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261.
Latif Amars Mathias Fridahl Markus Hagemann Frauke Röser Björn-Ola Linnér 《Local Environment》2017,22(1):86-105
While energy-sector emissions remain the biggest source of climate change, many least-developed countries still invest in fossil-fuel development paths. These countries generally have high levels of fossil-fuel technology lock-in and low capacities to change, making the shift to sustainable energy difficult. Tanzania, a telling example, is projected to triple fossil-fuel power production in the next decade. This article assesses the potential to use internationally supported Nationally Appropriate Mitigation Actions (NAMAs) to develop solar energy in Tanzania and contribute to transformational change of the electricity supply system. By assessing the cultural legitimacy of NAMAs among key stakeholders in the solar energy sector, we analyse the conditions for successful uptake of the concept in (1) national political thought and institutional frameworks and (2) the solar energy niche. Interview data are analysed from a multi-level perspective on transition, focusing on its cultural dimension. Several framings undermining legitimacy are articulated, such as attaching low-actor credibility to responsible agencies and the concept’s poor fit with political priorities. Actors that discern opportunities for NAMAs could, however, draw on a framing of high commensurability between experienced social needs and opportunities to use NAMAs to address them through climate-compatible development. This legitimises NAMAs and could challenge opposing framings. 相似文献
262.
Markus Langs Sebastien Allar Ina Kristian Anna Heitz Cynthia A. Joll 《环境科学学报(英文版)》2017,29(8):340-348
Determination of halogen-specific total organic halogen(TOX) is vital for studies of disinfection of waters containing bromide, since total organic bromine(TOBr) is likely to be more problematic than total organic chlorine. Here, we present further halogen-specific TOX method optimisation and validation, focusing on measurement of TOBr. The optimised halogen-specific TOX method was validated based on the recovery of model compounds covering different classes of disinfection by-products(haloacetic acids, haloacetonitriles,halophenols and halogenated benzenes) and the recovery of total bromine(mass balance of TOBr and bromide concentrations) during disinfection of waters containing dissolved organic matter and bromide. The validation of a halogen-specific TOX method based on the mass balance of total bromine has not previously been reported. Very good recoveries of organic halogen from all model compounds were obtained, indicating high or complete conversion of all organic halogen in the model compound solution through to halide in the absorber solution for ion chromatography analysis. The method was also successfully applied to monitor conversion of bromide to TOBr in a groundwater treatment plant. An excellent recovery(101%)of total bromine was observed from the raw water to the post-chlorination stage. Excellent recoveries of total bromine(92%–95%) were also obtained from chlorination of a synthetic water containing dissolved organic matter and bromide, demonstrating the validity of the halogen-specific TOX method for TOBr measurement. The halogen-specific TOX method is an important tool to monitor and better understand the formation of halogenated organic compounds, in particular brominated organic compounds, in drinking water systems. 相似文献
263.
Qian Li Meng Wang Lei Duan Yanling Qiu Taowu Ma Ling Chen Magnus Breitholtz Åke Bergman Jianfu Zhao Markus Hecker Lingling Wu 《Environmental Sciences Europe》2018,30(1):34
Background
Freshwater sediments have been recognized as a long-term sink and potential source for environmental pollutants released into the aquatic ecosystems. In this study, the sediment quality of Taihu Lake, which is susceptible to anthropogenic contamination, was assessed by a combination of chemical analytical and biological end points. Specifically, the snail Bellamya aeruginosa was caged in situ at two locations representing different pollution levels for different exposure times (7, 14 and 21 days). At each of these time points, biochemical parameters, i.e., phase I biotransformation enzymes ethoxyresorufin-O-deethylase (EROD), the antioxidant enzymes superoxide dismutase and catalase, reactive oxygen species, protein carbonyl content and lipid peroxidation, were evaluated in the hepatopancreas of snails. In addition, surface sediments were collected for analysis of contaminants of concern, including inorganic pollutants, organochlorine pesticides, polychlorinated biphenyls and polybrominated diphenyl ethers.Results
Chemical analyses revealed that sediments from Taihu Lake were contaminated with trace elements and organic pollutants. Concentrations of trace elements (Cu, Ni and As) and organochlorinated pesticides (4,4′-DDE) exceeded their corresponding threshold effect level according to the sediment quality assessment values for freshwater ecosystems in Canada, indicating that adverse biological effects may occur. All biomarkers, except EROD activity, were induced in snails during all exposure times. The integrated biomarker response index (IBR) indicated that during the initial exposure phase (7 days), B. aeruginosa were subjected to significant environmental stress, which diminished during later sampling time points.Conclusions
Results showed that IBR correlated well with the levels of environmental contaminants, demonstrating the applicability of this biomonitoring approach to complex environmental exposure scenarios.264.
265.
Societal and technological development during the last century has enabled Western economies to achieve a high standard of living. Yet this profusion of wealth has led to several outcomes that are undesirable and/or unsustainable. There is thus an imperative need for a fundamental and rapid transition towards more sustainable practices. While broad conceptual frameworks for managing sustainability transitions have been suggested in prior literature, these need to be further developed to suit contexts in which the overall vision is arguably clear, such as in the case of consuming animal-originated foodstuffs. In this article we introduce a novel transition management framework that is based upon the dimensions of sustainability. The suggested transition management process includes the identification of objectives and obstacles, the listing of options and their opportunities and threats as well as the evaluation of the outcomes (the Five O’s). We argue that sustainability transition management should be a process in which the identification of the relevant dimensions of sustainability and related objectives forms the foundation for strategic, tactical and operational governance activities. We illustrate the practical applicability of the framework in the case of transition towards plant-based diets. 相似文献
266.
Scheurer M Godejohann M Wick A Happel O Ternes TA Brauch HJ Ruck WK Lange FT 《Environmental science and pollution research international》2012,19(4):1107-1118
Purpose
The two artificial sweeteners cyclamate (CYC) and acesulfame (ACE) have been detected in wastewater and drinking water treatment plants. As in both facilities ozonation might be applied, it is important to find out if undesired oxidation products (OPs) are formed. 相似文献267.
Environmental Science and Pollution Research - 相似文献
268.
Hecker Markus Hollert Henner Cooper Ralph Vinggaard Anne-Marie Akahori Yumi Murphy Margaret Nellemann Christine Higley Eric Newsted John Wu Rudolph Lam Paul Laskey John Buckalew Angela Grund Stefanie Nakai Makoto Timm Gary Giesy John 《Environmental science and pollution research international》2007,14(1):23-30
Background, Goals and Scope In response to concerns that have been raised about chemical substances that may alter the function of endocrine systems and
result in adverse effects on human health, an OECD initiative was undertaken to develop and validate in vitro and in vivo assays to identify chemicals that may interfere with endocrine systems of vertebrates. Here we report on studies that were
conducted to develop and standardize a cell-based screening assay using the H295R cell line to prioritize chemicals that may
act on steroidogenic processes in humans and wildlife. These studies are currently ongoing as part of the ‘Special Activity
on the Testing and Assessment of Endocrine Disruptors’ within the OECD Test Guidelines Program to review, develop, standardize,
and validate a number of in vitro and in vivo toxicological assays for testing and assessment of chemicals concerning their potential to interact with the endocrine system
of vertebrates.
Study Design Six laboratories from five countries participated in the pre-validation studies. Each laboratory tested the effects of three
model chemicals on the production of testosterone (T) and estradiol (E2) using the H295R Steroidogenesis Assay. Chemicals
tested were well described inducers or inhibitors of steroidogenic pathways (forskolin, prochloraz and fadrozole). All experiments
were conducted in 24 well plates following standard protocols. Six different doses per compound were analyzed in triplicate
per plate. A quality control (QC) plate was run in conjunction with the chemical exposure plate to account for inter-assay
variation. Each chemical exposure was conducted two or three times.
Results All laboratories successfully detected increases and/or decreases in hormone production by H295R cells after exposure to the
different model compounds and there was good agreement in the pattern of response for all groups. Forskolin increased both
T and E2 while fadrozole and prochloraz decreased production of both hormones. All chemicals affected hormone production in
a dose-dependent manner with the exception of fadrozole which caused maximum inhibition of E2 at the two least concentrations
tested. Some inter-laboratory differences were noted in the alteration of hormone production measured in chemically exposed
cells. However, with the exception of the production of T measured at one laboratory in cells exposed to forskolin, the EC50s calculated were comparable (coefficients of variation 34–49%) for all hormones.
Discussion and Perspectives The results indicated that the H295R Steroidogenesis Assay protocol was robust, transferable and reproducible among all laboratories.
However, in several instances that were primarily related to one laboratory there were unexplained minor uncertainties related
to the inter-laboratory hormone production variation. Based on the findings from this Phase 2 prevalidation study, the H295R
Steroidogenesis Assay protocol is currently being refined. The next phase of the OECD validation program will test the refined
protocol among the same group of laboratories using an extended set of chemicals (∼30) that will include positive and negative
chemical controls as well as a broad spectrum of different potential inducers and inhibitors of steroidogenic pathways.
Submission Editor: Dr. Carsten Brühl (bruehl@uni-landau.de) 相似文献
269.
270.
1st Young Environmental Scientists (YES) Meeting—New
challenges in environmental sciences 总被引:2,自引:0,他引:2