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991.
全球化与粮食安全新格局   总被引:2,自引:0,他引:2  
当今世界正面临“百年未有之大变局”,中国与全球的粮食安全面临重大挑战。为了系统认知全球化与粮食安全的新格局、新问题和新路径,邀请了十位来自不同专业领域的知名专家,就耕地增产潜力、农业水土资源与粮食生产、食物浪费、国际农产品贸易、重点农产品保供稳供、全球农业食物系统、双循环与企业行动、全球粮食生产与消费、国际粮安治理、粮食安全研究前沿等领域进行了一对一的交流访谈。访谈结果表明:全球农业食物系统进入复合型高风险时代,国际粮安治理面临资源、约束力、行动力等方面的挑战,凸显国家粮食安全尤其是进口依赖型农产品的保供稳供压力,需要加强国内农业供给侧改革与需求侧管理。全球化发生新变化,考验中国深化农业对外开放、参与全球粮安治理、实现国家粮食安全的能力水平。面对复杂的国际国内形势,国家粮食安全治理需要坚持系统思维、统筹国内国际、瞄准全产业链、强调风险管控、处理好政府与市场关系,进一步深入研究食物系统和粮食安全、生态系统和粮食安全、高质量发展与粮食安全、农业对外开放与粮食安全、双循环新格局与粮食安全等方面的具体方式路径,为新时期建立健全“以我为主、立足国内、确保产能、适度进口、科技支撑”的国家粮食安全战略提供科学参考。  相似文献   
992.
为探究中国在东南亚地区的海外耕地投资活动规律,利用文献资料法、空间分析法和灰色关联分析法,从空间分布和影响因素两方面进行分析。结果表明:(1)中国海外耕地投资项目多位于中南半岛,且有沿边分布特点;(2)中国在东南亚海外耕地投资意向项目、合同项目的空间分布相似性较高,而生产项目与前两者存在差异;(3)中国海外耕地投资受地缘经济、地缘文化、资源基础和地缘政治的影响且受影响程度依次减弱,其中年均进出口总值、年均中国对外直接投资存量等指标对中国企业的投资选择具有显著影响。东南亚地区作为当前中国海外耕地投资的重要区域,强化同东南亚国家间的经济、文化交流,对中国企业顺利开展海外耕地投资活动具有重要促进作用。  相似文献   
993.
国外大尺度生态廊道保护进展与秦岭国家公园建设   总被引:1,自引:0,他引:1  
大型山脉在其走向上往往是生物扩散和分布的天然廊道。然而,由于人类干扰引起的生境碎片化,山地廊道的连通性已大为降低。20世纪以来,人们普遍意识到当前或过去的自然保护措施往往规模太小,无法维持许多物种的长期生存及其所依赖的生态过程。因而,山地廊道的连通性保护日益受到关注,大尺度生态廊道被认为是长远意义上保护气候变化下生物多样性的最优策略。综述连通性保护和生态廊道的概念、发展历程及国外大尺度生态廊道建设实践的经验,并从连通性保护的角度对秦岭国家公园建设提出一些建议,强调大尺度的连通性保护和生态廊道建设对于国家公园自然生态系统的长远保护具有重要意义。  相似文献   
994.
采用SBR同步脱氮除硫反应器,设置了化学对照组(灭菌,不添加污泥)和生物试验组(添加污泥),以期研究亚硝酸盐型同步脱氮除硫工艺中S0的产率以及特性.发现化学对照组中NO2--N和S2--S的去除率最高可分别达到25.07%和62.26%,其主要产物为NH4+-N和S2SO32--S,并无S0生成.而在生物试验组中,NO2--N和S2--S的去除率可分别高达100%和99.94%,在适宜浓度范围内(60~180mg/L),出水主要产物为S0-S和N2.当进水S2--S为180mg/L时,S0-S产率可高达79.58%.所产生的S0以斜方硫(S8)形式存在,表面带负电荷,粒径呈正态分布.  相似文献   
995.
使用热扩散管与长飞行时间气溶胶质谱联用系统对2020年深圳市秋季亚微米级气溶胶进行在线测量,获取和分析了气溶胶的化学组成及挥发性特征,并利用正矩阵因子分析法(PMF)对有机气溶胶进行了来源解析.结果显示:观测期间,气溶胶平均质量浓度为(28.3±11.1)μg/m3(9.5~76.8μg/m3),其中,有机物占比最高,为57.9%,其次为硫酸盐(24.7%).PMF对有机气溶胶解析结果得到四类源,分别为烃类有机气溶胶(HOA)、餐饮源有关的有机气溶胶(COA)、低氧化性的氧化有机气溶胶(LO-OOA)和高氧化性的氧化有机气溶胶(MO-OOA).HOA、COA、LO-OOA和MO-OOA平均分别占到总有机物的9.1%、27.2%、31.8%和31.9%.进一步采用NO+/NO2+比值法和PMF方法估算有机硝酸酯(ON)浓度,两种方法估算结果相关性良好,ON的平均浓度为0.17~0.25μg/m3,占总有机气溶胶质量的1.5%~9.7%,说明其对深圳大气气溶胶贡献显著.ON与各有机气溶胶因子的相关性比对发现,其与LO-OOA相关性最高(R=0.80),说明其可能来源于新鲜的二次生成反应.挥发性研究结果得出,深圳市气溶胶主要化学组分挥发性顺序为氯盐≈无机硝酸盐 > 铵盐 > 有机物 > 有机硝酸酯 > 硫酸盐,对于有机气溶胶因子,其挥发性排序为LO-OOA > HOA > COA > MO-OOA,除了LO-OOA,其余因子挥发性与其氧化态排序一致,而LO-OOA从50~70℃组分下降最多,说明其所含组分挥发性差异最为明显.  相似文献   
996.
为研究城市污水管网多点汇流条件下污染物的迁变规律及其对微生物繁衍的影响机制,建立一套多汇流点位的污水管道中试系统,探究污水输送过程中碳,氮,硫3类主要污染物质的迁移转化特性.结果表明,汇流点前溶解态化学需氧量(SCOD)和硫酸盐(SO42-)浓度下降,氨氮(NH4+-N)浓度上升,支管汇流使得汇流点3类污染物浓度显著增加.后期水质达到稳定,在保证支管污水的汇入导致各类污染物增加量基本不变的情况下,SCOD浓度由进口的320mg/L左右下降至出口的280mg/L左右,在氨化作用下导致的NH4+-N总增加量在15mg/L左右,高于因汇流产生的增加总量12.5mg/L左右,结果表明汇流管网系统中微生物的消耗代谢作用是碳氮类污染物变化的主导因素,而SO42-后期进出口浓度均在20mg/L左右,说明支管汇流和生化代谢使SO42-的含量维持在动态平衡的状态.此外,对管网中试系统生物相中微生物繁衍过程进行分析可知,发酵菌(FB),产氢产乙酸菌(HPA),硫酸盐还原菌(SRB)的含量随繁衍时间显著增加,并在沿程的不同汇流点处出现丰度升高现象.综上所述,在多点汇流导致污水水质波动的作用下,促进了管网生物相中微生物的繁衍增殖,并增强了其代谢作用在污水管网污染物转化的主导地位,使得污染物在管网输送过程中呈现更为显著的转化现象.  相似文献   
997.
Using a bottom-up estimation method, a comprehensive, high-resolution emission inventory of gaseous and particulate atmospheric pollutants for multiple anthropogenic sectors with typical local sources has been developed for the Harbin-Changchun city agglomeration (HCA). The annual emissions for CO, NOx, SO2, NH3, VOCS, PM2.5, PM10, BC and OC during 2017 in the HCA were estimated to be 5.82 Tg, 0.70 Tg, 0.34 Tg, 0.75 Tg, 0.81Tg, 0.67 Tg, 1.59 Tg, 0.12 Tg and 0.26 Tg, respectively. For PM10 and SO2, the emissions from industry processes were the dominant contributors representing 54.7% and 49.5%, respectively, of the total emissions, while 95.3% and 44.5% of the total NH3 and NOx emissions, respectively, were from or associated with agricultural activities and transportation. Spatiotemporal distributions showed that most emissions (except NH3) occurred in November to March and were concentrated in the central cities of Changchun and Harbin and the surrounding cities. Open burning of straw made an important contribution to PM2.5 in the central regions of the northeastern plain during autumn and spring, while domestic coal combustion for heating purposes was significant with respect to SO2 and PM2.5 emissions during autumn and winter. Furthermore, based on Principal Component Analysis and Multivariable Linear Regression model, air temperature, relative humidity, electricity and energy consumption, and the urban and rural population were optimized to be representative indicators for rapidly assessing the magnitude of regional atmospheric pollutants in the HCA. Such indicators and equations were demonstrated to be useful for local atmospheric environment management.  相似文献   
998.
Stringent quarantine measures during the Coronavirus Disease 2019 (COVID-19) lockdown period (January 23, 2020 to March 15, 2020) have resulted in a distinct decrease in anthropogenic source emissions in North China Plain compared to the paralleled period of 2019. Particularly, 22.7% decrease in NO2 and 3.0% increase of O3 was observed in Tianjin, nonlinear relationship between O3 generation and NO2 implied that synergetic control of NOx and VOCs is needed. Deteriorating meteorological condition during the COVID-19 lockdown obscured the actual PM2.5 reduction. Fireworks transport in 2020 Spring Festival (SF) triggered regional haze pollution. PM2.5 during the COVID-19 lockdown only reduced by 5.6% in Tianjin. Here we used the dispersion coefficient to normalize the measured PM2.5 (DN-PM2.5), aiming to eliminate the adverse meteorological impact and roughly estimate the actual PM2.5 reduction, which reduced by 17.7% during the COVID-19 lockdown. In terms of PM2.5 chemical composition, significant NO3? increase was observed during the COVID-19 lockdown. However, as a tracer of atmospheric oxidation capacity, odd oxygen (Ox = NO2 + O3) was observed to reduce during the COVID-19 lockdown, whereas relative humidity (RH), specific humidity and aerosol liquid water content (ALWC) were observed with noticeable enhancement. Nitrogen oxidation rate (NOR) was observed to increase at higher specific humidity and ALWC, especially in the haze episode occurred during 2020SF, high air humidity and obvious nitrate generation was observed. Anomalously enhanced air humidity may response for the nitrate increase during the COVID-19 lockdown period.  相似文献   
999.
Understanding the formation mechanisms of secondary air pollution is very important for the formulation of air pollution control countermeasures in China. Thus, a large-scale outdoor atmospheric simulation smog chamber was constructed at Chinese Research Academy of Environmental Sciences (the CRAES Chamber), which was designed for simulating the atmospheric photochemical processes under the conditions close to the real atmospheric environment. The chamber consisted of a 56-m3 fluorinated ethylene propylene (FEP) Teflon film reactor, an electrically-driven stainless steel alloy shield, an auxiliary system, and multiple detection instrumentations. By performing a series of characterization experiments, we obtained basic parameters of the CRAES chamber, such as the mixing ability, the background reactivity, and the wall loss rates of gaseous compounds (propene, NO, NO2, ozone) and aerosols (ammonium sulfate). Oxidation experiments were also performed to study the formation of ozone and secondary organic aerosol (SOA), including α-pinene ozonolysis, propene and 1,3,5-trimethylbenzene photooxidation. Temperature and seed effects on the vapor wall loss and SOA yields were obtained in this work: higher temperature and the presence of seed could reduce the vapor wall loss; SOA yield was found to depend inversely on temperature, and the presence of seed could increase SOA yield. The seed was suggested to be used in the chamber to reduce the interaction between the gas phase and chamber walls. The results above showed that the CRAES chamber was reliable and could meet the demands for investigating tropospheric chemistry.  相似文献   
1000.
The chemical characteristics, oxidative potential, and sources of PM2.5 were analyzed at the urban sites of Lahore and Peshawar, Pakistan in February 2019. Carbonaceous species, water soluble ions, and metal elements were measured to investigate the chemical composition and sources of PM2.5. The dithiothreitol (DTT) consumption rate was measured to evaluate the oxidative potential of PM2.5. Both cities showed a high exposure risk of PM2.5 regarding its oxidative potential (DTTv). Carbonaceous and some of the elemental species of PM2.5 correlated well with DTTv in both Lahore and Peshawar. Besides, the DTTv of PM2.5 in Lahore showed significant positive correlation with most of the measured water soluble ions, however, ions were DTT-inactive in Peshawar. Due to the higher proportions of carbonaceous species and metal elements, Peshawar showed higher mass-normalized DTT activity of PM2.5 compared to Lahore although the average PM2.5 concentration in Peshawar was lower. The high concentrations of toxic metals also posed serious non-carcinogenic and carcinogenic risks to the residents of both cities. Principle component analysis coupled with multiple linear regression was applied to investigate different source contributions to PM2.5 and its oxidative potential. Mixed sources of traffic and road dust resuspension and coal combustion, direct vehicle emission, and biomass burning and formation of secondary aerosol were identified as the major sources of PM2.5 in both cities. The findings of this study provide important data for evaluation of the potential health risks of PM2.5 and for formulation of efficient control strategies in major cities of Pakistan.  相似文献   
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