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1.
苏锡常是我国经济飞速发展地区之一,也是重要的粮食生产基地.在快速城镇化背景下,该地区生态环境受到人类活动的强烈冲击,国土空间配置亟待优化.本研究基于多源数据,对苏锡常地区2000~2018年碳储存、食物供给、维持生物多样性3种生态系统服务的时空格局及演变特征进行刻画,并运用双变量空间自相关方法识别了生态系统服务之间的相互关系.结果 表明:(1)整体来看,2000~2018年,苏锡常地区的碳储存服务略有上升,食物供给服务和维持生物多样性服务波动下降;(2)苏锡常地区生态系统服务空间分布严重失衡,表现为中部建成区低,四周自然用地高的分布特点,城镇扩张区各类型生态系统服务退化较为严重;(3)在权衡与协同分析中,碳储存-食物供给服务、碳储存-维持生物多样性服务呈现协同关系,食物供给-维持生物多样性服务呈现权衡关系;(4)各项生态系统服务的权衡与协同关系存在空间差异,低值协同区集中分布在城市中心,高值协同区主要分布在西侧与南侧林地范围,低-高值与高-低值权衡区在空间上呈环绕相间分布.苏锡常地区在未来的发展中需要注意低值协同区和权衡区,有针对性地制定生态保护修复措施,合理调控社会经济发展,实现生态系统服务的协同增效.  相似文献   
2.
Zhu  Rong  Wang  Shixin  Srinivasakannan  C.  Li  Shiwei  Yin  Shaohua  Zhang  Libo  Jiang  Xiaobin  Zhou  Guoli  Zhang  Ning 《Environmental Chemistry Letters》2023,21(3):1611-1626
Environmental Chemistry Letters - The demand for lithium is growing rapidly with the increase in electric vehicles, batteries and electronic equipments. Lithium can be extracted from brines, yet...  相似文献   
3.
Environment, Development and Sustainability - Due to rapid socioeconomic development, seeking the coordination of resources exploitation and the ecological environment has become an objective...  相似文献   
4.
Chen  Hongqiang  Lin  Lijin  Liao  Ming’an  Wang  Jin  Tang  Yi  Sun  Guochao  Liang  Dong  Xia  Hui  Deng  Qunxian  Wang  Xun  Lv  Xiulan  Ren  Wei 《Environmental science and pollution research international》2019,26(24):24474-24481
Environmental Science and Pollution Research - Grapevine (Vitis vinifera L.) intercropping with floricultural cadmium (Cd) accumulator plants (Helianthus annuus L., Cosmos sulphureus Cav., Cosmos...  相似文献   
5.
水雾除尘效率来源于尘、雾颗粒之间的固-液动态相互作用,从细观角度出发,系统研究水雾液滴与尘堆表面之间的接触、碰撞行为规律.采用高速摄像、图像分析处理技术,从液滴行为、液滴接触角动态变化2个方面研究了液滴在尘堆表面的动态接触行为规律,并对比分析了液滴表面张力、黏度及尘堆粒径对动态接触行为影响的差异.结果表明,液滴在尘堆表面的动态接触行为分为碎裂直接铺展、回缩和回缩反弹3种模式,其接触模式主要取决于粉尘粒径、液滴黏度.在粒径不断减小的尘堆表面,相同理化性质的液滴的行为模式依次为碎裂直接铺展、回缩、回缩反弹.在保证液滴其他性质相同的条件下,增大液滴黏度会导致液滴回缩及回缩反弹行为模式在粉尘粒径较大的尘堆表面提前发生.伴随着液滴黏度增加或尘堆粒径减小,液滴在尘堆表面的接触角会发生动态波动,出现一定数量的波峰和波谷.  相似文献   
6.
Environmental Science and Pollution Research - The photochemical degradation of norfloxacin (NOR) and oxytetracycline (OTC) was investigated under ultraviolet (UV) irradiation. The results...  相似文献   
7.
Sb release characteristics of blast furnace slag, mining waste rock and tailing sand were investigated in static immersion and dynamic leaching test. These three kinds of waste samples were collected from the antimony mine in Lengshuijiang, China, produced in mining smelting process. Effects of solid/liquid ratio, sample size and pH of leaching solution on Sb release characteristics were inspected based on the analysis of scanning electron microscope, pH and EC of leachate. The optimal parameters for Sb leaching of each sample were analyzed. For blast furnace slag and mining waste rock, Sb release contents increased along with the decline of solid/liquid ratio. The maximum accumulative release contents were 42.13, 34.26 mg/kg at the solid/liquid ratio of 1:20. While Sb release content for tailing sand decreased first and then increased with the reduction of solid/liquid ratio. When the solid/liquid ratio was 1:5, the accumulative Sb release content reached the most (24.30 mg/kg). Sb release content of mining waste rock increased with the drop of leaching solution pH, with the highest accumulative release content of 26.01 mg/kg at pH 2.0. Sb release contents of blast furnace slag and tailing sand showed positive correlation with the variation of leaching solution pH. The maximum accumulative release contents of these two samples were 215.91 and 147.83 mg/kg, respectively, when leaching solution pH was 7.0. In summary, Sb release capacity of the three samples in descending order was tailing sand, blast furnace slag and mining waste rock. pH and EC of the leachate in dynamic test varied independently with the initial pH of leaching solution while showing close relationship with mineral hydrolysis in the waste.  相似文献   
8.
采用臭氧氧化—湿式钙法吸收工艺对模拟烟气进行同时脱硫脱硝处理。O3于150 ℃下具有较高的热稳定性,可将NO氧化为高价态氮氧化物,且NO氧化率随n(O3)∶n(NO)的增大而逐渐提高。烟气中SO2和H2O的存在对NO氧化率的影响不大。O3对SO2的氧化率较低,约为5%。3%(w)石灰石浆液对SO2的吸收率接近100%,NOx吸收率随n(O3)∶n(NO)的增大而逐渐提高,当n(O3)∶n(NO)为1.6时NOx吸收率可达约65%。SO2能促进吸收液对NOx的脱除。石灰石浆液中加入0.2%(w)的(NH42SO3或Na2SO3后NOx吸收率可达约85%或82%,且吸收率随添加剂加入量的增加而提高,添加(NH42SO3的NOx吸收率略高于添加Na2SO3。  相似文献   
9.
Objective: Electric bike/moped-related road traffic injuries have become a burgeoning public health problem in China. The objective of this study was to identify the prevalence and potential risk factors of electric bike/moped-related road traffic injuries among electric bike/moped riders in southern China.

Methods: A cross-sectional study was used to interview 3,151 electric bike/moped riders in southern China. Electric bike/moped-related road traffic injuries that occurred from July 2014 to June 2015 were investigated. Data were collected by face-to-face interviews and analyzed between July 2015 and June 2017.

Results: The prevalence of electric bike/moped-related road traffic injuries among the investigated riders was 15.99%. Electric bike/moped-related road traffic injuries were significantly associated with category of electric bike (adjusted odds ratio [AOR] = 1.36, 95% confidence interval [CI], 1.01–1.82), self-reported confusion (AOR = 1.77, 95% CI, 1.13–2.78), history of crashes (AOR = 6.14, 95% CI, 4.68–8.07), running red lights (AOR = 3.57, 95% CI, 2.42–5.25), carrying children while riding (AOR = 1.96, 95% CI, 1.37–2.85), carrying adults while riding (AOR = 1.68, 95% CI, 1.23–2.28), riding in the motor lane (AOR = 2.42, 95% CI, 1.05–3.93), and riding in the wrong traffic direction (AOR = 1.63, 95% CI, 1.13–2.35). In over 77.58% of electric bike/moped-related road traffic crashes, riders were determined by the police to be responsible for the crash. Major crash-causing factors included violating traffic signals or signs, careless riding, speeding, and riding in the wrong lane.

Conclusion: Traffic safety related to electric bikes/moped is becoming more problematic with growing popularity compared with other 2-wheeled vehicles. Programs need to be developed to prevent electric bike/moped-related road traffic injuries in this emerging country.  相似文献   

10.
Environmental Science and Pollution Research - Plant leaves play a key role in the accumulation of PAHs, as they are able to capture PAHs from the air. In this paper, the mechanism, including...  相似文献   
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