State Key Laboratory of Water Simulation, School of Environment, Beijing Normal University, Beijing 100875, China.
Bioresour Technol. 2011 May;102(10):5757-63. doi: 10.1016/j.biortech.2011.03.038. Epub 2011 Mar 17.
Thermal and hydrothermal biochars were characterized, and adsorption of bisphenol A (BPA), 17α-ethinyl estradiol (EE2) and phenanthrene (Phen) was determined to investigate the sorption characteristic difference between the two types of biochars. Thermal biochars were composed mostly of aromatic moieties, with low H/C and O/C ratios as compared to hydrothermal ones having diverse functional groups. Single-point organic carbon-normalized distribution coefficients (logK(OC)) of EE2 and BPA of hydrothermal biochars were higher than thermal biochars, while Phen logK(OC) values were comparable among them. X-ray diffraction and solid state nuclear magnetic resonance results suggested that hydrothermal biochars consisted of more amorphous aliphatic-C, possibly being responsible for their high sorption capacity of Phen. This study demonstrated that hydrothermal biochars could adsorb a wider spectrum of both polar and nonpolar organic contaminants than thermally produced biochars, suggesting that hydrothermal biochar derived from poultry and animal waste is a potential sorbent for agricultural and environmental applications.
热解生物炭和水热生物炭的特性进行了表征,并测定了它们对双酚 A(BPA)、17α-乙炔雌二醇(EE2)和菲的吸附作用,以研究这两种生物炭之间的吸附特性差异。热解生物炭主要由芳族部分组成,与具有多种官能团的水热生物炭相比,其 H/C 和 O/C 比值较低。水热生物炭的 EE2 和 BPA 的单点有机碳归一化分配系数(logK(OC))高于热解生物炭,而菲的 logK(OC)值在它们之间相当。X 射线衍射和固态核磁共振结果表明,水热生物炭中含有更多的无定形脂肪族-C,这可能是其对菲具有高吸附能力的原因。本研究表明,水热生物炭比热解生物炭能吸附更广泛的极性和非极性有机污染物,这表明来源于禽畜废物的水热生物炭是农业和环境应用中一种有潜力的吸附剂。