• Title/Summary/Keyword: petrochemicals

Search Result 46, Processing Time 0.025 seconds

Contribution of Advanced or Alternative Process to Carbon-Dioxide Emission Reduction in Olefin Production Plant (올레핀(Olefin) 생산 공정에서 발생하는 이산화탄소 배출 저감을 위한 신기술 적용 효과)

  • Wee, Jung-Ho;Choi, Kyoung-Sik;Kim, Jeong-In;Lee, Sang-Hoon
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.31 no.8
    • /
    • pp.679-689
    • /
    • 2009
  • Light olefins are very important hydrocarbons widely used as the raw materials of the most petrochemicals including plastics and medicines. In addition, the nation's olefin production capacity is regarded as one of the key indicators to predict the nation's economic scale and growth. Steam cracking of naphtha (or called "NCC (Naphtha Cracking Center) technology"), the traditional process to produce light olefins, is one of the most consuming energy processes among the chemical industries. Therefore, this process causes tremendous $CO_2$ emission. To reduce the energy consumption and $CO_2$ emission from NCC process, the present paper, firstly, investigates and analyses some alternative technologies which can be potentially substituted for traditional process. Secondly, applying the alternative technologies to NCC process, their effects such as energy savings, $CO_2$ emission reduction and CER (Certified Emission Reduction) were estimated. It is found that the advanced NCC process can reduce approximately 35% of SEC (Specific Energy Consumption) of traditional NCC process. This effect can lead to the reduction of 3.3 million tons of $CO_2$ and the acquisition of the 128 billion won of CER per year. Catalytic cracking of naphtha technology, which is other alternative processes, can save up to approximately 40% of SEC of traditional NCC process. This value equates to the 3.8 million tons of $CO_2$ mitigation and 147 billion won of CER per year.

Applications of Mathematical Optimization Method for Chemical Industries (화학 산업에서 수학적 최적화 기법을 적용한 사례)

  • Kim, Eun-Yong;Heo, Soon-Ki;Lee, Kyu-Hwang;Lee, Hokyung
    • Korean Chemical Engineering Research
    • /
    • v.58 no.2
    • /
    • pp.209-223
    • /
    • 2020
  • Executions of SCM in a chemical company of which divisions produce petrochemicals, compounds, batteries, IT material and medicine directly affect their own profit. Execution level of SCM or optimization is very important. This work presents activities of SCM and optimization of inefficient issues in several industrial divisions using mathematical optimization method. The meaning is not only academic research but also making a useful tool which active partner deals with in his work. It is explained how to do beforehand and afterward optimization problem. The benefits are mentioned in the sections. The first of examples would be cover supply plan optimization, optimal profit business plan, and scheduling of a stretching process of polarizer based on minimizing raw material loss in polarizer production. The second example would be cover the optimization of production/packaging plans to maximize productivity of Poly Olefin processes, and the third example is minimization of transition loss in the production of battery electrodes. The fourth example would be cover scheduling of vessel approaching to berth. Because transportation of large portion of raw material and products of petrochemical industry is dealt with vessel, scheduling of vessel approaching to berth is important at the shore of large difference of tide. The final example would be scheduling problem to minimization of change over time of ABS semi products.

Cross-Linked PGMA-co-PMMA/DAAB Membranes for Propylene/Nitrogen Separation (프로필렌/질소 분리를 위한 가교 구조의 PGMA-co-PMMA/DAAB 분리막)

  • Kim, Na Un;Park, Byeong Ju;Kim, Jong Hak
    • Membrane Journal
    • /
    • v.30 no.4
    • /
    • pp.252-259
    • /
    • 2020
  • Olefins are industrially important materials used for the synthesis of various petrochemicals. During the polymerization process, unreacted olefin monomers are discharged together with a large amount of nitrogen. For economic benefits, these olefin gases should be efficiently separated from nitrogen. In this study, a poly(glycidyl methacrylate-co-methyl methacrylate) (PGM) comb-like copolymer was synthesized and 4,4'-diaminoazobenzene (DAAB) was introduced to the copolymer to prepare a cross-linked membrane for C3H6/N2 separation. PGM and DAAB were readily reacted at room temperature through an epoxide-amine reaction without additional thermal treatment. PGM-based membrane, which is a glassy polymer, showed a faster permeation of N2 compared to C3H6. The pristine PGM membrane exhibited the N2 permeability of 0.12 barrer and the high N2/C3H6 selectivity of 32.4. As DAAB was introduced as a cross-linker, the thermal stability of the membrane was significantly improved, which was confirmed by TGA result. The N2/C3H6 selectivity was decreased at 1 wt% of DAAB content, but the N2 permeability increased by approximately 4.7 times. We analyzed N2/C3H6 gas separation properties through a glassy polymer-based membrane, which has not been widely studied. Also, we proposed that thermal stability of the membrane can be greatly improved by the cross-linking method.

Retention Analysis of Binary Mixture Injected into a Four-Zone Simulated Moving Bed at Steady-State (정상상태의 4 구역 SMB 공정에 유입된 이성분계 물질의 체류 분석)

  • Yang, Jinhyo;Kim, Jin-Il;Koo, Yoon-Mo
    • Korean Chemical Engineering Research
    • /
    • v.46 no.4
    • /
    • pp.732-738
    • /
    • 2008
  • Simulated moving bed (SMB) process is a continuous chromatographic technology used to separate a large amount of petrochemicals, fine chemicals, pharmaceuticals, and so on, drawing a great attraction of related industries. With the recent development of biotechnology, the SMB process has been adopted for the separation of various useful bio-products. Attempts to understand the separation mechanism of the SMB process in many aspects are reported in many publications. These researches have dealt with the improvement of SMB for easier operation and solving problem in process. The feed mixture fed into the SMB process may be of different concentration batch by batch rather than in uniform concentration. Retention behaviors of feed (psicose (A) and fructose (B) mixture) existing in the SMB unit in dynamic steady-state and feed (psicose (C) and fructose (D) mixture) newly injected into the SMB were analyzed. It was observed that the existing components, (A) and (B), were eluted relatively faster as the injection time of new feed was earlier during the port-switching period. In addition, the components (C) and (D) were eluted earlier as fresh feed was injected earlier in a port-switching time.

Assessing the Impacts of EU's Carbon Border Adjustment Mechanisms and Its Policy Implications: An Environmentally Extended Input-Output Analysis (환경산업연관분석을 활용한 탄소국경조정 메커니즘 도입에 따른 국내 산업계 영향 분석과 대응전략)

  • Yeo, Yeongjun;Cho, Hae-in;Jeong, Hoon
    • Environmental and Resource Economics Review
    • /
    • v.31 no.3
    • /
    • pp.419-449
    • /
    • 2022
  • This paper aims to quantify the potential economic burdens of EU's carbon border adjustment mechanisms faced by Korean domestic industries. In addition, this study tries to compare and analyzes changes in the burden of each industry resulted from the implementation of the domestic low-carbon policy. Based on the quantitative findings, we intend to suggest policy implications for establishing mid- to long-term strategies in response to climate change risks. Based on the environmentally extended input-output analysis, the total economic burdens of the domestic industries due to the EU's carbon border adjustment mechanisms are estimated to be approximately KRW 8,245.6 billion in 2030. Looking at the impacts by industry, it is found that major industries such as petrochemicals, petroleum refining, transportation equipment, steel, automobiles, and electric/electronic equipment industries are expected to account for 84.3% of the total potential burdens. In addition, in multiple policy scenarios assuming technological developments and energy transition following the implementation of domestic low-carbon policies, the total economic burden of carbon border adjustment is expected to decrease by about 11.7% to 15.0%. The main result of this study suggests that we should not view EU EU's carbon border adjustment mechanism as a trade regulation, but to use it as a momentum for more effective implementation of the low-carbon and energy transition strategies in the global carbon neural era.

An Analysis of The Technological Regime by an Integrated Taxonomy of Region-Industry: Focusing on the Manufacturing Sector of the 2016 Korean Innovation Survey (지역-산업 통합분류법에 의한 국내 기술체제 분석: 2016년 한국기업혁신조사 제조업 부문을 중심으로)

  • Jaepil Han
    • Journal of the Economic Geographical Society of Korea
    • /
    • v.26 no.1
    • /
    • pp.1-22
    • /
    • 2023
  • This study proposes an integrated use of region and industry as a way to classify firms' innovation activities by type. Existing studies have used the method of determining innovative activities according to the components of the technological regimes and aggregating them by industry classification, but this method cannot fully reflect the heterogeneity within industries in an increasingly sophisticated innovation environment. Therefore, this study divides firms by region and industry and conducts a cluster analysis on the proportion of innovative activities by the components of the technological regimes to derive a total of four innovation types. Using the 2016 Korean Innovation Survey to classify innovation types in the manufacturing industry, we found that innovation activities are concentrated in Seoul, Busan, Incheon, and Chungnam/ Sejong/ Daejeon area, with different deviations by region and industry. The results of the aggregation of industrial innovation activities, weighted by corporate activity by region, show that the level of innovation activity in some manufacturing industries, such as petrochemicals, manufacturing of medical, precision and optical instruments, watches and clocks, is high, but the level of innovation in other sectors within the manufacturing industry is generally low.