The Use of ERP Systems to Determine the Impact of the Company on the Environment

2014 ◽  
Vol 1036 ◽  
pp. 903-908
Author(s):  
Izabela Horzela ◽  
Bożena Szczucka-Lasota ◽  
Tomasz Węgrzyn ◽  
Wojciech Majewski

ERP systems help organizations to monitor and report on environmental factors, both in the area of individual plants or entire companies. Regular monitoring and analyzing indicators of impact of the company on the environmental enable organizations to determine the effects of the implemented environmental programs. Article concerns the monitoring and reporting of environmental impact in relation to the use of raw materials and semi-finished products in manufacturing processes.

2021 ◽  
Vol 2 (2) ◽  
pp. 146-154
Author(s):  
Zoltán Korényi

Összefoglaló. A dolgozat témája a különböző erőműfajták életciklusra vonatkozó fajlagos anyagigényének a vizsgálata. Az elemzések a nemzetközi szakirodalmi források felhasználásával történtek. Módszere, a bázisadatok elemzése, majd az anyagigényeknek az erőmű beépített teljesítményére és az életciklus alatt megtermelt villamosenergiára vonatkoztatott fajlagos értékek meghatározása. Az eredmények azt mutatják, hogy a nap- és szélerőművek elterjedésével a hagyományos erőművek által felhasznált fosszilis energiaforrások (pl. a szén) bent maradnak ugyan a földben, de cserébe az új technológia legyártásához a hagyományos anyagokból (beton, acél, alumínium, réz stb.) fajlagosan jóval nagyobb mennyiségekre lesz szükség. Emellett megnő a ritkán előforduló fémek (gallium, indium stb.) felhasználása, ami Európában, a lelőhelyek hiányában, új kockázatokkal jár. Summary. The topic of the study is to determine the material use of different power plant types. This is a part of the known life cycle analysis (LCA). The aim of LCA is to determine the impact of human activity on nature. The procedure is described in the standards (ISO 14040/41/42/42). Under environmental impact we mean changes in our natural environment, air, water, soil pollution, noise and impacts on human health. In the LCA, the environmental impact begins with the opening of the mine, continues with the extraction and processing of raw materials, and then with the production of equipment, construction and installation of the power plant. This is followed by the commissioning and then operation of the power plants for 20-60 years, including maintenance. The cycle ends with demolition, which is followed by recycling of materials. The remaining waste is disposed of. This is the complex content of life cycle analysis. Its purpose is to determine the ecological footprint of man. The method of the present study is to isolate a limited area from the complex LCA process. This means determining the amount of material needed to build different power plants, excluding mining and processing of raw materials. Commercially available basic materials are built into the power plant’s components. The research is based on the literature available in the international area. The author studied these sources, analysed the data, and checked the authenticity. It was not easy because the sources from different times, for different power plants showed a lot of uncertainty. In overcoming the uncertainties, it was a help that the author has decades of experience in the realisation of power plants. It was considered the material consumption related to the installed electricity capacity of the power plant (tons/MW) as basic data. The author then determined the specific material consumptions, allocated to the electric energy generated during the lifetime, in different power plants. The calculation is carried out with the help of the usual annual peak load duration hours and the usual lifetime of the power plants. The results show that with the spread of solar and wind energy, the fossil energy sources previously needed for conventional power plants will remain inside the Earth, but in exchange for the production of new technological equipment from traditional structural materials (concrete, steel, aluminium, copper and plastic), the special need multiplies. If we compare the power plants using renewable energy with the electric energy produced during the life cycle of a nuclear power plant, the specific installed material requirement of a river hydropower plant is 37 times, that of an onshore wind farm it is 9.6 times, and that of an outdoor solar power park is 6.6 times higher. Another important difference is that wind turbines, solar panels and batteries also require rare materials that do not occur in Europe (e.g. gallium, indium, yttrium, neodymium, cobalt, etc.). This can lead to security risks in Europe in the long run.


Transport ◽  
2009 ◽  
Vol 24 (1) ◽  
pp. 26-29 ◽  
Author(s):  
Ádám Török

Vehicles are burning fuels inefficiently. Nowadays, there is a strong correlation between CO2 emission and climate change. The article estimates a theoretical environmental impact of biofuel mixtures on the transport sector. A high ratio of road transportation in CO2 emission caused by humanity made necessary to research the estimation of the environmental impact of biofuel mixtures. We have to clarify the emission of the transport sector in order to get information about the role of the impact that is a further step to a sustainable society. Sustainable development is a kind of development where the pace of technical development, the satiation of increasing supply and the raw materials and resources of the Earth are poised so that the rate of living and the opportunities of the future generations should not decline. One of the major goals of transport policy of the European Union is sustainable mobility. For this reason, transportation systems must be developed and standardized and the effectiveness of transportation service must be increased while environmental pollution must be decreased or prevented. There is a justifiable demand put forward by the society to moderate the environmental impacts caused by road transportation. This article deals with modelling the environmental impact of ethanol‐gasoline mixtures and diesel oil‐ethanol‐biodiesel mixtures.


2021 ◽  
Vol 13 (12) ◽  
pp. 6657
Author(s):  
Brett Fulford ◽  
Karen Mezzi ◽  
Andy Whiting ◽  
Simon Aumônier

The Breezhaler® dry powder inhaler (DPI) has a low carbon footprint compared with other inhalation therapies, consistent with the literature on other DPIs. This life-cycle assessment was conducted in France, Germany, the UK, and Japan using a “cradle-to-grave” technique to evaluate six environmental impact categories (global warming potential; acidification; ozone depletion; use of resource, minerals, and metals; eco-toxicity; and freshwater use) associated with the use of the Breezhaler®. Three variants of the Breezhaler® (30-day packs with and without the digital companion and a 90-day pack without the digital companion) were evaluated to identify major hotspots in the device life-cycle and to provide realistic solutions to reduce the environmental impact. Although no single life-cycle stage dominated the climate change impact of the 30-day device with the digital companion, the inhaler’s raw materials and packaging contributed to 96% of the resource depletion impact for the 30-day device without the digital companion. For the 90-day device without the digital companion, packaging contributed 42–62% of the impact across all categories. Overall, the Breezhaler® inhaler with the 90-day pack had the lowest environmental impact. The environmental impact of the device did not vary significantly among the considered markets. Further studies are needed to assess the impact of active pharmaceutical ingredients and improvement in clinical outcomes on the environment.


Author(s):  
Iu. Halynska ◽  
T. Bondar

More and more companies in the world are striving to implement clean production strategies and maximize resource productivity in their operations. In the process of applying an integrated, preventive environmental strategy in production to reduce risks for both humans and the environment, stakeholders face causal effects and socio-environmental and economic interdependence in the implementation of clean production projects. All this contributes to the development and growth of scientific, methodological and methodological approaches to the implementation of clean production projects. Studying world and domestic experience in introducing of clean production can determine the ways to comprehensively solve environmental and economic problems in Ukraine and provide the prerequisites for creating an effective system of using natural resources in solving environmental and economic problems of the world, including climate change. The implementation of scientific approaches is possible through the distribution of information on the principles of clean production, the development and implementation of a set of economic and environmental factors for the development of production, the improvement of the mechanism for integrating of environmental factors of the economic development strategy, viewing environmental pollution standards and the special use of natural resources, as well as standards for their economic regulation with the goal of a gradual approximation to EU standards, the creation of a system of sustainable management of production development, stimulates environmental protection and ensures the careful use of natural resources. Therefore, the article discovers the basic principles, methods and mechanisms for creating of clean production projects. The prerequisites for creating an environmental direction in the production of goods and services, as well as the need for risk assessment in the introduction of clean production, are considered. Generalization of existing methods of introduction of clean production, taking into account the world experience, showed that despite the local prerequisites and financial and technological problems, it is profitable for enterprises to implement the concept of СР. The result is a synthesis of existing methods for introducing of clean production, taking into account international experience, which can reduce operating costs, can contribute to improving the safety of workers, as well as reducing the impact of business on the environment. It is obvious that clean production technologies are a good business for industry, as they help to reduce waste disposal costs, reduce the cost of raw materials, reduce the cost of damage to health, improve public relations, improve company productivity, and increase the competitiveness of local and international markets. Clean production is an integral part of the social process, which is in line with economic, political, ethical and cultural values. Keywords: clean production, sustainable development, environmental strategies, indicators of resource and energy intensity.


Electronics ◽  
2021 ◽  
Vol 10 (9) ◽  
pp. 1033
Author(s):  
Carmelo Pina ◽  
Daniel Elduque ◽  
Patricia Gómez ◽  
Judith Sarasa ◽  
Carlos Javierre

The influence of the material composition of surface-mount device (SMD) diodes on the environment has been analysed in this research. This impact assessment has been performed by means of an environmental impact calculation through a life cycle assessment (LCA), in which the EcoInvent dataset has been updated and customised, generating a more precise environmental impact analysis by considering the exact material composition provided by several suppliers of diodes and also recycling during the production stage. Considering the EcoInvent diode dataset as a reference, variations from nearly 1640% to only 8.5% of the environmental impact have been achieved. For example, the impact per 1 g of SMD diodes can change the global warming potential from 292 g CO2 eq up to 354 g CO2 eq, whereas for abiotic depletion, values can change from 9.9 × 10−7 up to 1.9 × 10−4 kg Sb eq. The presence of critical raw materials such as antimony, cobalt, or magnesium, together with precious metals as gold or silver, highly influences the environmental impact values obtained, demonstrating the considerable influence on the environmental impact of the material composition of the SMD diodes analysed.


2020 ◽  
Vol 12 (1) ◽  
pp. 18-23
Author(s):  
B.S. Aliyu ◽  
M.Z. Moyi ◽  
L.Z. Fareed ◽  
H.J. Sule ◽  
A.M. Nazifi ◽  
...  

The Physical environment is being disturbed by numerous problems, including those caused by the constructions activities, such problems impacts on the environment right from the initial stage, operational and to the end of the life span of the built structure. The aim of the study was to suggest the main environmental impacts of construction in Kano state. About twenty six construction impacts were reveals from the past researches. However, all the impact was classified into nine main classes. Data for the study were collected from questionnaires and interviews survey administered to stakeholders of construction industry in Kano State. Data collected were analyzed and ranked using Relative Importance Index (RII), suggesting that they significantly impact on the environment thereby causing environmental degradation. Based on the results resource consumption was ranked highest among the major environmental impacts of constructing in Kano. The highest class, consist raw materials, water, fuel and electricity consumption. The paper concludes with recommendation which includes enforcement of extant rules, regulation and ethical code by government legislative on construction stakeholders, government should formulate and ensuring adequate use of construction design that will suite the environment in Kano. Also, all forms of construction practices should be subjected to an environmental impact assessment to determine the potential impacts and also formulate the ways to overcome it before execution. The study suggest also that, the chair personnel in construction companies should formulate some rules, code of conducts that will ensure good and fair sustainable construction practices in Kano. Keywords: Construction Company, Construction Practices, Environmental Impact, Kano.


Author(s):  
Laurel Evelyn Dyson

This article explores a much under-researched field of ethics: the impact of information technology (IT) on the environment. Reducing the ecological impact of IT requires a holistic approach including better design of computers, the development of non-polluting manufacturing processes, and effective management strategies. The latter have received much attention in recent years. The three main areas of management focus have been the problems of hardware disposal, the energy consumed by computer technology in operation, and paper usage by printers and photocopiers.


2020 ◽  
Vol 18 (5) ◽  
pp. 891-908
Author(s):  
T.A. Smirnova

Subject. This article deals with the issues of functioning of the region as a system. Objectives. The article aims to identify the problems of the region's functioning as a system, develop methodological tools to monitor the sustainable development of the Siberian Federal District territories, and determine the the impact of socio-economic and environmental factors on the sustainable development of the region as a whole. Methods. For the study, I used the methods of theoretical, statistical, and empirical analyses taking into account an integrated approach. Results. The article reveals the impact of some individual components of regional development on the sustainability of the territorial system as a whole. Relevance. The results of the study can be used to analyze the sustainability of regions' development.


Author(s):  
L.Z. Khalishkhova ◽  
◽  
A. Kh. Temrokova ◽  
I.R. Guchapsheva ◽  
K.A. Bogаtyreva ◽  
...  

Ensuring the sustainable development of agroecosystems requires research into the justification of the impact of environmental factors on the formation of territorial agroecosystems and identifies ways to take them into account in order to justify management decisions and ensure environmental safety. The main goal of the research within the article is to identify the most significant environmental factors in predicting the formation of agroecosystems. Provisions are devoted to the study of the laws governing the functioning of agroecosystems in order to increase their stability. The methods of comparative analysis, generalization, abstraction, logical analysis are applied. A number of provisions are formulated regarding ways to account for the influence of factors on the formation of key elements of agroecosystems.


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