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jsyhn木蟲 (小有名氣)
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[交流]
懸賞翻譯一篇400多字的摘要(環(huán)境,納米,土壤相關(guān))
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請(qǐng)高手在今天0點(diǎn)以前幫忙翻譯好,100金幣就歸您了!非常感謝,萬分感謝! 內(nèi)容為: 通過比較納米氧化銅 (CuO NPs), 微米氧化銅 (CuO MPs)在兩種土壤中的Cu2+溶出及其對(duì)脲酶活性影響, 結(jié)合可產(chǎn)生脲酶活性抑制效應(yīng)的Cu2+濃度閾值, 研究了CuO NPs和CuO MPs對(duì)土壤脲酶活性的毒性效應(yīng)機(jī)制. 結(jié)果表明: CuO NPs和CuO MPs的Cu2+溶出量隨其濃度增加而增加, 溶出比率隨濃度增加而減少, 兩者在紅壤中的Cu2+溶出均高于其在烏柵土中;在1~100 mg • kg-1范圍內(nèi), CuO NPs對(duì)土壤脲酶活性產(chǎn)生了顯著(p ≤0.05)或極顯著(p ≤0.01)的抑制效應(yīng), 同濃度下, CuO NPs在土壤中的Cu2+溶出及其對(duì)脲酶活性的抑制效應(yīng)均大于CuO MPs; 在相對(duì)低濃度 (1~10 mg • kg-1, 紅壤; 1~100 mg • kg-1, 烏柵土)下, 納米顆粒態(tài)導(dǎo)致了CuO NPs對(duì)土壤脲酶活性的抑制毒性, 在相對(duì)高濃度 (≥50 mg • kg-1, 紅壤; ≥500 mg • kg-1, 烏柵土)下, 納米顆粒態(tài)和溶出Cu2+共同作用引起了脲酶活性抑制;與CuO NPs 不同, CuO MPs只有通過溶出Cu2+抑制土壤脲酶活性, 其顆粒態(tài)對(duì)脲酶活性無顯著影響; 值得注意的是, 在低濃度(1 mg • kg-1)下CuO NPs對(duì)土壤脲酶活性具有微米態(tài)和離子態(tài)所沒有的抑制毒性, 說明其對(duì)土壤酶影響應(yīng)存在特殊機(jī)理, 值得進(jìn)一步深入研究. 輔助您翻譯的專業(yè)詞匯如下: 脲酶:urease 活性:activity 溶出:release 抑制:inhibit/inhibition 紅壤:Udic Ferrosols 烏柵土:Anthrosol |
木蟲 (正式寫手)
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By comparing the Cu2+ release and the effects of urease's activity of CuO NPs and CuO MPs in two kinds of soil,combining the threshold concentration of Cu2+ which can have inhibiting action to urease's activity,we studied the mechanism of the toxic effects to soil urease's activity given by CuO NPs and CuO MPs.It showed that the Cu2+ release of CuO NPs and CuO MPs enhanced by the increasng of their concentrations, the dissolving rate was to the contrary.Both of their Cu2+ release are higher in Udic Ferrosols than Anthrosol .In the range of 1 to 100 mg • kg-1,CuO NPs had a prominent inhibiting action to urease with p ≤0.05 and highly significant action with p ≤0.01.In the same concentration,the Cu2+ release and the effects of urease's activity of CuO NPs was over to CuO MPs.In the relatively low concentration(1~10 mg • kg-1 in Udic Ferrosols and Anthrosol),the nanoparticle form resulted the inhibitorytoxicity of CuO NPs to urease's activity.In the relatively high concentration((≥50 mg • kg-1 in Udic Ferrosols,≥500 mg • kg-1 in Anthrosol),the synergy of nanoparticle form and Cu2+ release produced inhibiting action to urease's activity.Differing to CuO NPs,CuO MPs inhibited the activity of urease only through Cu2+ release,its nanoparticle form didn't have a remarkable influence.It's wroth to learn,CuO NPs had a inhibitorytoxicity in the low concentration(1 mg • kg-1) which the submicronin form and ionic form didn't have. That showed that there was a special mechanism for the influence of CuO NPs to soil enzyme taht's wroth to do a deep study.不知道能不能幫到你 |

至尊木蟲 (職業(yè)作家)
院士
| By comparing the nano-copper oxide (CuO NPs), micron copper oxide (CuO MPs) in two soil Cu2 + dissolution and its urease activity, combined to produce urease activity inhibition effect of the Cu2 + concentration threshold of the CuO NPs and CuO MPs on soil urease activity of the toxic effect mechanism. The results show that: CuO NPs and CuO MPs of Cu2 + dissolution increased with its concentration increases, dissolution rate with the concentration decreased, both in the red in the Cu2 + dissolution was higher than its In Wushan soil; in 1 ~ 100 mg • kg-1 range, CuO NPs on soil urease activity produced a significant (p ≤ 0.05) or highly significant (p ≤ 0.01) inhibitory effect, the same concentration, CuO NPs Cu2 + in the soil dissolution and on the inhibitory effect of urease activity was higher than CuO MPs; in relatively low concentrations (1 ~ 10 mg • kg-1, red; 1 ~ 100 mg • kg-1, Wushan soil) under nano-particle states leads to CuO NPs on urease activity inhibition of toxicity, a relatively high concentration (≥ 50 mg • kg-1, red; ≥ 500 mg • kg-1, Wushan soil), the nano-particulate and dissolved Cu2 + interaction caused urease activity inhibition; and CuO NPs different, CuO MPs only through the dissolution of Cu2 + inhibition of urease activity, the particulate on urease activity had no significant effect; It is noteworthy that, in low concentration (1 mg • kg-1 ) under the CuO NPs on soil urease activity states and ionic states with micron not inhibited by the toxicity, indicating its impact on soil enzyme should exist a special mechanism, it is worth further study. |

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