国际标准期刊号: 2155-952X

生物技术与生物材料

开放获取

我们集团组织了 3000 多个全球系列会议 每年在美国、欧洲和美国举办的活动亚洲得到 1000 多个科学协会的支持 并出版了 700+ 开放获取期刊包含超过50000名知名人士、知名科学家担任编委会成员。

开放获取期刊获得更多读者和引用
700 种期刊 15,000,000 名读者 每份期刊 获得 25,000 多名读者

索引于
  • 哥白尼索引
  • 谷歌学术
  • 夏尔巴·罗密欧
  • 打开 J 门
  • Genamics 期刊搜索
  • 学术钥匙
  • 研究圣经
  • 中国知网(CNKI)
  • 访问全球在线农业研究 (AGORA)
  • 电子期刊图书馆
  • 参考搜索
  • 哈姆达大学
  • 亚利桑那州EBSCO
  • OCLC-世界猫
  • SWB 在线目录
  • 虚拟生物学图书馆 (vifabio)
  • 普布隆斯
  • 日内瓦医学教育与研究基金会
  • 欧洲酒吧
  • ICMJE
分享此页面

抽象的

Performance of Pilot-Scale Membrane Aerated Biofilm Reactors Integrated With Anoxic Nano-Biotechnological Reactor for Domestic Wastewater Treatment

Chris Daniel

Plastics, micro- and nano-plastics air pollution are absolutely a extreme and critical ecological chance due to the sturdiness of plastics and their unfavourable influences on people and wildlife. Most scientific investigations have addressed the classification, types, distribution, ingestion, fate, impacts, degradation, and a range of destructive impact of plastics. Heretofore, scanty reviews have addressed enforcing techniques for the remediation and mitigation of plastics. Therefore, in this paper, we evaluation the modern-day research on the degradation of plastics, micro- and nano-plastics aided by means of microorganisms, and discover the applicable degradation residences and mechanisms. Diverse microorganisms are classified, such as bacteria, fungi, algae, cyanobacteria, wax worms, and enzymes that can decompose number plastics.

免责声明: 此摘要通过人工智能工具翻译,尚未经过审核或验证。