[1]Asada Y, Miyake J. Photobiological hydrogen production (review)[J]. J Biosci Bioeng, 1999, 88 (1):1- 6 .
[2]
[2]Ghirardi M L, Zhang L P, Lee J W ,et al. Microalgae: a green source of renewable H2[J]. TIBTECH, 2000, 18: 506- 511.
[3]
[3]Melis A, Zhang L P, Forestier M,et al. Sustained photo biological hydrogen gas production upon reversible inacti- vation of oxygen evolution in the green alga Chlamydomonas reinhardtii[J]. Plant Physiol, 2000, 122:127- 135.
[4]
[4]Zhang L P, Happe T, Melis A. Biochemical and mor- phological characterization of sulfur deprived and hydrogen producing Chlamydomonas reinhardtii[J]. Planta, 2002, 214:552- 561.
[5]
[5]Kessler E. Hydrogenase, photoreduction and anaerobic growth of algae[A]. Stewart WDP (ed). Algal Physi- ology and Biochemistry[C]. London: Blackwell, 1974. 456- 473.
[6]
[6]Gaffron H, Rubin J. Fermentative and photochemical pro- duction of hydrogen in algae[J]. J Gen Physiol, 1942, 26: 219~ 240.
[7]
[7]Schnackenberg J, Ikemoto H, Miyachi S. Photosynthesis and hydrogen evolution under stress conditions in a CO2- tolerant marine green alga, Chlorococcum littorale[J]. J Photochem Photobiol, 1996, 34:59- 62.
[8]
[8]Cournac L, Mus F, Bernard L ,et al. Limiting steps of hydrogen production in Chlamydomonas reinhardtii and Synechocystis PCC 6803 as analysed by light- induced gas exchange transients[J]. Inter J Hydrogen Energy, 2002, 27:1 229- 1 237.
[9]
[9]Melis A, Happe T. Hydrogen production. Green algae as a Source of energy[J].Plant physiol, 2001,127:740- 748 .
[10]
[10]Happe T, Mosler B, Naber J D. Induction, localization and metal content of hydrogenase in green alga Chlamydomonas reinhardtii[J]. Eur J Biochem, 1994, 222:769- 776.