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1

Parthasarathy, Gautham. "Process integration toward environmental impact reduction." Environmental Progress 24, no. 2 (2005): 136. http://dx.doi.org/10.1002/ep.10084.

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SAKAI, Koji, Yu MASUDA, Tsuyoshi KOUNO, Mitsuhiro ISHI, and Kei TAKENAKA. "ENVIRONMENTAL IMPACT-REDUCTION CONCRETE USING FLY ASH." Doboku Gakkai Ronbunshuu E 65, no. 3 (2009): 332–42. http://dx.doi.org/10.2208/jsceje.65.332.

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3

Mehrotra, Pankaj K. "Reduction of environmental impact in hardmetal technologies." Metal Powder Report 72, no. 4 (2017): 267–70. http://dx.doi.org/10.1016/j.mprp.2016.02.052.

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4

Morosuk, T., G. Tsatsaronis, and C. Koroneos. "Environmental impact reduction using exergy-based methods." Journal of Cleaner Production 118 (April 2016): 118–23. http://dx.doi.org/10.1016/j.jclepro.2016.01.064.

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5

Chang, Andrew S., Claudia Canelas, and Yi-Ling Chen. "Relationships between Environmental Initiatives and Impact Reductions for Construction Companies." Sustainability 13, no. 14 (2021): 8061. http://dx.doi.org/10.3390/su13148061.

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A company undertakes environmental initiatives to reduce environmental impact from their activities; however, the impact reduction effect of these initiatives is not clear. This study investigated the environmental initiatives and impact indicators disclosed in forty corporate social responsibility (CSR) reports of construction companies and determined the relationships between the initiatives and indicators. The results demonstrated that the likelihood of an initiative reducing environmental impacts was approximately 25% on average, meaning that one in four companies was able to successfully
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6

YANAGISAWA, Mitsuo. "ENVIRONMENTAL LOAD REDUCTION AND ENVIRONMENTAL IMPACT ASSESSMENT OF RAILWAY PROJECT." Proceedings of the Symposium on Global Environment 11 (2003): 139–44. http://dx.doi.org/10.2208/proge.11.139.

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7

Mendonça, P., and B. Martins. "Environmental Impact Reduction from Using Local Natural Construction Materials: Case Study in the North of Portugal." International Journal of Environmental Science and Development 6, no. 11 (2015): 833–37. http://dx.doi.org/10.7763/ijesd.2015.v6.708.

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8

Weg (Peter), Pieter Broer van der. "Reduction of Environmental Impact of Drum Machine Washing." Journal of Applied Mathematics and Physics 08, no. 01 (2020): 132–57. http://dx.doi.org/10.4236/jamp.2020.81011.

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OHMORI, Shigetoshi, Haruhisa SAKAMOTO, and Shinji SHIMIZU. "Semi-cold-air Supply System for Environmental Impact Reduction and Its Application to Surface Grinding(Grinding technology)." Proceedings of International Conference on Leading Edge Manufacturing in 21st century : LEM21 2005.2 (2005): 641–46. http://dx.doi.org/10.1299/jsmelem.2005.2.641.

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10

Al-Mutairi, Eid M., and Mahmoud M. El-Halwagi. "Environmental-impact reduction through simultaneous design, scheduling, and operation." Clean Technologies and Environmental Policy 12, no. 5 (2009): 537–45. http://dx.doi.org/10.1007/s10098-009-0259-7.

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11

Grimalt, Joan O., Stephan Böse-O’Reilly, and Peter van den Hazel. "Steps forward reduction of environmental impact on children’s health." Environmental Research 164 (July 2018): 184–85. http://dx.doi.org/10.1016/j.envres.2018.02.015.

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12

Daniels, Teresa, Melissa Earlywine, and Vicki Breeding. "Environmental services impact on healthcare–associated Clostridium difficile reduction." American Journal of Infection Control 47, no. 4 (2019): 400–405. http://dx.doi.org/10.1016/j.ajic.2018.09.016.

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13

DURNING, BRIDGET. "BENEFITS OF COUPLING ENVIRONMENTAL ASSESSMENT AND ENVIRONMENTAL MANAGEMENT TO AID DISASTER RISK REDUCTION AND MANAGEMENT." Journal of Environmental Assessment Policy and Management 16, no. 03 (2014): 1450029. http://dx.doi.org/10.1142/s146433321450029x.

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The tsunami which devastated Japan in 2011 highlighted the consequences of natural disasters on an area considered to be "best prepared" for such an event. Learning from the direct environmental, social and economic impacts and temporally and spatially displaced indirect global impacts, is important. When seeking to identify and mitigate the impact of proposed developments the process is carried out from two distinct perspectives: "before" and "after" implementation with environmental impact assessment and environmental management the main "instruments" on either side. Drawing on examples from
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14

Hischier, Roland, Francesca Reale, Valentina Castellani, and Serenella Sala. "Environmental impacts of household appliances in Europe and scenarios for their impact reduction." Journal of Cleaner Production 267 (September 2020): 121952. http://dx.doi.org/10.1016/j.jclepro.2020.121952.

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15

TANAKA, Hidetoshi, and Masakata SHIMIZU. "Environmental Impact Mitigation by Using Coal-Based Direct Reduction Technology." Journal of MMIJ 125, no. 12 (2009): 630–34. http://dx.doi.org/10.2473/journalofmmij.125.630.

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16

I.E., Mazina, Gangan P.P., and Phan Tuan Anh. "Reduction in environmental impact of underground coal mining with backfilling." Mining Informational and analytical bulletin 2 (2019): 28–35. http://dx.doi.org/10.25018/0236-1493-2019-02-0-28-35.

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17

Álvarez, Ramón, Carmen Clemente, and Dulce Gómez-Limón. "Reduction of Thermal Coals Environmental Impact by Nitric Precombustion Desulfurization." Environmental Science & Technology 31, no. 11 (1997): 3148–53. http://dx.doi.org/10.1021/es970112z.

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18

Tanabe, Tada-aki, Ikuo Sugiyama, and Keitetsu Rokugo. "New JSCE Code for Environmental Impact Reduction in Structural Design." IABSE Symposium Report 86, no. 20 (2002): 95–110. http://dx.doi.org/10.2749/222137802796335064.

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19

Demertzi, Martha, Rui Pedro Silva, Belmira Neto, Ana Cláudia Dias, and Luís Arroja. "Cork stoppers supply chain: potential scenarios for environmental impact reduction." Journal of Cleaner Production 112 (January 2016): 1985–94. http://dx.doi.org/10.1016/j.jclepro.2015.02.072.

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20

Adhikari, Biraj, and Trakarn Prapaspongsa. "Environmental Sustainability of Food Consumption in Asia." Sustainability 11, no. 20 (2019): 5749. http://dx.doi.org/10.3390/su11205749.

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This study assesses the environmental sustainability of food consumption in Thailand, India, China, Japan, and Saudi Arabia by using a life cycle assessment. These five Asian countries were selected according to the differences in surface area, population density, GDP, and food consumption patterns. The data were obtained from Food and Agriculture Organization food balance sheets, Ecoinvent 3.4 and Agri-footprint 4.0 databases, and scientific publications. The environmental impact categories chosen were global warming, terrestrial acidification, eutrophication, eco-toxicity, human toxicity, an
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21

Kabanshi, Alan. "Are We Overestimating the Benefits of Emission Reduction Measures?" Sustainability 12, no. 3 (2020): 808. http://dx.doi.org/10.3390/su12030808.

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When people evaluate the environmental impact of both “environmentally” and “non-environmentally” friendly objects, actions, or behavior, their judgement of the total set in combination is lower than the sum of the individual components. The current communication is a personal perspective article that proposes a human cognitive framework that is adopted during evaluations, which consequently results in wrong reasoning and the reinforcement of misconceptions. The framework gives plausible interpretation of the following: (1) “compensatory green beliefs”—the belief that environmentally harmful b
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22

Sefidvash, Farhang, Ehsan Amozegar, Sumer Sahin, Do Minh, and Ha Thong. "Reduction of Environmental Impact of Fixed Bed Nuclear Reactor (FBNR) Waste." Physical Science International Journal 10, no. 4 (2016): 1–9. http://dx.doi.org/10.9734/psij/2016/25287.

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23

Kellens, K., W. Dewulf, B. Lauwers, J. P. Kruth, and J. R. Duflou. "Environmental Impact Reduction in Discrete Manufacturing: Examples for Non-Conventional Processes." Procedia CIRP 6 (2013): 27–34. http://dx.doi.org/10.1016/j.procir.2013.03.003.

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24

Prathap, P., S. Madhu, V. Jayakumar, and N. Tamil Selvam. "Environmental impact reduction in a pump sub assembly using alternate material." Materials Today: Proceedings 22 (2020): 806–10. http://dx.doi.org/10.1016/j.matpr.2019.10.157.

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25

SAITO, Hisashi, Motohiro NISHI, Yasunori SUZUKI, and Tetsuo KOBAYASHI. "CONCRETE USING PORTLAND BLAST FURNACE SLAG CEMENT FOR ENVIRONMENTAL IMPACT REDUCTION." Cement Science and Concrete Technology 64, no. 1 (2010): 309–15. http://dx.doi.org/10.14250/cement.64.309.

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26

Fletcher, K. T. "Design, the Environment and Textiles: Developing Strategies for Environmental Impact Reduction." Journal of the Textile Institute 89, no. 3 (1998): 72–80. http://dx.doi.org/10.1080/00405009808658684.

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27

Abdulwahab, Areej Muhy, Halla A. Torki, and Abbas F. Jaism. "The Environmental Impact Reduction of Highway Traffic Congestion using Sustainable Tool." IOP Conference Series: Materials Science and Engineering 870 (July 18, 2020): 012076. http://dx.doi.org/10.1088/1757-899x/870/1/012076.

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28

FUJITSUKA, Tetsuro. "Establishment of Indonesian Eco-labeling and its environmental impact reduction effect." Proceedings of the Symposium on Global Environment 15 (2007): 231–36. http://dx.doi.org/10.2208/proge.15.231.

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29

Lockrey, Simon, Karli Verghese, Enda Crossin, and Gordon Young. "Development of an environmental impact reduction strategy for Australia's Antarctic infrastructure." Journal of Industrial Ecology 24, no. 4 (2020): 804–14. http://dx.doi.org/10.1111/jiec.12970.

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30

Leiva, F. J., J. García, E. Martínez, E. Jiménez, and J. Blanco. "Scenarios for the reduction of environmental impact in Agaricus bisporus production." Journal of Cleaner Production 143 (February 2017): 200–211. http://dx.doi.org/10.1016/j.jclepro.2016.12.129.

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31

Chen, Qishi, and Wenzhuo Li. "An approach to potential environmental impact reduction in chemical reaction processes." Clean Technologies and Environmental Policy 10, no. 1 (2007): 97–105. http://dx.doi.org/10.1007/s10098-007-0097-4.

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32

Dong, Duc Tuan, and Wei Cai. "Life-cycle assessment of ships: The effects of fuel consumption reduction and light displacement tonnage." Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment 234, no. 1 (2019): 143–53. http://dx.doi.org/10.1177/1475090219858810.

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Life-cycle assessment has been widely applied in many industry sectors for years and there are some applications of this method in the shipping sector. Fuel consumption and material consumption are considered as crucial factors in the life cycle of ship. This study uses the life-cycle assessment method to show the effects of fuel consumption reduction and light displacement tonnage on the environmental performance of ships. This is done by comparing the environmental impacts of 25 investigated scenarios with different fuel consumption and light displacement tonnage. CML2001 methodology is used
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33

Lazreg, Marwa, and Ezzeddine Zouari. "The Relationship Between FDI, Poverty Reduction and Environmental Sustainability in Tunisia." Journal of Economics and Management Sciences 1, no. 1 (2018): p114. http://dx.doi.org/10.30560/jems.v1n1p114.

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Our goal in this paper is the study of the impact of FDI on poverty and sustainable development in the case of Tunisia and during the study period from 1985 to 2015. In addition, we use the test unit root of cointegration test, the model error correction of FMOLS and Granger causality. In the case of Tunisia, we find that all variables are integrated of order 1. Thus, we can use the cointegration test. Indeed, the result of the null hypothesis test of no cointegration was rejected at the 5% threshold, which explains the presence of a cointegration relationship between FDI, sustainable developm
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34

Sȩdziwy, Adam, Artur Basiura, and Igor Wojnicki. "Roadway Lighting Retrofit: Environmental and Economic Impact of Greenhouse Gases Footprint Reduction." Sustainability 10, no. 11 (2018): 3925. http://dx.doi.org/10.3390/su10113925.

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Roadway lighting retrofit is a process continuously developed in urban environments due to both installation aging and technical upgrades. The spectacular example is replacing the high intensity discharge (HID) lamps, usually high pressure sodium (HPS) ones, with the sources based on light-emitting diodes (LED). The main focus in the related research was put on energy efficiency of installations and corresponding financial benefits. In this work, we extend those considerations analyzing how lighting optimization impacts greenhouse gas (GHG) emission reduction and what are the resultant financi
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35

Gurko, Anna, Svetlana Oparina, Lidia Vasyutkina, and Elena Potekhina. "The environmental investments justification." E3S Web of Conferences 91 (2019): 08029. http://dx.doi.org/10.1051/e3sconf/20199108029.

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The article reveals the problems of improving environmental impact assessment and justification of the economic investments of industrial enterprises. The existing tools for environmental impact assessment are analyzed, information on the role and place of environmental impact assessment and investment design in the justification of the planned economic activity is systematized. For this purpose, considerable attention is paid to the analysis and synthesis of existing methodological approaches to this problem. The authors propose to consider environmental impact assessment and justification of
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36

Hegedić, Miro, Nedeljko Štefanić, and Mladen Nikšić. "Assessing the Environmental Impact of the Self-propelled Bulk Carriage through LCA." PROMET - Traffic&Transportation 30, no. 3 (2018): 257–66. http://dx.doi.org/10.7307/ptt.v30i3.2445.

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Environmental sustainability of the transport sector is a highly important issue today. The European Commission has made a goal of delivering a minimum 60% reduction in greenhouse gas emissions from transport by 2050. Part of this reduction will come from the railway sector by making the maintenance processes more environmentally friendly. This paper presents the results of the environmental assessment of the self-propelled bulk carriage (SPBC), an innovative new product aiming to decrease the environmental impact of the railway maintenance processes. The life cycle assessment (LCA) methodolog
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37

Smith, Tracy T., Eric C. Donny, Xianghua Luo, et al. "The Impact of Gradual and Immediate Nicotine Reduction on Subjective Cigarette Ratings." Nicotine & Tobacco Research 21, Supplement_1 (2019): S73—S80. http://dx.doi.org/10.1093/ntr/ntz158.

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Abstract Background A recent clinical trial showed that an immediate transition to very low nicotine content (VLNC) cigarettes, compared with a gradual transition, produced greater reductions in smoking behavior, smoke exposure, and dependence. However, there was less compliance with the instruction to smoke only VLNC cigarettes in the immediate versus gradual reduction condition. The goal of this study was to test whether nicotine reduction method alters subjective ratings of VLNC cigarettes, and whether subjective ratings mediate effects of nicotine reduction method on smoking behavior, smok
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38

Nakano, Kazuko, Hiroyuki Miura, and Yasuhiko Wada. "The Evaluation of Environmental Impact Reduction by the Waste Asphalt Concrete Recycling." Doboku Gakkai Ronbunshu, no. 559 (1997): 81–89. http://dx.doi.org/10.2208/jscej.1997.559_81.

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39

Mavrin, Vadim, Kirill Magdin, Vladimir Shepelev, and Igor Danilov. "Reduction of environmental impact from road transport using analysis and simulation methods." Transportation Research Procedia 50 (2020): 451–57. http://dx.doi.org/10.1016/j.trpro.2020.10.053.

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40

V, Bindhu, and Vijesh joe S. "GREEN CLOUD COMPUTING SOLUTION FOR OPERATIONAL COST EFFICIENCY AND ENVIRONMENTAL IMPACT REDUCTION." Journal of ISMAC 01, no. 02 (2019): 40–48. http://dx.doi.org/10.36548/jismac.2019.2.005.

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Cloud computing provides information technology based services based on utilities to users across the globe. Application hosting for business, consumers and scientific domains is made possible with cloud computing. However, the data centres used for this purpose consume large amount of energy. This increases the operational cost and contribute carbon footprint affecting the environment. With increasing energy scarcities and global climate changes, it is essential to control power consumption. This paper presents a green cloud computing solution that addresses the issues of operational cost red
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41

KOBAYASHI, Kensuke, Kunihisa WAKABAYASHI, Koki FUJITSU, and Sayaka TANIGUCHI. "WOODY RESOURCE UTILIZATION FOR ENVIRONMENTAL IMPACT REDUCTION WITH FOCUS ON BUILDING INDUSTRY." Journal of Environmental Engineering (Transactions of AIJ) 84, no. 765 (2019): 1019–27. http://dx.doi.org/10.3130/aije.84.1019.

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42

Calabrese, Giuseppe. "Outlining policy responses to stimulate automotive car demand by environmental impact reduction." Journal of Environmental Planning and Management 58, no. 1 (2013): 55–68. http://dx.doi.org/10.1080/09640568.2013.839940.

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43

Başoğul, Yusuf, Cihan Demircan, and Ali Keçebaş. "Determination of optimum insulation thickness for environmental impact reduction of pipe insulation." Applied Thermal Engineering 101 (May 2016): 121–30. http://dx.doi.org/10.1016/j.applthermaleng.2016.03.010.

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44

Cianciarullo, Mauro Iwanow. "Green construction– reduction in environmental impact through alternative pipeline water crossing installation." Journal of Cleaner Production 223 (June 2019): 1042–49. http://dx.doi.org/10.1016/j.jclepro.2019.03.131.

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45

Chiu, Yi-Wen. "Environmental Implications of Taiwanese Oolong Tea and the Opportunities of Impact Reduction." Sustainability 11, no. 21 (2019): 6042. http://dx.doi.org/10.3390/su11216042.

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Tea is the second most consumed beverage globally, yet its environmental implications are largely unknown. To overcome this knowledge gap, life-cycle analysis was conducted aiming to quantify the environmental impacts associated with tea production and consumption. To achieve this objective, Oolong tea production in Taiwan was selected to investigate the life-cycle impact in global warming potential (GWP) and eutrophication potential (EP) associated with one serving of hot tea consumed in Taiwan domestically and the international market in the U.S. and U.K. The results indicate that each servi
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46

Moratalla, Ángela, Danyelle M. Araújo, Gabriel O. M. A. Moura, et al. "Pressurized electro-Fenton for the reduction of the environmental impact of antibiotics." Separation and Purification Technology 276 (December 2021): 119398. http://dx.doi.org/10.1016/j.seppur.2021.119398.

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47

Moazzem, Shadia, Enda Crossin, Fugen Daver, and Lijing Wang. "Assessing environmental impact reduction opportunities through life cycle assessment of apparel products." Sustainable Production and Consumption 28 (October 2021): 663–74. http://dx.doi.org/10.1016/j.spc.2021.06.015.

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48

Yamamoto, Takuya. "Development of Technologies for Reduction of Environmental Impact in Aluminum Melt Treatment." Materia Japan 60, no. 6 (2021): 347–50. http://dx.doi.org/10.2320/materia.60.347.

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49

KAWAI, Kenji, Yusuke AOKI, Yuta IWATANI, Kiyoshi HONJO, Masahiro NAKANO, and Seiji FUKUI. "ENVIRONMENTAL IMPACT OF REPAIR OF HIGHWAY BRI DGE BASED ON EXAMPLES AND MEASURES OF IMPACT REDUCTION." Journal of Japan Society of Civil Engineers, Ser. F4 (Construction and Management) 67, no. 3 (2011): 109–21. http://dx.doi.org/10.2208/jscejcm.67.109.

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50

Rusanescu, Marin, and Carmen Otilia Rusanescu. "Environmental Impact Matrix for Bucharest, Romania." Revista de Chimie 69, no. 11 (2018): 3006–9. http://dx.doi.org/10.37358/rc.18.11.6671.

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The objective of this study was to provide an environmental impact assessment for the municipality of Bucharest. To touch this objective, air samples were taken from five monitoring stations and water from two rivers during 2007-2015. On the basis of all the information collected, the environmental impact assessment was carried out with the help of the Rapid Impact Assessment Matrix. Considering the surroundings of all monitoring stations, the air quality at which the inhabitants of Bucharest are exposed can be considered good. The Rapid Impact Assessment Matrix (RIAM) is a tool for analyzing,
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