| 1 | 舒绪刚, 吴信, 王继华. 饲用矿物元素配合物的研究与应用[M]. 北京: 科学出版社, 2015. | 
																													
																							| 2 | 范春旭. 2017年奥特奇全球饲料调查报告[J]. 中国畜牧业, 2017(6):42-43. | 
																													
																							| 3 | 杨小军, 颜家坤, 虎千力, 等. 家禽矿物元素营养势调控技术研究进展[J]. 饲料工业, 2020, 41(17):1-8. | 
																													
																							| 4 | 贾刚, 田刚, 方热军, 等. 单胃动物微量元素营养研究进展[M]. 动物营养学报, 2020, 32(10):4659-4673. | 
																													
																							| 5 | 中商产业研究院. 中国饲料行业市场规模及发展前景分析:2020年饲料产量将突破30000万吨[EB/OL].  [2021-07-13]. | 
																													
																							| 6 | 佘玥. 生长猪对蛋白原料钙磷标准全肠道消化率的评价及植酸酶的影响[D]. 北京: 中国农业大学, 博士学位论文, 2017. | 
																													
																							| 7 | 贾武霞, 文炯, 许望龙, 等. 我国部分城市畜禽粪便中重金属含量及形态分布[J]. 农业环境科学学报, 2016, 35(4): 764-773. | 
																													
																							| 8 | 宁国, 韩红秀. 猪体对钙的需要和钙缺乏症及防治对策[J]. 国外畜牧学(猪与禽), 2007(3):66-67. | 
																													
																							| 9 | 刘强. 日粮中不同铜水平对生长肥育猪影响的研究[D]. 江苏扬州: 扬州大学, 硕士学位论文, 2006. | 
																													
																							| 10 | 谭新. 猪排泄物中氮、磷、铜对周围环境的影响及其营养调控措施[D]. 长沙: 湖南农业大学, 硕士学位论文, 2008. | 
																													
																							| 11 | 吴信, 孟田田, 万 丹, 等. 硒在畜禽养殖中的应用研究进展[J]. 生物技术进展, 2017, 7(5):428-432. | 
																													
																							| 12 | LI L, LI P, CHEN Y, et al.. Zinc-bearing zeolite clinoptilolite improves tissue zinc accumulation in laying hens by enhancing zinc transporter gene mRNA abundance[J]. Anim. Sci. J., 2015, 86(8):782-789. | 
																													
																							| 13 | NRC. Nutrient requirements of swine[M]. Washington DC: National Academy Press, 2012. | 
																													
																							| 14 | NRC. Nutrient requirements of poultry[M]. Washington DC: National Academy Press, 1994. | 
																													
																							| 15 | 郭小权, 胡国良, 曹华斌, 等. 高锌日粮对断奶仔猪血清锌和粪便排泄锌含量的影响[J]. 江西农业大学学报, 2009(5):789-792. | 
																													
																							| 16 | YENICE E, MıZRAK C, GÜLTEKIN M, et al.. Effects of organic and inorganic forms of manganese, zinc, copper, and chromium on bioavailability of these minerals and calcium in late-phase laying hens[J]. Biol. Trace Elem. Res., 2015, 167(2):300-307. | 
																													
																							| 17 | AO T, PIERCE J. The replacement of inorganic mineral salts with mineral proteinates in poultry diets[J]. World Poult. Sci. J., 2013, 69(1): 5-16. | 
																													
																							| 18 | 李丽立, 张彬, 印遇龙, 等. 氨基酸螯合物在畜禽集约化养殖业中的应用[J]. 中国家禽, 2009, 31(15):32-33. | 
																													
																							| 19 | 单玉萍, 单安山. 氨基酸铜在猪生产中的研究与应用[J]. 中国畜牧兽医, 2011, 38(4):20-22. | 
																													
																							| 20 | PANG Y, APPLEGATE T J. Effects of dietary copper supplementation and copper source on digesta pH, calcium, zinc, and copper complex size in the gastrointestinal tract of the broiler chicken[J]. Poult. Sci., 2007, 86(3):531-537. | 
																													
																							| 21 | MENG T T, GAO L M, XIE C Y, et al.. Manganese methionine hydroxy analog chelated affects growth performance, trace element deposition and expression of related transporters of broilers[J]. Anim. Nutr., 2021, 7(2): 481-487. | 
																													
																							| 22 | 张彬, 李丽立, 李铁军, 等. 不同铁源对哺乳仔猪生长、代谢和环境的影响[J]. 应用生态学报, 2000, 11(1): 91-94. | 
																													
																							| 23 | WAN D, ZHANG Y M, WU X, et al.. Maternal dietary supplementation with ferrous N-carbamylglycinate chelate affects sow reproductive performance and iron status of neonatal piglets[J]. Animal, 2018, 12(7):1372-1379. | 
																													
																							| 24 | FENG J, MA W Q, XU Z R, et al.. Effects of iron glycine chelate on growth, haematological and immunological characteristics in weanling pigs[J]. Anim. Feed Sci. Technol., 2007, 134(3-4): 261-272. | 
																													
																							| 25 | JAROSZ Ł, KWIECIEŃ M, MAREK A, et al.. Effects of feed supplementation with glycine chelate and iron sulfate on selected parameters of cell-mediated immune response in broiler chickens[J]. Res. Vet. Sci., 2016, 107:68-74. | 
																													
																							| 26 | MENG T T, LIN X, XIE C Y, et al.. Nanoselenium and selenium yeast have minimal differences on egg production and Se deposition in laying hens[J]. Biol. Trace Elem. Res., 2021, 199(6):2295-2302. | 
																													
																							| 27 | XIE C Y, ZHANG Y M, NIU K M, et al.. Enteromorpha polysaccharide-zinc replacing prophylactic antibiotics contributes to improving gut health of weaned piglets[J/OL]. Anim. Nutr., 2021:008[2021-07-14]. . | 
																													
																							| 28 | 吴信, 印遇龙. 单胃动物营养学的动态概念及其发展[J]. 农业现代化研究, 2015, 36(3): 321-326. | 
																													
																							| 29 | ZHOU X, WAN D, ZHANG Y, et al.. Diurnal variations in polyunsaturated fatty acid contents and expression of genes involved in their de novo synthesis in pigs[J]. Biochem. Biophys. Res. Commun., 2017, 483(1):430-434. | 
																													
																							| 30 | ZHANG Y, WAN D, ZHOU X, et al.. Diurnal variations in iron concentrations and expression of genes involved in iron absorption and metabolism in pigs[J]. Biochem. Biophys. Res. Commun., 2017, 490(4):1210-1214. | 
																													
																							| 31 | DONG Z, LI L, ZHANG Y, et al.. Effects of circadian iron administration on iron bioavailability and biological rhythm in pigs[J]. J. Sci. Food Agric., 2021, 101(7):2712-2717. | 
																													
																							| 32 | GAO L, LIN X, XIE C, et al.. The time of calcium feeding affects the productive performance of sows[J/OL]. Animals (Basel), 2019, 9(6):337[2021-07-18]. . DOI: 10.3390/ani90 60337 . | 
																													
																							| 33 | LIN X, MENG T, YANG T, et al.. Circadian zinc feeding regime in laying hens related to laying performance, oxidation status, and interaction of zinc and calcium[J]. Poult. Sci., 2020, 99(12):6783-6796. | 
																													
																							| 34 | LIN X, LIU Y L, XIE C Y, et al.. Circadian rhythms and dynamic dietary calcium feeding affect laying performance, calcium and phosphorus levels in laying hens[J]. Biol. Rhythm Res., 2018, 49(2): 227-236. |