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1

Fowler, Mike W. „High tech green fingers“. Trends in Biotechnology 13, Nr. 11 (November 1995): 493–94. http://dx.doi.org/10.1016/s0167-7799(00)89008-3.

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2

Kozuch, James J. „Clean Tech Intellectual Property: Eco-marks, Green Patents, and Green Innovation, by Eric L. Lane. New York: Oxford University Press, Inc., 2011, 260 pp., $185.00, Paperback.“ European Journal of Risk Regulation 2, Nr. 3 (September 2011): 457–59. http://dx.doi.org/10.1017/s1867299x00001513.

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In Clean Tech Intellectual Property: Eco-marks, Green Patents, and Green Innovation, Eric Lane takes the position that clean tech intellectual property (IP), or green IP, differs from IP in other industries because green IP is characterized by several unique features of clean tech. These, according to Lane, include a diversity of technologies, the fact that clean tech borrows from and builds on prior periods of green technology R&D and technologies from other industries such as computers and semiconductors, and clean tech's promise of solutions to mitigate climate change and benefit the environment.
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3

Mathews, John A. „Exempt green tech from trade rules“. Nature 514, Nr. 7524 (Oktober 2014): 567. http://dx.doi.org/10.1038/514567c.

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4

Liu, Yanhong, Xinjian Huang und Weiliang Chen. „Threshold Effect of High-Tech Industrial Scale on Green Development—Evidence from Yangtze River Economic Belt“. Sustainability 11, Nr. 5 (08.03.2019): 1432. http://dx.doi.org/10.3390/su11051432.

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Based on the panel data of 11 regions in the Yangtze River Economic Belt from 1998 to 2016, we tested and analyzed the effects of high-tech industrial expansion on green development. For these regions in the Yangtze River Economic Belt, we wanted to investigate the potential linear relationship between the scale of high-tech industry and green development or the possible threshold effect. We wanted to determine if this relationship is different in various regions of the Yangtze River Economic Belt. According to the empirical test, we found that: (1) for the entire Yangtze River Economic Belt region, the influence of high-tech industrial scale on green development doubled the threshold effect, and a marginal efficiency diminishing effect existed with the further increase in scale; (2) due to the differences among the regions, the threshold effect was different in different regions, with a double threshold effect in the lower reaches, a single threshold effect in the middle reaches, and no threshold effect in the upper reaches; and (3) regarding the high-tech industrial scale, the downstream areas were too large to weaken its promoting effect on green development. In the middle reaches, the positive impact on green development was still increasing, and the high-tech industrial scale should be further expanded. However, in the upstream areas, high-tech industrial scales did not reach the threshold value and the relationship between the high-tech industrial scale and green development was linear. Therefore, local high-tech industries should be cultivated and developed.
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Deng, Qunzhao, Shuzhen Zhou und Feng Peng. „Measuring Green Innovation Efficiency for China’s High-Tech Manufacturing Industry: A Network DEA Approach“. Mathematical Problems in Engineering 2020 (17.08.2020): 1–13. http://dx.doi.org/10.1155/2020/8902416.

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Earlier studies on the innovation process in the high-tech manufacturing industry failed to take environmental pollution into account, making it difficult to estimate green innovation efficiency in the industry. From a perspective of innovation value chain, this paper decomposes green innovation process in the high-tech manufacturing industry into two stages: R&D stage and achievement transformation stage; a network DEA approach considering undesirable outputs is utilized to estimate the green innovation efficiency in China’s high-tech manufacturing industry. Compared with the method of conventional innovation efficiency without considering environmental pollution, the estimation method for green innovation efficiency can not only avoid bias of estimation results of provinces producing low pollution emissions like Inner Mongolia and Hainan but also reflect the volatility in efficiency of the high-tech manufacturing industry before and after the implementation of the environmental law.
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Wang, Ya, Jiaofeng Pan, Ruimin Pei, Guoliang Yang und Bowen Yi. „A Framework for Assessing Green Capacity Utilization Considering CO2 Emissions in China’s High-Tech Manufacturing Industry“. Sustainability 12, Nr. 11 (29.05.2020): 4424. http://dx.doi.org/10.3390/su12114424.

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China’s high-tech manufacturing industry has become the mainstay of the country’s domestic industrial transformation and upgrading. However, in recent years, the industry has experienced huge blind expansion under policy stimulus, which is not good for long-term industrial development. Therefore, this article attempts to explore the extent to which such an important and critical industry in China utilizes its production capacity and provides a basis for future policymaking. Coupled with the country’s increasing emphasis on the green and low-carbon development of the industry, this article extends the green and low-carbon thinking based on capacity utilization, namely green capacity utilization (CU). On this basis, the study empirically investigates the green CU of the high-tech manufacturing industry in 28 provinces in mainland China from 2010 to 2015. In performing the investigation, the inputs were divided into (quasi-)fixed and variable inputs, and an assessment framework was established based on the data envelopment analysis (DEA) method. Moreover, optimal variable inputs are also available as by-products within the assessment framework. The results were as follows: First, China’s high-tech manufacturing industry showed an excellent overall performance in green CU. Moreover, half of the provinces were at fully utilized capacity, and half were under-utilized. On average, there was a slight deterioration in green CU. Second, the results showed regional differences. The western region had the highest green CU followed by the middle and northeastern regions, and the eastern region had the lowest green CU. Third, regarding the optimal variables inputs, the total amount of labor in China’s high-tech manufacturing industry met the demand, but the distribution was uneven. Fourth, the scale of traditional energy consumption needs to be reduced both in individual provinces and in general. These conclusions have implications for the formulation of policies to promote the green development of China’s high-tech manufacturing industry.
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7

Aldhous, Peter. „Tech companies struggle to make data storage green“. New Scientist 214, Nr. 2862 (April 2012): 20. http://dx.doi.org/10.1016/s0262-4079(12)61076-8.

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8

Chen, Weiliang, Xinjian Huang, Yanhong Liu, Xin Luan und Yan Song. „The Impact of High-Tech Industry Agglomeration on Green Economy Efficiency—Evidence from the Yangtze River Economic Belt“. Sustainability 11, Nr. 19 (22.09.2019): 5189. http://dx.doi.org/10.3390/su11195189.

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Development is the eternal theme of the times. However, the transformation of the development mode is imminent, and we should abandon the extensive economic development mode and turn to the efficient development of an intensive mode. The high-tech industry will be the decisive force in future industrial development. The agglomeration of the industry will help form economies of scale, thereby improving the effective allocation of resources and promoting productivity. The increase in green economy efficiency is a key factor in achieving green development and an important indicator of achieving the coordinated development of economic development and environmental protection. Therefore, in this study, we try to improve the efficiency of the green economy through industrial agglomeration to achieve green development. In order to solve this problem, we took the Yangtze River Economic Belt as the research object, used Super Slacks-based Measure (SBM) data envelopment analysis (DEA) and general algebraic modeling system (GAMS) to study the green economy efficiency, and then used the system generalized moment method (SGMM) to study the impact of high-tech industry agglomeration on green economy efficiency. According to the empirical test, we found that (1) the green economy efficiency of the Yangtze River Economic Belt shows a volatile upward trend, (2) the green economy efficiency of the Yangtze River Economic Belt differs with time and by region, (3) the agglomeration of the high-tech industry has a lagging effect on the improvement of green economy efficiency, and (4) the regression coefficients of economic development and foreign direct investment are positive and those of environmental regulation and urbanization are negative. Finally, in this paper, we provide corresponding policy recommendations to promote the agglomeration of high-tech industries, thereby improving the efficiency of the green economy.
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Cuerva, Maria C., Ángela Triguero-Cano und David Córcoles. „Drivers of green and non-green innovation: empirical evidence in Low-Tech SMEs“. Journal of Cleaner Production 68 (April 2014): 104–13. http://dx.doi.org/10.1016/j.jclepro.2013.10.049.

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10

Reddy, Jagannath, Jagadish ., Charanraj N, Praveen M.N, Y. D. Sai Rohith und Sathish Kumar. B. „Factors Affecting Implementation of Green Supply Chain Management In Tech Manora Packing: a Case Study“. International Journal of Engineering & Technology 7, Nr. 3.12 (20.07.2018): 171. http://dx.doi.org/10.14419/ijet.v7i3.12.15912.

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The concept of Green Supply Chain Management (GSCM) is achieving high level implication that can help to reduce the harmful effect of manufacturing activities on the environment. The prime objective is to identify the factors affecting implementation of green supply chain management in Tech Manora packing industry. The collection of data combined primary and secondary sources, the primary source of data is approaching with industry expert by questionnaires. The secondary source of data that is published articles related to GSCM. This study exposed that the most prominent factors affecting implementation of green supply chain management in Tech Manora industry, including lack of knowledge, top management commitment, high cost investment, lack of Government support, lack of information Technology, lack of learning capacity to evaluate GSCM. Finally this study recommends that tech menorah packing industry and its partners should organize joint seminars and workshops to sensitize the staff and suppliers on the benefits of green supply chain management. Further this study will help to the small scale industries to understand the factors affecting while implementation of GSCM.
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Huang, Yi-Chun, und Hung-Bin Ding. „Green Creativity and Performance from Taiwanese High-Tech Sectors“. Academy of Management Proceedings 2012, Nr. 1 (Juli 2012): 14451. http://dx.doi.org/10.5465/ambpp.2012.14451abstract.

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12

Lee, Amy H. I., He-Yau Kang, Chang-Fu Hsu und Hsiao-Chu Hung. „A green supplier selection model for high-tech industry“. Expert Systems with Applications 36, Nr. 4 (Mai 2009): 7917–27. http://dx.doi.org/10.1016/j.eswa.2008.11.052.

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13

Coffer, Jeffery L., und Leigh T. Canham. „Nanoporous Silicon as a Green, High-Tech Educational Tool“. Nanomaterials 11, Nr. 2 (23.02.2021): 553. http://dx.doi.org/10.3390/nano11020553.

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Pedagogical tools are needed that link multidisciplinary nanoscience and technology (NST) to multiple state-of-the-art applications, including those requiring new fabrication routes relying on green synthesis. These can both educate and motivate the next generation of entrepreneurial NST scientists to create innovative products whilst protecting the environment and resources. Nanoporous silicon shows promise as such a tool as it can be fabricated from plants and waste materials, but also embodies many key educational concepts and key industrial uses identified for NST. Specific mechanical, thermal, and optical properties become highly tunable through nanoporosity. We also describe exceptional properties for nanostructured silicon like medical biodegradability and efficient light emission that open up new functionality for this semiconductor. Examples of prior lecture courses and potential laboratory projects are provided, based on the author’s experiences in academic chemistry and physics departments in the USA and UK, together with industrial R&D in the medical, food, and consumer-care sectors. Nanoporous silicon-based lessons that engage students in the basics of entrepreneurship can also readily be identified, including idea generation, intellectual property, and clinical translation of nanomaterial products.
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Wang, Mei Yan. „Designing Concept and Prospect of Green Architecture in China“. Applied Mechanics and Materials 193-194 (August 2012): 129–32. http://dx.doi.org/10.4028/www.scientific.net/amm.193-194.129.

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With the deterioration of the environment today, the thought of green architecture is becoming increasing important in China. The differences among the green architecture, non-green architecture and high-tech standard architecture should be found, and the evaluating criteria of the green architecture should be summed up, so as to guide the design of green architecture in China more effectively in the future.
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Cui, Zhe, Tao Wen und Yuan Zhang. „Research of Space Form Evolution of New and High Technology Industries Development Zones“. Advanced Materials Research 671-674 (März 2013): 2431–36. http://dx.doi.org/10.4028/www.scientific.net/amr.671-674.2431.

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The paper analyzed development of high and new technology industry zones in foreign countries. The practice mode of high-tech zones are summed up as Science Park, Science City, Technopolis, High-tech Areas, High and New Technology Industries Development Belt, and space form evolution model of high-tech zones are reduced to single point, multipoint and banded structure. Then the paper analyzed mechanism of space form evolution of high-tech zones from aspects of agglomeration and diffusion development. At last, combined with the development of China’s high-tech zones in typical areas, the paper puts forward development trend of space form the evolution of high-tech zones in the future, such as interaction with evolution of urban spatial structure, one zone with multiple parks, replacement of function in old industrial zones, ecological and sustainable development, shape green space, intelligence.
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Pho, Quoc Hue, Dusan Losic, Kostya (Ken) Ostrikov, Nam Nghiep Tran und Volker Hessel. „Perspectives on plasma-assisted synthesis of N-doped nanoparticles as nanopesticides for pest control in crops“. Reaction Chemistry & Engineering 5, Nr. 8 (2020): 1374–96. http://dx.doi.org/10.1039/d0re00069h.

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17

Collantes, Gustavo. „Do green tech policies need to pass the consumer test?“ Energy Economics 32, Nr. 6 (November 2010): 1235–44. http://dx.doi.org/10.1016/j.eneco.2010.04.002.

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18

Gao, Yu, Liming Sun und Xiaoling Liu. „An Exploration into Green-Tech Innovations Based on “Four Modernizations”“. Journal of Environmental Protection 12, Nr. 01 (2021): 29–35. http://dx.doi.org/10.4236/jep.2021.121003.

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19

Zhou, Fu-li, Xu Wang, Yun Lin, Yan-dong He und Nan Wu. „Influence research of multi-dimensional tech-innovation behavior on tech-innovation performance“. International Journal of Innovation Science 8, Nr. 2 (06.06.2016): 148–60. http://dx.doi.org/10.1108/ijis-06-2016-010.

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Purpose The purpose of this study is to investigate the research on the influence of tech-innovation behavior on tech-innovation performance for Chinese manufacturing enterprises. Environmental performance has been taken into consideration with the green manufacturing and sustainability philosophy being a hotspot. Design/methodology/approach To verify the hypotheses and assumptions, a questionnaire was designed and a semi-structured interview was conducted for data collection. In addition, structural equation modeling (SEM) is applied to verify the influence model through assessing the fitting indexes based on the 317 questionnaire responses in the form of Likert-type scale. Findings Tech-innovation behavior and activity from direction, mode and investment behavior dimensions show their different positive influences on tech-innovation performance. This paper has creatively taken environmental tech-innovation performance into consideration, as well as economic performance. This investigation has provided the interpretation for each individual enterprise from three dimensions when conducting tech-innovation activity. Research limitations/implications Tech-innovation behavior, which has been a subject of extended discussion during recent decades, is the effective activity or action for tech-innovation. However, there have not been any studies on the environmental performance influence study, as well as the economic performance from these three dimensions and framework. Practical implications As this paper discusses the tech-innovation performance influence study from three dimensions, individual enterprises can choose the corresponding action for the proper tech-innovation path, especially for small- and medium-sized enterprises. Originality/value This study helps managers recognize tech-innovation activities for better tech-innovation performance based on the empirical study.
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Tian, Ye, Peng Huang und Xu Zhao. „Spatial analysis, coupling coordination, and efficiency evaluation of green innovation: A case study of the Yangtze River Economic Belt“. PLOS ONE 15, Nr. 12 (09.12.2020): e0243459. http://dx.doi.org/10.1371/journal.pone.0243459.

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Green innovation is an important driving force to promote the sustainable development of urban society and economy. This paper constructs an evaluation index system containing social undesirable outputs, and uses the Super-SBM model and the Malmquist-Luenberger index to evaluate green innovation efficiency in 42 cities along the Yangtze River Economic Belt from 2013 to 2017. Additionally, spatial autocorrelation analysis is used to study the spatial correlation of green innovation efficiency. Finally, the coupling coordination degree model is used to study the coupling coordination degree between green innovation efficiency and high-tech industries. The following results were obtained. (1) The average value of green innovation efficiency increased from 1.0446 to 1.0987, and the annual average growth rate of total factor productivity of green innovation was 1.1%. (2) Green innovation efficiency of the Yangtze River Economic Belt had a significant spatial positive correlation, but the types of agglomeration among cities in different sections of the Yangtze River were quite different. (3) The coupling coordination degree between green innovation efficiency and the development level of high-tech industries in the cities of the Yangtze River Economic Belt was in the basic coordination stage. Based on the research results, we suggest that cities in this belt further enhance the interactive relationship between green innovation and economic development and promote the coordinated development of economy and society.
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Xinping, Yuan, Ji Chenhao, Wang Xueying, Luo Zilong und Jin Yucheng. „Research on the Applicability of Low-tech Bamboo Architecture in New Rural Construction“. MATEC Web of Conferences 175 (2018): 04013. http://dx.doi.org/10.1051/matecconf/201817504013.

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Bamboo resources are abundant in China, and low-tech bamboo structures are used to maximize the sustainable development of new rural construction. This paper will deeply explore, study and analyze the issue of low-tech bamboo construction, then further analyze its applicability in new rural construction, and ultimately find a feasible plan about bamboo construction, so as to take effective measures to combine new rural construction and green science and technology.
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Cui, Li, Mengru Zhai, Jing Dai, Yang Liu und Pan Zhang. „Assessing sustainability performance of high-tech firms through a hybrid approach“. Industrial Management & Data Systems 119, Nr. 8 (09.09.2019): 1581–607. http://dx.doi.org/10.1108/imds-02-2019-0066.

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Purpose In light of the lack of subjective criteria and scientific rationality in current sustainability performance assessment, the purpose of this paper is conducted to improve the sustainability performance assessment of high-tech firms by developing a hybrid approach that integrates quantitative and qualitative research methods. Design/methodology/approach This study proposed a hybrid approach that integrates word frequency analysis, cluster analysis, grey theory and the decision-making and trial evaluation laboratory (DEMATEL) method. Specifically, this study identifies useful criteria using quantitative word frequency analysis as well as qualitative literature research. Then, cluster analysis is used to divide these criteria into different categories. Subsequently, this study applies the grey theory associated with the DEMATEL method to assess the sustainability performance of high-tech firms. Findings The results reveal that the socio-environment is an important aspect underlying the corporate sustainability performance of high-tech firms. Therefore, high-tech firms should enhance their pollution emission control capabilities and increase investment in energy-conservation and emission-reduction technologies to drive sustainable development. In addition, increasing green product sales revenue and improving the guiding capability of green consumption are core issues that firms must address. Originality/value This study assesses the sustainability performance of high-tech firms by applying a hybrid method. This method can be used to construct a framework for scientific sustainability performance assessment and to provide a clear direction for the sustainable development of firms.
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Chen, Te Fu, Chieh Heng Ko, Chien Chao Huang und Wen Cheng Wang. „Green Management in High-Tech Industry: A Case Study of Samsung“. Advanced Materials Research 869-870 (Dezember 2013): 737–40. http://dx.doi.org/10.4028/www.scientific.net/amr.869-870.737.

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The study adopts the model of sustainable development: three overlapping spheres (environment, society and economy) to examine green management in high-tech industry and through the case study of Samsung. Samsung Electronics adopted guidelines for protecting the environment and preserving human life on earth. The organization launched Green Management, which embodies 5 concepts: greening of Management, greening of Product, greening of Processes, greening of Workplace, and greening of Communities. The division has implemented the greening of management, products, procedures, workplaces, and local communities, by practicing focused green management. As declared in the ESH Policy, the Samsung Semiconductor Division considers environment, safety, and health as the key factors of its corporate management. To clean up and protect the environment and preserve life on earth, Samsung Electronics conducts extensive activities that integrate the concepts of environment, safety, health, and disaster prevention as the key factors of green management.
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Marvin, Donald R. „The Second Green Revolution Will Bring Agri-Tech Breakthroughs to Growers“. Industrial Biotechnology 14, Nr. 3 (Juni 2018): 120–22. http://dx.doi.org/10.1089/ind.2018.29129.drm.

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Huang, Yi-Chun, und Chih Ta Chen. „Exploring institutional pressures, firm green slack, green product innovation and green new product success: Evidence from Taiwan's high-tech industries“. Technological Forecasting and Social Change 174 (Januar 2022): 121196. http://dx.doi.org/10.1016/j.techfore.2021.121196.

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Han, Kenneth N. „Editorial for Special Issue “Leaching of Rare Earth Elements from Various Sources”“. Minerals 11, Nr. 2 (04.02.2021): 164. http://dx.doi.org/10.3390/min11020164.

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Rare earth elements (REEs) have become an important group of metals used in many high-tech industries, including high-strength magnets, plasma TVs, various military applications, and clean and efficient green energy industries [...]
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Chen, Te Fu, Chieh Heng Ko, Chien Chao Huang und Wen Cheng Wang. „Green Management in High-Tech Industry: A Case Study of Sony Group“. Advanced Materials Research 869-870 (Dezember 2013): 754–57. http://dx.doi.org/10.4028/www.scientific.net/amr.869-870.754.

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The purpose of this study is to explore and under purpose of green management, including both from the perspective of business management and the practitioners, the perspective of business management is the triple-bottom-line which consists of the environmental benefits, positive economics effect, and healthy societal images. The triple bottom line captures an expanded spectrum of values and criteria for measuring organizational (and societal) success: economic, ecological and social. Based on the perspective of the practitioners, this study will address two questions: First, what is the Environmental Positioning: Branding for green management? Secondly, what are some of the concerns (Environmental impact, the Economics, the Society)? Furthermore, this study discusses the case study of corporate company that has implemented green management practices. The analysis and understanding and the purpose of green management have been explored through the case study of Sony. As such, a detailed analysis of green management in high-tech industry has been covered.
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Sambhanthan, Arunasalam, und Vidyasagar Potdar. „Green Business Practices for Software Development Companies“. International Journal of Enterprise Information Systems 11, Nr. 3 (Juli 2015): 13–26. http://dx.doi.org/10.4018/ijeis.2015070102.

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This paper reports the findings of a text analysis of the corporate sustainability reports of eleven large scale Indian Software Development Businesses for the period of 2012 to 2014. The results shows that there are twenty two reported components of software development sustainability namely green buildings, green energy, green factory, green data centres, green infrastructure, green initiatives, green innovation, green packaging, green portfolio, green power, green practices, green procurement, green products, green program, green rating, green solutions, green space, green team, green tech and green supply chain which are addressed in the published reports of Indian software development businesses. The reports were further analysed to infer some knowledge on how the software development companies could contribute to green environment and the possible environmental impacts of these contributions. Finally a number of generalised conclusions were derived and followed by a set of implications for best practices in green software development as the outcome of the research reported in this paper.
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Xu, Cong Huai, Xiao Fei Xu, Peng Zang und Shu Chen Xu. „Techniques + Arts - On the Architectural Creation for Green and High-Tech Buildings“. Advanced Materials Research 243-249 (Mai 2011): 6548–53. http://dx.doi.org/10.4028/www.scientific.net/amr.243-249.6548.

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Along the context of technological development, architectural development experienced the raw type technical period; the combined period of art and technology; and that of technology, art and ecology three combined as one. Now, the context and the place of high emotion associated are again merge into high-tech buildings. Combined with our practice of creation, this paper introduces and advocates this new direction of the development of technology.
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Goel, Seema. „Wool is 44% Carbon“. Leonardo 45, Nr. 2 (April 2012): 186–87. http://dx.doi.org/10.1162/leon_a_00302.

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Carbon Footprint is one of the Lovely Weather Donegal Residencies projects initiated by Leonardo/Olats and the Regional Cultural Centre of Donegal. It is a process-based work using Inishowen sheep wool and hand spinning as the primary metaphors to articulate the intrinsic relationship between climate change and economics. This project works to rejuvenate the use of local wool and low-tech/slow-tech making by returning the site of production to the individual. This frames the material and making as political acts, de-coupling the link between green house gas emissions and gross domestic product.
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Chen, Huangxin, Hang Lin und Wenjie Zou. „Research on the Regional Differences and Influencing Factors of the Innovation Efficiency of China’s High-Tech Industries: Based on a Shared Inputs Two-Stage Network DEA“. Sustainability 12, Nr. 8 (17.04.2020): 3284. http://dx.doi.org/10.3390/su12083284.

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Innovation ability has become one of the core elements in the pursuit of China’s green growth, and high-tech industries are playing a leading role in technological innovation in China. With the rapid development of China’s high-tech industries, their innovation efficiency has attracted widespread attention. This article aims to illustrate a shared inputs two-stage network Data Envelopment Analysis (DEA), to measure the innovation efficiency of high-tech industries in China’s 29 provinces from 1999 to 2018. The results indicate that there are obvious differences in the innovation efficiency of the provinces. The technology development efficiency, the technical transformation efficiency, and the overall innovation efficiency of the developed east coast provinces are generally higher than those of the backward central and western provinces. This article further applies the spatial econometrics model to analyze the factors influencing the innovation efficiency of high-tech industries. We have found that government support, R&D input intensity, industries aggregation, economic extroversion, and the level of development of the modern service industries cause varying degrees of impact on innovation efficiency.
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Liao, Hung-Yi, Chin-Tien Hsu und Hsiao-Chi Chiang. „HOW DOES GREEN INTELLECTUAL CAPITAL INFLUENCE EMPLOYEE PRO-ENVIRONMENTAL BEHAVIOR? THE MEDIATING ROLE OF CORPORATE SOCIAL RESPONSIBILITY“. International Journal of Management Studies 28, Number 2 (15.07.2021): 27–47. http://dx.doi.org/10.32890/ijms2021.28.2.2.

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The issue of environmental protection in the twenty-first century has played a relatively critical role in business management. Companies developing green intellectual capital can increase their competitive advantage and may influence employees’ attitudes and behavior regarding environmental protection. This research explored the mediating effects of corporate social responsibility (CSR) on the relationship between green intellectual capital and employees’ proenvironmental behavior. Data was obtained from surveys collected from 461 employees in the high-tech industries in Taiwan. The results revealed that green human capital and green relational capital were positively related to the perception of CSR. Moreover, the perception of CSR mediated the associations between green human capital, green relational capital and employees’ pro-environmental behavior. Implications of the findings, including limitations and future research directions are discussed.
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Sitkin, Alan. „Green business and local economies“. Soundings 72, Nr. 72 (01.08.2019): 133–44. http://dx.doi.org/10.3898/soun.72.09.2019.

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The article focuses on how the green agenda can be progressed through practical steps at the local government level. The author draws on his time as a councillor in the London Borough of Enfield, where he combined his interests in regeneration and sustainability. He argues that environmental sustainability should be viewed as a prime policy consideration in all levels of government; and that a green business logic should be applied when assessing the viability of initiatives in this area. Local government is in a relatively good position for green business investment. However, the sums of money required mean that external counterparts and commercial interests are also needed. The article describes initiatives to support the local private green-tech sector, and the founding of a low-carbon heat-from-waste company, energetik, whose next stage involves building an energy centre adjacent to the North London Waste Authority's waste facility.
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Hung, Yi-Chun, und Hung-Bin Ding. „Green Creativity and New Product Performance from Taiwanese High-Tech Sectors: The Moderating Role of Family Involvement“. Journal of Enterprising Culture 29, Nr. 01 (März 2021): 41–63. http://dx.doi.org/10.1142/s0218495821500035.

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This study examines the influence of green creativity to the green new product performances. Creativity is a key source of organization’s competitive advantage (Barney, 1991) and increases the likelihood of new product success by providing effective product differentiation (Song, 2018). Building on the thesis of Natural Resource-based view (Hart, 1995), we study the impact of green creativity on the performances of green new products. This study also shows that family involvement plays a role in the green performances of family businesses. We pay particular attention to family firms because of two reasons. First, family businesses represent a significant proportion of the corporate sector in both developed and developing countries (Faccio and Lang 2002). Second, family firms have different behavioral patterns when reacting to stakeholders’ pressures (Huaang, Ding, and Kao, 2009; Sharma and Sharma, 2011) for better environmental management practices. This study surveyed 134 family-owned, high-tech manufacturers in Taiwan. The findings show that the green creativity is positively and significantly related to green new product performances. Our analytical results also show that family involvement moderates the relationship between green creativity and green new product performances.
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Huang, Kai, Zhong Feng Zhang, Zhen Ping Tao und Huan Liu. „Study on Key Technologies of the Green Furniture Design“. Applied Mechanics and Materials 224 (November 2012): 208–11. http://dx.doi.org/10.4028/www.scientific.net/amm.224.208.

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The furniture manufacturing industry brings human rich material civilization, but also leads to the ecological crisis at the cost of the resource exhaustion and environmental degradation. By introducing the necessity and urgency of studying on the key technologies of green furniture design, it analyzed the rich contents of green furniture design. And then it discussed the key technologies of green furniture design in detail from the four aspects of choosing furniture materials, structural design, process design, and design for recycling. Finally, it pointed out that the breakthroughs in key tech-nologies of green furniture design have great practical significance to our country, which would make our country create a powerful transformation from the furniture high-carbon consumption and man-ufacturing power to the green consumption and creative power.
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Sbardella, Angelica, François Perruchas, Lorenzo Napolitano, Nicolò Barbieri und Davide Consoli. „Green Technology Fitness“. Entropy 20, Nr. 10 (10.10.2018): 776. http://dx.doi.org/10.3390/e20100776.

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The present study provides an analysis of empirical regularities in the development of green technology. We use patent data to examine inventions that can be traced to the environment-related catalogue (ENV-Tech) covering technologies in environmental management, water-related adaptation and climate change mitigation. Furthermore, we employ the Economic Fitness-Complexity (EFC) approach to assess their development and geographical distribution across countries between 1970 and 2010. This allows us to identify three typologies of countries: leaders, laggards and catch-up. While, as expected, there is a direct relationship between GDP per capita and invention capacity, we also document the remarkable growth of East Asia countries that started from the periphery and rapidly established themselves as key actors. This geographical pattern coincides with higher integration across domains so that, while the relative development of individual areas may have peaked, there is now demand for greater interoperability across green technologies.
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Nasreen, Abida, Ghulam Mustafa, Muhammad Iqbal und Muhammad Ashfaq. „Viability of Eggs of Green Lacewing Harvested by Am-tech and Other Methods“. Pakistan Journal of Biological Sciences 7, Nr. 1 (15.12.2003): 126–27. http://dx.doi.org/10.3923/pjbs.2004.126.127.

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38

Mihranyan, Albert. „Cellulose from cladophorales green algae: From environmental problem to high-tech composite materials“. Journal of Applied Polymer Science 119, Nr. 4 (01.09.2010): 2449–60. http://dx.doi.org/10.1002/app.32959.

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39

Kang, Ribuga. „Investigating alliance network changes in the green-tech industry with alliance partner distance“. Academy of Management Proceedings 2012, Nr. 1 (Juli 2012): 16451. http://dx.doi.org/10.5465/ambpp.2012.16451abstract.

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40

Yen, Yu-Xiang, und Shang-Yung Yen. „Top-management's role in adopting green purchasing standards in high-tech industrial firms“. Journal of Business Research 65, Nr. 7 (Juli 2012): 951–59. http://dx.doi.org/10.1016/j.jbusres.2011.05.002.

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41

Henze, Mogens. „Trends in advanced wastewater treatment“. Water Science and Technology 35, Nr. 10 (01.05.1997): 1–4. http://dx.doi.org/10.2166/wst.1997.0345.

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The paper examines the present trends within wastewater handling and treatment. The trend is towards the extremes, either local low-tech treatment or centralized advanced treatment plants. The composition of the wastewater will change and it will be regarded as a resource. There will be more emphasis on the sustainable aspects, on green accounting and on the health aspects.
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Ahn, Yong Han, und Annie R. Pearce. „Green Construction: Contractor Experiences, Expectations, and Perceptions“. Journal of Green Building 2, Nr. 3 (01.08.2007): 106–22. http://dx.doi.org/10.3992/jgb.2.3.106.

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As the benefits of green building continue to change the Architecture/Engineering/Construction industry and the number of green projects rises in the United States due to market changes, more construction firms are gaining experience with this new way of building and changing their expectations for new hires from degree-granting construction programs. This paper documents a baseline study of contractor experiences, expectations, and perceptions associated with green building conducted in Fall 2006. The study was based on detailed survey results from 87 different companies recruiting from three major university construction programs in the eastern United States (Auburn, Purdue, and Virginia Tech). The survey collected data regarding current experience levels and capabilities of companies with regard to green construction, corporate expectations of new hires in terms of green construction knowledge and skills, and respondent expectations and perceptions about the future of the industry with regard to green projects. The findings of this study support the growing importance of green building as a component of the whole construction market and provide a benchmark against which to measure future changes in the industry over time.
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Chebotaev, Alik, Andrey M. Ivakhnenko, Vladimir Belyaev, Andrey A. Ivakhnenko und Ekaterina Faddeeva. „Evolution of the “Ecology” of the Transport Complex“. MATEC Web of Conferences 334 (2021): 02035. http://dx.doi.org/10.1051/matecconf/202133402035.

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The article is devoted to the interaction between the transportation sector and the environment in terms of global emission of greenhouse gas CO2 during combustion of various types of motor fuels. We offer a closed-tech recycling CO2 cycle by natural environment without using non-renewable oil fuels. Offered rate principles of green, characterized a complex level of vehicle impact on human environment.
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Rostova, Olga, Svetlana Shirokova, Natalya Sokolitsyna und Anastasiia Shmeleva. „Management of investment process in alternative energy projects“. E3S Web of Conferences 110 (2019): 02032. http://dx.doi.org/10.1051/e3sconf/201911002032.

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The article is devoted to the problem of creating favorable conditions and incentives for attracting investments in alternative energy projects in the regions. An analysis of Russian practice in the field of “green” financing showed that individual projects are being effectively implemented, but there is no established mechanism for attracting investments for “green” energy projects in the regions. The implementation of high-tech projects requires large amounts of investment, but in most cases, “green” business models are of high-risk and require a set of additional measures and incentives. The study suggests approach to the management of investment processes in regional alternative energy projects in accordance with the concept of green economy, formulates management algorithm, and gives full description of each stage. This work recommendations and results can be used in needed regions investment attractiveness raise measures elaboration for alternative energy projects realization.
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Li, Die, und Sumin Hu. „How Does Technological Innovation Mediate the Relationship between Environmental Regulation and High-Quality Economic Development? Empirical Evidence from China“. Sustainability 13, Nr. 4 (19.02.2021): 2231. http://dx.doi.org/10.3390/su13042231.

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Technological innovation is considered to be an effective way to promote the quality of economic development and green transition under environmental policies, while the specific mechanism of this process is still unclear. Thus, the purpose of this paper was to examine how technological innovation mediates the relation between environmental regulation and high-quality economic development. Based on the panel data of 34 industries in China from 2007 to 2015, this paper firstly calculated the green total factor productivity (GTFP) as a proxy variable for the quality of economic development through the super-slack-based measure model, and then analyzed the impact of environmental regulation and technical innovation on the GTFP by making use of the mediation effect model. The results showed that environmental-related policy directly affected the GTFP while technological innovation indirectly moderated this process, where the moderate impact of technological innovation was industrial heterogeneous. Specifically, the relation between environmental regulation and GTFP was positively and partially moderated by technological innovation in clean industries and high-tech industries, while positively but completely moderated by technological innovation in low-and medium-tech industries. Moreover, the mediating effect of technological innovation in pollution-intensive industries was positive but insignificant.
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Pakura, Stefanie, und Helena Marie-Luise Bühler. „At the interface between Open Innovation and Green-Tech Start-Ups. A qualitative analysis.“ Academy of Management Proceedings 2017, Nr. 1 (August 2017): 16714. http://dx.doi.org/10.5465/ambpp.2017.16714abstract.

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Jabbour, Ana Beatriz Lopes de Sousa, Fernanda de Souza Azevedo, Ariana Fernandes Arantes und Charbel José Chiappetta Jabbour. „Green supply chain management in local and multinational high-tech companies located in Brazil“. International Journal of Advanced Manufacturing Technology 68, Nr. 1-4 (09.04.2013): 807–15. http://dx.doi.org/10.1007/s00170-013-4945-6.

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48

Yang, Chia-Chen, Shang-Ling Ou und Li-Chang Hsu. „A Hybrid Multi-Criteria Decision-Making Model for Evaluating Companies’ Green Credit Rating“. Sustainability 11, Nr. 6 (13.03.2019): 1506. http://dx.doi.org/10.3390/su11061506.

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Along with economic development and social progress, environmental issues are increasingly becoming the subject of public concern. Through green credit, banks intentionally direct money into resource-conserving technology development and environmental protection industries, thus, encouraging enterprises to focus on green products. Therefore, establishing a reasonable green credit evaluation mechanism for banks is an important issue. Based on this, this study combines grey relational analysis (GRA), the Decision-Making Trial and Evaluation Laboratory technique (DEMATEL), analytic network process (ANP) and the Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS) to develop a hybrid multi-criteria decision-making (MCDM) model for quantifying data and, thereby, to establish a green credit rating mechanism. In order to verify the model, this study combines credit risk and economic, environmental and social performance evaluation criteria as green credit evaluation criteria. There are 55 high-tech listed companies in Taiwan in 2014 taken as the evaluation objects and conducted for a performance ranking. The empirical results can serve as a reference for financial authorities promoting green finance policies and for investors making investment decisions.
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Трещевская, Ella Treshchevskaya, Тихонова und Elena Tikhonova. „Biological productivity tree species in Kursk plantations technogenic landscapes magnetic anomaly“. Forestry Engineering Journal 5, Nr. 3 (15.11.2015): 122–29. http://dx.doi.org/10.12737/14160.

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The analysis of man of organic subterranean and ground matter was performed among av-erage model trees. The increase in the mass of roots and ground biomass of the two layers tech-nozem with thick fertile layer was detected. In technogenic dump landscapes special reclamation importance is attached to green parts of plants. Forest protects the surface of slopes from destruc-tion, increases the concentration of nitrogen and ash elements in the fertile layer. The role of plantations in the transformation of the waste lands increase when mass of green assimilative organs increases. The fast growth of the trunk and larger branches of plants begins in 6-9 years.
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Hou, Fang Miao. „Financial Subsidies and their Effects on Environment-Friendly Products Supply in Green Supply Chain“. Advanced Materials Research 712-715 (Juni 2013): 3038–43. http://dx.doi.org/10.4028/www.scientific.net/amr.712-715.3038.

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The supply of environment-friendly products is an integral part of the green supply chain. Due to such reasons as lack of high-tech and lack of price competitiveness in contrast to traditional products, the manufacturers will not have incentive to produce and supply green products, so the Government should grant financial subsidies to producers which will compensate the profits entitled to them. Through the analysis based on game theory, the article concludes that there is disadvantage in constant subsidy and the variable subsidies will have more positive effects on the supply of environment-friendly products since the subsidy amount varies with the production scale.
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