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Kaynaklar<br />

1. Nolan, A., McDonnell, K., Devlin, G.J., Carroll, J.P., Finnan, J., 2010. Economic analysis<br />

of manufacturing costs of pellet production in the Republic of Ireland using non-woody<br />

biomass. Open Renew. Energy J. 3, 1–11.<br />

2. Behnke, K.C., 1996. Feed manufacturing technology: current issues and challenges. Anim.<br />

Feed Sci. Technol. 62, 49–57.<br />

3. Skoch, E.R., Behnke, K.C., Deyoe, C.W., Binder, S.F., 1981. The effect of steam-conditioning<br />

rate on the pelleting process. Anim. Feed Sci. Technol. 6, 83–90.<br />

<strong>4.</strong> Abdollahi, M.R., Ravindran, V., Svihus, B., 2013. Pelleting of broiler diets: An overview<br />

with emphasis on pellet quality and nutritional value. Animal Feed Science and Technology<br />

179 (2013) 1– 23.<br />

5. Svihus, B., 2011. The gizzard: function, influence of diet structure and effects on nutrient<br />

availability. Worlds Poult. Sci. J. 67, 207–223.<br />

6. Svihus, B., Zimonja, O., 2011. Chemical alterations with nutritional consequences due to<br />

pelleting animal feeds: A review. Anim. Prod. Sci. 51, 590–596.<br />

7. Cramer, K.R., Wilson, K.J., Moritz, J.S., Beyer, R.S., 2003. Effect of sorghum-based diets<br />

subjected to various manufacturing procedures on broiler performance. J. Appl. Poult. Res.<br />

12, 404–410.<br />

8. Amerah, A.M., Ravindran, V., Lentle, R.G., 2007. Feed particle size: Implications on the<br />

digestion and performance in poultry. Worlds Poult. Sci. J. 63, 439–451.<br />

9. American Society of Agricultural Engineers (ASAE), 1997. ASAE S269.4, Cubes, pellets<br />

and crumbles-definitions and methods for determining density,durability and moisture.<br />

Standards 1997. American Society of Agricultural Engineers, St. Joseph, MI.<br />

10. Thomas, M., van der poel, A.F.B., 1996. Physical quality of pelleted animal feed: 1 Criteria<br />

for pellet quality. Anim. Feed Sci. Technol. 61, 89–112<br />

11. Parsons, A.S., Buchanan, N.P., Blemings, K.P., Wilson, M.E., Moritz, J.S., 2006. Effect of<br />

corn particle size and pellet texture on broiler performance in the growing phase. J. Appl.<br />

Poult. Res. 15, 245–255.<br />

12. Abdollahi, M.R., Ravindran, V., Wester, T.J., Ravindran, G., Thomas, D.V., 2011. Influence<br />

of feed form and conditioning temperature on performance, apparent metabolisable energy<br />

and ileal digestibility of starch and nitrogen in broiler starters fed wheat-based diet. Anim.<br />

Feed Sci. Technol. 168, 88–99.<br />

13. Abdollahi, M.R., Ravindran, V., Wester, T.J., Ravindran, G., Thomas, D.V., 2012a. Effect<br />

of improved pellet quality from the addition of a pellet binder and/or moisture to a wheatbased<br />

diet conditioned at two different temperatures on performance, apparent metabolisable<br />

energy and ileal digestibility of starch and nitrogen in broilers. Anim. Feed Sci. Technol. 175,<br />

150–157<br />

1<strong>4.</strong> Proudfoot, F.G., Sefton, A.E., 1978. Feed texture and light treatment effects on the<br />

performance of chicken broilers. Poult. Sci. 57, 408–416.<br />

15. Cutlip, S.E., Hott, J.M., Buchanan, N.P., Rack, A.L., Latshaw, J.D., Moritz, J.S., 2008. The<br />

effect of steam-conditioning practices on pellet quality and growing broiler nutritional value.<br />

J. Appl. Poult. Res. 17, 249–261.<br />

16. Kenny, M., 2008. Broilers perform well on pellet rations. World Poult. 24, 18–19.<br />

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