欢迎您!
东篱公司
退出
申报数据库
申报指南
立项数据库
成果数据库
期刊论文
会议论文
著 作
专 利
项目获奖数据库
位置:
成果数据库
>
期刊
> 期刊详情页
Enhanced removal of arsenic from a highly laden industrial effluent using a combined coprecipitation
ISSN号:0944-1344
期刊名称:Environmental Science and Pollution Research
时间:2014.5
页码:6729-6735
相关项目:纳米孔载体内Fe(III)氧化物净化典型重金属的特性与机理
作者:
Wu, Bian|Ma, Hongrui|Pan, Bingcai|Zhang, Quanxing|
同期刊论文项目
纳米孔载体内Fe(III)氧化物净化典型重金属的特性与机理
期刊论文 24
同项目期刊论文
Antimony(V) removal from water by hydrated ferric oxides supported by calcite sand and polymeric ani
Struvite-based phosphorus recovery from the concentrated bioeffluent by using HFO nanocomposite adso
Simultaneous organic/inorganic removal from water using a new nanocomposite adsorbent: A case study
Fabrication of a New Hydrous Zr(IV) Oxide-Based Nanocomposite for Enhanced Pb(II) and Cd(II) Removal
Modeling batch and column phosphate removal by hydrated ferric oxide-based nanocomposite using respo
EDTA对树脂基纳米水合氧化铁溶出性能的影响
Oxalate-promoted dissolution of hydrous ferric oxide immobilized within nanoporous polymers: Effect
New Strategy To Enhance Phosphate Removal from Water by Hydrous Manganese Oxide
Spherical polystyrene-supported nano-Fe3O4 of high capacity and low-field separation for arsenate re
Surface chemistry of polymer-supported nano-hydrated ferric oxide for arsenic removal: effect of hos
Validation of polymer-based nano-iron oxide in deep phosphorus removal from bioeffluent: Laboratory
乙醇处理对树脂基纳米水合氧化铁结构及其除砷性能的影响
Mathematically modeling fixed-bed adsorption in aqueous systems
Surface Chemistry of Nanosized Hydrated Ferric Oxide Encapsulated Inside Porous Polymer: Modeling an
Acid and organic resistant nano-hydrated zirconium oxide (HZO)/polystyrene hybrid adsorbent for arse