蜜臀av性久久久久|国产免费久久精品99|国产99久久久久久免费|成人精品一区二区三区在线|日韩精品一区二区av在线|国产亚洲欧美在线观看四区|色噜噜综合亚洲av中文无码|99久久久国产精品免费播放器

<cite id="ygcks"><center id="ygcks"></center></cite>
  • 
    
  • <rt id="ygcks"></rt>
    <cite id="ygcks"></cite>
  • <li id="ygcks"><source id="ygcks"></source></li> <button id="ygcks"></button>
  • <button id="ygcks"></button>
    <button id="ygcks"><input id="ygcks"></input></button>
    
    
    <abbr id="ygcks"><source id="ygcks"></source></abbr>
    
    
    
     
    
    

    Chinese scientists develop new material to tackle oil pollution

    Source: Xinhua| 2019-05-07 13:30:13|Editor: Li Xia
    Video PlayerClose

    BEIJING, May 7 (Xinhua) -- Chinese scientists have developed new biomimetic polypropylene foams for oil-water separation, which can be used to prevent and control oil pollution.

    Oil-water separation is a global challenge due to increasing industrial oil-containing waste water and frequent oil spills. Consequently, research on high-efficiency oil-water separation materials and technologies has scientific significance and application value.

    Some conventional methods for tackling oil pollution such as combustion and filtration have shortcomings including high energy consumption, long duration and possible secondary pollution.

    Scientists from the Ningbo Institute of Materials Technology and Engineering under the Chinese Academy of Sciences have designed new biomimetic polypropylene foams with a novel structure that can separate water and oil with high efficiency in complex environments.

    The bio-inspired foam has a rough surface, and a hollow tubular structure resembling a honeycomb. It exhibited both superior absorption and filtration ability during the oil-water separation. When the oil-water mixture passes through the foam, pure water can quickly pass through it, with the foam absorbing the oil in seconds.

    The foam is easy to prepare, cheap and environmentally friendly, thus offering a great potential application for large-scale oil-water separation. The team has filed patents for this technology.

    The research was published in the Chemical Engineering Journal.

    TOP STORIES
    EDITOR’S CHOICE
    MOST VIEWED
    EXPLORE XINHUANET
    010020070750000000000000011100001380400481
    房产| 彰武县| 新竹县| 娄烦县| 曲松县| 南丹县| 屯留县| 闵行区| 昆明市| 宁国市| 樟树市| 都江堰市| 西充县| 公主岭市| 黎城县| 武陟县| 澎湖县| 东平县| 仁化县| 昌平区| 澄城县| 南投县| 德保县| 镇巴县| 江都市| 重庆市| 增城市| 揭西县| 桐柏县| 米脂县| 浮梁县| 曲阳县| 通许县| 镇安县| 老河口市| 明溪县| 泰宁县| 承德市| 凭祥市| 吉林省| 庐江县|