Welcome to the Industrial Automation website!

NameDescriptionContent
XING-Automation
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

How big is the pressure on carbon emissions in the chemical industry?

F: | Au:佚名 | DA:2023-11-28 | 758 Br: | 🔊 点击朗读正文 ❚❚ | Share:

The total carbon emissions of the chemical industry are limited but the intensity is outstanding: at present, China's annual carbon dioxide emissions reach 10 billion tons, of which the chemical industry emissions are less than 500 million tons, far less than the major emissions of electricity, steel, cement, etc., from the total point of view, the chemical industry is not the first to bear the brunt. However, from the perspective of intensity, the emission per unit income of chemical industry is higher than the average level of industrial industry; In addition, different regions face differentiated pressure due to different economic structure, energy structure and development level. In the process of decomposition of total emission control targets in regional and industry dimensions, the chemical industry may face development shackles from carbon emissions in some regions.

Industrial process emissions are important sources of carbon emissions: carbon emissions can be roughly divided into two categories from the generation mechanism, energy-related emissions and industrial process emissions. The former is mainly the carbon emissions caused by the direct combustion of fossil energy; The latter is not related to energy consumption, but to emissions from specific chemical reactions, such as the decomposition of limestone in the production of cement glass, and the conversion of synthetic gas to hydrogen. With the advancement of renewable energy alternatives in the future, energy-related emissions will be greatly reduced, and process emissions may become the core factor determining the carbon emission pressure of products. At present, the process emission of cement accounts for about 75% of the total process emission in China and is the main source of process emission. However, the unit process emissions of the chemical industry can not be underestimated, the process emissions of carbon 1 and carbon 2 main products can reach more than 50% of the whole process emissions, and its core comes from the conversion process of hydrocarbon, that is, the reaction of CO and water to produce hydrogen, and the disadvantage of coal with the lowest hydrogen content is the most obvious. One ton of coal-based olefin process emissions can reach 6 tons of CO2, if the current EU price of 40 euros/ton of CO2 emissions will be internalized, will account for nearly 20% of the product price. Because of the "defects" of the raw materials themselves, the coal chemical industry has the "original sin" of high emissions, which can also explain why the market listed the coal chemical industry as the object of supply-side reform in the previous period. However, we believe that the necessity of industrial upgrading under carbon neutrality is beyond doubt, but it is not a stroke of death, and leading enterprises with advance layout to improve efficiency and reduce emissions have sufficient living space and development initiative.

Leading companies have the right to development under the carbon neutral goal: Even without a "carbon neutral" framework, leading companies are actually constantly building a capacity base for reducing consumption and emissions. The problem of emission in the process of energization is actually the utilization rate of carbon atoms, that is, the utilization rate of raw materials; Although it is difficult to reverse the reaction mechanism in the short term from the disadvantages of coal chemical industry, the unnecessary loss of carbon atoms can be minimized by improving the utilization efficiency of materials, including syngas, which comes from a deep understanding of the process. For example, Hualu has realized the high-load and long-period operation of the device, and the interconnection of the three platforms has improved the utilization rate of synthetic gas. For example, Baofeng Energy invested 1.4 billion yuan in the construction of solar water electrolysis project last year, coupled with the hydrogen demand of coal chemical industry to reduce process emissions. Seeing that the measures taken by advanced enterprises are not aimed at the current policy, but have consciously carried out advance layout, and they are still the most vitality and the right to development in the short, medium and long-term dimension in the future.

1. Chemical industry in the context of carbon neutrality

Carbon neutrality is undoubtedly one of the most topical topics in the capital markets these days. In fact, the proposal and landing of China's carbon reduction target is not a sudden attack, but has experienced a continuous process of advancement. "Reaching the peak" is not achieved overnight, and "neutralization" is not built in a day. In 2009, China for the first time put forward the quantitative target of reducing carbon dioxide emissions per unit of GDP by 40% to 45% in 2020 compared with 2005. From intensity targets to total targets, from peak to net zero, the evolution of emission reduction targets to higher levels of difficulty has witnessed China's long-term and sustained investment in addressing climate change. In September 2020, at the General debate of the 75th session of the United Nations General Assembly, China put forward the goal of reaching a carbon peak by 2030 and achieving carbon neutrality by 2060. This is not only China's solemn commitment to shoulder the responsibility of a major country to achieve the ambitious goal of addressing climate change and leading global climate governance, but also has a profound impact on the development trend of domestic industry and investment logic. The benefits of carbon neutrality on emerging industries, including new energy, are simple to understand, but the impact on traditional industries is difficult to generalize, especially for the high-energy-consuming industry in the traditional sense of chemical industry, which is interpreted by the market as another round of supply-side reform, but who is the object of "reform"? Especially recently, Inner Mongolia announced that in addition to some exempted projects, it will no longer approve modern coal chemical projects during the "14th Five-Year Plan" period, which has intensified the market's concerns about the future of the chemical industry, especially the coal chemical industry. We believe that the characteristics of carbon emissions in the chemical industry can be summarized as follows: 1) the total amount of emissions is limited but the intensity is prominent. 2) The emission pressure of coal chemical process is relatively large, but leading enterprises with advance layout of efficiency improvement and emission reduction have sufficient living space and development initiative.

  • Sumitomo SHI Cyclo Drive F3CS-A25G-89 Reducer
  • Sumitomo KNR0827 Wiring Harness SH120-3 SH120A3
  • Sumitomo ULC100011-01 LNR Actuator Driver
  • LUBE GMN-10-200-CB2-7L Lubricator Grease Pump
  • Sumitomo SH65UJ Rubber Track
  • Sumitomo KHR69310 Excavator Monitor
  • Sumitomo FDT-2FS Fiber Identifier Power Meter
  • Sumitomo CNVMS-4085G-43 Ink Fountain Motor
  • Sumitomo GV9924023-38 Circuit Board
  • Sumitomo 407915-5510 4BG1TRA ECU Controller
  • Sumitomo Cyclo F71m/4 Induction Motor 0.37kW
  • Sumitomo ANFJ-K30-SV-9 Hydraulic Control Valve
  • Hitachi Sumitomo 4625051 Pilot Valve Joystick
  • Sumitomo Demag W4RAP 6 W7-04-30 Valve
  • Sumitomo RV F2CF-A35-119 Gearbox
  • Sumitomo SH120 Slew Ring JCB JS130
  • Sumitomo Truninger QT-42-20HS-A Gear Pump
  • Sumitomo D2X-00577/02 SLV Control Board
  • Sumitomo Type-36 ARC Fibre Fusion Splicer
  • Sumitomo WRX33000R125-300 Shell Milling Cutter
  • Sumitomo Fine Cyclo F4CS-C35-59 Gearbox
  • Sumitomo Demag 4WREE 10 W75-23 Flow Valve
  • Sumitomo RDK-408A3 MRI Cold Head 5445412
  • Sumitomo AF-500 AF502-1A5 Cold Head
  • Sumitomo TYPE-35SE Fiber Optic Fusion Splicer
  • Sumitomo SH60 Rubber Track
  • Sumitomo SXPL JA765811BE Controller Interface Display
  • Sumitomo RF4100R Shell Mill 6 Flute 1.25 inch Arbor 4 inch OD
  • Sumitomo SHI SA765621AX SA765587BC Control Module
  • Sumitomo P-022CD-1A Cold Head Drive Unit
  • Sumitomo NL6448AC33-18 JA762898AD Operator Panel
  • Sumitomo JA762870GC Populated Circuit Board
  • Sumitomo Type-37 SM MM Fusion Splicer
  • Steel Track Chain for Sumitomo SH75 Excavator
  • Sumitomo CNV-6095-6 Cyclo Drive
  • Sumitomo Fine Cyclo F4CS-C35-59 PB048860 GEB
  • Sumitomo TC-FXPA FB-2E Motor RNYM2-1520A-EP-B-60 Gearbox
  • Sumitomo Heavy Industries RDK-4XX MRI Cold Head
  • Sumitomo SA765523AX PMDRV PCB Card 7MBP50RA060
  • Sumitomo Drive 307H-25 119H2505 Speed Reducer
  • Sumitomo Eaton H-130AA2FXJ Orbit Motor
  • Sumitomo JA775810A3 Nozzle Heater 19-58 130W
  • Sumitomo ZNFM05 Gearbox
  • Sumitomo F1C-A25-119 Gearbox
  • Sumitomo Fusion Splicer Type 39BT
  • Sumitomo MC78 UMC78S000-01 Motion Controller
  • Sumitomo Cyclo 2 Speed Motor Brake Gearbox
  • Sumitomo Drive PA213763 RNYMS02-1320YC-40
  • Sumitomo JA450704A2 Cylinder Head
  • Sumitomo T39 Fusion Splicer
  • Sumitomo AF-500 Cold Head
  • Sumitomo 71C Fusion Splicer
  • Sumitomo RDK-408S Cryocooler Cold Head
  • Sumitomo L3 Coldhead
  • Sumitomo F2CS-A25-119 Gearhead
  • Sumitomo US60125-GA AC Servo Driver SS6000
  • Sumitomo Type 39 Fusion Splicer
  • Sumitomo ANFJ-K30-SV-9 Planetary Gearbox
  • Sumitomo Heavy Industries JA761557BC RSC86-I Control Board
  • Sumitomo SA765604AX SA765603BC SXEX Servo Control Board
  • Sumitomo SumiDrill WDX2250D3S150 Drill
  • Sumitomo Type-66M12 Mass Fusion Splicer
  • Sumitomo Heavy Industries JA761557AC RSC86-I Control Board
  • Sumitomo JA761015CC RSC86 Circuit Board
  • Sumitomo T-72M12 Mass Fusion Splicer
  • Sumitomo TYPE-72C-KIT Core Aligning Fusion Splicer
  • Sumitomo CI-10/600-ADSD1-2 Power Supply
  • Sumitomo HF5202-3A7 Electronic Module
  • Sumitomo JA761015EC RSC86 Servo Control Board
  • Sumitomo TYPE-39 DCM Micro Core Fusion Splicer
  • Sumitomo JA761070HC AP-M Circuit Board
  • Sumitomo TYPE-400S T-400S Fusion Splicer Kit
  • Sumitomo TYPE-201E-VS Quantum Fusion Splicer
  • Sumitomo MC78IO Drive Power Module
  • Sumitomo 3-Phase Motor Gearbox 4kW 241RPM
  • CASE KRC10510 Hydraulic Swing Motor Sumitomo
  • Sumitomo HF4302-011 HF-430 Inverter Drive 11kW
  • Sumitomo SA765654BC SXIO-B Control Board
  • Sumitomo SDPH-018CHB PWM Amplifier Module
  • Sumitomo JA761070JC AP-M Circuit Board
  • Sumitomo HV960LC Local Control Board
  • Sumitomo T-71C+ Fusion Splicer Camera Y Focus Error
  • Sumitomo CH-210 Cold Head Cryo Cooler
  • Sumitomo Type-71C+ DCM Fusion Splicer
  • Sumitomo Type-65M12 Ribbon Fiber Fusion Splicer
  • Sumitomo T-502S Elite Fusion Splicer
  • Sumitomo T-72C+ Fusion Splicer
  • Sumitomo JA767632AC Circuit Board
  • Sumitomo Type-72C+ Core Alignment Fusion Splicer
  • Sumitomo CP5003 101AGG01 Sequencer I/F Board
  • Sumitomo T-37SE Fibre Fusion Splicer
  • Sumitomo Type-71C-KIT-PLUS Fusion Splicer
  • Sumitomo Type-72C HD Fusion Splicer
  • Sumitomo Type-72C+ Fusion Splicer FC-6+
  • Sumitomo Type-65M12 Ribbon Fusion Splicer
  • Sumitomo Type-72C+ Fusion Splicer
  • Sumitomo Type-39 DCM Fusion Splicer
  • Sumitomo Z1C Core Alignment Fusion Splicer
  • Sumitomo Type-71C DCM Fusion Splicer
  • Sumitomo T-72M12 Ribbon Fusion Splicer
  • ABB SACO 64D4 Digital Annunciator Unit 64-Channel Alarm System
  • EMERSON FloBoss S600+ P154 PRV Board 7381540 Prover Module
  • EMERSON FloBoss S600+ P155 PSU Board 7161550 Power Supply
  • EMERSON FloBoss S600+ P153 Front Panel 7181530 Display Keypad
  • EMERSON FloBoss S600+ P148 Dual Pulse Mezzanine 7181483 Module
  • EMERSON FloBoss S600+ P144 I/O Board 7281440 Analog Digital Module
  • EMERSON FloBoss S600+ P152 CPU Board 7381520 Main Processor
  • EMERSON FloBoss S600+ Base Unit 8176003 Flow Computer Chassis
  • Lauer PCS100FZ XX1.1031.SHX PLC HMI Operator Panel
  • Lauer Weber PCS095.S PG 195.203.3 Operator Panel HMI
  • Lauer Pcs Light PG 080.308.E Operator Panel HMI Console
  • Lauer Pcs Light PG 080.308.E Operator Panel HMI
  • Lauer PCS590p Pg 59X.000.0 PROFIBUS-DP HMI Panel
  • Lauer PCS095.1 095.408.A Operator Panel HMI
  • Lauer PCS009.m 109.203.1 Operator Panel PCS009
  • Lauer Pcs Light PG 080.308.F PLC HMI Operator Panel
  • Lauer Pcs 095.s 195.203.3 Operator Panel – Industrial HMI
  • Lauer LCA 200 (200-V02093) Starline Mini Operator Terminal – Compact HMI
  • Lauer PCS 110FZ Operating Screen – Compact Industrial Display
  • Lauer LCA200 022/581 Operator Terminal – Industrial HMI Panel
  • Lauer AST-150A Front Cover with Touch – Replacement Bezel for Industrial Panels
  • Lauer PCS8010 035/28B Operator Panel – Industrial HMI
  • Lauer PCS260FZ Membrane Keyboard Replacement
  • Lauer PCS plus MPI PCS090.m Operator Console
  • Lauer PCS 806 EEPROM Memory Module
  • Lauer VPC S95e 410 Control Panel System Controller
  • Lauer PG095.507.A Operator Panel PCS095 HMI
  • Lauer PCS8010 035/28B Operator Panel HMI Console