花生壳

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  • peanut shell
花生壳花生壳
  1. 花生壳中白藜芦醇的超声提取及HPLC检测

    Ultrasonic Extraction and HPLC Detection of Resveratrol Extracted from Peanut Shell

  2. 在流化床生物质气化炉内,用空气进行气化生物质(花生壳)的试验研究,分析的参数是ER(0.20.45),气化床的温度(750850℃)。

    Biomass ( peanut shell ) gasification with air in pilot fluidized bed gasifier is studied .

  3. 超临界CO2提取花生壳中多酚类物质

    Supercritical CO_2 Extraction of Polyphenol from the Husk of Earthnut

  4. 不同产地花生壳中木犀草素的HPLC测定

    HPLC Determination of Luteolin of Peanut Hull from Different Regions

  5. 花生壳活性炭脱除溶液中Cr(Ⅲ)的研究

    Removal of Cr (ⅲ) from aqueous solution by activated carbon made from peanut shells

  6. 花生壳综合利用研究&花生壳对Cr(Ⅵ)的吸附作用

    Study on the Comprehensive Utilization of Peanut Hull

  7. 利用双螺杆挤出工艺对花生壳粉填充改性聚丙烯(PP)进行了研究。

    The polypropylene modified by peanut hull powder was studied by twin-screw extrude craft .

  8. 结果显示不同产地花生壳的HPLC图谱类似,木犀草素含量在0.25%~1.12%之间。

    The results show that the HPLC chromatograms of peanut hull samples from different regions are similar .

  9. 当Cu2+溶液初始浓度为定值时,溶液pH值升高,花生壳对Cu2+的吸附能力增强。

    When the initial concentration of Cu2 + is the fixed value , the higher the pH value is , the higher the biosorption quantity is .

  10. 分别通过静态和动态吸附实验,研究了改性花生壳对Cr(Ⅵ)的吸附性能和吸附机理。

    In order to test the adsorption property of Cr (ⅵ) with MPS , static and dynamic adsorption experiments were taken in the study .

  11. 分别以大豆粕、芝麻粕、花生壳及板栗壳DNA为模板,以相应基因组DNA为阳性对照,可可基因组DNA为阴性对照,通过PCR扩增筛选特异的检测引物。

    The species-specific primers were screened by PCR amplifications which template DNA was extracted from soybean meal , sesame meal , peanut shell and chestnut shell individually and using the corresponding genome DNA as positive control , cocoa genome DNA as negative control .

  12. 椰糠和花生壳粉是良好的发芽基质,供试的4种花卉种子发芽指数(GI)均超过100,作为发芽基质具有良好的广谱性。

    The coconut coir and the powder of peanut hull were good media for germination , for the GI ( the germination index ) of 4 kinds flower seeds reached to 100 .

  13. 以花生壳为原料、HNO3为改性剂,对花生壳进行改性制备吸附剂,并研究了其吸附水中Pb2+的性能。

    Using peanut shell as raw materials , nitric acid as modifier , the adsorbent is prepared and its Pb2 + adsorption performance in aqueous solution is investigated .

  14. 在分别以粒径为0.14mm木粉和0.22mm木粉、竹粉、花生壳粉、稻壳粉制备复合材料,以粒径为0.14mm木粉与PP制备的复合材料力学性能最好。

    In the composite made respectively with the wood flour of 0.14 mm and wood flour , bamboo flour , peanut shell flour , rice husk flour of ( 0.22 mm ,) the mechanical properties of composite made by the wood flour of 0.14 mm with PP were best .

  15. 通过测定纯化后的花生壳多酚对DPPH自由基、羟基自由基和超氧阴离子自由基的清除能力、总还原能力、总抗氧化能力及p-胡萝卜素的漂白实验来评估其抗氧化能力。

    The antioxidant activities of the purified polyphenols were evaluated in vitro by scavenging capability of DPPH free radical , superoxide anion free radical and hydroxyl free radical , total antioxidant capability , reducing power and β - carotene bleaching test .

  16. 从1H-NMR图谱中可知,花生壳HBS木质素存在明显的愈疮木基和紫丁香基苯环结构。

    Nm for n →π ~ electron transition in UV spectra of the HBS lignin to indicate with a characteristic of unsaturated . According to the () ~ 1H-NMR , there were many syringyl and guaiacyl groups in the peanut shell lignin .

  17. 采用TGA-92型热重&差热综合分析仪,对秸秆、桉树木废料、花生壳、稻草、大豆杆及棉杆进行燃烧特性分析。

    The burnable characteristics of straw haulm , eucalypt waste , peanut shell , straw , soybean pole and cotton pole were analyzed with TGA-92 heat heavy-difference heat integrated analyser in this paper .

  18. 微波辅助提取花生壳黄酮类化合物及其抗氧化性研究

    Microwave-assisted extraction of flavonoids from peanut hull and its antioxidant activity

  19. 化学修饰对花生壳吸附染料能力的影响

    Effect of Chemical Modification on Dye Adsorption Capacity of Peanut Hull

  20. 花生壳的综合利用研究(一)&花生壳改性制备重金属吸附剂初探

    Applications of Peanut Hull : I.Preparation of Heavy Metal Ion Adsorbent

  21. 提取黄色素后的花生壳在金属废水处理中的应用

    The Application of Yellow Element-extracted Peanut Shell in Metal Wastewater Treatment

  22. 花生壳基活性炭的制备及其电化学性能的研究

    Preparation and Electrochemical Performance of Activated Carbon Made from Peanut Shell

  23. 利用益生菌发酵提高花生壳粉饲用价值的研究

    Improving the feeding value of peanut shell powder by probiotic fermentation

  24. 花生壳为原料的代用基质生产工艺研究

    Studies on Production Technology of Peanut Hull Substrate Substituting for Peat

  25. 间接重量法分析花生壳中菲丁含量

    The Analysis of Phytin Content in Peanut Shell Using Indirect Weighing Method

  26. 花生壳全粉碱法制胶的初步研究

    Preliminary Study on Adhesive Made from Peanut Shell with Alkaline

  27. 不同浓度的花生壳提取物对食用油脂的抗氧化作用

    Antioxidation of extract from peanut shell with different consistences in edible fat

  28. 花生壳对水中重金属离子的吸附

    Using Peanut Shell as an Absorbent for Heavy Metal Ions in Water

  29. 表面活性剂强化微波提取花生壳黄酮的工艺研究

    Extraction of flavone from peanut hull enhanced by non-ionic surfactant through microwave

  30. 花生壳木犀草素的提取及其抑菌性能研究

    Purification and antibacterial properties of luteolin extracted from peanut shell