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11.
No-tillage (NT) is a method adopted to reduce erosion and particulate phosphorus (P) load from arable land to watercourses. However, it has been found to increase the loss of dissolved P with surface runoff, but the reasons for that have rarely been examined in detail. The objective of the present study was to determine the chemical factors explaining this response by investigating the impact of NT on the type and distribution of P reserves as well as on organic carbon (C) in the 0–35 cm topsoil layer of clay soil profiles (Vertic Cambisols). Soil samples were taken from two experimental fields (Jokioinen and Aurajoki) at 0–5, 5–20 and 20–35 cm depths in conventionally tilled (CT) and non-tilled (for 4–5 years) plots. The plots had been cultivated and fertilized according to the common field practices in Finland (15–18 kg P and 100–128 kg N ha−1 year−1).Inorganic and organic P reserves characterized by a modified Chang and Jackson fractionation procedure were not significantly affected by the cultivation methods. However, in the uppermost soil layer (0–5 cm) in NT of the Jokioinen field, the labile P determined by water extraction (Pw) increased significantly, whereas the increase in P extracted with acid ammonium acetate (PAAC) remained statistically insignificant. The increase in labile P coincided with a significant increase in organic carbon (C), which supports the theory that competition between organic anions and phosphate for the same sorption sites on oxide surfaces will enhance the lability of soil P. In the Aurajoki field with distinct soil cracking, Pw and PAAC were not affected by NT in the uppermost soil layer, but they increased in the deepest soil layer (20–35 cm) concomitantly with an increase in Al-bound P and organic C. However, the increases were not statistically significant. In both fields, soil acidification due to the repeated application of N fertilizers at a shallow soil depth as well as the accumulation of organic C lowered pH of the uppermost soil layer in NT compared to the deeper soil layers. The results indicated that even short-term NT can increase the labile P in clay soil. However, further studies are needed to assess the long-term changes in lability of surface soil P and, consequently, the possible need for readjustment of the fertilization level in NT.  相似文献   
12.
The purpose of the present work was to investigate the chemistry of rain in the Gulf of Iskenderun, North East Mediterranean, Turkey. The Gulf region has a large number of industries. Main industries existing in the region are iron and steel works, fertilizer plants, a cement plant, and several medium and mini size steel mills in addition to the international pipe line terminals. This study aims to apportion the local sources contributing to the overall pollution of the region. To this end a precipitation sampling program was started in January 2000, and over 48 precipitation samples were collected from each of 5 stations located at Iskenderun city center, Iskenderun industrial zone, Payas city center, the campus of Iskenderun Technical College and the campus of Mustafa Kemal University. Samples were analysed for pH, NO3 +, Cl-. Ca, Al, Ba, Na, Cd, Co, Cr, Cu, Pb, Li, Mg, Mn, Ni, Zn, Fe, K. Concentrations of metal ions were determined by ICP-AES. NO3 - ions and pH were determined by using NO3 - selective electrode and pH meter, respectively.pH values of the collected samples at the industrial zone and at Payas city center, ranged between 5.02 and 7.38, respectively. NO3 - and metal ions concentrations were highly variable. Concentrations of Ca and Fe ions were higher in the industrial zone and Payas city center. In the other three stations, concentrations of metal ions and NO3 - ion were lower than that of industrial zone and the values of pH ranged between 6 and 7.4. The average pH values at Iskenderun Gulf showed that the precipitation was not acidic, because of the high concentration of Ca. The highest concentrations of Na and Cl ions were recorded in the University campus because the campus is located by the Mediterranean Sea.  相似文献   
13.
为研究天津冬季重污染天气过程中颗粒物水溶性离子的粒径谱分布及二次离子生成机制,于2014年1月利用Anderson撞击式分级采样器在中国气象局天津大气边界层观测站内采集颗粒物样品,并使用离子色谱仪分析Na~+、NH_4~+、K~+、Mg~(2+)、Ca~(2+)、Cl~-、NO_3~-、SO_4~(2-)等8种水溶性无机离子(TWSII).结果表明,采样期间PM_(2.5)和PM_(10)质量浓度均值分别为(138±100)μg·m~(-3)和(227±142)μg·m~(-3),粗、细粒子中TWSII的平均浓度分别为(34.07±6.16)μg·m~(-3)和(104.16±51.76)μg·m~(-3).细粒子中SO_4~(2-)、NO_3~-和NH_4~+这3种离子的浓度远高于其他离子,且相关性较好,粗粒子中NO_3~-、SO_4~(2-)、Cl~-浓度较高.随着污染程度加剧,细粒子中TWSII浓度增加明显,粗粒子中则变化不大.水溶性离子的粒径谱分布显示,SO_4~(2-)以单模态分布,优良天峰值出现在0.43~0.65μm,NO_3~-在优良日呈现三模态分布,峰值分别出现在0.43~0.65、2.1~3.3和5.8~9.0μm,NH_4~+呈双模态分布,优良日峰值出现在0.43~0.65μm和4.7~5.8μm,污染日3种二次离子峰值均以0.65~1.1μm的单模态分布为主,与三者之间的热动力平衡过程有关.细粒子中NH_4~+除与SO_4~(2-)和NO_3~-结合外,还与部分Cl~-结合,粗粒子中NH_4~+全部与NO_3~-和SO_4~(2-)结合后,剩余的NO_3~-和SO_4~(2-)与其他阳离子结合.  相似文献   
14.
陈仕意  曾立民  董华斌  朱彤 《环境科学》2015,36(10):3554-3565
利用大气PM2.5水溶性组分及其气态前体物在线测量系统(GAC-IC)于2014年6月9日~7月11日对华北地区乡村站点曲周大气PM2.5中水溶性组分及其气态前体物进行了在线测量,分析了PM2.5中水溶性组分与气态前体物日变化规律及其相互作用,探讨了当地细颗粒物的气粒转化机制并分析了其来源.结果表明夏季曲周大气PM2.5中水溶性无机离子与相关气态前体物的浓度呈现明显的日变化规律.观测期间,PM2.5中SO2-4、NH+4和NO-3的平均浓度分别是26.28、18.08和16.36μg·m-3,是PM2.5中最主要的水溶性无机离子,约占PM2.5质量浓度的76.23%;气态前体物中,NH3浓度明显偏高、平均值为44.85μg·m-3,主要来源于当地的农业活动排放;硫氧化率(SOR)和氮氧化率(NOR)平均值分别是0.60和0.30,表现出明显的二次污染特征.经相关性分析发现:曲周大气PM2.5中NH+4与NO-3、SO2-4有良好的相关性,且表现为富氨状态,NH+4以(NH4)2SO4形式存在,NO-3的生成主要受HNO3的限制.对NH4NO3平衡进行研究发现:与夜间相反,白天曲周大气环境不利于NH4NO3生成和保持.结果也表明,二次转化是曲周夏季细颗粒物的主要来源,堆肥与农田释放的NH3是导致高浓度二次无机颗粒物(SNA)的重要因素.  相似文献   
15.
对2014年、2015年两年春节期间南京市空气质量监测数据进行分析,探讨禁止燃放烟花爆竹规定实施前后空气质量变化情况.结果表明:烟花爆竹燃放使得空气质量达重污染,且空气中的PM2.5质量浓度迅速上升,出现局地短时间峰值,同时会使PM2.5中的水溶性离子组分含量也急剧升高,其中与烟花爆竹主要成分基本一致的SO2-4、Cl-、K+和Mg2+攀升迅速;禁止燃放烟花爆竹对空气质量改善有显著作用,2015年春节禁燃后,南京市空气质量均达标率同比上升4成以上,春节期间PM2.5平均质量浓度,同比改善56%;PM2.5中的水溶性离子组分也基本处于正常监测范围,较少出现波动.  相似文献   
16.
岳晓英  李忠勤  张明军  周平  樊晋 《环境科学》2013,34(10):3764-3771
基于2007年4、8和10月这3个时段不同季节的野外考察取样和实验室分析测试,探讨了天山乌鲁木齐河源1号冰川区气溶胶样品中水溶性离子成分的浓度组成、变化特征及其可能来源.结果表明,气溶胶水溶性离子平均浓度为2.76μg·m-3,化学组成以Ca2+、NO-3和SO2-4为主.Ca2+、SO2-4、NH+4、Na+、Mg2+、Cl-在春、夏、秋这3个季节的变化趋势与总离子浓度的变化趋势一致,均为夏季最高、秋季次之、春季最低,而K+与NO-3却呈现出秋季最高、夏季和春季浓度次之的季节变化特征.分析认为,气溶胶中Ca2+、Na+、Mg2+、K+和Cl-主要可能来自陆源矿物;而NO-3和NH+4则很大程度上以人为源为主.并且发现,SO2-4可能同时受陆地源与人类活动来源的影响.  相似文献   
17.
春季黄渤海大气气溶胶的离子特征与来源分析   总被引:2,自引:0,他引:2  
薛磊  张洪海  杨桂朋 《环境科学学报》2011,31(11):2329-2335
于2010年春季在黄海、渤海海域采集大气气溶胶总悬浮颗粒物(TSP)样品,并运用离子色谱法对其中主要的水溶性阴离子(Cl-、NO3-、SO24-、CH3SO3-(MSA))和阳离子(Na+、K+、NH4+、Mg2+、Ca2+)浓度进行了测定.分析结果显示,黄海、渤海气溶胶样品中主要水溶性离子总浓度分别为10.2~47....  相似文献   
18.
以沉砂池出水为原水,在沉淀试验研究颗粒截留速度u0基础上,通过动态试验考察水力负荷对辐流式初沉池污染物去除效果的影响。研究结果表明无机悬浮固体(FSS)分离和总悬浮固体(TSS)高效去除的颗粒截留速度u0分别为0.025 m/min和0.05 m/min。由于泥层截留作用,水力负荷qA在46.3 m3/(m2.d)时,辐流式初沉池污染去除最高效,TSS、总氮(TN)和总磷(TP)去除率分别达到81%,23%,59%。  相似文献   
19.
In January 2013, a long-lasting severe haze episode occurred in Northern and Central China; at its maximum, it covered a land area of approximately 1.4 million km2. In Wuhan, the largest city in Central China, this event was the most severe haze episode in the 21st century. Aerosol samples of submicron particles (PM1.0) were collected during the long-lasting haze episode at an urban site and a suburban site in Wuhan to investigate the ion characteristics of PM1.0 in this area. The mass concentrations of PM1.0 and its water-soluble inorganic ions (WSIIs) were almost at the same levels at two sites, which indicates that PM1.0 pollution occurs on a regional scale in Wuhan. WSIIs (Na+, NH4+, K+, Mg2+, Ca2+, Cl-, NO3- and SO42-) were the dominant chemical species and constituted up to 48.4% and 47.4% of PM1.0 at WD and TH, respectively. The concentrations of PM1.0 and WSIIs on haze days were approximately two times higher than on normal days. The ion balance calculations indicate that the particles were more acidic on haze days than on normal days. The results of the back trajectory analysis imply that the high concentrations of PM1.0 and its water-soluble inorganic ions may be caused by stagnant weather conditions in Wuhan.  相似文献   
20.
以城市污水厂剩余污泥为原料,用氯化锌活化法研究一种柱状污泥基活性炭(CSAC)的制备方法及其工艺条件优化,并选择粉末污泥基活性炭(PSAC)和一种商品煤质碳(MAC)作为对照,考察了CSAC对重金属离子Cu(Ⅱ)和Pb(Ⅱ)及有机污染物硝基苯的吸附去除效能.结果表明,CSAC的比表面积及微孔容积分别是306.9 m2·g-1和0.109 cm3·g-1,仅为MAC的36.7%和23.6%,但其对Cu(Ⅱ)和Pb(Ⅱ)的平衡吸附量却远远高于MAC,说明CSAC表面存在的高含量酸性官能团在吸附去除重金属过程中起到了重要的作用.由于制备原料相同及制备工艺相似,CSAC与PSAC的理化性质基本相同,两种炭的表面酸性官能团含量较高,对Cu(Ⅱ)和Pb(Ⅱ)均具有较好的吸附去除效果,优于MAC,只是CSAC的比表面积和微孔容积略低于PSAC;在对硝基苯的吸附实验中,CSAC及PSAC的吸附效率均远远低于MAC,说明在对有机物硝基苯的吸附中,活性炭的比表面积等物理性质起到了较大的作用.同时,所制备的CSAC的稳定度大于95%,易于分离回收,不会造成二次污染,适合废水中重金属离子的吸附去除.  相似文献   
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