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Getting to Net-Zero Emissions

Chris Greig

Engineering 2020, Volume 6, Issue 12,   Pages 1341-1342 doi: 10.1016/j.eng.2020.09.005

Hydrogen for a Net-Zero Carbon World

Nigel P Brandon, James J Brandon

Engineering 2023, Volume 29, Issue 10,   Pages 8-10 doi: 10.1016/j.eng.2023.08.002

GREENHOUSE GAS AND AMMONIA EMISSION MITIGATION PRIORITIES FOR UK POLICY TARGETS

Frontiers of Agricultural Science and Engineering 2023, Volume 10, Issue 2,   Pages 268-280 doi: 10.15302/J-FASE-2023495

Abstract:

● An expert survey highlighted the most effective strategies for GHG and ammonia mitigation.

Keywords: agriculture     ammonia     greenhouse gas     mitigation     net zero    

SEQUESTERING ORGANIC CARBON IN SOILS THROUGH LAND USE CHANGE AND AGRICULTURAL PRACTICES: A REVIEW

Frontiers of Agricultural Science and Engineering 2023, Volume 10, Issue 2,   Pages 210-225 doi: 10.15302/J-FASE-2022474

Abstract:

● Either increasing C input to or reducing C release from soils can enhance soil C sequestration.

Keywords: agroecosystems     climate change     negative emissions technology     net zero    

Carbon capture for decarbonisation of energy-intensive industries: a comparative review of techno-economic feasibility of solid looping cycles

Frontiers of Chemical Science and Engineering 2022, Volume 16, Issue 9,   Pages 1291-1317 doi: 10.1007/s11705-022-2151-5

Abstract: Carbon capture and storage will play a crucial role in industrial decarbonisation. However, the current literature presents a large variability in the techno-economic feasibility of CO2 capture technologies. Consequently, reliable pathways for carbon capture deployment in energy-intensive industries are still missing. This work provides a comprehensive review of the state-of-the-art CO2 capture technologies for decarbonisation of the iron and steel, cement, petroleum refining, and pulp and paper industries. Amine scrubbing was shown to be the least feasible option, resulting in the average avoided CO2 cost of between 62.7 €·tCO21 for the pulp and paper and 104.6 €·tCO21 for the iron and steel industry. Its average equivalent energy requirement varied between 2.7 (iron and steel) and 5.1 MJthkgCO21 (cement). Retrofits of emerging calcium looping were shown to improve the overall viability of CO2 capture for industrial decarbonisation. Calcium looping was shown to result in the average avoided CO2 cost of between 32.7 (iron and steel) and 42.9 €·tCO21 (cement). Its average equivalent energy requirement varied between 2.0 (iron and steel) and 3.7 MJthkgCO21 (pulp and paper). Such performance demonstrated the superiority of calcium looping for industrial decarbonisation. Further work should focus on standardising the techno-economic assessment of technologies for industrial decarbonisation.

Keywords: industrial CO2 emissions     CCS deployment     carbonate looping     net-zero industry     carbon capture    

13 Oct 2021

Keywords: 碳中和    

13 Oct 2021

Keywords: 碳中和    

A Storage-Driven CO2 EOR for a Net-Zero Emission Target Article

Yueliang Liu, Zhenhua Rui

Engineering 2022, Volume 18, Issue 11,   Pages 79-87 doi: 10.1016/j.eng.2022.02.010

Abstract: (EOR) method—namely, storage-driven CO2 EOR—whose main target is to realize net-zero

Keywords: CO2     EOR     Net CO2     emissions     Dimethyl ether     Storage-driven CO2     EOR     CO    

Research and industrialization of near-net rolling technology used in shaft parts

Zhenghuan HU, Baoyu WANG, Zhenhua ZHENG

Frontiers of Mechanical Engineering 2018, Volume 13, Issue 1,   Pages 17-24 doi: 10.1007/s11465-018-0480-3

Abstract:

Shaft part rolling is an efficient and green near-net shaping technology offering many advantages,

Keywords: cross wedge rolling     skew rolling     near-net rolling     shaft part    

Remediation of arsenic contaminated soil by sulfidated zero-valent iron

Frontiers of Environmental Science & Engineering 2021, Volume 15, Issue 5, doi: 10.1007/s11783-020-1377-z

Abstract:

• Sulfidation significantly enhanced As(V) immobilization in soil by zerovalent iron.

Keywords: Soil     As(V)     Sulfidation     Zero-valent iron     Magnetic separation    

Effects of different types of biochar on the properties and reactivity of nano zero-valent iron in soil

Frontiers of Environmental Science & Engineering 2021, Volume 15, Issue 5, doi: 10.1007/s11783-021-1388-4

Abstract:

• Biochar enhanced the mobility and stability of zero-valent iron nanoparticles

Keywords: Nano zero-valent iron     Biochar     BDE209     Transport     Soil    

Degradation of chlorinated phenols by nanoscale zero-valent iron

CHENG Rong, WANG Jianlong, ZHANG Weixian

Frontiers of Environmental Science & Engineering 2008, Volume 2, Issue 1,   Pages 103-108 doi: 10.1007/s11783-008-0009-9

Abstract: Recently nanoscale zero-valent iron received a great deal of attention because of its excellent performanceIn this study, nanoscale zero-valent iron particles were prepared using chemical reduction, and the reductivetransformations of three kinds of chlorinated phenols (2-CP, 3-CP, and 4-CP) by nanoscale zero-valent

Study on the Path of “Near-zero Emission” Coal-based Clean Energy Ecosystem Development

Zhang Yu-zhuo

Frontiers of Engineering Management 2014, Volume 1, Issue 1,   Pages 37-41 doi: 10.15302/J-FEM-2014007

Abstract: Developing a "near-zero emission" coal-based clean energy ecosystem bears great significance for thearticle delves into the development strategy, implementation pathways and key priorities of China's "near-zero

Keywords: near-zero emission     clean energy ecosystem     study on the path    

Effects of hydraulic retention time on net present value and performance in a membrane bioreactor treating

Dawei Yu, Jianxing Wang, Libin Zheng, Qianwen Sui, Hui Zhong, Meixue Cheng, Yuansong Wei

Frontiers of Environmental Science & Engineering 2020, Volume 14, Issue 6, doi: 10.1007/s11783-020-1280-7

Abstract: the membrane bioreactor, both full-scale (500 m3/d) and pilot (1.0 m3/d), were used to calculate the netTank construction cost was decisive in determining the net present value contributed 62.1% to the capital

Keywords: Antibiotic production wastewater     Net present value     Membrane bioreactor     Hydraulic retention time     Pollutant    

Title Author Date Type Operation

Getting to Net-Zero Emissions

Chris Greig

Journal Article

Hydrogen for a Net-Zero Carbon World

Nigel P Brandon, James J Brandon

Journal Article

GREENHOUSE GAS AND AMMONIA EMISSION MITIGATION PRIORITIES FOR UK POLICY TARGETS

Journal Article

SEQUESTERING ORGANIC CARBON IN SOILS THROUGH LAND USE CHANGE AND AGRICULTURAL PRACTICES: A REVIEW

Journal Article

Ding Yulong: Thermal Energy Storage for a Net-Zero Energy Future — The Role, Development Status and Outlook

丁玉龙(院士)

6 Jul 2021

Conference Videos

Carbon capture for decarbonisation of energy-intensive industries: a comparative review of techno-economic feasibility of solid looping cycles

Journal Article

13 Oct 2021

Conference Videos

13 Oct 2021

Conference Videos

A Storage-Driven CO2 EOR for a Net-Zero Emission Target

Yueliang Liu, Zhenhua Rui

Journal Article

Research and industrialization of near-net rolling technology used in shaft parts

Zhenghuan HU, Baoyu WANG, Zhenhua ZHENG

Journal Article

Remediation of arsenic contaminated soil by sulfidated zero-valent iron

Journal Article

Effects of different types of biochar on the properties and reactivity of nano zero-valent iron in soil

Journal Article

Degradation of chlorinated phenols by nanoscale zero-valent iron

CHENG Rong, WANG Jianlong, ZHANG Weixian

Journal Article

Study on the Path of “Near-zero Emission” Coal-based Clean Energy Ecosystem Development

Zhang Yu-zhuo

Journal Article

Effects of hydraulic retention time on net present value and performance in a membrane bioreactor treating

Dawei Yu, Jianxing Wang, Libin Zheng, Qianwen Sui, Hui Zhong, Meixue Cheng, Yuansong Wei

Journal Article