波音游戏-波音娱乐城赌球打不开

Link Copied.
Method of Floculation Using a Metal-Organic-Framework
Energy & Environment
Health & Wellness
Nanotechnology and New Materials
Waste Treatment/Management

中文版本

Opportunity

Harmful algal blooms (HABs) reduce water quality and pose a risk to aquatic and human health. As their frequency of occurrence is increasing, it is vital to develop more advanced and effective technologies to control HABs and treat the affected water. Flocculation (the process of aggregating fine particles in a liquid to facilitate their removal), followed by gravity sedimentation, is one way of removing microalgae from natural water. However, traditional flocculant agents (such as natural clay) may lack efficiency and take a long time to remove harmful algae. Furthermore, some materials are inherently toxic in water and thus not suitable for use in natural water sources without a further process to treat the water. Therefore, there is a need to develop a flocculant that is environmentally friendly (i.e., water-stable and not inherently toxic) and does not cause toxins within the HABs to be released into the water upon treatment.

Technology

The novel method involves the use of a chromium-based metal–organic framework (MOF), specifically NH?-MIL-101, to flocculate harmful cyanobacteria and remove them from water. MOFs have unique structural properties that create a porous network that can effectively interact with and capture microalgae. Although most MOFs lack stability, chromium-based MOFs like the novel NH?-MIL-101 are chemically stable in water and thus environmentally friendly. This allows the novel MOF to efficiently remove harmful algal blooms from natural water sources without creating secondary pollution and without causing the harmful algae to release intracellular toxins. The method demonstrates high stability and efficiency, requiring low dosages of the MOF and short treatment times, while maintaining effectiveness across a broad range of pH levels and algal densities. 

Advantages

  • The novel chromium-based metal–organic framework (MOF) outperforms numerous commercially available algal removal materials. It demonstrates high stability and capacity for cyanobacteria removal, requiring lower dosages and shorter treatment times than conventional methods.
  • As chromium-based MOFs are environmentally friendly, the novel method reduces the risk of secondary pollution compared with traditional chemical flocculants.
  • The novel method minimises membrane damage and cell lysis during the algal removal process, significantly reducing the risk of releasing intracellular toxins into the water.
  • Unlike many existing methods, the novel flocculation method is effective across a wide range of pH levels and algal densities, making it suitable for various aquatic environments, including freshwater, brackish water and saltwater.

Applications

  • Environmental remediation in water treatment facilities (primary application is harmful algal bloom removal from freshwater sources, with the potential for extension to other types of aqueous environments)
  • Aquaculture operations and agriculture
IP Status
Patent filed
Technology Readiness Level (TRL)
4
Inventor(s)
Dr. LI Yiling
Questions about this Technology?
Contact Our Tech Manager
Contact Our Tech Manager
Method of Floculation Using a Metal-Organic-Framework

 

Personal Information

Organization Type
Interest Areas
大发888dafa8668| 现金百家乐人气最高| 百家乐官网博娱乐网提款速度快不| 香港百家乐官网娱乐场开户注册 | 至富百家乐官网的玩法技巧和规则| 威尼斯人娱乐场是真的吗| 百家乐官网游戏机图片| 百家乐筹码币方形| 皇冠平台出| 百家乐视频官方下载| 大发888网页ban| 绥阳县| 百家乐玩法注意事项| 百家乐赌场| 打百家乐的技术| 黑水县| 迪威百家乐娱乐平台| 百家乐官网视频连线| 百家乐怎样玩的| 澳门百家乐官网官方网址| 网页百家乐游戏下载| 百家乐官网看大路| 德州扑克比赛规则| 百家乐公试打法| 社会| 曼哈顿百家乐的玩法技巧和规则| 百家乐官网投资心得| 百家乐家乐娱乐城| 百家乐官网赌的是心态吗| 娱乐城送18| 博乐百家乐游戏| 仕达屋娱乐城| 澳门百家乐网上赌博| 百家乐官网皇室百家乐官网| 娱乐城注册送68| 免佣百家乐赌场优势| 海立方百家乐官网海立方| 菲律宾太阳城网| 百家乐纯数字玩法| 百家乐官网稳赢投注| 大发888 赌博网站|