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11.
12.
Günter Gunkel Florian Selge Jonas Keitel Debora Lima Silvana Calado Maria Sobral Maricela Rodriguez Elena Matta Reinhard Hinkelmann Peter Casper Michael Hupfer 《Regional Environmental Change》2018,18(7):1913-1925
Reservoirs have a wide variety of uses that have led to frequent conflicts over ecological conservation and contamination, especially as land management has intensified. Oligotrophication must be implemented in numerous tropical reservoirs that experience advanced eutrophication to maintain aquatic ecosystem functions. To quantify impacts on ecosystem functions and to develop an adaptive management policy, multiple studies have been conducted on the Itaparica Reservoir, São Francisco River, in the semi-arid north-eastern region of Brazil. Here, we add to that existing body of knowledge through investigating how nutrient accumulation is affected by water exchange between the main river flow and Icó-Mandantes Bay. Operational water-level fluctuations in the reservoir create large desiccated littoral areas that release high amounts of nutrients when they are rewetted. In particular, water-level variation promotes proliferation of Egeria densa, a noxious weed, thus elevating trophic levels of the Itaparica Reservoir and Icó-Mandantes Bay. Analysis with a P efficiency model determined 25 μg P L?1 to be the critical concentration and further indicated that the critical load in both bodies of water have been exceeded. Moreover, intensive fish aquaculture using net cages has led to further overtaxing of the reservoir. We conclude that an effective ecological reservoir management policy must involve oligotrophication, harvesting of noxious water weeds for use as soil amendment in agriculture or biogas production, “blue” aquaculture, and limiting hydroelectric power production based on current water availability. 相似文献
13.
Chin-San Wu 《Journal of Polymers and the Environment》2018,26(7):2676-2685
The structural, thermal, mechanical, and biodegradable properties of composite materials made from polylactide (PLA) and agricultural residues (arrowroot (Maranta arundinacea) fibre, AF) were evaluated. Melt blended glycidyl methacrylate-grafted polylactide (PLA-g-GMA) and coupling agent-treated arrowroot fibre (TAF) formed the PLA-g-GMA/TAF composite, which had better properties than the PLA/AF composite. The water resistance of the PLA-g-GMA/TAF composite was greater than that of the PLA/AF composite; the release of PLA in water from the PLA/AF and PLA-g-GMA/TAF composites indicated good biological activity. The PLA-g-GMA/TAF material had better mechanical properties than PLA/AF. This behaviour was attributed to better compatibility between the grafted polymer and TAF. The results indicated that the Tg of PLA was increased by the addition of fibre, which may have improved the heat resistance of PLA. Furthermore, the mass losses following burial in soil compost indicated that both materials were biodegradable, especially at high levels of AF or TAF substitution. 相似文献
14.
Markus Schwaninger 《Sustainability Science》2018,13(5):1225-1234
How can we restore the ecological balance of our planet? The present article is aimed at contributing a structural framework for such a restoration. In the quest for ecological recovery, cybernetic–systemic approaches are in demand. They specialize in coping with complexity and offer new, transdisciplinary and non-reductionist ways of system design for renewing sustainability. This contribution uses a proven model from organizational cybernetics—the viable system model—as a frame for sustainable development. The model specifies how the viability of any human or social system can be achieved by means of clearly defined organizational structures. In accord with the logic of recursive organization inherent in the model, a proposal for a structural design aimed at enabling ecological recovery is formulated. That design includes all organizational levels of recursion, from individual to world. The implications of such a novel approach are far-reaching, and the impact powerful. 相似文献
15.
农药的生物积累直接影响其毒性,但是手性农药在生物体内的选择性积累过程仍不明确.本文在恒定环境水浓度的条件下,开展手性农药氟虫腈的外消旋体及其对映体在底栖无脊椎动物夹杂带丝蚓体内的生物积累实验.在96 h和72 h的吸收和消除实验过程中,测定生物体内的氟虫腈的外消旋体和对映体浓度随时间的变化情况,构建毒代动力学模型,获取吸收和消除速率常数.结果表明夹杂带丝蚓对R-氟虫腈的生物浓缩因子(1981 L·kg~(-1)脂肪)比对S-氟虫腈(1748 L·kg~(-1)脂肪)更大.R-氟虫腈和S-氟虫腈的吸收速率常数相当,分别为311±11 L·kg~(-1)脂肪·h~(-1)和313±13 L·kg~(-1)脂肪·h~(-1),而R-氟虫腈的消除速率常数小于S-氟虫腈,分别为0.157±0.006 h~(-1)和0.179±0.008 h~(-1),因此相对较慢的消除是导致R-氟虫腈在夹杂带丝蚓体内更高生物积累的主要原因.研究说明毒代动力学参数可有效阐释手性外源物质在生物体内选择性积累的差异. 相似文献
16.
表面活性剂增强修复技术(SER)是目前行之有效的有机污染土壤修复技术,但SER技术存在表面活性剂与污染物分离困难、易导致二次污染、成本高等问题.基于此,提出采用具有电化学开关特性的表面活性剂(N,N-二甲基二茂铁甲基十二烷基溴化铵,Fc12)代替SER技术中的常规表面活性剂,发展基于开关表面活性剂的可逆增强修复技术(RSER).选取芘作为目标物,研究了Fc12在氧化和还原态对芘的增溶作用以及常见环境因素,如pH和温度对Fc12可逆增溶的影响.结果表明,相对于氧化态Fc12,还原态Fc12在其临界胶束浓度(CMC)以上时对芘表现出显著的增溶作用,且增溶能力随表面活性剂浓度增大而增强.温度对Fc12的增溶作用影响显著,例如,还原态Fc12在浓度为3 mmol·L~(-1)、25℃条件下时,芘的表观溶解度为0.779 mg·L~(-1),当温度增加到40℃时,芘的表观溶解度为0.971 mg·L~(-1),其表观溶解度增加了24.6%;但氧化态条件下,芘的表观溶解度仅增加了6.5%;芘的解吸率(芘在还原和氧化态Fc12的表观溶解度差值与还原态Fc12增溶芘的比值)由63.67%增加到71.27%.pH也显著影响Fc12的增溶,当pH值在6—10范围变化时,还原态Fc12的增溶作用呈现先增加后减小的趋势,且在pH 9附近增溶能力最强,而pH 8时芘的解吸果最好. 相似文献
17.
Ray Maher Melanie Maher Clive A. McAlpine Samuel Mann Leonie Seabrook 《Sustainability Science》2018,13(5):1357-1373
Sustainability challenges rarely align with the conventional boundaries of our disciplines, institutions and means of communication. To address these challenges amid real-world complexity, we need to think holistically and collaborate across disciplines. In this paper, we synthesise three themes: (1) more integrated conceptual frameworks; (2) digital visual communication which provides fluid expression of complex ideas and perceptions; and (3) online networks which can empower sustainability initiatives and communicate them across social and institutional barriers at a global scale. Each of these tools can help to overcome persistent barriers to sustainability. When used together, they provide a strategic basis for the design of digital collaboration platforms for addressing sustainability challenges. Using design thinking, we developed a Synergy Map which identifies relationships among a number of barriers to sustainability and conceptual and digital tools which help to address them. The Map identifies the potential for synthesising these tools into effective digital artefacts. We provide several examples and identify characteristics of particular value for overcoming barriers to sustainability. Combining new theoretical developments in sustainability sciences with recent advances in communication and networking technologies offers substantial potential for advancing sustainability on multiple fronts. 相似文献
18.
本方法针对土壤中挥发性芳香烃顶空前处理条件进行了研究,优化了顶空密封垫的选择、顶空平衡温度、加热平衡时间、进样时间和顶空瓶压力等顶空前处理条件,测定条件科学、准确,完全能够满足土壤中挥发性芳香烃监测分析的灵敏度和准确度相关的技术要求。该方法精密度为1.7%~9.8%,准确度为34.3%~83.7%,检出限为2.0~4.2μg/kg。为制订土壤中挥发性芳香烃监测分析方法提供了技术支持。 相似文献
19.
Roland Weber Christine Herold Henner Hollert Josef Kamphues Linda Ungemach Markus Blepp Karlheinz Ballschmiter 《Environmental science and pollution research international》2018,25(17):16325-16343
This report gives a summary of the historic use, former management and current release of polychlorinated biphenyls (PCBs) in Germany and assesses the impact of the life cycle of PCBs on the contamination of the environment and of food products of animal origin. In Germany 60,000 t of PCBs were used in transformers, capacitors or as hydraulic oils. The use of PCB oils in these “closed applications”, has been banned in Germany in 2000. Thirty to 50% of these PCBs were not appropriately managed. In West Germany, 24,000 t of PCBs were used in open applications, mainly as additive (plasticiser, flame retardant) in sealants and paints in buildings and other construction. The continued use in open applications has not been banned, and in 2013, an estimated more than 12,000 t of PCBs were still present in buildings and other constructions. These open PCB applications continuously emit PCBs into the environment with an estimated release of 7–12 t per year. This amount is in agreement with deposition measurements (estimated to 18 t) and emission estimates for Switzerland. The atmospheric PCB releases still have an relevant impact on vegetation and livestock feed. In addition, PCBs in open applications on farms are still a sources of contamination for farmed animals. Furthermore, the historic production, use, recycling and disposal of PCBs have contaminated soils along the lifecycle. This legacy of contaminated soils and contaminated feed, individually or collectively, can lead to exceedance of maximum levels in food products from animals. In beef and chicken, soil levels of 5 ng PCB-TEQ/kg and for chicken with high soil exposure even 2 ng PCB-TEQ/kg can lead to exceedance of EU limits in meat and eggs. Areas at and around industries having produced or used or managed PCBs, or facilities and areas where PCBs were disposed need to be assessed in respect to potential contamination of food-producing animals. For a large share of impacted land, management measures applicable on farm level might be sufficient to continue with food production. Open PCB applications need to be inventoried and better managed. Other persistent and toxic chemicals used as alternatives to PCBs, e.g. short chain chlorinated paraffins (SCCPs), should be assessed in the life cycle for exposure of food-producing animals and humans. 相似文献
20.
Satomi Mizukami-Murata Katsuhide Fujita Takeshi Nakano 《Environmental science and pollution research international》2018,25(17):16434-16445
Hydroxylated polychlorobiphenyls (OH-PCBs) are major metabolites of PCBs that are widely distributed in the environment. While the effects of penta- to hepta-chlorinated OH-PCBs on neuronal differentiation have been widely reported, those of lower chlorinated OH-PCBs have not been extensively studied. To investigate the effects of lower chlorinated OH-PCBs on neuronal development, we studied the effects of mono- to hexa-chlorinated OH-PCBs on PC12 cells. Morphological changes were examined using an automatic system IN Cell Analyzer. Seventeen of the 20 OH-PCBs investigated promoted neuronal elongation in an OH-PCB concentration-dependent manner, while three OH-PCB congeners suppressed neuronal elongation based on Dunnett’s analysis. In particular, the top five OH-PCBs (4OH-PCB2, 4′OH-PCB3, 4′OH-PCB25, 4′OH-PCB68, and 4′OH-PCB159), which have hydroxyl groups at the para-position and chlorine substitutions at the 2, 4, or 3′ positions, significantly promoted neuronal elongation. Moreover, these neuronal elongations were suppressed by U0126, and phosphorylation of extracellular signal-regulated kinase (ERK) 1/2 was observed in PC12 cells treated with 4OH-PCB2, 4′OH-PCB25, and 4′OH-PCB159. Taken together, our results indicate that the effect of OH-PCB on neuronal development is not dependent on the number of chlorine groups but on the chemical structure, and the mitogen-activated kinase kinase (MEK)-ERK1/2 signaling pathway is involved in this process. 相似文献