994 resultados para Organoclay (OC)


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Previous research has examined the impact of organizational culture(OC) on the implementation of many information systems. However, there is a lack of overall picture on how OC affects the effectiveness of different information systems differently. Based on the Competing Value Framework, this paper proposes a comprehensive framework to explain how the fit between organizational culture and types of IS results in different types of IS effectiveness. This framework can be used by managers to create a proper organizational culture that is compatible with the use of specific information systems.

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This article reviews the personal injury tort system in the People's Republic of China (PRC). The Chinese torts law has a number of unique features. To begin with, it is quite new — the legal framework of torts law was established only in 1986. The unique features of the Chinese torts law also stem from its long and difficult evolution over nearly 40 years. Equally important has been the remarkable blend of influences that have shaped its current law — a mixture of socialist objectives, capitalist pragmatism, and feudal doctrines combined with jurisprudential models taken from a range of western civil codes and, more recently, the common law.

Part one of the article briefly analyses the most important features of the existing Chinese legal system. Part two provides a background to the enactment of the General Principles of Civil Law (GPCL), which incorporates Chinese torts law. The review looks at the development and drafting of the GPCL legislation, and the influences that guided the formulation of legal principles. Part three of the article provides an overview of the torts law provisions in the GPCL. Part four examines the law of personal injury established by the GPCL. Part five uses some case studies to illustrate the principles highlighted in the previous two parts and part six contains a brief conclusion and some pointers to the directions that Chinese torts law may take in the future.

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[1] As part of the Large-Scale Biosphere-Atmosphere Experiment in Amazonia (LBA)-Cooperative LBA Airborne Regional Experiment (CLAIRE) 2001 campaign in July 2001, separate day and nighttime aerosol samples were collected at a ground-based site in Amazonia, Brazil, in order to examine the composition and temporal variability of the natural “background” aerosol. We used a high-volume sampler to separate the aerosol into fine (aerodynamic diameter, AD < 2.5 μm) and coarse (AD > 2.5 μm) size fractions and quantified a range of organic compounds in methanolic extracts of the samples by a gas chromatographic-mass spectrometric technique. The carbon fraction of the compounds could account for an average of 7% of the organic carbon (OC) in both the fine and coarse aerosol fractions. We observed the highest concentrations of sugars, sugar alcohols, and fatty acids in the coarse aerosol samples, which suggests that these compounds are associated with primary biological aerosol particles (PBAP) observed in the forest atmosphere. Of these, trehalose, mannitol, arabitol, and the fatty acids were found to be more prevalent at night, coinciding with a nocturnal increase in PBAP in the 2–10 μm size range (predominantly yeasts and other small fungal spores). In contrast, glucose, fructose, and sucrose showed persistently higher daytime concentrations, coinciding with a daytime increase in large fungal spores, fern spores, pollen grains, and, to a lesser extent, plant fragments (generally >20 μm in diameter), probably driven by lowered relative humidity and enhanced wind speeds/convective activity during the day. For the fine aerosol samples a series of dicarboxylic and hydroxyacids were detected with persistently higher daytime concentrations, suggesting that photochemical production of a secondary organic aerosol from biogenic volatile organic compounds may have made a significant contribution to the fine aerosol. Anhydrosugars (levoglucosan, mannosan, galactosan), which are specific tracers for biomass burning, were detected only at low levels in the fine aerosol samples. On the basis of the levoglucosan-to-OC emission ratio measured for biomass burning aerosol, we estimate that an average of ∼16% of the OC in the fine aerosol was due to biomass burning during CLAIRE 2001, indicating that the major fraction was associated with biogenic particles.

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The impact of salmon farming on the environment has been widely studied; there is, however, no consensus on the magnitude and quality of these effects and little information on their extent over large salmon farming areas. Forty-three salmon farm sites of which 29 are in full operation and grouped in nine locations in southern Chile were evaluated. Using statistical methods (two-way anova), no effects were found on water column variables such as nitrate, ammonia, orthophosphate and chlorophyll, whereas they were significant on sediment variables such as nitrogen (N), phosphorus (P) and organic carbon (OC), among others. Natural variability evaluation of some parameters revealed that P in sediments had the lowest coefficient of variation (23.2%) when compared with N (65.2%), particulate organic matter (POM) (139%) and OC (39%), and showed more marked salmon farming effects with no locality effects. Four of the nine locations showed stronger effects on sediments, with average P values ranging from 150 to 230 mmol that were six to nine times higher than in control sites (25 mmol). Nitrogen and carbon in sediments, while showing significant effects on salmon farming, also showed locality effects that revealed other biogenic processes influencing sediment composition. Thus, P in sediments was proposed as a promising indicator of impact on salmon farming, although the relationship with fauna in sediments was not linear and somewhat variable; more research is therefore needed to understand such connections. Considering entire geographical locations, no relationship was found between sediment conditions under salmon cages and the condition of the water column at a farm. This may indicate the possibility of high dilution rates and recycling processes, which so far preclude the detection of more global impacts beyond the cages shadow.

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Cognitive-behavioral models of obsessive-compulsive disorder (OCD) assign a central role to specific beliefs and coping strategies in the development, maintenance and exacerbation of obsessive-compulsive (OC) symptoms. These models also implicate perceptions of self and the world in the development and maintenance of OC phenomena (e.g., overestimation of threat, sociotropy, ambivalent or sensitive sense of self, looming vulnerability), although such self and world domains have not always been emphasized in recent research. Following recent recommendations (Doron & Kyrios, 2005), the present study undertook a multifaceted investigation of self and world perceptions in a nonclinical sample, using a coherent worldview framework (Janoff-Bulman, 1989, 1991). Beliefs regarding the self and the world were found to predict OC symptom severity over and above beliefs outlined in traditional cognitive-behavioral models of OCD. Self and world beliefs were also related to other OC-relevant beliefs. Implications of these findings for theory and treatment of OCD are discussed.

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Objectives.  Obsessive compulsive disorder (OCD) is one of the most disabling and highly prevalent anxiety disorders (ADs). Current cognitive models of OCD implicate views about the self and world in the maintenance of the disorder. However, little research has focused on issues that may lead to vulnerability to such views. In particular, a person's attachment insecurities (attachment anxiety, avoidance) may be important risk factors increasing the likelihood of such non-adaptive perceptions (Doron & Kyrios, 2005).

Design.  Participants meeting criteria for OCD were compared with cohorts meeting criteria for other ADs and healthy controls on a range of measures including adult attachment, OC symptoms, cognitions, and mood.

Methods.  Diagnosis of the clinical groups was established using the Anxiety Disorders Interview Schedule for DSM-IV (Brown, Di Nardo, & Barlow, 1994). The clinical relevance of attachment insecurities was ascertained by comparing their prevalence in an OCD sample (N= 30), an ADs sample (N= 20), and a community sample (N= 32). Results.  Attachment anxiety was significantly higher in individuals with OCD, even when controlling for depression.

Conclusions.  Addressing attachment anxiety in individuals presenting with OCD may be important for enhancing therapeutic outcomes. However, findings are based on cross-sectional data that preclude conclusions relating to causal influence.

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This study assesses the effects of mentoring and organisational ethical climate (OEC) on the organisational and professional commitment (PC) of early career accountants (ECAs) (i.e. accounting graduate recruits with three or less years of working experience). The empirical data are based on a questionnaire survey from 86 ECAs in Australian public accounting firms, and hypothesis testing utilises partial least squares analysis. Our results indicate when a career development style of mentoring is adopted there is greater organisational as well as PC. By contrast, a social support mentoring style has no significant impact on organisational commitment (OC) and a negative effect on PC. Further, our data also reveal OEC to be positively associated with OC, and OC in turn having a positive impact on PC. The results imply that fostering a career-focused mentoring environment and an OEC can increase an ECA's OC and PC. These results have various implications for human resource management at both the accounting firm and professional levels.

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This study assesses the effects of mentoring and organisational ethical climate (OEC) on the organisational and professional commitment (PC) of early career accountants (ECAs) (i.e. accounting graduate recruits with three or less years of working experience). The empirical data are based on a questionnaire survey from 86 ECAs in Australian public accounting firms, and hypothesis testing utilises partial least squares analysis. Our results indicate when a career development style of mentoring is adopted there is greater organisational as well as PC. By contrast, a social support mentoring style has no significant impact on organisational commitment (OC) and a negative effect on PC. Further, our data also reveal OEC to be positively associated with OC, and OC in turn having a positive impact on PC. The results imply that fostering a career-focused mentoring environment and an OEC can increase an ECA's OC and PC. These results have various implications for human resource management at both the accounting firm and professional levels.

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We investigated the association between undercarboxylated osteocalcin (ucOC) and lower-limb muscle strength in women over the age of 70years. The study also aims to confirm the association between bone turnover markers and heel ultrasound measures. A post-hoc analysis using data collected as part of a randomized placebo-controlled trial of vitamin D supplementation. An immunoassay was used to quantify total OC (tOC), with hydroxyapatite pre-treatment for ucOC. We determined associations of absolute and relative (ucOC/tOC; ucOC%) measures of ucOC with lower-limb muscle strength, heel ultrasound measures of speed of sound (SOS) and broadband ultrasound attenuation (BUA), bone turnover markers (BTMs; P1NP and CTx) and the acute phase protein alpha-1-antichymotrypsin (α-ACT). ucOC%, but not absolute ucOC concentration, was positively associated with hip flexor, hip abductor and quadriceps muscle strength (all p<0.05). ucOC% was negatively associated with α-ACT (β-coefficient=-0.24, p=0.02). tOC was positively associated with both P1NP and CTx (p<0.001). For each per unit increase in tOC (μg/L) there was a corresponding lower BUA, SOS and SI (β-coefficient = -0.28; -0.23 and -0.23, respectively; all p<0.04). In conclusion, ucOC% is positively associated with muscle strength and negatively associated with α-ACT. These data support a role for ucOC in musculoskeletal interactions in humans. Whilst tOC is associated with bone health, ucOC% and ucOC may also be linked to falls and fracture risk by influencing muscle function.

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Oral contraceptives (OCs), often referred to as "the pill", are the most commonly employed form of reversible contraception. OCs are comprised of combined synthetic estrogen and progestin, which work to suppress ovulation and subsequently protect against pregnancy. To date, almost 200 million women have taken various formulations of OC, making it one of the most widely consumed classes of medication in the world. While a substantial body of literature has been dedicated to understanding the physical effects of OCs, much less is known about the long term consequences of OC use on brain anatomy and the associated cognitive effects. Accumulating evidence suggests that sex hormones may significantly affect human cognition. This phenomenon has been commonly studied in older populations, such as in post-menopausal women, while research in healthy, pre-menopausal women remains limited. The current review focused on the effects of OCs on human cognition, with the majority of studies comparing pre-menopausal OC users to naturally cycling women. Human neuroimaging data and animal studies are also described herein. Taken together, the published findings on OC use and human cognition are varied. Of those that do report positive results, OC users appear to have improved verbal memory, associative learning and spatial attention. We recommend future research to employ blinding procedures and randomised designs. Further, more detailed information pertaining to the specific generation and phasic type of OCs, as well as menstrual cycle phase of the OC non-users should be considered to help unmask the potential impact of OC use on human cognition.

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Air temperature, pressure and humidity are environmental factors that affect air density and therefore the relationship between a cyclist’s power output and their velocity. These environmental factors are changeable and are routinely quite different at elite cycling competitions conducted around the world, which means that they have a variable effect on performance in timed events. The present work describes a method of calculating the effect of these environmental factors on timed cycling events and illustrates the magnitude and significance of these effects in a case study. Formulas are provided to allow the calculation of the effect of environmental conditions on performance in a time trial cycling event. The effect of environmental factors on time trial performance can be in the order of 1.5%, which is significant given that the margins between ranked performances is often less than this. Environmental factors may enhance or hinder performance depending upon the conditions and the comparison conditions. To permit the fair comparison of performances conducted in different environmental conditions, it is recommended that performance times are corrected to the time that would be achieved in standard environmental conditions, such as 20 oC, 760 mmHg (1013.25 hPa) and 50% RH.

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The present work aims at finding a relationship between kinetic models of thermal degradation process with the physiochemical structure of epoxy-clay nanocomposites in order to understand its service temperature. In this work, two different types of modified clays, including clay modified with (3-aminopropyl)triethoxysilane (APTES) and a commercial organoclay, were covalently and non-covalently incorporated into epoxy matrix, respectively. The effect of different concentrations of silanized clay on thermal behaviour of epoxy nanocomposites were first investigated in order to choose the optimum clay concentration. Afterwards, thermal characteristics of the degradation process of epoxy nanocomposites were obtained by TGA analysis and the results were employed to determine the kinetic parameters using model-free isoconversional and model-fitting methods. The obtained kinetic parameters were used to model the entire degradation process. The results showed that the incorporation of the different modified clay into epoxy matrix change the mathematical model of the degradation process, associating with different orientations of clay into epoxy matrix confirming by XRD results. The obtained models for each epoxy nanocomposite systems were used to investigate the dependence of degradation rate and degradation time on temperature and conversion degree. Our results provide an explanation as to how the life time of epoxy and its nanocomposites change in a wide range of operating temperatures as a result of their structural changes.

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In this article, we discuss the phase morphology, thermal, mechanical, and crystallization properties of uncompatibilized and compatibilized polypropylene/polystyrene (PP/PS) blends. It is observed that the Young's modulus increases, but other mechanical properties such as tensile strength, flexural strength, elongation at break, and impact strength decrease by blending PS to PP. The tensile strength and Young's modulus of PP/PS blends were compared with various theoretical models. The thermal stability, melting, and crystallization temperatures and percentage crystallinity of semicrystalline PP in the blends were marginally decreased by the addition of amorphous PS. The presence of maleic anhydride-grafted polypropylene (compatibilizer) increases the phase stability of 90/10 and 80/20 blends by preventing the coalescence. Hence, finer and more uniform droplets of PS dispersed phases are observed. The compatibilizer induced some improvement in impact strength for the blends with PP matrix phase, however fluctuations in modulus, strength and ductility were observed with respect to the uncompatibilized blend. The thermal stability was not much affected by the addition of the compatibilizer for the PP rich blends but shows some decrease in the thermal stability of the blends, where PS forms the matrix. On the other hand, the % crystallinity was increased by the addition of compatibilizer, irrespective of the blend concentration.

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Os recursos hídricos superficiais e subterrâneos tem-se mostrado contaminados, cada vez mais freqüentemente, por substâncias orgânicas e inorgânicas, em nível de traços, prejudicando os seus usos mais nobres, por exemplo, abastecimento público. Este estudo teve por finalidade principal verificar a eficiência de rejeição por membranas poliméricas, de alguns compostos orgânicos tipo, naftaleno, carbofurano, tricloroetileno (TCE) e metil paration, em baixas concentrações. Empregou-se testes hidrodinâmicos de filtração, tipo "dead-end", com taxa de aplicação média de 13,16 m3.m-2.h-1 através das membranas comerciais de características distintas, uma de ultra (UE-50) e duas de nanofiltração (XN-40 e TS-80). Avaliou-se, também, a preparação de água contaminada para a filtração por membranas, através do prétratamento por oxidação do carbofurano em meio líquido, usando um desinfetante padrão, o hipoclorito de sódio. Após a oxidação desde composto, testes hidrodinâmicos de filtração foram realizados para verificar, também, a eficiência de rejeição dos sub-produtos. Por fim, foram realizados testes de envelhecimento das membranas que poderiam ser atacadas pelos compostos orgânicos em solução aquosa. Todos os ensaios foram realizados à temperatura de 25 oC, empregando pressão de filtração de 4 atm. Os compostos orgânicos foram detectados por várias técnicas, principalmente cromatografia gasosa e líquida, sequenciada por espectrometria de massas. Para acompanhar o envelhecimento das membranas, em seis meses de uso, foi empregada microscopia de força atômica, através da medição de porosidade e de rugosidade superficiais. Em termos médios, nas três faixas de concentrações testadas, o metil paration foi o composto mais eficientemente removido pelas membranas em todos os testes realizados, com 59,82 % de rejeição pela membrana UE-50, 43,97 % pela membrana XN-40 e 56,12 % pela TS-80. O TCE foi rejeitado 28,42 %, 23,87 % e 21,42 % pelas membranas UE-50, XN-40 e TS-80, respectivamente. O naftaleno, foi rejeitado 20,61 %, 14,85 % e 12,63 % pelas membranas UE-50, XN-40 e TS-80, respectivamente. Para o carbofurano, a percentagem de rejeição pelas membranas UE-50, XN-40 e TS-80 foi, respectivamente, de 4,51 %, 4,88 % e 2,92 %. Dentre todas as membranas testadas, a membrana de polisulfona UE-50, de ultrafiltração, produziu a melhor eficiência na rejeição de metil paration, tricloroetileno e naftaleno, com 59,82 %, 28,43 % e 20,61 % de rejeição, na ordem. A membrana de poliamida-uréia TS-80, de nanofiltração, proporcionou maior rejeição (56,12 %) que a membrana de poliamida XN-40, de nanofiltração (43,97 %), para o metil paration. Ao contrário, a membrana XN-40 mostrou uma rejeição maior (23,87 %) que a TS-80 para o tricloroetileno (21,42 %). Para o naftaleno, a membrana XN-40 também mostrou uma rejeição (14,85 %) maior que a TS-80 (12,63 %). A eficiência de rejeição do carbofurano foi a menor de todos os compostos ensaiados, independente da membrana. Se for assumido que a membrana de ultra deverá ser seguida pela de nanofiltração, a eficiência conjunta UE-50 + XN-40 será, em termos médios, para o naftaleno, carbofurano, tricloroetileno e metil paration, respectivamente, 32,24%, 9,19%, 45,60% e 77,44%. Para o conjunto UE-50 + TS-80 será de: 30,64%, 7,29%, 43,92% e 83,51%, não havendo diferenças estatisticamente significantes entre os dois conjuntos. Nos testes de pré-tratamento por oxidação do carbofurano, observou-se a formação do carbofurano hidrolisado e mais dois sub-produtos principais, SP-1 e SP-2, que foram rejeitados, 47,85 % e 92,80 %, respectivamente, pela membrana XN-40. Na verificação das perdas das características morfológicas pelo uso prolongado das membranas, sob ataque de compostos orgânicos em baixa concentração ("envelhecimento") verificou-se que a rugosidade (0, 3 e 6 meses) e a porosidade (0, 3 e 6 meses) foram consideravelmente alteradas. A porosidade da membrana XN-40 aumentou 42,86% e a da membrana TS-80 aumentou 34,57%, quando imersas por 3 meses. A rugosidade das membranas XN-40 e TS-80 nos testes de imersão por 3 meses, aumentou 5,37% e 291% respectivamente. Nos testes de imersão em 6 meses, o aumento da porosidade das membranas XN-40 e TS-80 foi de 29,67% e 18,52% respectivamente, enquanto que a rugosidade aumentou 25,27% e 155% para as mesmas. Conclui-se que membranas de nanofiltração poliméricas necessitam de prétratamentos para rejeitar, com segurança, e colocar dentro dos padrões de potabilidade, águas contaminadas com os compostos orgânicos tipo testados e que seu uso prolongado irá afetar as suas características de rejeição dos contaminates.

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As técnicas de espectrofluorimetria, viscosimetria e espalhamento de luz têm sido utilizadas no estudo da agregação de diferentes surfactantes aniônicos em presença de 0,5% (m/v) de (hidroxipropil)celulose, no regime diluído (HPC Mw = 173000 g/mol), e em moderada força iônica (NaCl 0,1 M). Admitindo-se uma faixa geral de concentração, entre 10-5 e 10-2 mol.L-1, foram empregados neste estudo os surfactantes colato de sódio (CS), deoxicolato de sódio (DC), derivados dos sais bilares, e o alquilsintético dodecil sulfato de sódio (SDS). O polímero HPC contribui diferentemente no processo de agregação de cada surfactante, evidenciado pela mudança dos valores da concentração de agregação crítica, C1, em relação à concentração micelar crítica (cmc), obtidos pela técnica de espectrofluorimetria. Ambos os valores de C1 diminuem com respeito à cmc para SDS, bem como para DC, enquanto um ligeiro aumento é observado para CS. Os dados de viscosidade relativa, ηrel, indicam um aumento substancial da viscosidade dos sistemas HPC/sais biliares a altas concentrações de surfactante. Diferentemente, para o sistema HPC/SDS, os valores de ηrel passam por um máximo a 3 mmol.L-1 em agregados e decresce a valores abaixo da viscosidade da solução polimérica livre de surfactante. As medidas da temperatura de turbidez (Tturb), por espalhamento de luz, para os sistemas HPC/sais biliares, mostraram um crescimento gradual de Tturb em função do aumento da concentração de surfactante, de 37 oC (0,5% HPC/NaCl 0,1 M) até estabilizar-se em torno de 50o C, para concentrações mais elevadas. Por outro lado, para HPC/SDS, a Tturb cresce acentuadamente, superando a temperatura de 100 oC a contrações maiores do que 20 mmol.L-1. Através do espalhamento de luz dinâmico, verificou-se a existência de dois modos difusivos (rápido e lento) para todos os sistemas estudados. A principal contribuição é proveniente do modo rápido, exceto na faixa de concentração entre C1 e a concentração de saturação, C2, na qual ambos os modos contribuem igualmente. Esses modos estão relacionados inicialmente a agregados HPC/surfactante e a “clusters” do polímero e, posteriormente, a agregados HPC/surfactante e micelas livres. Os resultados indicam uma interação HPC/SDS mais efetiva do que HPC/DC ou HPC/CS, fato este relacionado à estrutura dos agregados formados. Comparativamente, os agregados HPC/sais biliares são menores, possuem menor densidade de carga e são mais rígidos do que os agregados de HPC/SDS.