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151.
Heavy metal (Pb,Zn) uptake and chemical changes in rhizosphere soils of four wetland plants with different radial oxygen loss 总被引:4,自引:0,他引:4
Lead and Zn uptake and chemical changes in rhizosphere soils of four emergent-rooted wetland plants; Aneilema bracteatum,
Cyperus alternifolius, Ludwigia hyssopifolia and Veronica serpyllifolia were investigated by two experiments: (1) rhizobag filled with
“clean” or metal-contaminated soil for analysis of Pb and Zn in plants and rhizosphere soils; and (2) applied deoxygenated solution for
analyzing their rates of radial oxygen loss (ROL). The results showed that the wetland plants with di erent ROL rates had significant
e ects on the mobility and chemical forms of Pb and Zn in rhizosphere under flooded conditions. These e ects were varied with
di erent metal elements and metal concentrations in the soils. Lead mobility in rhizosphere of the four plants both in the “clean”
and contaminated soils was decreased, while Zn mobility was increased in the rhizosphere of the “clean” soil, but decreased in the
contaminated soil. Among the four plants, V. serpyllifolia, with the highest ROL, formed the highest degree of Fe plaque on the root
surface, immobilized more Zn in Fe plaque, and has the highest e ects on the changes of Zn form (EXC-Zn) in rhizosphere under both
“clean” and contaminated soil conditions. These results suggested that ROL of wetland plants could play an important role in Fe plaque
formation and mobility and chemical changes of metals in rhizosphere soil under flood conditions. 相似文献
152.
分析了盘锦市湿地由于不合理的开发利用,导致生态功能受损状况;为防止湿地资源的过度开发,保护湿地生态系统的结构、物种、功能效应,使湿地资源永续利用,提出了具有可操作性的恢复措施。 相似文献
153.
分析了造成油库油品蒸发损耗的原因及危害,并针对油罐的自然通风、“小呼吸”、“大呼吸”所造成的油品损耗,提出了降低油品蒸发损耗的措施。 相似文献
154.
通过在我国江津典型工业污染大气环境进行大气暴晒实验,测定了1060纯铝、2A12铝合金和7A04铝合金在该地区的腐蚀速率,利用扫描电子显微镜(SEM)、能量色散X射线谱(EDX)、红外光谱(FT—IR)和X射线衍射仪(XRD)观察分析3种铝合金腐蚀表面形貌、元素分布和腐蚀产物结构。结果表明:随腐蚀时间的延长,铝及其合金腐蚀产物不断增多,失重数值增加,腐蚀失重与时间的关系呈幂函数规律(C—A t^n);腐蚀产物形貌呈块状或粒状,呈现不均匀的凹凸形貌;腐蚀产物主要为Al(OH)3和Al2(SO4)3·14H2O;耐蚀性能由强至弱依次为1060〉2A12〉7A04。 相似文献
155.
Khatab Abdalla Matthew Dickey Trevor Hill Bruce Scott‐Shaw 《Natural resources forum》2019,43(4):241-252
Soil erosion from agricultural land use runoff is a major threat to the sustainability of soil composition and water resource integrity. Sugarcane is an important cash and food security crop in South Africa, subjected to an intensive soil erosion, and consequently, severe land degradation. This study aimed to investigate soil erosion and associated soil and cover factors under rainfed sugarcane, in a small catchment, KwaZulu‐Natal, South Africa. Three replicated runoff plots were installed at different slope positions (down, mid and upslope) within cultivated sugarcane fields to monitor soil erosion during the 2016–2017 rainy season. On average, annual runoff (RF) was significantly greater from 10 m2 plots with 1163.77 ± 2.63 l/m/year compared to 1 m2 plots. However, sediment concentration (SC) was significantly lower in 10 m2 (0.34 ± 0.04 g/l) compared to 1 m2 (6.94 ± 0.24 g/l) plots. The annual soil losses (SL) calculated from 12 rainfall events was 58.36 ± 0.77 and 8.84 ± 0.20 t/ha from 1 m2 and 10 m2 plots, respectively. The 1 m2 plot, SL (2.4 ± 1.41 ton/ha/year) in the upslope experienced 33% more loss than the midslope and 50% more loss than the downslope position. SL was relatively lower from the 10 m2 plots than the 1 m2 plots, which is explained by high sediment deposition at the greater plot scale. SL was negatively correlated with the soil organic carbon stocks (r = ?0.82) and soil surface cover (r = ?0.55). RF decreased with the increase of slope gradient (r = ?0.88) and soil infiltration rate (r = ?0.87). There were considerable soil losses from cultivated sugarcane fields with low organic matter. These findings suggest that to mitigate soil erosion, soil organic carbon stocks and vegetation cover needs to be increased through appropriate land management practices, particularly in cultivated areas with steep gradients. 相似文献
156.
Zhiyong Li 《International Journal of Green Energy》2019,16(8):583-589
Hydrogen fuel cell vehicles pose hazards different from conventional vehicles. This paper performs a risk assessment on road collision vehicle fires with hydrogen-fueled tank of 70 MPa. The high voltage battery fire caused by road collision can lead to onboard hydrogen release or explosion. Events progressions are analyzed and typical hydrogen consequences are evaluated quantitatively, including hydrogen jet fires and tank catastrophic rupture. Perimeters around the accident scene are proposed for the safety of general public and first responders, respectively. Risks of fatalities, injuries, and damages are all quantified in financial terms to make it possible to combine and compare. 相似文献
157.
土壤碳淋溶流失研究进展 总被引:3,自引:0,他引:3
土壤碳的淋溶流失是指在水的作用下土壤中的碳沿着水文路径转移到水环境的过程。尽管这些流失量有限,却对陆地碳平衡核算具有重要影响。本文在总结了土壤碳淋溶流失研究的重要性、近年来相关领域取得的进展的基础上,指出已有研究的不足有:对土壤无机碳(SIC)的淋溶流失研究薄弱、缺乏野外实地观测、对土地利用变化影响土壤碳淋溶流失的过程与机制认识不足等。今后除了加强以上几个方面的研究外,还要综合利用同位素示踪和在线仪器观测等各种手段,开展"陆地-水生系统连续体"内多界面碳交换的综合研究。 相似文献
158.
为考察净化铁锰氨生物滤池内NH4+-N的转化途径,利用氮素计量关系和沿程试验研究了净化铁锰氨生物滤池内产生TNloss(氮损失)的原因和NH4+-N转化途径. 结果表明,净化铁锰氨生物滤池内DO消耗异常,TNloss不守恒,当进水ρ(NH4+-N)平均值分别为1.262、2.296、3.111 mg/L时,NLR(氮损失率)分别能达到7.89%、12.91%、17.73%. 利用硝化反应和CANON(全程自养脱氮)方程式计算得出理论TNloss和TDOC(理论耗氧量),与实际TNloss和ADOC(实际耗氧量)的差值分别小于±0.030、±0.10 mg/L,各阶段NH4+-N 通过CANON途径转化的比例分别为48.58%、60.77%、68.10%,硝化反应和CANON途径共同参与了NH4+-N转化. 沿程试验结果表明,整个试验阶段,NO2--N在滤层中均有积累,并在滤层厚度为10~18 cm内出现NO2--N和NH4+-N共存的现象,进一步证明CANON途径是净化铁锰氨生物滤池内产生TNloss的原因. 相似文献
159.
某氮肥企业通过开展清洁生产审核,确定以节水、减少废水及水污染物排放量为目标,将企业供排水系统作为本轮清洁生产审核的重点,针对审核重点制定了定量的清洁生产审核目标,通过清洁生产方案的实施实现了环境效益、社会效益与经济效益的统一,为氮肥企业实施清洁生产提供了良好的借鉴。 相似文献
160.
根据成都市江安河武侯区段2010年11月-2011年3月的水质监测数据,结合中国地表水环境质量标准(GB3838-2002)和四川省实际确定水体中各污染物因子的本底浓度对该区段污水处理环境效益进行了分析。首先通过污染经济损失模型计算COD、BOD5、NH3-N、TP、SS和硫化物对水经济价值的损失率,然后在讨论COD、NH3-N、TP和硫化物减排情况的基础上计算了各种污染指标减排至达标后所产生的环境经济效益。研究结果表明,江安河武侯区段水体污染的综合污染损失率高达99.99%,如果各种污染物减排达标至IV类标准产生的环境经济效益14 912万元人民币/a,而减排达标至III类标准产生的环境经济效益更是高达15 786万元人民币/a。 相似文献