Treatment of distiller grain with wet-process phosphoric acid leads to biochar for the sustained release of nutrients and adsorption of Cr(VI)

生物炭 磷酸 化学 营养物 热解 吸附 修正案 肥料 磷酸盐 水解 碳纤维 核化学 生物量(生态学) 制浆造纸工业 农学 材料科学 有机化学 生物 法学 复合材料 工程类 复合数 政治学
作者
Xiaohou Zhou,Dehua Xu,Jingxu Yang,Zhengjuan Yan,Zhiye Zhang,Benhe Zhong,Xin-Long Wang
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:441: 129949-129949 被引量:32
标识
DOI:10.1016/j.jhazmat.2022.129949
摘要

Soil amendment products, such as biochar, with both sustained nutrient release and heavy metal retention properties are of great need in agricultural and environmental industries. Herein, we successfully prepared a new biochar material with multinutrient sustained-release characteristics and chromium removal potential derived from distiller grain by wet-process phosphoric acid (WPPA) modification without washing. SEM, TEM TG-IR, in situ DRIFTS and XRD characterization indicated that biochar and polyphosphate formed simultaneously and were tightly intertwined by one-step pyrolysis. The optimal product (PKBC-400) had the most stable carbon structure and an adequate P-O-P structure with less P loss. Batch experiments illustrated that 92.83% P (ortho-P), 85.94% K, 41.49% Fe, 78.42% Al and 65.60% Mg were continuously released in water from PKBC-400 within 63 days, and the maximum Cr removal rate reached 83.57% (50 mg/L K2Cr2O7, pH=3.0) with an increased BET surface area (304.0557 m2/g) after nutrient release. SEM, IC and 31P NMR analyses revealed that the dissolution and hydrolysis of polyphosphates not only realized the sustained release of multiple nutrients but also significantly improved the sustained release performance. The proposed resource utilization strategy provided new ideas for Cr hazard control, biomass waste utilization and fertilizer development.
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