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膨润土及其复合材料作为植物磷吸附剂和磷补充剂的性能研究。

Studies on the performance of bentonite and its composite as phosphate adsorbent and phosphate supplementation for plant.

作者信息

Angkawijaya Artik Elisa, Santoso Shella Permatasari, Bundjaja Vania, Soetaredjo Felycia Edi, Gunarto Chintya, Ayucitra Aning, Ju Yi-Hsu, Go Alchris Woo, Ismadji Suryadi

机构信息

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.

Department of Chemical Engineering, Widya Mandala Catholic University Surabaya, Surabaya 60114, Indonesia; Chemical Engineering Department, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.

出版信息

J Hazard Mater. 2020 Nov 15;399:123130. doi: 10.1016/j.jhazmat.2020.123130. Epub 2020 Jun 12.

Abstract

Organo-bentonite (OrB) was prepared by modifying bentonite with chitosan, and natural surfactant extracted from Sapindus rarak fruit. The physical alteration post-modification, performance of phosphates (Pi) adsorption, and possibility as a Pi-supplementation for plants of OrB were assessed and compared to acid-activated bentonite (AAB). The physical alteration due to modification of bentonite was characterized. SEM images were not indicating significant morphology differences between OrB and AAB. Existence of chitosan layers in OrB causes a decrease in basal spacing as characterized using XRD. The BET surface area of OrB was decreased compared to AAB due to pore coverage by chitosan. Adsorption studies reveal that OrB has a higher adsorption capacity towards Pi than AAB, which is 97.608 and 131.685 mg/g at 323 K for AAB and OrB, respectively. The H-shape isotherm curve indicates that chemisorption is dominantly controlling the adsorption. The isotherm and kinetics adsorption were well fitted to Langmuir and Pseudo-second order models, respectively. Performance of AAB and OrB as Pi-supplementation was assessed based on growth phenotypes of Arabidopsis thaliana; seedlings show that supplementation of Pi@AAB and Pi@OrB (at half doses) can promote primary root extension. These results also demonstrate the safety of direct disposal of the materials into the soil.

摘要

通过用壳聚糖和从无患子果实中提取的天然表面活性剂对膨润土进行改性,制备了有机膨润土(OrB)。评估了改性后的物理变化、磷酸盐(Pi)吸附性能以及OrB作为植物Pi补充剂的可能性,并与酸活化膨润土(AAB)进行了比较。对膨润土改性引起的物理变化进行了表征。扫描电子显微镜图像显示OrB和AAB之间没有明显的形态差异。使用X射线衍射表征发现,OrB中壳聚糖层的存在导致层间距减小。由于壳聚糖覆盖孔隙,OrB的比表面积比AAB小。吸附研究表明,OrB对Pi的吸附能力高于AAB,在323 K时,AAB和OrB对Pi的吸附量分别为97.608和131.685 mg/g。H型等温线表明化学吸附是吸附的主要控制因素。等温吸附和动力学吸附分别很好地符合朗缪尔模型和准二级模型。基于拟南芥的生长表型评估了AAB和OrB作为Pi补充剂的性能;幼苗表明,补充Pi@AAB和Pi@OrB(半剂量)可以促进初生根伸长。这些结果还证明了将这些材料直接施用于土壤的安全性。

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