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31.
Christian Brandstätter David Laner Roman Prantl Johann Fellner 《Waste management (New York, N.Y.)》2014,34(12):2537-2547
Municipal solid waste landfills pose a threat on environment and human health, especially old landfills which lack facilities for collection and treatment of landfill gas and leachate. Consequently, missing information about emission flows prevent site-specific environmental risk assessments. To overcome this gap, the combination of waste sampling and analysis with statistical modeling is one option for estimating present and future emission potentials. Optimizing the tradeoff between investigation costs and reliable results requires knowledge about both: the number of samples to be taken and variables to be analyzed.This article aims to identify the optimized number of waste samples and variables in order to predict a larger set of variables. Therefore, we introduce a multivariate linear regression model and tested the applicability by usage of two case studies. Landfill A was used to set up and calibrate the model based on 50 waste samples and twelve variables. The calibrated model was applied to Landfill B including 36 waste samples and twelve variables with four predictor variables.The case study results are twofold: first, the reliable and accurate prediction of the twelve variables can be achieved with the knowledge of four predictor variables (Loi, EC, pH and Cl). For the second Landfill B, only ten full measurements would be needed for a reliable prediction of most response variables. The four predictor variables would exhibit comparably low analytical costs in comparison to the full set of measurements. This cost reduction could be used to increase the number of samples yielding an improved understanding of the spatial waste heterogeneity in landfills.Concluding, the future application of the developed model potentially improves the reliability of predicted emission potentials. The model could become a standard screening tool for old landfills if its applicability and reliability would be tested in additional case studies. 相似文献
32.
The blue mussel Mytilus edulis is one of the dominant fouling organisms in cooling water systems. In this work, how veliger larvae and different size groups of the mussels responded against chlorine dosage was examined. Veliger larvae mortality was studied at different residual chlorine concentrations (0.05–0.5 mg L?1), and it was found that a chlorine dose of 0.5 mg L?1 is 4 times as effective as 0.05 mg L?1 and twice as effective as 0.1 mg L?1. Mortality of 100% for three size groups (1.4, 14, and 25 mm) and relative physiological activities of two size groups (14 and 25 mm) were observed. The exposure duration for 100% mortality of mussels decreased with the increasing residual chlorine concentration (0.1–4.0 mg L?1). Mussel size was also found to be an important factor, considering that the continuation times for mussel mortality were 28 h for the 1.4 mm and 410 h for the 25 mm size groups. All size groups showed progressive reduction in physiological activities, such as oxygen consumption, foot activity, and byssus thread production with increasing chlorine dose (0.05–1.0 mg L?1); the two data-sets were strongly correlated with each other. The results of this study should be of significance for optimizing the chlorine content, and minimize the environmental threat to industries where mussels are the dominant fouling organisms. 相似文献
33.
Yanlai HAN Michael D. Y. YANG Weixian ZHANG Weile YAN 《Frontiers of Environmental Science & Engineering》2015,9(5):813
Nanoscale iron particles (nZVI) is one of the most important engineered nanomaterials applied to environmental pollution control and abatement. Although a multitude of synthesis approaches have been proposed, a facile method to screen the reactivity of candidate nZVI materials produced using different methods or under varying synthesis conditions has yet been established. In this study, four reaction parameters were adjusted in the preparation of borohydride-reduced nZVI. The reductive properties of the resultant nanoparticles were assayed independently using two model aqueous contaminants, Cu(II) and nitrate. The results confirm that the reductive reactivity of nZVI is most sensitive to the initial concentration of iron precursor, borohydride feed rate, and the loading ratio of borohydride to ferric ion during particle synthesis. Solution mixing speed, in contrast, carries a relative small weight on the reactivity of nZVI. The two probing reactions (i.e., Cu(II) and nitrate reduction) are able to generate consistent and quantitative inference about the mass-normalized surface activity of nZVI. However, the nitrate assay is valid in dilute aqueous solutions only (50 mg·L−1 or lower) due to accelerated deactivation of iron surface at elevated nitrate concentrations. Additional insights including the structural and chemical makeup of nZVI can be garnered from Cu(II) reduction assessments. The reactivity assays investigated in this study can facilitate screening of candidate materials or optimization of nZVI production parameters, which complement some of the more sophisticated but less chemically specific material characterization methods used in the nZVI research. 相似文献
34.
现实工况下挖掘机尾气排放特征分析 总被引:1,自引:3,他引:1
为量化挖掘机在实际施工作业中尾气排放特征,研究选取成都市不同建设工地在用的8台挖掘机,利用便携式尾气测量系统对其进行现实工况下的尾气排放测量,测试按挖掘机的不同作业特点分怠速、行走和作业进行.测量的尾气排放污染物包括CO、HC、NO和PM2.5.结果表明,挖掘机的尾气排放随工况的不同而不同,怠速时NO排放平稳,行走和作业时排放速率波动较大.满足不同尾气排放标准的挖掘机,其尾气排放也有所不同,例如,国Ⅱ阶段的挖掘机与国Ⅰ阶段的挖掘机相比,其在怠速、行走、作业工况下尾气排放的NO分别减小8%、35%和5%,PM2.5分别降低88%、87%和80%.另外,本研究中挖掘机尾气排放的实测结果与我国非道路机械尾气排放因子技术指南中推荐的用于排放清单估算的排放因子相比,也均有显著不同.这说明,开展非道路机械尾气排放现实工况下的测量,对于提高尾气排放清单精准度具有重要作用. 相似文献
35.
镉对花生苗期的毒害效应及其品种间差异 总被引:3,自引:0,他引:3
重金属在籽粒中的积累与植物对镉的生物学耐性和吸收特性有一定的内在联系。本研究通过比较不同花生(Arachis hypogaea L.)品种对镉胁迫的生物学耐性,旨在为进一步揭示花生籽粒镉积累的种内差异形成机制提供实验参数。在人工气候箱控制环境下的含镉的营养液砂培试验中,花生苗期对镉胁迫的反应具有显著的品种间遗传差异。基于植株生物量变化,可将花生的镉胁迫反应分为3种类型,即镉钝感型,品种有平度01、花育23和莱农13;敏感型,品种有中花4号、花育20、丰花3号、莱农29、豫花15和祁阳小籽;普通型,品种有湘农3010-w、湘农312、湘农55、丰花2号和湘农小果w2-7等。钝感型品种在5个加Cd水平下的茎叶干物量比对照平均降低22.8%,全株生物量平均降低11.7%;敏感型品种茎叶干物量平均降低38.0%,全株生物量降低29.2%;普通型品种茎叶干物量平均降低33.2%,全株生物量降低25.1%。随着Cd质量浓度提高和暴露时间延长,花生叶片的叶绿素质量分数显著降低,叶片和根系丙二醛质量分数及细胞膜透性显著提高,与钝感型品种相比,敏感型品种的上述生理指标变化速率较高,而且随着镉暴露时间延长,两者之间的差异性持续扩大。 相似文献
36.
以松前水稻(Oryza sativa cv.Matsumae)为试验材料,研究了5种质量分数菲污染土壤对松前水稻营养生长期生长和生理生化指标的影响。结果表明:(1)菲质量分数低于20 mg·kg-1时促进茎直径的生长,随菲质量分数的增大对水稻苗期生长有明显的抑制作用。低质量分数和高质量分数的菲污染土壤对茎高和株高均有明显抑制作用,而中等质量分数影响不明显。(2)随菲质量分数的增大脯氨酸含量逐渐增大,而蛋白质含量均有不同程度的下降,植物体内存在着脯氨酸积累和蛋白质减少的反馈控制系统。(3)菲胁迫引起水稻叶片膜脂过氧化,植物体累积过量的丙二醛,且SOD活性受到不同程度的影响。(4)菲胁迫下,水稻营养生长期叶片叶绿素含量和光合作用速率无明显正相关关系。 相似文献
37.
《环境化学》2012,31(7)
采用水培法研究了V(Ⅴ)、Cr(Ⅵ)单一及复合胁迫对小麦幼苗生长和生理特性的影响.结果表明,无论单一或复合胁迫,随着V、Cr浓度的增加,小麦幼苗鲜重、株高、叶绿素含量均呈先上升后下降的趋势.当V≤5 mg.L-1、Cr≤10 mg.L-1,小麦的鲜重、株高、叶绿素含量均高于对照,当V〉5 mg.L-1、Cr〉10 mg.L-1,则分别比对照降低0.2%—46.8%、0.8%—40.7%和2.5%—76.9%.丙二醛含量随着V、Cr胁迫浓度的增加而增大,与对照相比,含量增加了7.5%—251.6%.在V、Cr单一胁迫下,随着金属浓度增加细胞膜透性增大,比对照增加17.8%—59.8%,根系活力则下降8.1%—53.0%;复合胁迫时细胞膜透性先下降后上升,但始终高于对照,比对照增加了0.6%—126.2%;根系活力呈先升高后下降的趋势,降低6.1%—97.3%.研究表明在低浓度范围,复合胁迫在一定程度上可以缓解单一金属对小麦的毒害,对小麦幼苗生长具有拮抗作用;在高浓度范围两种金属复合胁迫对小麦幼苗的损伤和毒害作用比单一金属伤害更为严重,表现为协同作用.单一胁迫中Cr对小麦幼苗的毒性比V大. 相似文献
38.
1,2,4-三氯苯对铜钱草染毒的毒性响应及其机理 总被引:1,自引:0,他引:1
以水培铜钱草为材料,研究1,2,4-三氯苯(1,2,4-TCB)染毒引起植株叶绿素、类胡萝卜素和可溶性蛋白含量等生理指标的毒性响应,并从叶片丙二醛(MDA)含量及各种抗氧化酶(超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和过氧化物酶(POD))的改变探讨了1,2,4-TCB的毒性作用机理.结果表明,1,2,4-TCB(5、10 mg.L-1)处理后,铜钱草叶片各种生理代谢指标与1,2,4-TCB处理之间呈现一定浓度-效应和时间-效应关系,但与对照组间无显著的统计学差异.叶绿素含量、叶绿素a/b和可溶性蛋白均随着1,2,4-TCB处理时间延长先升高后降低;MDA含量随处理时间延长先升高后降低,随浓度增加而增加;SOD和POD活性随处理时间和浓度增加先升高后降低;CAT活性变化不明显.在10 mg.L-11,2,4-TCB处理4—6 d时,各种抗氧化酶活性均达到最大.高浓度1,2,4-TCB(15、20 mg.L-1)处理铜钱草的抗氧化酶活性与对照组相比,均显著降低,且各处理组间也呈现统计学差异. 相似文献
39.
自2008年5月至2009年8月(共480 d),对遭受2008年特大冰雪灾害的广东省北部天井山国家森林公园中受灾点(海拔700 m)和未受灾点(海拔550 m)的3种植物:樟树(Cinnamomum camphora)、荷木(Schima superba)和罗浮栲(CastanopsisFagaceae)进行对比实验。选择生理指标为:光系统II最大光化学量子效率(Fv/Fm)、比叶面积(SLA)、叶干物质重(LDMC)、单位叶面积氮含量(Na)、单位叶面积多酚含量(Phena)。研究结果显示:3受灾种Fv/Fm均无下降;受灾罗浮栲、荷木的其他各指标在300 d后已恢复至正常水平,而受灾樟树的各生理指标在300 d后仍显著低于正常(p〈0.1);受灾樟树的生长模式由快速生长型改变为积累营养型。研究表明:(1)雪灾损伤对光系统II没有累积效果;(2)雪灾造成的冠层改变对中下林层的营养物质分配有影响;(3)作为人工栽培种的樟树,较自然生长种需要更长的灾后恢复期。 相似文献
40.