INTEGRATED WET SCRUBBING SYSTEM
「INTEGRATED WET SCRUBBING SYSTEM」对应一条老挝专利公开记录,由 PACIFIC GREEN TECHNOLOGIES INC. 于 2016-08-31 提交申请,当前状态为等待形式审查。标识字段包括:申请号 P/637;DIP 编号 LAP637;主管局代码 LA;保护类型 Patent - PCT National Phase。时间线要点:公开/公告日 2026-01-16。技术或外观分类记载为 B01D 47/00、B01D 53/14、B01D 53/92、B03C 5/00。发明人 / 设计人包括 McCLELLAND, Kenneth James。代理机构 / 代理人记载为 Tilleke & Gibbins Lao Co., Ltd。公开摘要提示:The present invention relates to an advanced system for the removal of air pollutants from combustion and non-combustion processes that gen…。
The following summary describes a Laos patent titled “INTEGRATED WET SCRUBBING SYSTEM”, filed by PACIFIC GREEN TECHNOLOGIES INC. on 2016-08-31; current status: Awaiting formal examination. Identifiers include application No. P/637; DIP id LAP637; protection kind Patent - PCT National Phase. Key dates: publication 2026-01-16. Classification: B01D 47/00、B01D 53/14、B01D 53/92、B03C 5/00. Inventor(s)/designer(s): McCLELLAND, Kenneth James. Abstract hint: The present invention relates to an advanced system for the removal of air pollutants from combustion and non-combustion processes that gen…. Status labels may change after office actions; refresh or consult primary DIP data before commercial decisions.
ກ່ຽວກັບ ສິດທິບັດ «INTEGRATED WET SCRUBBING SYSTEM» ໃນລາວ, ຍື່ນໂດຍ PACIFIC GREEN TECHNOLOGIES INC. ໃນວັນທີ 2016-08-31; ສະຖານະ ລໍຖ້າກວດຮູບແບບ. ຕົວລະບຸ: ເລກທີຄຳຮ້ອງ P/637; ລະຫັດ DIP LAP637; ປະເພດການປົກປ້ອງ Patent - PCT National Phase. ວັນທີສຳຄັນ: ວັນເຜີຍແຜ່ 2026-01-16. ປະເພດ/ຫ້ອງ: B01D 47/00、B01D 53/14、B01D 53/92、B03C 5/00. ນັກປະດິດ/ນັກອອກແບບ: McCLELLAND, Kenneth James. ສະຫຼຸບ: The present invention relates to an advanced system for the removal of air pollutants from combustion and non-combustion processes that gen…. ໃຊ້ LaoBiz ເພື່ອເບິ່ງ IP ອື່ນຂອງຜູ້ຍື່ນຄົນດຽວ ຫຼື ໜ້າວິສາຫະກິດທີ່ກ່ຽວຂ້ອງ.
P/637
图样
基础信息
- 类型
- 专利
- 申请号
P/637- 状态
- 等待形式审查
- 申请人
- PACIFIC GREEN TECHNOLOGIES INC.
- 代理机构
- Tilleke & Gibbins Lao Co., Ltd
- 申请日期
- 2016-08-31
- 公开/公告日
- 2026-01-16
- 国际分类
- B01D 47/00 · B01D 53/14 · B01D 53/92 · B03C 5/00
- 商品 / 服务
- —
办理流程
根据当前状态动态标注-
提交申请
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形式审查 进行中
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实质审查
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公开
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授权
关联分析
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摘要
The present invention relates to an advanced system for the removal of air pollutants from combustion and non-combustion processes that generate air pollutants that are regulated by environmental agencies. The pollutants include, but are not limited to, particulate matter; acid gases including sulphur dioxide, hydrogen chloride and hydrogen fluoride; metals such as mercury, dioxins, VOCs and reagents such as ammonia. The system collects and processes the polluted gas stream through two forms of wet method scrubbing technology. The gas is first passed through a wet scrubbing reactor capable of complete interaction between the gas and the selected liquid scrubbing reagent at one or more interfaces. The scrubbing medium is selected for its reactivity with the pollutants targeted in the process, its cost and impact on the environment. From the exit of the scrubbing reactor the gas is directed through a wet electrostatic precipitator to remove the remaining targeted pollutants to very high removal efficiency.
The present invention relates to an advanced system for the removal of air pollutants from combustion and non-combustion processes that generate air pollutants that are regulated by environmental agencies. The pollutants include, but are not limited to, particulate matter; acid gases including sulphur dioxide, hydrogen chloride and hydrogen fluoride; metals such as mercury, dioxins, VOCs and reagents such as ammonia. The system collects and processes the polluted gas stream through two forms of wet method scrubbing technology. The gas is first passed through a wet scrubbing reactor capable of complete interaction between the gas and the selected liquid scrubbing reagent at one or more interfaces. The scrubbing medium is selected for its reactivity with the pollutants targeted in the process, its cost and impact on the environment. From the exit of the scrubbing reactor the gas is directed through a wet electrostatic precipitator to remove the remaining targeted pollutants to very high removal efficiency.