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Environmental impacts assessment during sand casting of Aluminium LM04 product: A case of Indian manufacturing industry

机译:铝合金LM04产品砂铸件中的环境影响评估:印度制造业的情况

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At present environmental pollution is the major problem that is drastically affecting human health and worsening the climatic conditions worldwide. Manufacturing industries are now working towards cleaner production to reduce the pollution level and other hazardous emissions emitted from manufacturing industries during manufacturing processes. In the present study Life cycle assessment tool is used to compute the total environmental impact of the sand casting process during its manufacturing phase and also different available scenarios have been compared to find the best one. Aluminum alloy-LM04 is used in the present study having good casting characteristics and a wide range of applications in different engineering sectors. The case study is carried out in the Indian additive manufacturing industry located in the Southern region of India. This study considers gate to gate analysis which considers the manufacturing phase of the aluminum product. The result calculated includes raw material, solid waste, energy consumption, and air emission during the manufacturing phase. Also, different environmental impact factors are calculated in the study. GABI software version 9 is used in this study for the analysis purpose. It is found that changes in electricity source in additive manufacturing industries result in about a 40% reduction in emissions. Also, out of four studied electricity sources hydropower source is found be the best fit for manufacturing industries. About 91% of solid waste can be reduced by the reuse of sand. Combining all the available scenario result 67% reduction in emissions.
机译:目前环境污染是严重影响人类健康和恶化全世界气候条件的主要问题。制造业现在正在努力减少制造工艺中制造业产业排放的污染水平和其他危险排放。在本研究中,生命周期评估工具用于计算在其制造阶段的砂铸造过程的总环境影响,并且还可以比较不同的可用方案,以找到最佳的情况。铝合金-LM04用于本研究采用良好的铸造特性和不同工程领域的广泛应用。案例研究是在印度南部地区的印度添加剂制造业进行。该研究考虑了栅极分析,其考虑了铝产品的制造阶段。计算结果包括制造期间的原料,固体废物,能量消耗和空气发射。此外,在研究中计算了不同的环境影响因素。 GABI软件版本9用于本研究进行分析目的。发现添加剂制造业的电源变化导致排放减少约40%。此外,在四种学习的电源中,发现水电源是制造业的最佳选择。通过重用沙子可以减少约91%的固体废物。结合所有可用场景的结果减少67%。

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