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Journal Article
Powder technology, ISSN 0032-5910, 06/2017, Volume 315, pp. 270 - 275
To solve the drawbacks of the conventional foaming method used for dust suppression, a new foaming device is designed through integrating the foaming agent... 
Dust suppression | Coal mines | Foaming agent | Foaming device | ENGINEERING, CHEMICAL | JET PUMP CAVITATION | ROADHEADER | Coal industry | Mineral industry | Mining industry | Investigations
Journal Article
Process safety and environmental protection, ISSN 0957-5820, 2019, Volume 123, pp. 351 - 357
Journal Article
Journal of loss prevention in the process industries, ISSN 0950-4230, 11/2012, Volume 25, Issue 6, pp. 1075 - 1084
In order to overcome the drawbacks of foam technology for controlling mine dust, an original design of foaming agent adding device was introduced, and its... 
Jet | Adding ratio | Dust suppression | Foaming agent | Pressure loss | ENGINEERING, CHEMICAL | Coal industry | Air pollution | Universities and colleges | Foams | Design engineering | Coal mines | Underground | Foaming agents | Devices | Dust control | Mines
Journal Article
Powder technology, ISSN 0032-5910, 02/2019, Volume 344, pp. 842 - 848
Journal Article
Polymers for advanced technologies, ISSN 1042-7147, 2018, Volume 29, Issue 9, pp. 2449 - 2456
Journal Article
Tunnelling and underground space technology, ISSN 0886-7798, 2015, Volume 49, pp. 1 - 8
[Display omitted] •The contact angle of new complexing foaming agent (CFA) is 20–30°.•The foam preparation method for dust suppression is proposed.•A foaming... 
Tunneling | Dust suppression | Foam | Foaming agent | Roadheader | ENGINEERING, CIVIL | CONSTRUCTION & BUILDING TECHNOLOGY | PNEUMOCONIOSIS | DRIVEN | COAL-MINES | WATER | Retarding | Foams | Dust | Foaming | Spraying | Underground | Foaming agents
Journal Article
Chemical engineering journal (Lausanne, Switzerland : 1996), ISSN 1385-8947, 2017, Volume 307, pp. 1017 - 1025
[Display omitted] •Low-density PLLA foams were produced by supercritical CO2 foaming.•Pressure-induce flow method could enhance PLLA’s crystallization.•PLLA... 
CO2 foaming | Poly (l-lactic acid) | Tissue engineering | Pressure-induced flow (PIF) | Open-cellular scaffold | foaming | Poly (L-lactic acid) | CRYSTALLIZATION | FOAMS | MECHANISM | BEHAVIOR | STRENGTH | BLENDS | ENGINEERING, CHEMICAL | POLYPROPYLENE | ENGINEERING, ENVIRONMENTAL | POLY(L-LACTIC ACID) | POLY(LACTIC ACID) | FABRICATION | Lactic acid | Usage | Porosity
Journal Article
Polymer (Guilford), ISSN 0032-3861, 10/2018, Volume 155, pp. 116 - 128
The fixation stage of cellular structure during polymer foaming process is difficult to control due to difficult removing of internal heat, especially for... 
Water | sc-CO2 batch foaming | Polypropylene foam | Hydrophilic filler | In-situ cooling | CRYSTALLIZATION | POLYMER SCIENCE | NANOCOMPOSITE FOAMS | PERMEABILITY | PERFORMANCE | SUPERCRITICAL CARBON-DIOXIDE | COPOLYMERS | AGENT | BEHAVIORS | ISOTACTIC POLYPROPYLENE
Journal Article
Journal Article