참고문헌
- Ayaz, A., D. Acarli, U. Altinagac, U. Ozekinci, A. Kara and A. Ozen, 2006. Ghoat fishing by monofilament and multifilament gillnets in izmir bay, Turkey. Fisheries Research, 79, 267 - 271 https://doi.org/10.1016/j.fishres.2006.03.029
- Koike, A., 1958. Comparative efficiency of differently coloured gill - net in the North Sea salmon fishing. Nippon Suisan Gakkaishi, 24(1),9 - 12 https://doi.org/10.2331/suisan.24.9
- Koike, A., K.J. Kanda and M.O. Ogura, 1958. A preparative study with trout for the salmon gill - net. Nippon Suisan Gakkaishi, 24(1), 5 - 8 https://doi.org/10.2331/suisan.24.5
- Koike, A. and S.I. Takeuchi, 1985. Effect of trammel net with different sizies of mesh of inside net on catching efficiency. Nippon Suisan Gakkaishi, 51(6),895 - 901 https://doi.org/10.2331/suisan.51.895
- Lee, Y.H., 1991. Study of biodegradable polymers. polym. Sci. Tech., 2(5), 319 - 331
- Lee, W.K., J.H. Ryou and C.S. Ha, 2002. Degradation mechanism of biodegradable polymers. polym. Sci. Tech., 13(1),65 -74
- Machiels, M.A.M., M. Klinge, R. Lanters and W.L.T. Van Densen, 1994. Effect of snood length and hanging ratio on efficiency and selectivity of bottom - set gillnets for pikeperch, Stizostedion lucioperca L., and bream, Abramis brama. Fisheries Research, 19,231-239 https://doi.org/10.1016/0165-7836(94)90041-8
- Nashimoto, K.A., 1967. Fundamental studies on the phenomena of sticks in gill- netting(III), Theoretical consideration of the most suitable webbing hand in net. Bull. Fish. Hokkaido Univ., 18(2)73 - 80
- Njoku, D.C., 1991. Comparative efficiency and techno-economics of multifilament and monofilament gillnets on the Oguta Lake, Nigeria. Fisheries Research, 12, 23-30 https://doi.org/10.1016/0165-7836(91)90046-I
- Park, C.D., H.C. An, S.K. Cho and C.I. Baik, 2003. Size selectivity of gill net for snow crab, Chionoecetes opilio. Bull. Korean Soc. Fish. Tech., 39(2), 143-151 https://doi.org/10.3796/KSFT.2003.39.2.143
- Park, S.W. and D.G. Kim, 2004. Catching efficiency of gill net and trammel net for ceramic artificial reefs fishing ground in the coastal area Geomun - do, Korea. Bull. Korean Soc. Fish. Tech., 40(3), 182-188 https://doi.org/10.3796/KSFT.2004.40.3.182
- Revill, A.S. and G. Dunlin, 2003. The fishing capacity of gillnets lost on wrecks and on open ground in UK coastal waters. Fisheries Research, 64, 107-113 https://doi.org/10.1016/S0165-7836(03)00209-1
- Sohn, T.J., 1975. On the catch of gill net in the jeju island, comparison of mackerel catch in monofilament and multifilament gill nets. Bull. Korean Fish. Soc., 8(1), 7 - 10
- Steinberg, R., 1964. Monofilament gill nets in freshwater experiments and practice, in Modem Fishing Gear of the World, Vol. 2, Fishing News(Books) Ltd., London, pp. 111-115
- Thomas, S.N., L. Edwin and V.C. George, 2003. Catching efficiency of gill nets and trammel nets for penaeid prawns. Fisheries Research, 60, 141-150 https://doi.org/10.1016/S0165-7836(02)00057-7
- Tschemij, V. and P.O. Larsson, 2003. Ghost fishing by lost gill nets in the baltic sea. Fisheries Research, 64, 151-162 https://doi.org/10.1016/S0165-7836(03)00214-5
- Tweddle, D. and P. Bodington, 1988. A Comparison of the effectiveness of black and white gillnets in Lake Malawi, Africa. Fisheries Research, 6, 257-269 https://doi.org/10.1016/0165-7836(88)90018-5
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