.1–2.0 μm was observed during normal period, while a bimodal distribution with a tiny mode(0.3 μm) and a coarse mode between 0.4 and 0.6 μm was present during aerosol bloom. The variation of aerosol source is consistent with air masses back trajectories, for the reason that most of the long-range air trajectories are from the ocean,while short air trajectories originate in the continental regions, which means that air masses have a significant impact on the aerosol physical–chemical properties along their tracks.  相似文献   
877.
目的研究冲击载荷下炸药内部损伤随时间变化特征对其冲击感度的影响规律。方法针对损伤状态随时间变化的两种典型情况,采用冲击波模拟加载的方式对炸药装药进行损伤实验。损伤的恢复时间很长时,在损伤后将试样放置7天后,再研究其损伤状态对其冲击起爆特性的影响;恢复时间很短时,通过控制冲击损伤实验和冲击感度实验之间的时间间隔模拟多层靶板撞击的实际情况。选择常用的两种奥克托金基炸药作为研究对象,通过冲击感度实验确定临界隔板厚度、设计损伤条件,然后进行两种不同损伤愈合时间后的冲击起爆特性实验,研究损伤状态对炸药装药冲击起爆特性的影响。结果在文中损伤条件下,放置7天后,炸药装药的冲击感度均显著下降,而类似于侵彻多层靶板条件的实验后,炸药装药的冲击感度显著增加。结论炸药装药损伤状态随时间的变化对炸药装药冲击起爆有完全不同的影响趋势,在相关的炸药装药安全性设计时,必须考虑与损伤时间状态相关的冲击起爆特性。  相似文献   
878.
碳源对O/A-F/F模式积累内源聚合物及反硝化的影响   总被引:1,自引:0,他引:1  
好氧/缺氧-盛宴/饥饿(O/A-F/F)选择模式能够在好氧段实现活性污泥积累内源聚合物的同时在缺氧段原位利用内源聚合物驱动反硝化.为了深入探究不同的碳源类型对O/A-F/F模式下内源聚合物积累和内源反硝化的影响,实验以乙酸和葡萄糖为主要碳源探究内源聚合物积累和内源反硝化特性以及富集的活性污泥菌群的结构和功能.结果表明,在O/A-F/F选择模式下,当进水化学需氧量(COD)为500 mg·L~(-1)左右时,以乙酸为主要碳源系统(Ac-SBR)和以葡萄糖为主要碳源的系统(Gc-SBR)均能实现40 mg·L~(-1)的硝酸盐氮的内源去除,且各系统均实现了部分短程反硝化.但Ac-SBR实现了更高的亚硝酸盐的积累.乙酸有利于内源聚羟基脂肪酸酯(PHA)积累并驱动内源反硝化过程,PHA产率为0.52,平均反硝化速率(DNR)为9.65 mg·(L·h)-1.Gc-SBR系统能够实现PHA和糖原(Gly)的同时积累,但Gly产率高于PHA产率,分别为0.36和0.17,DNR为4.35 mg·(L·h)-1.Gly是实现内源反硝化过程的主要驱动力,反硝化脱氮贡献率占总量的77%.16S rRNA高通量测序表明Proteobacteria门中的β-Proteobacteria在Ac-SBR中为优势菌纲,菌群丰度为40.56%,而在Gc-SBR中菌群丰度为18.05%.α-Proteobacteria可能在Gc-SBR中贡献了微生物的糖原积累.β-Proteobacteria、Unclassified Bacteroidetes和Lgnavibacteria在Ac-SBR中贡献了内源PHA积累.  相似文献   
879.
通过室内模拟实验,探究不同丰度的活、死水华束丝藻对Hg2+的吸附动力学特征和等温吸附模型以及解吸特征。结果表明,水华束丝藻对Hg2+有较好的吸附效果,能在短时间内吸附大量Hg2+,120 min左右达到吸附平衡,且活藻对Hg2+的吸附效果比死藻好;活藻和死藻吸附Hg2+的动力学过程符合准一级、准二级动力学模型,且准二级动力学模型拟合效果更好;活、死水华束丝藻对Hg2+的吸附分别符合Langmuir模型、D-R模型,最大吸附量分别为2.07×10-2 ng/(106 cells)、3.56×10-2 ng/(106 cells);水华束丝藻对Hg2+的单位吸附量随着藻丰度的增加而减少,吸附总量随着藻丰度的增加而增加。反应初期(0~5 min),活、死水华束丝藻对Hg2+进行生物吸附,吸附速度快且效率高;随后活藻依靠新陈代谢将Hg2+转移至细胞内进行生物富集,因而活藻的单位吸附量高于死藻。活藻和死藻对Hg2+的解吸量随藻丰度的增加而增加,且死藻变化更明显。  相似文献   
880.
本研究测定了青海省西宁市与海西蒙古族藏族自治州天峻县夏、冬两季大气颗粒物中有机氯农药(OCPs)和类二噁英多氯联苯(DL-PCBs)的浓度水平.结果表明,青海省大气颗粒物中OCPs主要为DDTs、HCHs.西宁市DDTs和HCHs的平均水平分别为:35 pg·m-3、5.9 pg·m-3(夏季)和93 pg·m-3、11 pg·m-3(冬季),天峻县DDTs和HCHs的平均水平分别为:83pg·m-3、6.4 pg·m-3(夏季)和28 pg·m-3、6.7 pg·m-3(冬季).与亚洲其它地区相比,青海省大气颗粒物中OCPs处于较低水平.西宁市大气颗粒物中DL-PCBs的平均水平分别为:0.52 pg·m-3(夏季),0.99 pg·m-3(冬季),天峻县为:0.58 pg·m-3(夏季)、0.52 pg·m-3(冬季).西宁市夏、冬两季OCPs的平均水平均大于天峻县,而两地DL-PCBs的平均水平相当.本研究中高原地区DL-PCBs的分布特点及变化规律与极地地区的研究相比存在一定的相似性,而DDTs和HCHs则存在差异性.  相似文献   
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