将油泥用于生产沥青以减少其对环境的负面影响

IF 1.4 Q4 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
A. Serikbayeva, A. Boranbayeva, M. Abdibattayeva, F. Nurbayeva, Salima Cherkeshova, Asem Myrzabekova
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引用次数: 1

摘要

摘要本文考虑了将油泥作为二次资源来预防其对环境的负面技术影响。对哈萨克斯坦(Mangystau地区)油田不同对象的油泥进行了研究。考虑了利用石油(经生物修复从油泥中分离后)作为部分替代沥青基生产改性沥青的可能性。确定了改性沥青的主要物理力学特性。结果表明,以油泥和生物沉淀法分离的油为原料制备的改性沥青符合哈萨克斯坦标准对聚合物-沥青粘结剂的要求,其理化特性适合于改性沥青的生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimization of the Negative Environmental Impact of Oil Sludge by Using it in the Production of Bitumen
Abstract In this paper, the prevention of negative technogenic impact on the environment of oil sludge by using it as a secondary resource is considered. Oil sludge from various objects of oil fields in Kazakhstan (Mangystau region) has been studied. The possibilities of using oil (after its separation from oil sludge by bioremidiation) as a partial substitute for bitumen base in the production of modified bitumen are considered. The main physical and mechanical characteristics of modified bitumen are determined. The results confirm that the modified bitumen prepared with oil sludge and oil separated by bioremiation method meets the requirements for polymer-bitumen binder to Kazakhstan standards and is suitable for the production of modified bitumen in its physico-chemical characteristics.
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来源期刊
Environmental and Climate Technologies
Environmental and Climate Technologies GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
3.10
自引率
28.60%
发文量
0
审稿时长
16 weeks
期刊介绍: Environmental and Climate Technologies provides a forum for information on innovation, research and development in the areas of environmental science, energy resources and processes, innovative technologies and energy efficiency. Authors are encouraged to submit manuscripts which cover the range from bioeconomy, sustainable technology development, life cycle analysis, eco-design, climate change mitigation, innovative solutions for pollution reduction to resilience, the energy efficiency of buildings, secure and sustainable energy supplies. The Journal ensures international publicity for original research and innovative work. A variety of themes are covered through a multi-disciplinary approach, one which integrates all aspects of environmental science: -Sustainability of technology development- Bioeconomy- Cleaner production, end of pipe production- Zero emission technologies- Eco-design- Life cycle analysis- Eco-efficiency- Environmental impact assessment- Environmental management systems- Resilience- Energy and carbon markets- Greenhouse gas emission reduction and climate technologies- Methodologies for the evaluation of sustainability- Renewable energy resources- Solar, wind, geothermal, hydro energy, biomass sources: algae, wood, straw, biogas, energetic plants and organic waste- Waste management- Quality of outdoor and indoor environment- Environmental monitoring and evaluation- Heat and power generation, including district heating and/or cooling- Energy efficiency.
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