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271.
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
272.
Lilai Xu Tao Lin Ying Xu Lishan Xiao Zhilong Ye Shenghui Cui 《Journal of Material Cycles and Waste Management》2016,18(2):377-384
Comprehensive study of the factors influencing household solid waste (HSW) generation is crucial and fundamental for exploring the generation mechanism and forecasting future dynamics of HSW. A case study of Xiamen Island, China was employed to reveal the direct and indirect effects of demographic/socioeconomic factors on solid waste generation at the urban household scale. Based on a face-to-face questionnaire and two-stage survey of solid waste generation, a path analysis model was built. Results showed that the proposed path model exhibited good fit indices. Family size and dinning-at-home rate (DR), whose coefficients were ?0.40 and 0.43, respectively, were the two major factors influencing HSW directly. Moreover, family size, education level, employment rate and age structure played different degrees of indirect effects on HSW generation through respective paths, which should not be ignored. In terms of total effects, coefficients of family size, DR and employment rate were ?0.46, 0.43 and ?0.37, respectively, which were three most dominant factors influencing HSW generation. As for waste composition, organic waste was the most representative of HSW dynamics, and was the most sensitive to impact by the factors studied. Quantitative results of this study have important policy implications for sustainable municipal solid waste management. 相似文献
273.
Ye Sun Yuan Meng Xiaoyan Guo Tianle Zhu Hongju Liu Wenpei Li 《Journal of Material Cycles and Waste Management》2016,18(4):618-624
Experiments were conducted using a bubbling reactor to investigate nitrogen oxide absorption in the calcium sulfite slurry. The effects of CaSO3 concentration, NO2/NO mole ratio and O2 concentrations on NO2 and SO2 absorption efficiencies were investigated. Five types of additives, including MgSO4, Na2SO4, FeSO4, MgSO4/Na2SO4 and FeSO4/Na2SO4, had been evaluated for enhancing NO2 absorption in CaSO3 slurry. Results showed that CaSO3 concentration had significant impact on NO2 and SO2 absorption efficiencies, and the highest absorption efficiencies of SO2 and NO2 could reach about 99.5 and 75.0 %, respectively. Furthermore, the NO2 absorption was closely related to the NO2/NO mole ratio, and the existence of NO2 in flue gas may promote NO absorption. The presence of O2 in simulated flue gas was disadvantage for NO x removal because it can oxidize sulfite to sulfate. It was worth pointing out that FeSO4/Na2SO4 was the best additive among those investigated additives, as the NO2 removal efficiency was significantly increased from 74.8 to 95.0 %. IC and in situ FTIR results suggest that the main products were NO3 ? and NO2 ? in liquid phase and N2O, N2O5 and HNO3 in gas phase during the CaSO3 absorption process. 相似文献
274.
275.
粉煤灰-铝土矿改性制备铝铁复合混凝剂的除磷性能及混凝机理研究 总被引:4,自引:1,他引:3
化学混凝法是城市污水处理深度除磷的有效方法,目前常用混凝剂主要存在成本高、除磷效率低且用量大等缺点.本研究采用常压酸浸法,以低成本的铝土矿和粉煤灰为主要原料制备无机复合混凝剂,并对其进行除磷应用及机理研究,结果表明:1自制混凝剂对生活污水中TP去除率达99.58%,出水TP含量为0.012 mg·L-1,优于GB18918—2002一级A标准.2 X-射线衍射和红外光谱结果显示,混凝剂中的Fe—OH、Al—OH、H—OH等基团能与水中的磷酸根作用生成沉淀达到除磷目的,该沉淀在沉降过程中还能吸附不易沉淀的含磷悬浮物,发挥网捕卷扫作用.3采用Ferron逐时络合比色法分析铝铁形态结果显示,混凝剂含有64.14%低聚态铝铁,能中和水中胶体的表面电荷致使胶体脱稳;11.27%中聚态铝铁可吸附在胶体表面,降低其表面电荷,同时以较高的分子量发挥吸附架桥作用;24.59%高聚态铝铁在沉淀过程中可包夹部分胶体粒子,以较大表面积发挥卷扫作用.4分形维数研究结果显示,絮体分形维数在1.2~2.8之间,分形特征较好,能有效发挥絮体的吸附架桥作用.5 Zeta电位分析结果显示,混凝剂本身带正电荷,能与水中带负电荷的胶体物质发生中和,从而压缩双电子层,使胶体粒子脱稳而从水中去除.混凝剂除磷过程是压缩双电层、电中和、吸附架桥和网捕卷扫多种机制共同作用的动态变化过程. 相似文献
276.
岩溶地下河反硝化作用的有限性——一个碳酸盐岩管道的实验研究 总被引:4,自引:0,他引:4
反硝化作用是公认的去除水体中硝酸盐的路径,但相比于多孔介质,岩溶地下河中反硝化效果具有不确定性.为更好地认识岩溶地下河中反硝化效果,本研究利用天然碳酸盐岩管道几何模型,以乙醇为可利用电子供体(碳源),示踪了控制流速条件下管道流中反硝化作用,并辅以多孔介质流实验进行对比.反应示踪、地球化学印迹和微生物检测结果表明:当碳源缺乏时,反硝化作用没有明显启动的迹象;一旦补充了碳源,溶解氧、硝酸盐浓度和质量都出现了明显衰减,并且有中间产物亚硝酸盐产生,水体碱度增加.然而,即使在碳源充足情况下,管道流中反硝化强度却明显比多孔介质流中强度低,两者硝酸盐生物去除率分别为39.4%和大于99%,生物降解速率分别为0.113和10.8 mg·L~(-1)·h~(-1).推测其原因,一是碳酸盐岩管道内固体表面积与水体积比值低,固体吸着条件不利于微生物生长与发育,降低了硝酸盐去除率;二是管道富含的溶解氧可能延迟了反硝化作用启动,溶解氧降至3.0 mg·L~(-1)左右时硝酸盐浓度才有明显衰减.相比之下,其它环境因素如p H值和温度没有出现明显变化.该研究意义在于:岩溶管道流反硝化去除硝酸盐的潜能是存在的,但即使可利用碳源充足仍具有明显的局限性,这可能意味着岩溶地下河一旦遭受硝酸盐污染,其作为饮用水源的安全风险更大. 相似文献
277.
针对当前农用地估价工作中存在的重社会经济价值评价,轻生态价值评价,长期缺乏农用地价值的完整认识,直接导致农用地被低价转为建设用地的问题,本研究将采用农用地生态价值估价新方法——吸碳制氧法来测算玉山县农用地生态价值,并与玉山县各乡镇农用地经济价值比较分析,以说明农用地生态价值评估在农用地估价工作中的重要性.研究结果表明,农用地生态价值的评估可以用于指导农用地外部合理流转,有利于农用地的保护,同时,对退耕还林、退田还湖也具有一定的指导意义,因此农用地生态价值评估是非常必要的. 相似文献
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280.
公众参与制度在环境影响评价中起着重要作用,环境影响评价制度中公众参与制度的产生和发展可以总结为三个阶段.通过环境信息公开、扩大参与范围、加强监督管理、细化程序、提高环境意识等方面提出完善环境影响评价中的公众参与制度的一些建议. 相似文献