Utilizing Coffee Husk Biochar as an Effective Adsorbent for Ammonium Removal in Groundwater

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Abstract

The study investigated the performance of a novel biochar derived from coffee husks (BCFH) and its alkaline-activated product (BCFH-NaOH) for ammonium removal in the aqueous solution. Several batch experiments were conducted with the synthetic solution to determine the adsorption properties of the biochars. At the initial ammonium concentration of 50 mg/L, the optimal dosage for both materials was 10 g/L, while the ideal pH range was 4-9. The equilibration adsorption time on both materials is within 30 minutes, indicating their high practical applicability. Both the pseudo-first order and pseudo-second order kinetic were applied successfully to describe the adsorption kinetics (R2 >0.95). The isotherms can be defined by both Langmuir and Freundlich models, showing that ammonium removal by biochars is a complex process. BCFH-NaOH showed better performance, with the maximum adsorption capacity reaching 9.97 mg-NH4/g, compared to 6.64 mg-NH4/g of BFCH. Finally, BCFH-NaOH was tested with a practical groundwater sample (Co = 11.5 mg-NH4/L), achieving a sorption efficiency of up to 80 % while eliminating most of the hardness. These results show that the modified coffee husk biochar could be applied as a low-cost, environmentally friendly adsorbent for ammonium removal.
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咖啡壳生物炭对地下水中氨的有效吸附
研究了一种新型咖啡壳生物炭(BCFH)及其碱活化产物(BCFH- naoh)去除水溶液中铵的性能。用合成溶液进行了多次批量实验,以确定生物炭的吸附性能。在初始铵浓度为50 mg/L时,两种材料的最佳投加量均为10 g/L,理想pH范围为4 ~ 9。两种材料的平衡吸附时间均在30分钟以内,具有较高的实用性。拟一级和拟二级动力学均可成功地描述吸附动力学(R2 >0.95)。等温线可以用Langmuir和Freundlich模型来定义,表明生物炭脱铵是一个复杂的过程。BCFH-NaOH表现出更好的吸附性能,其最大吸附容量达到9.97 mg-NH4/g,而BFCH的最大吸附容量为6.64 mg-NH4/g。最后,BCFH-NaOH在实际地下水样品(Co = 11.5 mg-NH4/L)中进行了测试,在去除大部分硬度的同时,吸附效率高达80%。这些结果表明,改性咖啡壳生物炭可以作为一种低成本、环保的脱铵吸附剂。
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