Suppr超能文献

洞悉老化生物炭吸附 PAEs 的机理:老化和共存 Cd 的相互影响。

Insight into mechanism of aged biochar for adsorption of PAEs: Reciprocal effects of ageing and coexisting Cd.

机构信息

State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences, Beijing, 100083, PR China; School of Earth Sciences and Resources, China University of Geosciences, Beijing, 100083, PR China.

UK Biochar Research Centre, School of GeoSciences, University of Edinburgh, Edinburgh, EH9 3FF, UK.

出版信息

Environ Pollut. 2018 Nov;242(Pt B):1098-1107. doi: 10.1016/j.envpol.2018.07.124. Epub 2018 Aug 1.

Abstract

Biomass derived biochar is a stable carbon-rich product with potential for soil amendment. Introduced into the natural environment, biochar will naturally experience 'ageing' processes that are liable to change its physicochemical properties and the mobility of sorbed pollutants over the longer term. To elucidate the reciprocal effects of biochar ageing and heavy metal adsorption on the affinity of biochar for organic pollutants, we systematically assessed the adsorption of diethyl phthalate (DEP), representative of phthalic acid esters (PAEs), to fresh and aged biochars with and without coexistence of Cd. Long-term oxidative ageing was simulated using 5% HO and applied to biochar samples made from corn cob, maize straw and wheat straw made by pyrolysis at both 450 °C and 650 °C. Our results showed that biochar made at lower temperature (450 °C) and from straw exhibited the higher adsorption capacity, owing to their greater polarity and abundance of O-containing functional groups. The adsorption of DEP onto fresh biochars was found to be driven by van der Waals force and H-bonding. Biochar made at the higher temperature (650 °C) displayed higher carbon stability than that produced at lower pyrolysis temperature. Oxidized biochar showed lower adsorption capacity than fresh biochar owing to the formation of three-dimensional water clusters on biochar surface, which blocked accessible sites and decreased the H-bonding effect between DEP and biochars. The coexistence of Cd suppressed the sorption of DEP, via competition for the same electron-rich sites. This indicates that cation/π-π EDA interactions are the primary mechanism for PAE and Cd stabilization on biochar. Our study sheds light on the mechanism of organic pollutant sorption by biochar, as well as the potential susceptibilities of this sorption to ageing effects in the natural environment.

摘要

生物炭是一种稳定的富碳产物,具有土壤改良的潜力。引入自然环境后,生物炭将经历“老化”过程,这可能会在较长时间内改变其物理化学性质和被吸附污染物的迁移性。为了阐明生物炭老化和重金属吸附对生物炭对有机污染物亲和力的相互影响,我们系统评估了邻苯二甲酸二乙酯(DEP)在新鲜和老化生物炭中的吸附,这些生物炭有或没有共存的 Cd。使用 5%HO 模拟长期氧化老化,并应用于由玉米芯、玉米秸秆和小麦秸秆在 450°C 和 650°C 热解制成的生物炭样品。结果表明,较低温度(450°C)和秸秆制成的生物炭表现出更高的吸附能力,这归因于它们更大的极性和丰富的含氧官能团。发现 DEP 对新鲜生物炭的吸附是由范德华力和氢键驱动的。在较高温度(650°C)下制备的生物炭比在较低热解温度下制备的生物炭显示出更高的碳稳定性。氧化生物炭的吸附能力低于新鲜生物炭,这是由于生物炭表面形成了三维水簇,这些水簇阻止了可及的位点,并减少了 DEP 和生物炭之间的氢键效应。Cd 的共存通过竞争相同的富电子位点来抑制 DEP 的吸附。这表明阳离子/π-π EDA 相互作用是 PAE 和 Cd 在生物炭上稳定的主要机制。我们的研究揭示了生物炭对有机污染物吸附的机制,以及这种吸附在自然环境中对老化效应的潜在敏感性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验