[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.
[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.
[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.
[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.
[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.
[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.
[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, MNDEZ A, et al. Characterization of hydrochars produced by hydrothermal carbonization of rice husk[J]. Solid Earth, 2014, 5(1): 477-483.