class='kwd-title'>Method name: Chemical method c'/> Chemical methods for determining the electron storage capacity of black carbon
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Chemical methods for determining the electron storage capacity of black carbon

机译:测定黑碳电子存储容量的化学方法

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摘要

class="kwd-title">Method name: Chemical method class="kwd-title">Keywords: Black carbon, Biochar, Electron storage capacity, Electron accepting capacity, Electron donating capacity, Redox reversibility, Chemical oxidation/reduction class="head no_bottom_margin" id="abs0010title">AbstractElectron storage capacity (ESC) is a new and important property that determines the capacity of a black carbon to mediate abiotic and microbial electron transfer reactions in natural and engineered systems. It is necessary to develop accurate and reproducible methods to measure black carbon's ESC in order to understand its redox behavior and to predict its capacity to support redox transformation of contaminants in subsurface environments. In this study, we developed chemical methods that employed combinations of reductants and oxidants of different redox potentials – Ti(III) citrate or dithionite as reductant, and ferricyanide or dissolved O2 as oxidant – to measure the ESC of a wood-derived biochar. Pore diffusion within biochar particles was rate-limiting and controlled the timescale for redox equilibrium and ESC measurements. class="first-line-outdent" id="lis0005">
  • • The new methods can handle sample mass on the order of a gram
  • • Sample pretreatment (e.g., oxidation via aeration) is necessary to produce consistent results
  • • For a given reductant-oxidant pair, colorimetric (or potentiometric) measurements gave constant and reproducible ESC
  • 机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>方法名称:化学方法 class =“ kwd-title”>关键字:黑碳,生物炭,电子存储容量,电子接受容量,电子给体容量,氧化还原可逆性,化学氧化/还原 class =“ head no_bottom_margin” id =“ abs0010title”>摘要电子存储容量(ESC)是新的以及决定黑碳在自然和工程系统中介导非生物和微生物电子转移反应能力的重要特性。有必要开发出准确且可重复的方法来测量黑碳的ESC,以了解其氧化还原行为并预测其在地下环境中支持污染物的氧化还原转化的能力。在这项研究中,我们开发了化学方法,该方法采用了具有不同氧化还原电势的还原剂和氧化剂的组合-柠檬酸Ti(III)或连二亚硫酸盐作为还原剂,铁氰化物或溶解的O2作为氧化剂-来测量木材衍生生物炭的ESC。生物炭颗粒内的孔扩散受到速率的限制,并控制了氧化还原平衡和ESC测量的时间范围。 class =“ first-line-outdent” id =“ lis0005”> <!-list-behavior = simple prefix-word = mark-type = none max-label-size = 9->
  • •新方法可以处理克数量级的样品质量
  • •必须进行样品预处理(例如,通过充气进行氧化)才能产生一致的结果
  • •对于给定的还原剂-氧化剂对,比色(或电位)测量可得出恒定且可重复的ESC
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