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1. 蒸汽式蛋白质分离回收系统 [722]
2. Synthesis and characterization of novel polyimides derived from un.. [606]
3. 马铃薯加工技术及加工业发展 [564]
4. Physicochemical properties of starch extracted from Colocasia escu.. [522]
5. 一种蛋白泡沫消除装置 [490]
6. 一种蛋白液泡沫消除系统 [469]
7. Recovery of native protein from potato root water by expanded bed .. [442]
8. Optimization design of CuCrxMn2-xO4-based paint coatings used for .. [410]
9. 凹凸棒基复合材料的制备方法 [400]
10. 凹凸棒黏土接枝聚丙烯氰的条件优化及吸附性能研究 [387]
11. 以尖晶石型颜料为吸光剂制备太阳能选择性吸热涂料的方法 [371]
12. 马铃薯加工淀粉废水回收蛋白酸水解制备复合氨基酸 [369]
13. 温室型双集热双保温太阳能热泵烘干装置(发明) [369]
14. 尖晶石型NiCr2O4的燃烧法合成及表征(英文) [346]
15. China’s turning potato to new staple food needs novel semi-finish.. [333]
16. 马铃薯淀粉废水的资源化处理研究 [317]
17. Low-temperature combustion synthesis of CuCr2O4 spinel powder for .. [310]
18. 超声法制备硫化铅/二氧化硅核壳结构亚微米粒子 [309]
19. 马铃薯淀粉加工副产物资源化利用研究进展 [301]
20. 太阳能光谱选择性吸收涂层研究进展 [294]
21. 光谱选择性太阳能吸收涂层的研究进展 [294]
22. Sol-gel combustion-derived CoCuMnOx spinels as pigment for spectra.. [289]
23. 法国马铃薯产业分析 [289]
24. 不间断抗扰动絮凝沉淀反向分离系统 [282]
25. 马铃薯淀粉加工分离汁水资源化处理应用技术研究 [280]
26. 双波长比色法测定马铃薯直链/支链淀粉含量 [270]
27. 马铃薯直链/支链淀粉的分离 [266]
28. 布水抗扰动絮体沉淀反向分离装置 [265]
29. 新鲜马铃薯泥部分替代面粉制作面包、戚风蛋糕和曲奇饼干(英文) [259]
30. CuCoMnO_x光谱选择性吸收涂层的研究 [253]
31. 有机化纳米粘土基絮凝吸附材料对马铃薯淀粉加工废水的资源化处理 [245]
32. 马铃薯蛋白的分离及氨基酸组成分析 [245]
33. 双波长比色法测定马铃薯直链/支链淀粉含量 [236]
34. 凹凸棒黏土接枝聚丙烯腈的制备及其对Pb~(2+)的吸附性能 [234]
35. 温室型双集热双保温太阳能热泵烘干装置 [231]
36. 抗扰动絮体沉淀反向分离罐 [224]
37. Superabsorbent composite XXII. Effects of modified sepiolite on wa.. [213]
38. 马铃薯胰蛋白酶抑制剂活力的测定 [205]
39. 太阳能光谱选择性吸收涂层研究进展 [201]
40. 我国马铃薯加工产业结构分析与发展思考 [182]
41. 一种蛋白液泡沫消除系统及工艺 [182]
42. A new potato variety grown in China suitable for raw eating [161]
43. 马铃薯营养综述 [155]
44. HPLC法测定马铃薯块茎中糖苷生物碱的含量 [151]
45. 马铃薯块茎干物质、淀粉及还原糖含量的检测及相关性分析 [147]
46. A Simple Method to Prepare Raw Dehydrated Potato Flour by Low-Temp.. [139]
47. Recovery of Protease Inhibitors from Potato Fruit Water by Expande.. [137]
48. Novel magnetically separable Ag3PO4@CuFe2O4 micro-nanocomposite wi.. [136]
49. Facile Synthesis of Novel PbS Dendritic Nanostructures with Tetrap.. [135]
50. 硬脂酸钾固体润滑薄膜的制备及其摩擦磨损性能研究 [133]
51. 马铃薯淀粉加工废弃物资源化利用与污染控制 [133]
52. 马铃薯胰凝乳蛋白酶抑制剂活力的测定 [130]
53. Spectrally selective Cu1.5Mn1.5O4 spinel ceramic pigments for sola.. [129]
54. 纳米硅基氧化物SiOx保鲜果蜡及其生产方法 [115]
55. Aqueous solution-chemical derived spinel Cu1.5Mn1.5O4 thin film fo.. [110]
56. Enhanced absorptance of surface-textured tungsten thin film for so.. [110]
57. 硬脂酸钾固体润滑薄膜的制备及其摩擦学性能研究 [109]
58. 马铃薯淀粉加工副产物——薯渣的综合利用 [109]
59. Scalable and Ultrathin High-Temperature Solar Selective Absorbing .. [109]
60. Microstructure and Optical Properties of SS/Mo/Al2O3 Spectrally Se.. [106]
61. 一种介孔活性炭的制备方法 [106]
62. 用Mixolab分析马铃薯生全粉的流变学特性 [106]
63. Enhanced thermal stability and spectral selectivity of SS/TiC-Y/Al.. [104]
64. Aqueous solution-derived CuMn2O4 ceramic films for spectrally sele.. [103]
65. 具有双陶瓷结构的高温太阳能选择性吸收涂层及其制备方法 [102]
66. Microstructure, chromaticity and thermal stability of SS/TiC-WC/Al.. [98]
67. 中国马铃薯主食化面临的问题及解决方法(英文) [98]
68. Cu1.5Mn1.5O4-based ceramic spectrally selective coatings for effic.. [97]
69. Aqueous chemical solution deposition of spinel Cu1.5Mn1.5O4 single.. [97]
70. Optical simulation, corrosion behavior and long term thermal stabi.. [97]
71. Toward a Scalable and Cost-Conscious Structure in Spectrally Selec.. [97]
72. A new potato variety grown in China suitable for raw eating [95]
73. Toward high-temperature thermal tolerance in solar selective absor.. [95]
74. Efficient degradation of rhodamine B with magnetically separable A.. [94]
75. 马铃薯糖苷生物碱的水解及其工业应用 [93]
76. 口腔正畸摩擦研究进展 [93]
77. Synthesis and characterization of CoCuMnOx spinel ceramic thin fil.. [92]
78. 马铃薯营养与安全 [92]
79. Solution combustion of spinel CuMn2O4 ceramic pigments for thickne.. [91]
80. Glycoalkaloids and phenolic compounds in three commercial potato c.. [91]
81. Structure, optical properties and thermal stability of Al2O3-WC na.. [88]
82. 一种碳化钛-碳化钨紫色太阳能选择性吸收涂层及其制备方法 [86]
83. Highly Enhanced Thermal Robustness and Photothermal Conversion Eff.. [86]
84. CuCr2O4 Spinel Ceramic Pigments Synthesized by Sol-Gel Self-Combus.. [85]
85. Structure, optical properties and thermal stability of TiC-based t.. [82]
86. 一种碳化钛基高温太阳能选择性吸收涂层及其制备方法 [82]
87. 一种二硼化铪-二氧化铪基高温太阳能吸收涂层及其制备方法 [80]
88. Optical design, thermal shock resistance and failure mechanism of .. [79]
89. 一种二硼化钛-二氧化钛基高温太阳能吸收涂层及其制备方法 [79]
90. Enhanced optical properties of TiN-based spectrally selective sola.. [78]
91. 含噻唑环二胺化合物在制备太阳能吸热涂料中的应用 [77]
92. Enhanced spectral selectivity of HfC based high temperature solar .. [77]
93. Structure, optical properties and thermal stability of SS/TiC-ZrC/.. [75]
94. Commercial black dye without plasmonic effect: A low-cost viable c.. [75]
95. Optical properties and failure analysis of ZrC-ZrOx ceramic based .. [74]
96. Enhanced thermal stability of the TiB2–ZrB2 composite ceramic bas.. [74]
97. 一种含稀土钇高温太阳能选择性吸收涂层及其制备方法 [71]
98. Further investigation of a novel high entropy alloy MoNbHfZrTi bas.. [70]
99. 一种具有尖晶石结构的高温太阳能吸收涂层 [69]
100. Scalable and highly efficient high temperature solar absorber coat.. [68]

Downloads

1. 马铃薯加工技术及加工业发展 [58]
2. China’s turning potato to new staple food needs novel semi-finish.. [37]
3. 马铃薯营养与安全 [35]
4. 新鲜马铃薯泥部分替代面粉制作面包、戚风蛋糕和曲奇饼干(英文) [28]
5. 马铃薯胰蛋白酶抑制剂活力的测定 [20]
6. 马铃薯光敏色素PHY基因的生物信息学及糖苷生物碱的MALDI-MSI分析 [11]
7. Synthesis and characterization of novel polyimides derived from un.. [9]
8. 不间断抗扰动絮凝沉淀反向分离系统 [8]
9. Physicochemical properties of starch extracted from Colocasia escu.. [8]
10. 马铃薯加工淀粉废水回收蛋白酸水解制备复合氨基酸 [8]
11. 法国马铃薯产业分析 [7]
12. Optimization design of CuCrxMn2-xO4-based paint coatings used for .. [6]
13. 蒸汽式蛋白质分离回收系统 [6]
14. 凹凸棒黏土接枝聚丙烯氰的条件优化及吸附性能研究 [5]
15. 抗扰动絮体沉淀反向分离罐 [5]
16. 布水抗扰动絮体沉淀反向分离装置 [5]
17. 一种蛋白泡沫消除装置 [5]
18. 一种蛋白液泡沫消除系统 [5]
19. 超声法制备硫化铅/二氧化硅核壳结构亚微米粒子 [4]
20. 尖晶石型NiCr2O4的燃烧法合成及表征(英文) [4]
21. 以尖晶石型颜料为吸光剂制备太阳能选择性吸热涂料的方法 [4]
22. 凹凸棒基复合材料的制备方法 [4]
23. Recovery of native protein from potato root water by expanded bed .. [4]
24. 有机化纳米粘土基絮凝吸附材料对马铃薯淀粉加工废水的资源化处理 [4]
25. 温室型双集热双保温太阳能热泵烘干装置(发明) [4]
26. Facile Synthesis of Novel PbS Dendritic Nanostructures with Tetrap.. [4]
27. Sol-gel combustion-derived CoCuMnOx spinels as pigment for spectra.. [3]
28. Low-temperature combustion synthesis of CuCr2O4 spinel powder for .. [3]
29. 马铃薯直链/支链淀粉的分离 [3]
30. 我国马铃薯加工产业结构分析与发展思考 [3]
31. 马铃薯淀粉加工分离汁水资源化处理应用技术研究 [3]
32. 一种蛋白液泡沫消除系统及工艺 [3]
33. 马铃薯块茎干物质、淀粉及还原糖含量的检测及相关性分析 [3]
34. Glycoalkaloids and phenolic compounds in three commercial potato c.. [3]
35. 马铃薯淀粉废水的资源化处理研究 [2]
36. 凹凸棒黏土接枝聚丙烯腈的制备及其对Pb~(2+)的吸附性能 [2]
37. 双波长比色法测定马铃薯直链/支链淀粉含量 [2]
38. 温室型双集热双保温太阳能热泵烘干装置 [2]
39. 双波长比色法测定马铃薯直链/支链淀粉含量 [2]
40. 马铃薯蛋白的分离及氨基酸组成分析 [2]
41. 马铃薯淀粉加工副产物资源化利用研究进展 [2]
42. 纳米硅基氧化物SiOx保鲜果蜡及其生产方法 [2]
43. 太阳能光谱选择性吸收涂层研究进展 [2]
44. HPLC法测定马铃薯块茎中糖苷生物碱的含量 [2]
45. Spectrally selective Cu1.5Mn1.5O4 spinel ceramic pigments for sola.. [2]
46. Synthesis and characterization of CoCuMnOx spinel ceramic thin fil.. [2]
47. Aqueous solution-derived CuMn2O4 ceramic films for spectrally sele.. [2]
48. Microstructure and Optical Properties of SS/Mo/Al2O3 Spectrally Se.. [2]
49. 用Mixolab分析马铃薯生全粉的流变学特性 [2]
50. 马铃薯糖苷生物碱的水解及其工业应用 [2]
51. A Simple Method to Prepare Raw Dehydrated Potato Flour by Low-Temp.. [2]
52. A new potato variety grown in China suitable for raw eating [2]
53. Recovery of Protease Inhibitors from Potato Fruit Water by Expande.. [2]
54. A new potato variety grown in China suitable for raw eating [2]
55. 太阳能光谱选择性吸收涂层研究进展 [1]
56. CuCoMnO_x光谱选择性吸收涂层的研究 [1]
57. 光谱选择性太阳能吸收涂层的研究进展 [1]
58. 硬脂酸钾固体润滑薄膜的制备及其摩擦磨损性能研究 [1]
59. 马铃薯营养综述 [1]
60. 马铃薯胰凝乳蛋白酶抑制剂活力的测定 [1]
61. 马铃薯淀粉加工副产物——薯渣的综合利用 [1]
62. Aqueous chemical solution deposition of spinel Cu1.5Mn1.5O4 single.. [1]
63. Enhanced thermal stability and spectral selectivity of SS/TiC-Y/Al.. [1]
64. 马铃薯淀粉加工废弃物资源化利用与污染控制 [1]
65. 一种介孔活性炭的制备方法 [1]
66. Optical simulation, corrosion behavior and long term thermal stabi.. [1]
67. Novel magnetically separable Ag3PO4@CuFe2O4 micro-nanocomposite wi.. [1]
68. 中国马铃薯主食化面临的问题及解决方法(英文) [1]
69. Efficient degradation of rhodamine B with magnetically separable A.. [1]
70. 一种碳化钛基高温太阳能选择性吸收涂层及其制备方法 [1]
71. 口腔正畸摩擦研究进展 [1]
72. 一种碳化钛-碳化钨紫色太阳能选择性吸收涂层及其制备方法 [1]
73. 实用新型专利证书:一种人体吞咽模拟装置 [1]
74. 实用新型专利:一种人工胃模拟消化装置 [1]
75. “马铃薯淀粉分离汁水提取蛋白酶抑制剂技术”获金张掖创新创业大赛二等.. [1]