某氮肥厂氨氮废水中的氮元素多以NH4+ 和NH3?H2O的形式存在,经先期处理得到含HNO3的废水.一定条件下,向 某氮肥厂氨氮废水中的氮元素多以NH4+和MH3?H2O的形式...

\u67d0\u6c2e\u80a5\u5382\u6c28\u6c2e\u5e9f\u6c34\u4e2d\u7684\u6c2e\u5143\u7d20\u591a\u4ee5NH4+\u548cNH3\u00b7H2O\u7684\u5f62\u5f0f\u5b58\u5728\uff0c\u8be5\u5e9f\u6c34\u7684\u5904\u7406\u6d41\u7a0b\u5982\u4e0b:(1)\u8fc7\u7a0b\u2160:\u52a0NaOH\u6eb6\u6db2

\u6ce8\uff1aNH\u7684\u540d\u79f0\u662f--\u94f5\uff0c\u4f5c\u4e3aNH4+\u7684\u539f\u5b50\u56e2\u5b58\u5728\uff0c\u5c5e\u4e8e\u9633\u79bb\u5b50\u3002
\u2474\u2460NH4+ + OH- = NH3\u00b7H2O
\u2461\u6c28\u6c34\u7535\u79bb\u662f\u53ef\u9006\u53cd\u5e94\uff0c\u5c06\u751f\u6210\u7684\u6c28\u6c14\u5e26\u8d70\uff0c\u5373\u51cf\u5c11\u751f\u6210\u7269\uff0c\u53ef\u4ee5\u4f7f\u5316\u5b66\u5e73\u8861\u5411\u6b63\u53cd\u5e94\u65b9\u5411\u79fb\u52a8\uff0c\u5373\u66f4\u591a\u7684\u751f\u6210\u6c28\u6c14\uff0c\u56e0\u800c\u4fc3\u8fdb\u4e86\u6c28\u6c34\u7535\u79bb
\u2475\u2460\u653e\u70ed \u56e0\u4e3a\u0394H=-273kJ/mol<0(\u53cd\u5e94\u7269\u7684\u603b\u80fd\u91cf\u5927\u4e8e\u751f\u6210\u7269\u7684\u603b\u80fd\u91cf)
\u24612 (ap)+2O2(g) 2H+( ap)+ H2O(l) \u0394H=-346 kJ/mol
\u24765:6 (\u6ce85CH3OH+6HNO3\u21925CO2+N2\u2191+13H2O)

\uff081\uff09\u2460\u94f5\u76d0\u80fd\u548c\u5f3a\u78b1\u53cd\u5e94\uff0c\u5b9e\u8d28\u662f\uff1aNH4++OH-\u2550NH3?H2O\uff0c\u6545\u7b54\u6848\u4e3a\uff1aNH4++OH-\u2550NH3?H2O\uff1b\u2461\u6c28\u6c34\u7535\u79bb\u662f\u53ef\u9006\u53cd\u5e94\uff0c\u5c06\u751f\u6210\u7684\u6c28\u6c14\u5e26\u8d70\uff0c\u5373\u51cf\u5c11\u751f\u6210\u7269\uff0c\u53ef\u4ee5\u4f7f\u5316\u5b66\u5e73\u8861\u5411\u6b63\u53cd\u5e94\u65b9\u5411\u79fb\u52a8\uff0c\u5373\u66f4\u591a\u7684\u751f\u6210\u6c28\u6c14\uff0c\u56e0\u800c\u4fc3\u8fdb\u4e86\u6c28\u6c34\u7535\u79bb\uff0c\u6545\u7b54\u6848\u4e3a\uff1a\u7a7a\u6c14\u53ef\u4ee5\u5c06\u751f\u6210\u7684\u6c28\u6c14\u5e26\u8d70\uff0c\u4f7f\u5316\u5b66\u5e73\u8861\u5411\u6b63\u53cd\u5e94\u65b9\u5411\u79fb\u52a8\uff0c\u4fc3\u8fdb\u4e86\u6c28\u6c34\u7535\u79bb\uff1b\uff082\uff09\u2460\u7113\u53d8\u5c0f\u4e8e0\uff0c\u5219\u53cd\u5e94\u4e3a\u653e\u70ed\u53cd\u5e94\uff0c\u6545\u7b54\u6848\u4e3a\uff1a\u653e\u70ed\uff1b\u56e0\u4e3a\u25b3H=-273kJ/mol\uff1c0\uff08\u53cd\u5e94\u7269\u7684\u603b\u80fd\u91cf\u5927\u4e8e\u751f\u6210\u7269\u7684\u603b\u80fd\u91cf\uff09\uff1b \u2461\u7b2c\u4e00\u6b65\u7684\u70ed\u5316\u5b66\u65b9\u7a0b\u5f0f\u4e3aNH4+\uff08aq\uff09+1.5O2\uff08g\uff09\u2550NO2-\uff08aq\uff09+2H+\uff08aq\uff09+H2O\uff08l\uff09\uff0c\u25b3H=-273KJ/mol\uff0c\u7b2c\u4e8c\u6b65\u7684\u70ed\u5316\u5b66\u65b9\u7a0b\u5f0f\u4e3a\uff1aNO2-\uff08aq\uff09+0.5O2\uff08g\uff09\u2550NO3-\uff08aq\uff09\uff0c\u25b3H=-73KJ/mol\uff0c\u6839\u636e\u76d6\u65af\u5b9a\u5f8b\u5219NH4+\uff08aq\uff09+2O2\uff08g\uff09\u25502H+\uff08aq\uff09+H2O\uff08l\uff09+NO3-\uff08aq\uff09\uff0c\u25b3H=-346 kJ/mol\uff0c\u6545\u7b54\u6848\u4e3a\uff1aNH4+\uff08aq\uff09+2O2\uff08g\uff09\u25502H+\uff08aq\uff09+H2O\uff08l\uff09+NO3-\uff08aq\uff09\uff0c\u25b3H=-346 kJ/mol\uff1b\uff083\uff09\u6d88\u801732g\uff081mol\uff09CH3OH\u8f6c\u79fb6mol\u7535\u5b50\uff0c\u7531CH3OH\u4e2d\u78b3\u539f\u5b50\u7684\u5316\u5408\u4ef7\u5347\u9ad86\uff0c\u6240\u4ee5\u53cd\u5e94\u540e\u78b3\u7684\u5316\u5408\u4ef7\u4e3a+4\uff0c\u4ea7\u7269\u4e3aCO2\uff0c\u6839\u636e\u8d28\u91cf\u5b88\u6052\u548c\u5316\u5408\u4ef7\u5347\u964d\u603b\u6570\u76f8\u7b49\u5f97\uff1a5CH3OH+6HNO3\u25505CO2+3N2+13H2O\uff0c\u53cd\u5e94\u4e2d\u6c27\u5316\u5242\u662f\u785d\u9178\uff0c\u8fd8\u539f\u5242\u662f\u7532\u9187\uff0c\u53c2\u52a0\u53cd\u5e94\u7684\u8fd8\u539f\u5242\u548c\u6c27\u5316\u5242\u7684\u7269\u8d28\u7684\u91cf\u4e4b\u6bd4\u662f5\uff1a6\uff0c\u6545\u7b54\u6848\u4e3a\uff1a5\uff1a6\uff0e

A.硝酸分子中,含有氢原子,氢最外层族序数+成键数=1+1=2,所以不能满足所有原子最外层8电子结构,故A错误;
B.消耗32g(1mol)CH3OH转移6mol电子,由CH3OH中碳原子的化合价升高6,所以反应后碳的化合价为+4,产物为CO2,根据质量守恒和化合价升降总数相等得:5CH3OH+6HNO3═5CO2+3N2+13H2O,反应中氧化剂是硝酸,还原剂是甲醇,参加反应的还原剂和氧化剂的物质的量之比是5:6,故B正确;
C.由于加水稀释后,氨水电离程度增大,电离平衡正向移动,n(NH4+)增大,n(NH3?H2O)减小,在同一溶液中体积相同,离子的浓度之比等于物质的量之比,则
c(NH4+)
c(NH3?H2O)
增大,故C错误;
D. 氨气分子中价层电子对个数=σ键个数+孤电子对个数=3+
1
2
(5-3×1)=4,因为含有一个孤电子对,所以是三角锥型结构;碳酸根离子中价层电子对个数=σ键个数+孤电子对个数=3+
1
2
=3,为平面三角形结构,两者空间构型不相同,故D错误;
故选B.

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