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51.
根据1979年5月,8月,11月胶州湾水域调查资料,并且与近几十年来的调查资料进行对比分析,探讨和研究胶州湾重金属Hg的平面分布、垂直分布、季节分布以及发展趋势.结果表明:胶州湾东北部海域春季污染较为严重,西南部的污染程度相对较轻;春季和夏季的表层含量大于底层含量,秋季时底层含量高于表层含量;而且春季Hg污染较为严重,秋季水质状况最好.从历史资料来看,1979年到1982年,Hg污染在加剧;1982年到1997年,从污染严重到缓和,在1997年就达到了一类水质的要求;1997年到1999年,水质更加清洁.  相似文献   
52.
两种土壤增效剂对稻田氨挥发排放的影响   总被引:7,自引:4,他引:3  
硝化抑制剂和生物炭是农田土壤管理常用的土壤增效剂.其中,硝化抑制剂可以增加作物产量提高氮素利用率,而生物炭是生物质资源利用的一种新方式,且具有一定的吸附特性.以减少稻田氨挥发带来的氮素损失及环境污染问题为目的,在原状土柱模拟试验条件下,以单施化肥处理(CN)为对照,研究了生物炭(B)添加、硝化抑制剂(CP)添加及复合添加处理(BCP)对田面水p H、田面水铵态氮浓度、水稻产量及氨挥发损失的影响.结果表明,两种增效剂施用对水稻产量无显著影响,硝化抑制剂添加有增加水稻产量的趋势.两种土壤增效剂添加均显著增加了稻田氨挥发损失,损失量占施氮量的25%~35%.其中,肥期(施肥后7 d内)氨挥发损失占总损失的86%~91%,是氨挥发损失的主要时期.与CN处理相比,CP处理明显提高了田面水NH_4~+-N浓度和氨挥发损失,基肥期、穗肥期和非肥期增加效应明显,氨挥发增幅分别为138%、48%和78%,全生育期氨挥发总损失量增加59%.生物炭添加对稻田氨挥发损失也有明显的促进效应,且具有阶段性特征,前期(基肥期和蘖肥期)的增加效应高于后期(穗肥期和穗肥后),田面水NH_4~+-N浓度和p H也表现出相同的趋势.两者配施添加处理显现出了正交互作用,氨挥发损失量大于单施处理,与化肥处理差异显著.结果说明,生物炭添加不能解决硝化抑制剂添加引起的铵态氮浓度升高和氨挥发损失增加的问题,对于硝化抑制剂添加引起的氨挥发损失增加的问题需要继续研究.  相似文献   
53.
生物炭对盐碱土壤氨挥发的影响   总被引:5,自引:4,他引:1  
王一宇  王圣森  戴九兰 《环境科学》2019,40(8):3738-3745
为探明生物炭对黄河三角洲盐碱土壤氨(NH_3)挥发的影响,通过室内连续培养的方式,先测定改良的通气法对土壤NH_3挥发的回收率,再对比施加肥料颗粒与肥料水溶液对土壤NH_3挥发的影响,最后探究生物炭的种类、添加量及施肥种类对NH_3挥发速率和总量的影响.结果表明,以硫酸铵为氮源进行的NH_3挥发捕集实验,NH_3回收率平均值高达100. 30%.在相同施氮量下,施加尿素水溶液的处理比施加尿素颗粒的处理NH_3挥发减少了60. 29%,施加硫酸铵水溶液的处理比施加硫酸铵颗粒的处理NH_3挥发减少了61. 40%.相较于不添加生物炭只施用硫酸铵水溶液的空白处理,添加0. 5%生物炭且施加生物炭种类为水稻300℃(RB-300)、水稻600℃(RB-600)、棉花300℃(CB-300)和棉花600℃(CB-600)的处理,NH_3挥发总量分别减少了18. 68%、16. 16%、9. 35%和8. 26%,且施肥后2d内NH_3挥发速率最大,占总挥发量的53. 80%~64. 02%.添加生物炭后,NH_3挥发量随生物炭添加量的增加呈现出先降低后增加的趋势.因此,田间施肥前添加少量生物炭并结合水肥一体化管理技术,可以有效地减少NH_3挥发并提高氮肥利用率.  相似文献   
54.
Although it has long been recognized that significant amounts of nitrogen, typically in the form of ammonia (NH(3)) applied as fertilizer, are lost to the atmosphere, accurate estimates are lacking for many locations. In this study, a detailed, bottom-up method for estimating NH(3) emissions from synthetic fertilizers in China was used. The total amount emitted in 2005 in China was estimated to be 3.55 Tg NH(3)-N, with an uncertainty of ± 50%. This estimate was considerably lower than previously published values. Emissions from urea and ammonium bicarbonate accounted for 64.3% and 26.5%, respectively, of the 2005 total. The NH(3) emission inventory incorporated 2448 county-level data points, categorized on a monthly basis, and was developed with more accurate activity levels and emission factors than had been used in previous assessments. There was considerable variability in the emissions within a province. The NH(3) emissions generally peaked in the spring and summer, accounting for 30.1% and 48.8%, respectively, of total emissions in 2005. The peaks correlated with crop planting and fertilization schedules. The NH(3) regional distribution pattern showed strong correspondence with planting techniques and local arable land areas. The regions with the highest atmospheric losses are located in eastern China, especially the North China Plain and the Taihu region.  相似文献   
55.
烟气中所含的二氧化硫(SO2),氮氧化物(NOx),重金属汞(Hg)等污染物都能对人体健康及周围环境产生危害.本文综述了臭氧法应用于烟气净化的研究进展、工业应用及反应机理,探讨了臭氧同时脱硫脱硝脱汞的主要影响因素,介绍了臭氧发生技术的研究现状,并对臭氧应用于烟气净化进行了经济性分析,认为臭氧法脱除烟气中的多种污染物具有广泛的应用前景.  相似文献   
56.
• Hg bioaccumulation by phytoplankton varies among aquatic ecosystems. • Active Hg uptake may exist for the phytoplankton in aquatic ecosystems. • Impacts of nutrient imbalance on food chain Hg transfer should be addressed. The bioaccumulation of mercury (Hg) in aquatic ecosystem poses a potential health risk to human being and aquatic organism. Bioaccumulations by plankton represent a crucial process of Hg transfer from water to aquatic food chain. However, the current understanding of major factors affecting Hg accumulation by plankton is inadequate. In this study, a data set of 89 aquatic ecosystems worldwide, including inland water, nearshore water and open sea, was established. Key factors influencing plankton Hg bioaccumulation (i.e., plankton species, cell sizes and biomasses) were discussed. The results indicated that total Hg (THg) and methylmercury (MeHg) concentrations in plankton in inland waters were significantly higher than those in nearshore waters and open seas. Bioaccumulation factors for the logarithm of THg and MeHg of phytoplankton were 2.4–6.0 and 2.6–6.7 L/kg, respectively, in all aquatic ecosystems. They could be further biomagnified by a factor of 2.1–15.1 and 5.3–28.2 from phytoplankton to zooplankton. Higher MeHg concentrations were observed with the increases of cell size for both phyto- and zooplankton. A contrasting trend was observed between the plankton biomasses and BAFMeHg, with a positive relationship for zooplankton and a negative relationship for phytoplankton. Plankton physiologic traits impose constraints on the rates of nutrients and contaminants obtaining process from water. Nowadays, many aquatic ecosystems are facing rapid shifts in nutrient compositions. We suggested that these potential influences on the growth and composition of plankton should be incorporated in future aquatic Hg modeling and ecological risk assessments.  相似文献   
57.
腐殖酸对矿物结合汞植物活性的影响   总被引:8,自引:1,他引:7       下载免费PDF全文
以植物水培试验就腐殖酸(富里酸、棕色胡敏酸和灰色胡敏酸)对矿物结合汞(CaCO3-Hg,Fe2O3-Hg,MnO2-Hg,膨润土-Hg,高岭土-Hg)的植物活性的影响进行了探讨,并以土壤作印证试验.结果表明,溶解态无机汞是最有效的植物可吸收形态.腐殖酸对土壤、矿物结合汞的植物活性的影响,与其对矿物汞的络合溶解能力以及所形成的络合汞向无机汞转化的能力有关;矿物结合汞在不同环境条件下存在的稳定性及释放汞的潜力则是制约腐殖酸效应的内在因素.反应时间决定着二者作用进展的程度.  相似文献   
58.
Coconut (Cocos nucifera) husk, an agricultural waste, has been thoroughly investigated for the removal of toxic Cd(II), Cr(III) and Hg(II) ions from aqueous media. The parameters like nature and composition of electrolyte, concentration of toxic ions, dosage of coconut husk, and equilibration time between the two phases were optimized for their maximum accumulation onto the solid surface. The effect of common ions on the uptake of metal ions has been monitored under optimal conditions. The variation of retention of each metal ion with temperature was used to compute the thermodynamic quantities DeltaH, DeltaS and DeltaG. The values 18.1+/-0.6 kJmol(-1), 74+/-2 Jmol(-1)K(-1), and -3.8+/-0.04 kJmol(-1) at 298 K; 10.8+/-0.8 kJmol(-1), 48.8+/-2.7 Jmol(-1)K(-1), and -4.6+/-0.3 kJmol(-1) at 298 K; and -37.4+/-2k Jmol(-1), 105+/-7 Jmol(-1)K(-1) and -2.58+/-0.5 kJmol(-1) at 298 K were obtained for Cd(II), Cr(III) and Hg(II) ions, respectively. The sorption data were analysed by applying different sorption isotherms. The sorption capacity and energy were evaluated for each metal ion. The values of the Freundlich constants 1/n and C(m) were 0.92+/-0.04 and 52.6+/-22.2 mmolg(-1); 0.85+/-0.05 and 56.0+/-0.03 mmolg(-1); and 0.88+/-0.03 and 6.84+/-0.45 mmolg(-1) for Cd(II) Cr(III) and Hg(II) ions, respectively. Similarly, the Dubinin-Radushkevich (D-R) constants beta, X(m,) and E were evaluated for the three metal ions. To check the selectivity of the sorbent, sorption of a number of elements was measured under similar conditions. Separation of Zn(II) from Cd(II); Cr(III) from I(I), Zr(IV), Se(IV), and Hg(II) from Se(IV) and Zn(II) can be achieved using this sorbent. This cheap material has potential applications in analytical chemistry, water decontamination, industrial effluent treatment and in pollution abatement.  相似文献   
59.
仪征市荧光灯厂周围环境中汞污染调查   总被引:3,自引:0,他引:3  
仪征市荧光灯厂排出的汞,对周围环境中的土壤、植物产生了明显污染,尤以土壤耕作层、植物叶片污染最明显。  相似文献   
60.
MOBILE汽车源排放因子计算模式研究   总被引:31,自引:0,他引:31  
在盆栽条件下,研究了土壤中Pb、Hg及其相互作用对烟草叶片活性氧代谢的影响.实验结果表明:随着Pb、Cd处理浓度的增加,POD活性逐渐增加,SOD开始上升后转而下降,CAT活性逐渐下降.它既诱导了活性氧的生成,又影响活性氧清除系统对活性氧的清除能力,结果造成活性氧的产生和清除之间的不平衡,致使相关的生理生化过程紊乱,加速了叶片衰老的进程.Pb、Hg对烟草叶片抗氧化酶代谢的影响,两者之间存在着一定的协合作用.  相似文献   
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