Line 310: | Line 310: | ||
</tr> | </tr> | ||
<tr> | <tr> | ||
− | <td colspan="1"> | + | <td colspan="1">CO<sub>2</sub> utilizing rate</td> |
<td colspan="1">250g/m3/day</td> | <td colspan="1">250g/m3/day</td> | ||
<td colspan="1">19.6 mg/g (DRY cell weight)</td> | <td colspan="1">19.6 mg/g (DRY cell weight)</td> | ||
</tr> | </tr> | ||
<tr> | <tr> | ||
− | <td colspan="1">source required for 1kg | + | <td colspan="1">source required for 1kg CO<sub>2</sub> utilization</td> |
<td colspan="1">4 tons of water</td> | <td colspan="1">4 tons of water</td> | ||
<td colspan="1">20.0535kg xylose</td> | <td colspan="1">20.0535kg xylose</td> | ||
Line 340: | Line 340: | ||
<h3>Reference</h3> | <h3>Reference</h3> | ||
<ol> | <ol> | ||
− | <li class="smallp">Fuyu G, Guoxia L, Xiaoyun Z, Jie Z, Zhen C and Yin L. Quantitative analysis of an engineered | + | <li class="smallp">Fuyu G, Guoxia L, Xiaoyun Z, Jie Z, Zhen C and Yin L. Quantitative analysis of an engineered CO<sub>2</sub>-fixing Escherichia coli reveals great potential of heterotrophic CO<sub>2</sub> fixation. Gong et al. Biotechnology for Biofuels, 2015, 8:86.</li> |
<li class="smallp"> | <li class="smallp"> | ||
張嘉修、陳俊延、林志生、楊勝仲、周德珍、郭子禎、顏宏偉、李澤民 (2015), 二氧化碳再利用─微藻養殖, 科學發展 2015 年 6 月│ 510 期 </li> | 張嘉修、陳俊延、林志生、楊勝仲、周德珍、郭子禎、顏宏偉、李澤民 (2015), 二氧化碳再利用─微藻養殖, 科學發展 2015 年 6 月│ 510 期 </li> | ||
Line 346: | Line 346: | ||
STORAGE, Global CCS Institute, Senior Adviser Policy & Economics, Asia-Pacific Region </li> | STORAGE, Global CCS Institute, Senior Adviser Policy & Economics, Asia-Pacific Region </li> | ||
<li class="smallp">Jin Hwan Park, Jae Eun Oh, Kwang Ho Lee, Ji Young Kim, and Sang Yup Lee. Rational Design of Escherichia coli for L‑Isoleucine Production. [ACS Synth Biol.](https://www.ncbi.nlm.nih.gov/pubmed/23656230#) 2012</li> | <li class="smallp">Jin Hwan Park, Jae Eun Oh, Kwang Ho Lee, Ji Young Kim, and Sang Yup Lee. Rational Design of Escherichia coli for L‑Isoleucine Production. [ACS Synth Biol.](https://www.ncbi.nlm.nih.gov/pubmed/23656230#) 2012</li> | ||
− | <li class="smallp">M. KUNDAK, L. LAZI], J. RNKO. | + | <li class="smallp">M. KUNDAK, L. LAZI], J. RNKO. CO<sub>2</sub> EMISSIONS IN THE STEEL INDUSTRY. METALURGIJA 48, 2009</li> |
<li class="smallp">V. N. Kalpana, D. Sathya Prabhu, S. Vinodhini and Devirajeswari V. Biomedical waste and its management. Journal of Chemical and Pharmaceutical Research, 2016</li> | <li class="smallp">V. N. Kalpana, D. Sathya Prabhu, S. Vinodhini and Devirajeswari V. Biomedical waste and its management. Journal of Chemical and Pharmaceutical Research, 2016</li> | ||
<li class="smallp">Qian Ma, Quanwei Zhang, Qingyang Xu, Chenglin Zhang, Yanjun Li, Xiaoguang Fan, Xixian Xie, Ning Chen. Systems metabolic engineering strategies for the production of amino acids. Synthetic and Systems Biotechnology 2 (2017)</li> | <li class="smallp">Qian Ma, Quanwei Zhang, Qingyang Xu, Chenglin Zhang, Yanjun Li, Xiaoguang Fan, Xixian Xie, Ning Chen. Systems metabolic engineering strategies for the production of amino acids. Synthetic and Systems Biotechnology 2 (2017)</li> |
Revision as of 15:35, 12 October 2018