Resource Type

Journal Article 6

Year

2023 1

2021 2

2016 1

2011 1

2000 1

Keywords

Cracking 1

Degradation 1

Highly energetic electron 1

Hydrolysis 1

Ozone 1

PHREEQC-2 1

Phenol 1

Plastics 1

Submerged arc plasma 1

Thermal plasma 1

Wastewater 1

adsorbing solute 1

advection dispersion equation (ADE) 1

bio-based composites 1

conservative solute 1

degradable 1

degradable material 1

degradable solute 1

mobile-immobile model (MIM) 1

open ︾

Search scope:

排序: Display mode:

Correction to: Highly degradable chitosan-montmorillonite (MMT) nanocomposite hydrogel for controlled

Frontiers of Environmental Science & Engineering 2023, Volume 17, Issue 8, doi: 10.1007/s11783-023-1704-2

Submerged arc plasma system combined with ozone oxidation for the treatment of wastewater containing non-degradable

Frontiers of Environmental Science & Engineering 2021, Volume 15, Issue 5, doi: 10.1007/s11783-020-1384-0

Abstract:

• Submerged arc plasma was introduced in terms of wastewater treatment.

Keywords: Thermal plasma     Submerged arc plasma     Wastewater     Ozone     Phenol     Highly energetic electron    

Research on bio-based degradable composites

Liu Xiaogang,Wang Li,Li Shizhong,Fan Chenyu

Strategic Study of CAE 2011, Volume 13, Issue 2,   Pages 90-95

Abstract:

Starch/poly (lactic acid) composite is such a potential biodegradable composite with great expectation for its excellent mechanical properties and competitive price to petroleum–based plastic. This paper focuses on status of biodegradable plastics and the research progress on starch/poly (lactic acid) and their composites, and gives a figure of the trend of technology development and industrialization on these bio-based composites.

Keywords: progress     bio-based composites     degradable     starch     poly (lactic acid)    

Tissue Engineering: Leading Edge of Modern Bio-life Science

Zhang Disheng

Strategic Study of CAE 2000, Volume 2, Issue 10,   Pages 21-25

Abstract:

Tissue engineering, applying the theories of cell biology and engineering, is a new scientific field to study and develop biologic substitutes for repairing tissue defects and restoring organ function. Succeeding cytobiology and molecular biology, it is a new mile stone in life science, marking that in medical science we will step into a new era-fabricating tissues and organs for transplantation .

This paper discusses briefly the historical development of tissue engineering, the status of researches in different kinds of tissue and organ, and present development and acheivements in tissue engineering in China.

Due to its great scientific value and wide applying prospect, tissue engineering is becoming the central point in life science research in the 21 st century. Accordingly, establishing and developing tissue engineering enterprise as soon as possible is of great significance in accelerating medical science and national economy development.

Keywords: tissue engineering     degradable material     reconstruction of tissue and organ     seed cell    

Degradable Plastics Are Vulnerable to Cracks Letter

Xuxu Yang, Jason Steck, Jiawei Yang, Yecheng Wang, Zhigang Suo

Engineering 2021, Volume 7, Issue 5,   Pages 624-629 doi: 10.1016/j.eng.2021.02.009

Abstract: These findings will aid the development of degradable plastics for healthcare and sustainability.

Keywords: Degradation     Plastics     Hydrolysis     pH     Cracking    

Comparison of the performance of traditional advection-dispersion equation and mobile-immobile model for simulating solute transport in heterogeneous soils

Haizhu HU,Xiaomin MAO

Frontiers of Agricultural Science and Engineering 2016, Volume 3, Issue 3,   Pages 241-248 doi: 10.15302/J-FASE-2016108

Abstract: In this paper, the transport of conservative, adsorbing and degradable solutes through a 1 m heterogeneousThe breakthrough curves of degradable solute obtained by MIM and ADE nearly overlap with a high degradationrate coefficient, indicating that MIM and ADE perform similarly for simulating degradable solute transportphysical significance of dispersivity should be carefully considered when MIM is applied to simulate the degradable

Keywords: advection dispersion equation (ADE)     mobile-immobile model (MIM)     conservative solute     adsorbing solute     degradable    

Title Author Date Type Operation

Correction to: Highly degradable chitosan-montmorillonite (MMT) nanocomposite hydrogel for controlled

Journal Article

Submerged arc plasma system combined with ozone oxidation for the treatment of wastewater containing non-degradable

Journal Article

Research on bio-based degradable composites

Liu Xiaogang,Wang Li,Li Shizhong,Fan Chenyu

Journal Article

Tissue Engineering: Leading Edge of Modern Bio-life Science

Zhang Disheng

Journal Article

Degradable Plastics Are Vulnerable to Cracks

Xuxu Yang, Jason Steck, Jiawei Yang, Yecheng Wang, Zhigang Suo

Journal Article

Comparison of the performance of traditional advection-dispersion equation and mobile-immobile model for simulating solute transport in heterogeneous soils

Haizhu HU,Xiaomin MAO

Journal Article