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公开(公告)号:US11305995B2
公开(公告)日:2022-04-19
申请号:US16812798
申请日:2020-03-09
Inventor: Md. Abdul Aziz , Shaik Inayath Basha , Abbas Saeed Hakeem , Mohammed Maslehuddin , Shamsad Ahmad
Abstract: A method of producing submicron carbon particles from oil ash. The method comprises pyrolyzing the oil ash to produce a pyrolyzed oil ash and milling the pyrolyzed oil ash to produce carbon particles having a mean particle size in the submicron regime. The method produces submicron carbon particles which have a very high carbon content (90 to 99 atom %) and a very low content of oxygen, the particles having a ratio of carbon to oxygen ratio of 10:1 to 99:1. The size of the particles may be controlled by the duration of the milling. The submicron carbon particles are devoid of functionalities containing carbon-oxygen double bonds as measured by Raman spectroscopy and X-ray photoelectron spectroscopy (XPS).
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公开(公告)号:US20200181016A1
公开(公告)日:2020-06-11
申请号:US16793515
申请日:2020-02-18
Inventor: Mohammed Rizwan ALI , Jobin Jose , Salah U. Al-Dulaijan , Shaik Inayath Basha , Mohammed Maslehuddin
Abstract: A method of making a structural lightweight and thermal insulating concrete is described. The concrete has a coarse aggregate partly replaced by recycled plastic pieces. This enables the concrete to maintain a high compressive strength, low thermal conductivity, and low weight, while providing a use for waste plastic. The waste plastic pieces may comprise polyethylene in the form of flakes, fibers, or granules. Due to its low unit weight, adequate compressive strength and high thermal resistance the developed concrete can be used as a structural lightweight and thermal insulating concrete. The use of this concrete leads to economic and environmental benefits.
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公开(公告)号:US10669201B2
公开(公告)日:2020-06-02
申请号:US16026734
申请日:2018-07-03
Inventor: Mohammed Rizwan Ali , Jobin Jose , Salah U. Al-Dulaijan , Shaik Inayath Basha , Mohammed Maslehuddin
IPC: C04B18/20 , C04B28/04 , C04B14/28 , C04B14/06 , C04B24/26 , C04B40/00 , C04B18/02 , C04B111/40 , C04B103/32
Abstract: A method of making a structural lightweight and thermal insulating concrete is described. The concrete has a coarse aggregate partly replaced by recycled plastic pieces. This enables the concrete to maintain a high compressive strength, low thermal conductivity, and low weight, while providing a use for waste plastic. The waste plastic pieces may comprise polyethylene in the form of flakes, fibers, or granules. Due to its low unit weight, adequate compressive strength and high thermal resistance the developed concrete can be used as a structural lightweight and thermal insulating concrete. The use of this concrete leads to economic and environmental benefits.
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公开(公告)号:US12146072B2
公开(公告)日:2024-11-19
申请号:US17896205
申请日:2022-08-26
Inventor: Md. Abdul Aziz , Shaik Inayath Basha , Mohammed Maslehuddin , Shamsad Ahmad
Abstract: A method for producing a submicron-/nano-jute carbon/epoxy composite anti-corrosion coating is described. The method includes heating a jute stick, grinding the jute stick to form a first powder; pyrolyzing the first powder to form a pyrolyzed carbon; grinding the pyrolyzed carbon to form a second powder; ball milling the second powder under the wet conditions to form a submicron-/nano-jutecarbon; mixing the submicron-/nano-jutecarbon, and an epoxy resin to form a first mixture; mixing a hardener with the first mixture to form a second mixture, and coating the second mixture on a mild steel substrate and curing to form the submicron-/nano-jutecarbon/epoxy composite anti-corrosion coating.
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公开(公告)号:US11124451B2
公开(公告)日:2021-09-21
申请号:US16793515
申请日:2020-02-18
Inventor: Mohammed Rizwan Ali , Jobin Jose , Salah U. Al-Dulaijan , Shaik Inayath Basha , Mohammed Maslehuddin
IPC: C04B18/20 , C04B28/04 , C04B14/28 , C04B14/06 , C04B24/26 , C04B40/00 , C04B18/02 , C04B111/40 , C04B103/32
Abstract: A method of making a structural lightweight and thermal insulating concrete is described. The concrete has a coarse aggregate partly replaced by recycled plastic pieces. This enables the concrete to maintain a high compressive strength, low thermal conductivity, and low weight, while providing a use for waste plastic. The waste plastic pieces may comprise polyethylene in the form of flakes, fibers, or granules. Due to its low unit weight, adequate compressive strength and high thermal resistance the developed concrete can be used as a structural lightweight and thermal insulating concrete. The use of this concrete leads to economic and environmental benefits.
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