Howard A. Chase

Affiliations: 
Chemical Engineering University of Cambridge, Cambridge, England, United Kingdom 
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"Howard Chase"
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Publications

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Lam SS, Mahari WAW, Ok YS, et al. (2019) Microwave vacuum pyrolysis of waste plastic and used cooking oil for simultaneous waste reduction and sustainable energy conversion: Recovery of cleaner liquid fuel and techno-economic analysis Renewable & Sustainable Energy Reviews. 115: 109359
Lam SS, Liew RK, Cheng CK, et al. (2018) Pyrolysis production of fruit peel biochar for potential use in treatment of palm oil mill effluent. Journal of Environmental Management. 213: 400-408
Lam SS, Liew RK, Wong YM, et al. (2017) Microwave-assisted pyrolysis with chemical activation, an innovative method to convert orange peel into activated carbon with improved properties as dye adsorbent Journal of Cleaner Production. 162: 1376-1387
Lam SS, Mahari WAW, Jusoh A, et al. (2017) Pyrolysis using microwave absorbents as reaction bed: An improved approach to transform used frying oil into biofuel product with desirable properties Journal of Cleaner Production. 147: 263-272
Kuo WH, Chase HA. (2011) A new strategy for the on-column exopeptidase cleavage of poly-histidine tagged proteins. Journal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences. 879: 3028-33
El-Sayed MM, Chase HA. (2011) Trends in whey protein fractionation. Biotechnology Letters. 33: 1501-11
Kuo WH, Chase HA. (2011) Exploiting the interactions between poly-histidine fusion tags and immobilized metal ions. Biotechnology Letters. 33: 1075-84
Kuo WH, Chase HA. (2010) Adsorptive detagging of poly-histidine tagged protein using hexa-histidine tagged exopeptidase. Journal of Chromatography. A. 1217: 7749-58
Li J, Chase HA. (2010) Development of adsorptive (non-ionic) macroporous resins and their uses in the purification of pharmacologically-active natural products from plant sources. Natural Product Reports. 27: 1493-510
El-Sayed MM, Chase HA. (2010) Purification of the two major proteins from whey concentrate using a cation-exchange selective adsorption process. Biotechnology Progress. 26: 192-9
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