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soaking time造句

"soaking time"是什么意思   

例句與造句

  1. The influence of soaking time on the content of paeoniflorin
    不同浸潤(rùn)時(shí)間對(duì)白芍飲片中芍藥苷含量影響的研究
  2. In addition , the effect of soak time on heated radius is not well understood
    另外,對(duì)燜井時(shí)間與加熱帶大小影響的認(rèn)識(shí)也比較模糊。
  3. Effect of different temperatures and different seed soaking time on the seed germination of pugionium cornutum
    不同溫度和不同浸種時(shí)間對(duì)沙芥種子萌發(fā)的影響
  4. Remarks : the soaking time for house nest is about 2 hours , but will be about 12 hours or more for cave nest
    附注:屋燕浸發(fā)時(shí)間約二小時(shí),洞燕則長(zhǎng)至十二小時(shí)或以上。
  5. The effect of different processing conditions , chitosan concentration , soaking time , baking temperature , and compounding agent on linen property are determined
    分析了殼聚糖濃度、浸漬溫度、焙烘溫度和添加助劑對(duì)亞麻染色性能的影響。
  6. It's difficult to find soaking time in a sentence. 用soaking time造句挺難的
  7. Several factors which influence the production of douchi fibrinolytic enzyme were analyzed , including amount of soaking water , soaking time , crash degree of soybean , carbon source , ionic strength and cooking time
    分析了影響豆豉纖溶酶產(chǎn)量的諸多因素,包括大豆浸泡水量、時(shí)間、大豆破碎程度、碳源、離子強(qiáng)度、蒸煮時(shí)間等。
  8. This paper presents the calculation formula for determination of reasonable soak time and heated radius at end of soaking by analysis of changes of oil layer and steam energy during soaking period , based on basic theories of reservoir engineering and heat transfer
    應(yīng)用油藏工程、熱傳遞基本理論剖析了燜井過(guò)程中油層和蒸汽的能量變化,推導(dǎo)出確定合理燜井時(shí)間的計(jì)算公式和燜井結(jié)束后加熱半徑的計(jì)算公式。
  9. As the temperature and the soak time increasing , crystallite size , graphitic degree and average particle size of the graphite increase , while specific surface area decreases . the electrochemical performance of modified graphite is improved with the change in structure and surface characteristics
    結(jié)果表明,隨著熱處理溫度的升高和恒溫時(shí)間的延長(zhǎng),石墨材料的石墨化度、石墨微晶尺寸l _ c及l(fā) _ a逐漸增大,比表面積減小,平均粒徑增大,充放電性能得到改善。
  10. As the temperature of pyrolysis and the soak time increasing , the carbon materials become more stacked , the specific surface area reduces , both reversible capacity and irreversible capacity decrease , the initial coulumbic efficiency increases , and the hysteresis in the voltage profile between charge and discharge is cut down
    隨著熱處理溫度的升高和恒溫時(shí)間的延長(zhǎng),所得炭材料的有序化程度增加,比表面積減小,可逆嵌鋰容量與不可逆容量均減小,首次充放電效率增大,電壓滯后現(xiàn)象得到抑制。
  11. Some main results of testing research were as fellows : i . in the course of testing of leaching zinc dross , leaching zinc dross by sulfuric acid was researched and the effects on the leaching rate of the zinc dross were analyzed by author , the optimum conditions of leaching testing of zinc dross were determined as fellows : liquid - solid ratio 6 : 1 , stirring ratio 250r / min , granularity 120 mesh , the soaking time 5h , the concentration of sulfuric acid of 30 % , and under these conditions , the rate of leaching zinc is above 92 . 0 % . ii . in the course of testing of purification , on the basis of comprehending and comparing all present methods of the manganese - removal and iron - removal , the oxidizing method of manganese - removal in zinc sulfate solution using ammonium persulfate was put forward and the oxidizing method of iron - removal in zinc sulfate solution using the goethite process and oxidation - hydrolysis process was adopted
    研究的主要結(jié)果具體如下: 1 、研究了硫酸浸出鋅浮渣并分析了影響浸出率的各種因素,確定了浸出鋅浮渣的最佳條件為:液固比為6 : 1 ,攪拌速度為250r min ,粒度為- 120目,酸浸時(shí)間為5 . 0h ,硫酸濃度30 ,鋅浮渣的浸出率大于92 . 0 ; 2 、在綜合和比較了目前除錳和除鐵的各種方法基礎(chǔ)上,提出了過(guò)硫酸銨氧化除錳方法和選擇了針鐵礦-氧化水解聯(lián)合法除鐵方法,并分析和討論了影響除錳率和除鐵率等各種因素,確定了除錳的條件為:溫度90 , ph值5 . 4 ,反應(yīng)時(shí)間3h ,過(guò)硫酸銨達(dá)到理論值的1 . 2倍,除錳率超過(guò)99 . 86 ;聯(lián)合法除鐵的條件為:氧化反應(yīng)時(shí)間1 . 5小時(shí)、溫度控制在90 92 、 ph值5 . 2 5
  12. Aimed at the high temperature at furnace roof and wall , great lost of body heat radiation , poor leading heating ability and long soaking time , the compound ceramic fiber coating is used to hold temperature of furnace roof and wall , make the heating loss dropped , shorten soaking time , improve heating ability and reduce evergy consumption
    摘要針對(duì)環(huán)形爐爐頂爐墻表面溫度高、爐體散熱損失大、導(dǎo)致加熱能力低、待溫時(shí)間偏長(zhǎng)的問(wèn)題,選用了復(fù)合陶瓷纖維保溫涂料,使?fàn)t體散熱損失減少,待溫時(shí)間縮短,加熱能力提高,且能耗降低。

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