硅酸盐通报, 2022, 41 (4): 1464, 网络出版: 2022-08-03

制备方法对胡麻不同部位生物质炭材料吸附活性的影响

Effect of Preparation Method on Adsorption Activity of Different Part of Hemp Biochar Material
作者单位
1 北方民族大学材料科学与工程学院, 银川 750021
2 碳基先进陶瓷制备技术国家地方联合工程研究中心, 银川 750021
3 粉体材料与特种陶瓷省部共建重点实验室, 银川 750021
摘要
生物质炭是指原料在部分缺氧或绝氧的条件通过特殊方法处理后产生的高度芳香化、高碳和高稳定性的固体产物。同一植物不同部位制备的生物质炭的性能往往具有较大差异, 本论文以胡麻为研究对象, 以KOH、H3PO4为活化剂, 对胡麻不同部位(杆、皮、根)进行活化, 采用水热炭化法、活化法、炭化-活化法制备生物质炭材料, 将产物用于吸附溶液中的罗丹明B(RhB)和亚甲基蓝(MB), 进一步评价其吸附活性。利用XRD、SEM、TG-DSC、N2-BET、UV-Vis等对产物的性能进行分析, 探究炭化温度、活化温度以及活化剂种类对生物质炭性能的影响。比较不同条件下制备生物质炭材料的微观形貌、比表面积、孔径以及产率。以胡麻杆为原材料, 磷酸为活化剂, 炭化温度200 ℃, 活化温度820 ℃时, 制备的生物质炭孔径分布均匀、数量较多、断面呈管状, 且其表面积最高, 可达1 247.63 m2/g。该产物对RhB和MB都表现出了良好的吸附能力, 在接近1 h时, 10 mg/L的RhB溶液就已经全部褪色, 吸附率高达100%。
Abstract
Biochar is a solid product with high aromatization, high carbon and high stability produced by special treatment of raw materials under partial hypoxia or complete deoxygenation. Because the performance of biochar was prepared from different parts of the same plant often different, in this paper, hemp was taken as the research target, KOH and H3PO4 were used as activators, to activate the different parts (stem, skin and root) of hemp. Biochar materials from different sources were prepared by hydrothermal carbonization method, activation method and carbonization-activation method. The as-prepared products were used to adsorb rhodamine B (RhB) and methylene blue (MB) solutions, and their adsorption activities were evaluated. XRD, SEM, TG-DSC, N2-BET, UV-Vis and other characterization methods were used to analyze the properties of the products in order to explore the effects of carbonization temperature, activation temperature and activator type on the properties of biochar. Using flax rod as raw material, phosphoric acid as activator, carbonization temperature 200 ℃, activation temperature 820 ℃, the biochar pores were prepared with uniform distribution, a large number of cross sections in tubular shape. The specific surface area of the biochar is as high as 1 247.63 m2/g. It is also displayed great adsorption capacity for RhB and MB. After nearly 1 h, the 10 mg/L RhB solution has all faded, and the adsorption rate is as high as 100%.
参考文献

[1] 华子泺,张素玲,张 栋,等.生物质炭的制备及其在吸附方面的研究进展[J].杭州电子科技大学学报(自然科学版),2021,41(1):69-75.

[2] ENNAERT T, VAN AELST J, DIJKMANS J, et al. Potential and challenges of zeolite chemistry in the catalytic conversion of biomass[J]. Chemical Society Reviews, 2016, 45(3): 584-611.

[3] 孔丝纺,姚兴成,张江勇,等.生物质炭的特性及其应用的研究进展[J].生态环境学报,2015,24(4):716-723.

[4] 覃爱苗,郑 爽,魏立学,等.生物质炭的杂元素掺杂及其在电极中的应用[J].人工晶体学报,2020,49(7):1326-1335+1345.

[5] 韩尊强,钟伟婷,王 堃.氮掺杂竹炭基超级电容器电极材料制备与表征[J].林业工程学报,2020,5(5):76-83.

[6] AHMAD M A, AHMAD N, BELLO O S. Adsorption kinetic studies for the removal of synthetic dye using durian seed activated carbon[J]. Journal of Dispersion Science and Technology, 2015, 36(5): 670-684.

[7] 徐仁扣,赵安珍,肖双成,等.农作物残体制备的生物质炭对水中亚甲基蓝的吸附作用[J].环境科学,2012,33(1):142-146.

[8] 李美萍,董 程,王 微,等.辣木籽壳生物炭对溶液中Cu2+的吸附性能研究[J].中国农学通报,2020,36(34):84-89.

[9] GUPTA V K, PATHANIA D, SHARMA S, et al. Preparation of bio-based porous carbon by microwave assisted phosphoric acid activation and its use for adsorption of Cr(VI)[J]. Journal of Colloid and Interface Science, 2013, 401: 125-132.

[10] 邵东旭,郑冬梅,罗肖雪,等.椰壳纤维炭磺酸的制备及其催化性能研究[J].功能材料,2020,51(8):8146-8152.

[11] SENARATHNA D, THANGARAJAH V, ABEYSOORIYA K, et al. Aqueous lead removal under optimized conditions using phosphoric acid activated coconut coir activated carbon[J]. American Analytical Chemistry, 2020,11: 17.

[12] 储 磊,刘少敏,陈天明,等.KOH活化花生壳生物质炭对亚甲基蓝吸附性能研究[J].环境工程学报,2014,8(11):4737-4742.

[13] BAI S, WANG T, TIAN Z, et al. Facile preparation of porous biomass charcoal from peanut shell as adsorbent [J]. Scientific Reports, 2020, 10: 15845.

[14] 李兆龙,张 婧,冯梦丹,等.热解条件对秸秆生物质炭性质的影响研究[J].山西化工,2021,41(3):6-8+19.

[15] UNUR E, BRUTTI S, PANERO S, et al. Nanoporous carbons from hydrothermally treated biomass as anode materials for lithium ion batteries[J]. Microporous and Mesoporous Materials, 2013, 174: 25-33.

[16] ARAMPATZIDOU A C, DELIYANNI E A. Comparison of activation media and pyrolysis temperature for activated carbons development by pyrolysis of potato peels for effective adsorption of endocrine disruptor bisphenol-A[J]. Journal of Colloid and Interface Science, 2016, 466: 101-112.

[17] 田 雨,刘晓刚,赵 玉,等.稻壳炭制备工艺参数对吸附性能的影响[J].农业工程学报,2020,36(24):211-217.

[18] LI J, ZHAO P T, LI T, et al. Pyrolysis behavior of hydrochar from hydrothermal carbonization of pinewood sawdust[J]. Journal of Analytical and Applied Pyrolysis, 2020, 146: 104771.

[19] KALDERIS D, KOTTI M S, MNDEZ A, et al. Characterization of hydrochars produced by hydrothermal carbonization of rice husk[J]. Solid Earth, 2014, 5(1): 477-483.

徐玮璘, 沈宏芳, 阳云飞, 段健健, 王哲, 李清明, 张笑, 刘兴泽. 制备方法对胡麻不同部位生物质炭材料吸附活性的影响[J]. 硅酸盐通报, 2022, 41(4): 1464. XU Weilin, SHEN Hongfang, YANG Yunfei, DUAN Jianjian, WANG Zhe, LI Qingming, ZHANG Xiao, LIU Xingze. Effect of Preparation Method on Adsorption Activity of Different Part of Hemp Biochar Material[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(4): 1464.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!