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饮用水处理铝污泥在绿色胶凝材料中的资源利用:水化特性和水化动力学。

Resource utilization of drinking water treatment aluminum sludge in green cementing materials: Hydration characteristics and hydration kinetics.

机构信息

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

出版信息

J Environ Sci (China). 2024 Oct;144:236-248. doi: 10.1016/j.jes.2023.08.024. Epub 2023 Aug 27.

Abstract

As a byproduct of water treatment, drinking water treatment aluminum sludge (DWTAS) has challenges related to imperfect treatment and disposal, which has caused potential harm to human health and the environment. In this paper, heat treatment DWTAS as a supplement cementitious material was used to prepare a green cementing material. The results show that the 800°C is considered as the optimum heat treatment temperature for DWTAS. DWTAS-800°C is fully activated after thermal decomposition to form incompletely crystallized highly active γ-AlO and active SiO. The addition of DWTAS promoted the formation of ettringite and C-(A)-S-H gel, which could make up for the low early compressive strength of cementing materials to a certain extent. When cured for 90 days, the compressive strength of the mortar with 30% DWTAS-800°C reached 44.86 MPa. The dynamic process was well simulated by Krstulović-Dabić hydration kinetics model. This study provided a methodology for the fabrication of environmentally friendly and cost-effective compound cementitious materials and proposed a "waste-to-resource" strategy for the sustainable management of typical solid wastes.

摘要

作为水处理的副产品,饮用水处理铝污泥(DWTAS)存在处理和处置不完善的问题,这对人类健康和环境造成了潜在危害。本文以热处理 DWTAS 作为补充胶凝材料来制备绿色胶凝材料。结果表明,800°C 被认为是 DWTAS 的最佳热处理温度。DWTAS-800°C 在热分解后完全激活,形成不完全结晶的高活性γ-AlO 和活性 SiO。DWTAS 的添加促进了钙矾石和 C-(A)-S-H 凝胶的形成,这在一定程度上可以弥补胶凝材料早期抗压强度低的问题。养护 90 天时,掺 30%DWTAS-800°C 的砂浆抗压强度达到 44.86 MPa。Krstulović-Dabić 水化动力学模型很好地模拟了动力学过程。该研究为制备环保、经济高效的复合胶凝材料提供了一种方法,并提出了一种典型固体废物可持续管理的“变废为宝”策略。

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