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151.
根据1957—2012年全国608个气象站的逐日气象资料,利用Penman-Monteith公式计算作物潜在蒸散量,对全国及水资源一级分区潜在蒸散量时空分布特征、变化趋势进行分析;基于Arc GIS及SPSS软件,采用主成分分析方法,对潜在作物蒸散量的影响因子及其分布特征进行探讨。结果表明:近56 a来,全国年潜在蒸散量在616~2 128 mm之间,河西走廊、南部岭南地区、海南岛以及华南沿海作物潜在蒸散量较大,而在黑龙江一带、四川盆地及西南地区东部,潜在蒸发量较小。各分区年均潜在蒸发量均呈现减少趋势,西北诸河区倾向率最大,为-12.22 mm/10 a;影响潜在蒸散量的因子中,第1主成分为热力学因子,第2主成分为水分因子和辐射因子,第3主成分为地理因子和空气动力学因子,第4主成分为高程因子。  相似文献   
152.
Ozone (O3) is an important atmospheric oxidant. Black carbon (BC) particles released into the atmosphere undergo an aging process via O3 oxidation. O3-aged BC particles may change their uptake ability toward trace reducing gases such as SO2 in the atmosphere, leading to different environmental and health effects. In this paper, the heterogeneous reaction process between O3-aged BC and SO2 was explored via in-situ diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS). Combined with ion chromatography (IC), DRIFTS was used to qualitatively and quantitatively analyze the sulfate product. The results showed that O3-aged BC had stronger SO2 oxidation ability than fresh BC, and the reactive species/sites generated on the surface had an important role in the oxidation of SO2. Relative humidity or 254 nm UV (ultraviolet) light illumination enhanced the oxidation uptake of SO2 on O3-aged BC. The oxidation potentials of the BC particles were detected via dithiothreitol (DTT) assay. The DTT activity over BC was decreased in the process of SO2 reduction, with the consumption of oxidative active sites.  相似文献   
153.
利用2018年3月—2021年2月环境和气象数据对皖南地区铜陵市大气颗粒物的污染特征和潜在贡献源进行了系统性研究.铜陵市大气颗粒物污染具有明显的季节变化特征,冬季污染物浓度最高,PM2.5和PM10平均为(60.3±31.0)μg·m-3和(89.2±42.2)μg·m-3.计算发现PM2.5/PM10超过0.5,铜陵市的大气颗粒物污染问题与细颗粒物关系密切.后向轨迹聚类分析表明铜陵市大气颗粒物的输送路径具有季节性差异.春季以西北、东北和西南方向气流为主,占比83.73%;夏季以东南和南部方向气流为主,占比82.90%;秋季以东北气流为主,占比51.00%;冬季则是以北方和西北气流为主,占比69.81%.其中,冬季气流轨迹所对应的PM2.5和PM10的浓度最高,平均为59.7和92.0μg·m-3;夏季最低,平均为23.8和43.8μg·m-3.潜在源贡献因子(WPSC...  相似文献   
154.
于2020年9~10月在深圳北部典型工业区开展在线观测以分析该地VOCs污染状况,并使用基于观测的模型(OBM)研究臭氧生成敏感性.观测期间VOCs的总浓度为48.5×10-9,浓度水平上烷烃>含氧有机物(OVOCs)>卤代烃>芳香烃>烯烃>乙炔>乙腈.臭氧生成潜势(OFP)为320μg/m3,其中芳香烃、OVOCs以及烷烃贡献最大,这3类物种OFP贡献总和超过90%.乙烯与苯呈现“两峰一谷”的日变化特征,主要受到机动车排放的贡献.相对增量反应性(RIR)分析表明,削减人为源VOCs对控制当地臭氧生成最为有效,当中又应优先控制芳香烃;经典动力学曲线(EKMA)分析表明该片区臭氧生成处于过渡区,在开展VOCs区域联防联控的同时,需要在当地进行有力的NOx控制以强化该地区臭氧污染长期管控.  相似文献   
155.
Biofilm-producing bacteria can decrease Cd uptake in vegetables, but mechanisms underlying this effect are poorly characterized. In this study, two mutant strains B12ΔYwcc and B12ΔSlrR were constructed from a biofilm-producing Bacillus subtilis strain B12. Then, the impacts of strain B12 and its high biofilm-producing mutant strain B12ΔYwcc and low biofilm-producing mutant strain B12ΔSlrR on Cd availability and uptake in Chinese cabbage and the related mechanisms were investigated in the Cd-polluted soil. Strain B12 and its mutants B12ΔYwcc and B12ΔSlrR increased the dry biomasses of edible tissues by 54%–130% compared with the controls. Strain B12 and its mutant B12ΔYwcc reduced the soil available Cd content by 36%–50% and root and edible tissue Cd contents by 23%–50% compared with the controls. Furthermore, the mutant strain B12ΔYwcc reduced the edible tissue Cd content by 40% and increased the polysaccharide content by 23%, invertase activity by 139%, and gene copies of the cumA by 4.5-fold, epsA by 7.1-fold, and cadA by 4.3-fold, which were involved in Cd adsorption in the rhizosphere soils, respectively, compared with strain B12. The polysaccharide content and cumA, epsA, and cadA gene copy numbers showed significantly reverse correlations with the available Cd content. Notably, the mutant strain B12ΔYwcc showed better ability to colonize the vegetable root surface than strain B12. These findings demonstrated that the biofilm-overproducing mutant strain B12ΔYwcc increased the polysaccharide production and Cd-immobilizing related cumA, epsA, and cadA gene copies, resulting in lower Cd availability and accumulation in Chinese cabbage in the Cd-polluted soil.  相似文献   
156.
To investigate particle characteristics and find an effective measure to control severe particle pollution, year-round observation of size-segregated inorganic aerosols was conducted in Beijing from January to December, 2016. The sampled atmospheric particles all presented bimodal size distribution at four pollution levels (clear, slight pollution, moderate pollution and severe pollution), and peak values appeared at the size range of 0.7-2.1 μm and >9.0 μm, respectively. As dominant particle compositions, NO3, SO42−, and NH4+ in four pollution levels all showed significant peaks in fine mode, especially at the size range of 1.1-2.1 μm. Secondary inorganic aerosols accounted for about 67.6% (36.3% (secondary sulfates) + 31.3% (secondary nitrates)) of the total sources of fine particles in urban Beijing. Severe pollution of fine particles was mainly caused by the air masses transported from nearby western and southern areas, which are industrial and densely populated region, respectively. Sensitivity tests further revealed that the control measures focusing on ammonium emission reduction was the most effective for particle pollution mitigation, and fine particles all showed nonlinear responses after reducing ammonium, nitrate, and sulfate concentrations, with the fitting curves of y = -120.8x - 306.1x2 + 290.2x3, y = -43.5x - 67.8x2, and y = -25.8x - 110.4x2 + 7.6x3, respectively (y and x present fine particle mass variation (μg/m3) and concentration reduction ratio (CRR)/100 (dimensionless)). Overall, our study presents useful information for understanding the characteristics of atmospheric inorganic aerosols in urban Beijing, as well as offers policy makers with effective measure for mitigating particle pollution.  相似文献   
157.
In the race to deliver clean water to communities through potable water reuse, disinfection and water quality assessment are and will continue to be fundamental factors. There are over 700 disinfection byproducts (DBPs) in water; evaluating each compound is practically impossible and very time consuming. A bioanalytical approach could be an answer to this challenge. In this work, the response of four major classes of DBPs toward mitochondrial membrane potential (ΔΨm) and cytoplasmic adenosine triphosphate (C-ATP) was investigated with human carcinoma (HepG2) cells. Within 90 min of cell exposure, only the haloacetic acid (HAA) mixture caused a cytotoxic response as measured by C-ATP. All four groups (haloacetonitriles (HANs), trihalomethanes (THMs), nitrosamines (NOAs), and HAAs) responded well to ΔΨm, R2 > 0.70. Based on the half-maximum concentration that evoked a 50% response in ΔΨm, the response gradient was HANs >> HAAs ∼ THM > NOAs. The inhibition of the ΔΨm by HANs is driven by dibromoacetonitrile (DBAN), while dichloroacetonitrile (DCAN) did not cause a significant change in the ΔΨm at less than 2000 µM. A mixture of HANs exhibited an antagonistic behavior on the ΔΨm compared to individual compounds. If water samples are concentrated to increase HAN concentrations, especially DBAN, then ΔΨm could be used as a biomonitoring tool for DBP toxicity.  相似文献   
158.
The soils formed on fortifications around the sites of ancient settlements 1500 and 2700 years old were studied in the Endyr archaeological landmarks (West Siberia, central taiga). It was shown that podzolic soils with morphological characteristics identical to those of the background soils were formed during these time periods. An attempt was made to estimate the characteristic times for some chemical characters. The greatest values of this parameter were about 8000 years.  相似文献   
159.
研究稻菜轮作模式下土壤甲烷(CH4)和氧化亚氮(N2 O)排放对不同施肥措施的响应,对补充我国热带地区CH4和N2 O排放研究的不足具有重要的指导意义.在辣椒季设置4种施肥处理:磷钾肥(PK)、氮磷钾肥(NPK)、等氮条件下50%有机肥替代化肥(NPK+M)和100%有机肥替代(M),水稻种植季未设置施肥处理,研究辣椒季不同施肥条件下CH4和N2 O的排放规律以及对早稻生长季水稻产量、CH4和N2 O排放的后续影响.采用密闭静态箱-气相色谱法测定稻菜轮作土壤CH4和N2 O,同时测定作物产量,并估算全球增温潜势(GWP)和温室气体排放强度(GHGI).结果表明:①辣椒季和早稻季4种施肥处理下土壤CH4的累积排放量分别为0.9~2.7 kg ·hm-2和5.5~8.4 kg ·hm-2,与NPK处理相比,辣椒季NPK+M和M处理CH4累积排放量分别减少35.3%和7.6%;而早稻季NPK+M和M处理CH4累积排放量均增加37.5%和55.1%,其中早稻季M处理达到显著水平.②辣椒季和早稻季4种施肥处理下N2 O的累积排放量分别为0.5~3.0 kg ·hm-2和0.3~0.5 kg ·hm-2,相对NPK处理,辣椒季NPK+M和M处理降低33.7%和16.0%的N2 O累积排放量,其中NPK+M处理达到显著差异,早稻季NPK+M处理N2 O累积排放量降低23.5%,M处理却增加9.1%,但均未达到显著水平.③ 4种施肥处理下辣椒和早稻的产量分别为3055.6~37722.5 kg ·hm-2和5850.9~6994.4 kg ·hm-2,与NPK处理相比,NPK+M和M处理显著增加辣椒产量.各施肥处理GWP为508.0~1864.4 kg ·hm-2,NPK+M和M处理相对NPK处理分别下降25.7%和5.7%,其中NPK+M处理达到显著差异.辣椒季各处理的GWP对总GWP的贡献率为69.2%~78.1%,N2 O对总GWP的贡献率为77.3%~85.3%.辣椒季和早稻季GHGI分别为0.03~0.09 kg ·kg-1和0.04~0.24 kg ·kg-1,与NPK处理相比,辣椒季M和NPK+M处理使GHGI显著下降71.5%和54.7%,早稻季NPK+M和M处理GHGI值分别下降44.0%和20.8%,其中NPK+M处理达到显著差异.综合作物产量及温室气体减排效果考虑,化肥和有机肥配施(NPK+M)可推荐为海南稻菜轮作模式下一种最优的减排稳产的施肥措施.  相似文献   
160.
江苏省开发区土地集约利用潜力研究   总被引:7,自引:0,他引:7  
开发区是土地利用的重要方式,特别是在促进土地集约利用方面起到了良好的示范和辐射作用。本文基于江苏省开发区典型调查的基础上,分析和测算了全省开发区土地集约利用的理论潜力,并结合江苏省资源禀赋特点和经济发展的制约因素剖析了理论潜力实现的可能性及途径。结果表明,江苏省开发区2010年和2020年的土地集约利用理论潜力分别为261km^2和1069km^2;若能在劳动生产率和工业用地容积率等方面有所作为的话,江苏省开发区2010年和2020年的土地集约利用现实潜力将分别达210km^2和869km^2。这主要通过注重开发区投资主体的多元化、软硬件环境的不断完善和提高开发区的用地门槛来实现。  相似文献   
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