[1] HE Mingxiong, WANG Jingli, QIN Han, et al. Bamboo: A new source of carbohydrate for biorefinery. Carbohydrate Polymers,2014, 111: 645-654
[2] 窦营, 余学军, 岩松文代. 中国竹子资源的开发利用现状与发展对策. 中国农业资源与区划,2011, 32(5): 65-70 DOU Ying, YU Xuejun, FUMIYO I. The current situation and countermeasures of bamboo resource development and utilization of China. Chinese Journal of Agricultural Resources and Regional Planning,2011, 32(5): 65-70(in Chinese)
[3] 周益权, 耿养会, 蒋宣斌, 等. 重庆竹资源开发利用现状与发展对策. 竹子研究汇刊,2011, 30(3): 58-61 ZHOU Yiquan, GENG Yanqui, JIANG Xuanbin, et al. The situation of exploitation and utilization and countermeasures for the development of bamboo industry in Chongqing. Journal of Bamboo Research,2011, 30(3): 58-61(in Chinese)
[4] OUYANG Xiaokun, JIN Ru'na, YANG Leping, et al. Bamboo-derived porous bioadsorbents and their adsorption of Cd(II) from mixed aqueous solutions. RSC Advances,2014, 54(4): 28699-28706
[5] 方润, 陈云平. 竹屑基吸附材料的制备及吸附行为研究. 纤维素科学与技术,2013, 21(4): 15-22 FANG Run, CHEN Yunping. Preparation and adsorption performance of bamboo-based dye adsorbent. Journal of Cellulose Science and Technology,2013, 21(4): 15-22(in Chinese)
[6] GUO Doudou, PAN Hao, LIU Hailu, et al. Ultrasonic wave-assisted preparation of bamboo powder-based adsorbents for Pb2+ removal. Chemistry and Industry of Forest Products,2013, 33(6): 1-6
[7] 龚新怀, 许琪琛, 林维晟. 竹屑基吸附材料的制备及其吸附亚甲基蓝的研究. 宿州学院学报,2012, 27(8): 56-59 GONG Xinhuai, XU Qichen, LIN Weisheng. Preparation and adsorption of bamboo sawdust-based adsorbent to methylene blue. Journal of Suzhou University,2012, 27(8): 56-59(in Chinese)
[8] 朱国营, 陈萍萍. 壳聚糖改性竹制粉末活性炭吸附剂对微囊藻毒素的吸附特性研究. 环境科学学报,2012, 32(4): 790-795 ZHU Guoying, CHEN Pingping. Adsorption characteristics of microcystin-RR by a synthetic powdered bamboo charcoal mixed with chitosan. Acta Scientiae Circumstantiae,2012, 32(4): 790-795(in Chinese)
[9] LI Qingzhu, CHAI Liyuan, WANG Qingwei, et al. Fast esterification of spent grain for enhanced heavy metal ions adsorption. Bioresource Technology,2010, 101(10): 3796-3799
[10] SAJAB M. S., CHIA C. H., ZAKARIA S., et al. Citric acid modified kenaf core fibres for removal of methylene blue from aqueous solution. Bioresource Technology,2011, 102(15): 7237-7243
[11] HAN Runping, ZHANG Lijun, SONG Chen, et al. Characterization of modified wheat straw, kinetic and equilibrium study about copper ion and methylene blue adsorption in batch mode. Carbohydrate Polymers,2010, 79(4): 1140-1149
[12] MARSHALL W. E., AKIN D. E., WARTELLE L. H., et al. Citric acid treatment of flax, cotton and blended nonwoven mats for copper ion absorption. Industrial Crops and Products,2007, 26(1): 8-13
[13] ZHU Bo, FAN Tongxiang, ZHANG Di. Adsorption of copper ions from aqueous solution by citric acid modified soybean straw. Journal of Hazardous Materials,2008, 153(1/2): 300-308
[14] PEHLIVAN E., ALTUN T., PARLAYICI Š. Modified barley straw as a potential biosorbent for removal of copper ions from aqueous solution. Food Chemistry,2012, 135(4): 2229-2234
[15] LEYVA-RAMOS R., LANDIN-RODRIGUEZ L. E., LEYVA-RAMOS S., et al. Modification of corncob with citric acid to enhance its capacity for adsorbing cadmium(II) from water solution. Chemical Engineering Journal,2012, 180: 113-120
[16] WANG Shuaiyang, WANG Linping, KONG Weiqing, et al. Preparation, characterization of carboxylated bamboo fibers and their adsorption for lead(II) ions in aqueous solution. Cellulose,2013, 20(4): 2091-2100
[17] ZHAO Shuna, BAIK O. D., CHOI Y. J., et al. Pretreatments for the efficient extraction of bioactive compounds from plant-based biomaterials. Critical Reviews in Food Science and Nutrition,2014, 54(10): 1283-1297
[18] YAMASHITA Y., SHONO M., SASAKI C., et al. Alkaline peroxide pretreatment for efficient enzymatic saccharification of bamboo. Carbohydrate Polymers,2010, 79(4): 914-920
[19] 林瑾, 余少文, 王娟. 不同溶剂对玫瑰花粉内壁破壁的影响. 食品科技,2008(10): 54-56 LIN Jin, YU Shaowen, WANG Juan. The effect of different reagents on the inner-wall breaking of rose pollen. Food Science and Technology,2008(10): 54-56(in Chinese)
[20] REN Junli, SUN Runcang, PENG Feng. Carboxymethylation of hemicelluloses isolated from sugarcane bagasse. Polymer Degradation and Stability,2008, 93(4):786-793